Showing posts with label Evolution's Awesome Potential. Show all posts
Showing posts with label Evolution's Awesome Potential. Show all posts

Thursday, March 20, 2014

Ivory Tower’s Massive Disconnect with Reality

Repost from Soundoff

Stepping back from the colossal influx, bombardment, of business’s “big ideas”, “innovation”, “active ingredients necessary for sustaining continuous innovation”, “using the power of certainty to drive growth in an uncertain world”, etc., etc., (from the experts) ............................we must ask, with all this novel input:

WHO THEN, IS CREATING THE COLLECTIVE, WORLDWIDE OUTPUT?

Is there a total disconnect, breakdown between “innovation”, “creativity” inputs, and the collective summation of output?

I concur, the eventual total destruction of all life IS a “BIG IDEA”, but positively is NOT “INNOVATION”

Business Projection Analysis Training for Dummies 


Flasfforesightdisconnect

 What obvious ingredients, so necessary to sustain life, progress and growth are completely and totally ignored in the present economic models of ego, greed, power and growth at all costs? Where to “hell on earth” are these “experts” in their tiny reality box taking us? Blind to the absolutely insane, obscene worldwide wealth distribution and stagnant energy base?

A mind-boggling statistic about Wall Street bonuses

wallstreetAt $26.7 billion last year, they were almost twice what all of America's minimum-wage workers combined were paid.    March 17 5:30 AM  http://www.cbsnews.com/news/a-mind-boggling-statistic-about-wall-street-bonuses

And how can such an obvious deficit as a stagnant energy base - the CAUSE of the collective outcomes worldwide - be completely missed?

Common sense today tells us advanced, evolutionary, energy concepts would also bestow us with glaringly obvious “wisdom” options (science based moral & survival fibers) alerting us to the “uses”, the “sustainable, prosperous collective outcomes”, towards which our creations shall be put.

  ener-evol-prog2

 To date, big ideas and innovation inputs are giving us unsustainable outputs, a complete disconnect from the perceived reality we ‘think’ we are creating in the tiny isolated, ivory box of expertise. Profit, the bottom line, stands alone, the sole criteria for ‘truth’, ‘justice’, ‘righteousness’, ‘the Way’, with nary a consideration to the values required to sustain life itself. Big II input-output B-I-I input-output2

Growth At All Costs

The predicament of industrial civilization.   John Greer, 16 March 2014

growthatallcosts

 LOUIS HELBIG To understand the predicament of industrial civilization, it’s not enough to grasp the outward shape of the crisis of our time: the looting of a finite planet’s stock of resources, the destabilization of the global climate, the breathtaking cluelessness with which politicians, pundits, and ordinary citizens alike insist that the only way we can get out of this mess involves doing even more of the same things that got us into it in the first place, and the rest of it. Follow the roots of our predicament down into the soil that feeds them, and you’ll find yourself in a murky realm of unspoken narratives and unacknowledged desires—the “mind-forg’d manacles,” as Blake called them, that keep most of us shackled in place as the great rumbling vehicle of global industrial society accelerates down the slope of its decline and fall. Read the full piece herehttps://www.adbusters.org/magazine/112/growth-all-costs.html

Sunday, February 23, 2014

Marianne Williamson asserts, "We can't be 'selectively conscious'

Peter Jocis
Peter Jocis   reposted on facebook

    Sunday, January 12, 2014

    Awareness Grows Beyond the Senses


    The next time you think "seeing is believing", keep in mind that our eyes can only perceive 1/10 billionth of the total information that rides on the electromagnetic spectrum...

    Now is the time to collectively tune the Noosphere to the resonant frequencies of the universe!



    Now is the time to collectively tune the Noosphere to the re...See More

    Sunday, April 14, 2013

    Awesome World View Enhancement: Walter Russell’s Concept of Light and Revolution Tied to The Radius of Curvature



      Awesome World View Enhancement: Walter Russell’s Concept of Light and Revolution Tied to The Radius of Curvature

    Imagine, no change in our mathematical grasp of reality, but a huge change in our world view, perspective, interpretation of Reality; removing the limits of our narrow, limited, “flat world” view of space and time and energy; opening the doors to evolutionary possibilities not even imagined. Makes one wonder, WHO is choosing the current state of the world in 21st century science.
    Reprinted with permission from Exploring Energy Evolution http://exploringenergyevolution.blogspot.com/
    A few additional perceptual clarifications of space, time, mass, matter, energy, gravity are necessary before engineering and technological applications can proceed with common sense clarity. Mathematics in terms of frequency/energy differential equivalents are required for each factor. 

    While StarSteps is a far easier read, Russell's perspective from the sphere/cube, light/sound, periodic table/musical note correspondence presents a reality view from another angle.

    The Radius of Curvature, the Constant C: the kinetic energy equivalent of the mass energy of matter

    Recall: We can now see that a frequency differential which by the above formula is equal to 9x10(20) ergs per gram also represents the quantity C. When such a frequency differential exists between the observer and the point which he is observing, we again find that the natural laws at the observed point reach zero value with respect to the observer. If the frequency differential exceeds this value, the action of the laws will become negative.

    For those wondering how to test these concepts using such great energy differentials as the quantity C between reference points, reconsider the state of matter and electrons, and their relationships where this differential potential already exists. (See recap at end of post)


    Walter Russell's Concept of Light and Revolution 



    https://www.youtube.com/watch?v=WvCHOBxN-wU
    Walter Russell believed that everything is light. This can be linked directly with the equation energy equals mass times the speed of light squared. Light will radiate out in all directions forming a sphere and the three dimensions of our everyday life. All we have to do is place the Lorentz contraction of space and time between the energy and mass. The greater the energy the greater the contraction of space and the slower time will run. Mass will increase relative to this and each ref-frame can be seen as a vortex in space and time.

    Walter Russell: Genero-activity begins at the birth of carbon in the first octave with genero-active, inner explosive speed of light which is 186,400 miles per second. It ends with an equal radioactive, outer explosive speed. This speed is the limit at which motion can reproduce itself in curved wave fields before reaching zero where motion and curvature cease.


    Walter Russell:Within each cube field is the curved universe of two way light illusion; and beyond, to the farthest reaches of space, is a repetition of illusion from wave field to wave field at the rate of 186,400 miles per second. That is the speed in which every action-reaction anywhere repeats itself everywhere. This illusion of motion gives rise to the belief that light "travels."



    Walter Russell:The creation of all forms of matter is an eternal interchange between incandescent spheres and cold cubes. All forms are born in the direction of the coldness of space and are voided in
    the direction of incandescence. Thus, the two opposite plus and minus equilibrium conditions are produced which motivate this electric universe of two-way motion, give to it its heartbeat and produce all effects of illusion caused by the interchange of the two conditions of matter.



    There is only NOW
    Barbara Dewey The Theory of Laminated Spacetime: Electro-magnetic waves are spiralling particles of matter-in-motion or a laminated quantum of spacetime. Each electron is a perfect example, These particles are in a wave-like pattern because they are going through the process of creation and destruction in the blink of Laminated Spacetime. They are surging "up' as they come into existence. They are dying back as they expire. They display "positive" (counterclockwise) and negative (clockwise characteristics because of the twist of the double helix. 

    The above should offer clearer insights into:

    Obtaining Energy by Annihilation of an Electron with a Positron


    We can obtain renewable, clean, safe, cheap energy by annihilation, for example, of an electron with an anti-electron (positron). An electron and positron are obtained by extracting them from atoms; the extraction consumes a negligible amount of energy. Then, the two particles are brought near one another (collision).





    Recap: Points we know







    • ·        The natural laws are not absolute, but relative. 
    • ·        That is, the size and shape of the curve of one law is dependent upon the value and position  of the others.   
    • ·        If a differential of energy equal to the quantity C exists between the observer and the point which he is observing, the natural laws will be suspended.  
    • ·        If the energy differential is in excess of the quantity C, the laws will appear to operate in reverse at that point.  
    • ·        The Bell device was designed to use high-speed counter-rotating components filled with specialized materials and energized by electromagnetic energy to induce “torsion” effects and thus control gravity and other significant effects. 
    • ·        We refer not only to the charges in the outer shell of the atom but to those within as well, and especially to the fact, not always realized, that the neutron possesses both a positive and a negative charge, although when united within the neutron they are not discernible as charges, but exist as energy which produces the gravitational field.





    Sunday, December 21, 2008

    Evolutionary Alternatives to Self Imposed Limits


    reprinted with permission from Lifestyles Unlimited 1990-2001 A 1990 newsletter, updated in 2001 with the forecasted events in the process of full blown expression - eerily uncanny
    About multideminsional thinking: "........ If more people knew that Energy from Corn (or going backwards to a dimwitted concept of radioactive nuclear power application ) sounded a wee bit kindergartenish and senile for the twenty first century......the Future may have a chance. "
    Lifestyles Unlimited Sustainable? Why, pray tell, not?

    The State of the World today certainly camouflages the existence of this expanding spiral of Life and Intelligence. However, we may well assume as established fact that in proportion as intelligence (including wisdom and understanding) advances, the individual ceases to be subject to a mere law of averages and has a continually increasing power of controlling the conditions of his own survival. The more we replace our mindless, unconscious choices, or lack of choices, with expanding conscious choices, the less likely are we to evidence the misery, suffering, limitations, and destruction around the globe.

    Conscious Choice, in this context, is characterized by a very distinct and special flavor. It asks us how far can we see, how far are we willing to see?
    It inquires of us an accounting of the dimensions and clarity of our window to reality. It is the gestalt factor which sanctions the evolutionary apex of intelligent life on this planet to rise by its own volition, replacing the default mode and its attendant drag on the time line. In fact, conscious choice and expanding viewing point are inseparable. Together they transform our choices into self-evident recognition.

    Local/Global 'KISS' explanation: Beach and Grains of Sand - our actions occur at the local level, in the grains of sand; to SEE our objectives, where to go, we require an expanded Global viewpoint, the Beach Scene.

    I recall an old parable about a stampeding herd of cattle heading toward a cliff. The cattle are blindfolded. It would be extremely difficult to stop them from running right off the cliff. However, if their blindfolds were removed, they would turn on their own accord.

    What are our blindfolds?

    1. aside from breaching the paramount magnitude of balanced contemporary education attainability & availability to all
    2. besides laxity in promoting awareness of adaptive behavior criteria, as revealed by our psychological disciplines
    3. aside from the low priority yielded to the social importance of self-esteem as published in the final report of John Vasconcellos's California Task Force Commission
    4. aside from remiss, disdain, and scorn toward the roles power, politics, accountability and freedom play in our continued health and survival
    5. aside from ignorance of sustainable survival patterns found in the fragile balance between self interest and community interest, "institutionalized" behavior and "empowerment" of the individual - as disclosed by organization dynamics and organization psychology
    6. aside from remiss, disdain, and scorn toward the fragile balance between humanity and the environment, humanity and earth ...our home







    Evolutionary Alternatives to Self Imposed Limits
    LIGHT BARRIER GRAVITATIONAL DISABILITY
    ONE POLE, (ATTRACTION), ONE LEG
    Linear or multidimensional thinking?

    To what degree do our thoughts, beliefs, and perceptions shape the world we live in?

    To what degree are our limits governed by our capacity to see and understand increasingly larger segments of reality?

    What cognitive processes influence the intuitive leaps, the "ah ha" experiences which accompany understanding and creativity? Are we aware of what or how we think? How do we form the attitudes that lie behind our decision making?

    Theories in behavioral science predicate the mindlessness and scripted processing of much of our implied "thoughtful" action. Buddhist inner science calls for mindfulness, awareness, meditation, control and discipline of thought and action. New Thought religions point to an exact scientific relationship between individual consciousness, Universal Consciousness, and physical reality.

    The foregoing previews an imposing spectrum on the nature of consciousness. On a practical level, what may these different points of view be suggesting?

    Is there a simple guideline that can connect mindlessness to mindfulness? Could there exist a continuum of thought and awareness, paralleling single linear dimensions to the multidimensions of physical space (geometry, fractals, relativity, and quantum mechanics…)?

    Theories in behavioral science predicate the mindlessness and scripted processing of much of our implied "thoughtful" action.

    As we observe the differences in the thought processes and awareness of a child of three and a nuclear physicist (or primitive man to modern man), we readily note that there is an attribute of expansion involved, quite like the move from a point of view to a viewing point. A case in point: the thirteenth century belief of a flat earth has been replaced and refined over the centuries. The sound barrier was another frontier. Yet the familiar phrase "you cannot see the trees because of the forest" and vice versa, continues to haunt us.

    What parameters of a multidimensional quality constitute the difference between the idea of "trees" and the idea of "forest"? A point of view and a viewing point? Do we think in 3-dimensional thought at all times?

    What is a fourth dimension and how may it relate to a larger viewing point? Does it implicate faster than light velocity, negative gravitation? Does it involve the religious paradox how the one becomes the many, or the origin of matter, the force behind the manifestation of every material nucleus?

    Is the light barrier a mathematical reality, or a misconstrued interpretation of mathematics derived from limited points of view? Can a limited point of view close the doors to an abundant, endless and healthy future?

    Taboos are primitive. However, the dialogue between science and religion, required for multidimensional thinking to take place, to break out of our own self-imposed physical limits, seems to be a modern day taboo.

    Somewhere between science and religion, the point of view and the viewing point, the East and the West, the child and the adult, lie answers to our conflicting and limiting theories, beliefs, and perceptions of the world and universe around us. And somewhere between the New Testament and the Old, the story is told metaphysically, about the point of view and the viewing point, cause and effect, chaos and pattern, the timeless beginning and the end, the one and the many, and multi-dimensionally, how the one is the many.

    This similar story may be deciphered from almost every religion and myth around the globe. The myth of creation buried in the sands of time that crossed distances and cultures. Are these coincidental dreams and imagination, or is there a connection, a scientific relationship window, to a greater reality?

    Can a bigger picture provide an improved road map, a compass, for both individual effort and the creation of a healthy, sustainable, survival pattern or order, out of chaos? Can informed choice and viewing point be Humanity’s attractor’s in chaos?

    Are there any bridges that may be conceived to escape the isolated drudgery, limitations, and singularity that linear (or at best 3-D) thought alone achieves?

    Contemporary psychology embraces the view that our window to reality that forms and guides our behavior and actions, is comprised of our thoughts, beliefs, desires, aims, and experiences that each of us cruise through. A major portion of our perception of reality is, to the extend that we are informed and exposed, derived from our sciences to our religious institutions, from philosophy and ethics to medicine and healing, from power and politics to our ideas of freedom, democracy and economics.

    Yet, as we look at the state of the world today, it becomes apparent there is little consensus, enormous disparity and colossal constraints. Macro theories outside of their own disciplines in the hard sciences have not yet come of age. Beyond the hard sciences there exists only varied opinion and points of experience (individual and group).

    The nature of Man (neutral gender), his/her purpose or evolutionary trend, even emerging global survival demands, rarely manifest beyond the institutionalized and rudimentary sustenance needs motivated by pleasure and profit, an end in itself.

    Today, evidence abounds of emerging viewing points, paradigm changes within multiple disciplines, around the globe. Their direct effect on world behavior standards is clearly being seen. However a modern Myth, the design across disciplines necessary to sustain global survival, still eludes us, remaining isolated and segmented.

    What is the nature of this pattern that runs across disciplines, submerged in fractals, awaiting the appropriate attractors which link chaos to order?

    Let us browse through a few of the possible parameters or attractors in perception that may be implicated. We will use the flat earth example. A linear view from a single point, located near the surface of a level plain or desert, provides us, for all practical purposes, with the perception of a relatively flat terrain. Today, we can easily surmise the factors involved which created Humanity’s historical perception of a flat earth and the process by which that perception moved to a round world.

    Obviously, at an elementary level, as the number, direction, position, speed, and comprehension of various points of view are extended and experienced, our window to reality becomes clearer.
    Statistical numbers, expanded dimensions, velocity rates, and usable energy capacity appear to play a major role in our understanding of reality and its space-time relationships. Comunication, mobility, becomes the cohesive network that shortens space-time relations by substitution of accelerated vocal, visual and physical transmission (or transportation).

    Self-evident, it is a smaller world today because physical size has been substituted by speed. The obstacles of great distances and vast time appear to diminish before our very eyes. More precisely, space-time and position are increasingly being substituted by greater energy differentials of velocity and acceleration.

    The multidimensional question surfaces, can this same effect be created by factors other than velocity? What role may varying degrees of frequencies and fields play in transmuting space, time? In providing access to available energy capacities through gravitational mass differentials?

    It will be noted at this point that the thought process is no longer linear. It has achieved a multidimensional status. More importantly, nothing was lost through this insight, this mode of thinking. Vast distances and eons of time may still be conceived, as well as the means by which to traverse and subdue their effect. Both multi-level views remain. Nor is individuality or identity lost as the ‘One’ begins to sense its’ simultaneous unity with the ‘many’ through a larger grasp of gravity, space, time and energy relationships to consciousness.

    Here lie the hazards of linear or limited level thinking alone. Conflict, duality and separation reign absolute and depend solely upon single points of view, real only under special conditions. The case of the concave/convex curve becomes identified by one’s position, by which side of the curve the viewing is taking place. This interplay of duality, the ability to see, multidimensionally, the simultaneous unity of the local and the global, the one and the many, is incomprehensible in single and limited dimensions. Science and religion, physics and metaphysics are not seen to reside at opposite ends of the same continuum.

    The question that each may contain irreplaceable components of the fundamental laws of existence, a radius of curvature of reality, of how the one becomes the many, or how time and distance may be interchanged thorough gravitational mass differentials, has not even been raised in mainstream thought.

    The preceding multidimensional patterns may be further grasped through Einstenian relativity. The relative position and energy level of one reference point may now be seen to assume critical significance with respect to its relationship to any other reference point. This positional potential can reach and represent an astronomical and possible negative differential between a reference point in the micro world (nuclear) with a reference point in the macro world (between galaxies).

    That this differential is explicitly tied to the formula E=MC2 and exclusively bond to the sine-wave characteristics, a radius of curvature of natural law, remains to be demonstrated.

    It is time we looked into and deciphered the age-old symbol, the Tai’Chi symbol of the circle with the sine wave passing through its center. Through the use of the discoveries of modern science, the scientific method, and multidimensional thinking, we may reveal and begin to apply the resulting concept of the radius of curvature of natural law for the benefit and survival of complex civilizations.

    The East has now met the West. The time is ripe for putting all the pieces of the puzzle together for a wider view, even those that previously did not conform to our comfortable, isolated niches.

    But let us begin with the Western World’s concept "look deep into nature and discover the self" rather than the Eastern view "look deep into the self, and discover nature". Something tangible we of Western background can grapple with, as we unfold the viewing point, bringing Eastern and Western thought together, and expand our window to Reality.

    Saturday, October 27, 2007

    From a Few Genes, Life’s Myriad Shapes

    Modern Science taking their first feeble steps out of the Dark Ages of Disconnected Specialization?

    "......... And what these scientists are finding is that development, a process that has for more than half a century been largely ignored in the study of evolution, appears to have been one of the major forces shaping the history of life on earth. “Do these discoveries blow people’s minds? Yes,” said Dr. Sean B. Carroll, biologist at the Howard Hughes Medical Institute at the University of Wisconsin, Madison. “The first response is ‘Huh?’ and the second response is ‘Far out.’ ” “This is the illumination of the utterly dark,” Dr. Carroll added......."
    Explore the Potential of the Possible Human and Michael Murphy's Future of the Body. Understand that to trash and ignore thousands upon thousands of years of mastered wisdom on human nature is dangerous to survival. Highly specialized, yet narrow and shallow vision, breed and fertilize skewed and stale views of our expanding window to reality, which in turn create the trouble with foundational physics, perpetuating stagnant energy evolution, fostering global warming and the coming nuclear resource wars

    From a Few Genes, Life’s Myriad Shapes
    By CAROL KAESUK YOON

    Since its humble beginnings as a single cell, life has evolved into a spectacular array of shapes and sizes, from tiny fleas to towering Tyrannosaurus rex, from slow-soaring vultures to fast-swimming swordfish, and from modest ferns to alluring orchids. But just how such diversity of form could arise out of evolution’s mess of random genetic mutations — how a functional wing could sprout where none had grown before, or how flowers could blossom in what had been a flowerless world — has remained one of the most fascinating and intractable questions in evolutionary biology.
    Now finally, after more than a century of puzzling, scientists are finding answers coming fast and furious and from a surprising quarter, the field known as evo-devo. Just coming into its own as a science, evo-devo is the combined study of evolution and development, the process by which a nubbin of a fertilized egg transforms into a full-fledged adult. And what these scientists are finding is that development, a process that has for more than half a century been largely ignored in the study of evolution, appears to have been one of the major forces shaping the history of life on earth.
    For starters, evo-devo researchers are finding that the evolution of complex new forms, rather than requiring many new mutations or many new genes as had long been thought, can instead be accomplished by a much simpler process requiring no more than tweaks to already existing genes and developmental plans. Stranger still, researchers are finding that the genes that can be tweaked to create new shapes and body parts are surprisingly few. The same DNA sequences are turning out to be the spark inciting one evolutionary flowering after another. “Do these discoveries blow people’s minds? Yes,” said Dr. Sean B. Carroll, biologist at the Howard Hughes Medical Institute at the University of Wisconsin, Madison. “The first response is ‘Huh?’ and the second response is ‘Far out.’ ”
    “This is the illumination of the utterly dark,” Dr. Carroll added.
    The development of an organism — how one end gets designated as the head or the tail, how feet are enticed to grow at the end of a leg rather than at the wrist — is controlled by a hierarchy of genes, with master genes at the top controlling a next tier of genes, controlling a next and so on. But the real interest for evolutionary biologists is that these hierarchies not only favor the evolution of certain forms but also disallow the growth of others, determining what can and cannot arise not only in the course of the growth of an embryo, but also over the history of life itself.
    “It’s been said that classical evolutionary theory looks at survival of the fittest,” said Dr. Scott F. Gilbert, a developmental biologist at Swarthmore College. By looking at what sorts of organisms are most likely or impossible to develop, he explained, “evo-devo looks at the arrival of the fittest.”
    Charles Darwin saw it first. He pointed out well over a century ago that developing forms of life would be central to the study of evolution. Little came of it initially, for a variety of reasons. Not least of these was the discovery that perturbing the process of development often resulted in a freak show starring horrors like bipedal goats and insects with legs growing out of their mouths, monstrosities that seemed to shed little light on the wonders of evolution.
    But the advent of molecular biology reinvigorated the study of development in the 1980s, and evo-devo quickly got scientists’ attention when early breakthroughs revealed that the same master genes were laying out fundamental body plans and parts across the animal kingdom. For example, researchers discovered that genes in the Pax6 family could switch on the development of eyes in animals as different as flies and people. More recent work has begun looking beyond the body’s basic building blocks to reveal how changes in development have resulted in some of the world’s most celebrated of evolutionary events.
    In one of the most exciting of the new studies, a team of scientists led by Dr. Cliff Tabin, a developmental biologist at Harvard Medical School, investigated a classic example of evolution by natural selection, the evolution of Darwin’s finches on the Galápagos Islands.
    Like the other organisms that made it to the remote archipelago off the coast of Ecuador, Darwin’s finches have flourished in their isolation, evolving into many and varied species. But, while the finches bear his name and while Darwin was indeed inspired to thoughts of evolution by animals on these islands, the finches left him flummoxed. Darwin did not realize for quite some time that these birds were all finches or even that they were related to one another.
    He should be forgiven, however. For while the species are descendants of an original pioneering finch, they no longer bear its characteristic short, slender beak, which is excellent for hulling tiny seeds. In fact, the finches no longer look very finchlike at all. Adapting to the strange new foods of the islands, some have evolved taller, broader, more powerful nut-cracking beaks; the most impressive of the big-beaked finches is Geospiza magnirostris. Other finches have evolved longer bills that are ideal for drilling holes into cactus fruits to get at the seeds; Geospiza conirostris is one species with a particularly elongated beak.
    But how could such bills evolve from a simple finch beak? Scientists had assumed that the dramatic alterations in beak shape, height, width and strength would require the accumulation of many chance mutations in many different genes. But evo-devo has revealed that getting a fancy new beak can be simpler than anyone had imagined.
    Genes are stretches of DNA that can be switched on so that they will produce molecules known as proteins. Proteins can then do a number of jobs in the cell or outside it, working to make parts of organisms, switching other genes on and so on. When genes are switched on to produce proteins, they can do so at a low level in a limited area or they can crank out lots of protein in many cells.
    What Dr. Tabin and colleagues found, when looking at the range of beak shapes and sizes across different finch species, was that the thicker and taller and more robust a beak, the more strongly it expressed a gene known as BMP4 early in development. The BMP4 gene (its abbreviation stands for bone morphogenetic protein, No. 4) produces the BMP4 protein, which can signal cells to begin producing bone. But BMP4 is multitalented and can also act to direct early development, laying out a variety of architectural plans including signaling which part of the embryo is to be the backside and which the belly side. To verify that the BMP4 gene itself could indeed trigger the growth of grander, bigger, nut-crushing beaks, researchers artificially cranked up the production of BMP4 in the developing beaks of chicken embryos. The chicks began growing wider, taller, more robust beaks similar to those of a nut-cracking finch.
    In the finches with long, probing beaks, researchers found at work a different gene, known as calmodulin. As with BMP4, the more that calmodulin was expressed, the longer the beak became. When scientists artificially increased calmodulin in chicken embryos, the chicks began growing extended beaks, just like a cactus driller.
    So, with just these two genes, not tens or hundreds, the scientists found the potential to recreate beaks, massive or stubby or elongated.
    “So now one wants to go in a number of directions,” Dr. Tabin said. “What happens in a stork? What happens in a hummingbird? A parrot?” For the evolution of beaks, the main tool with which a bird handles its food and makes its living, is central not only to Darwin’s finches, but to birds as a whole.
    BMP4’s reach does not stop at the birds, however.
    In lakes in Africa, the fish known as cichlids have evolved so rapidly into such a huge diversity of species that they have become one of the best known evolutionary radiations. The cichlids have evolved in different shapes and sizes, and with a variety of jaw types specialized for eating certain kinds of food. Robust, thick jaws are excellent at crushing snails, while longer jaws work well for sucking up algae. As with the beaks of finches, a range of styles developed.
    Now in a new study, Dr. R. Craig Albertson, an evolutionary biologist at Syracuse University, and Dr. Thomas D. Kocher, a geneticist at the University of New Hampshire, have shown that more robust-jawed cichlids express more BMP4 during development than those with more delicate jaws. To test whether BMP4 was indeed responsible for the difference, these scientists artificially increased the expression of BMP4 in the zebrafish, the lab rat of the fish world. And, reprising the beak experiments, researchers found that increased production of BMP4 in the jaws of embryonic zebrafish led to the development of more robust chewing and chomping parts.
    And if being a major player in the evolution of African cichlids and Darwin’s finches — two of the most famous evolutionary radiations of species — were not enough for BMP4, Dr. Peter R. Grant, an evolutionary biologist at Princeton University, predicted that the gene would probably be found to play an important role in the evolution of still other animals. He noted that jaw changes were a crucial element in the evolution of lizards, rabbits and mice, among others, making them prime candidates for evolution via BMP4.
    “This is just the beginning,” Dr. Grant said. “These are exciting times for us all.”
    Used to lay out body plans, build beaks and alter fish jaws, BMP4 illustrates perfectly one of the major recurring themes of evo-devo. New forms can arise via new uses of existing genes, in particular the control genes or what are sometimes called toolkit genes that oversee development. It is a discovery that can explain much that has previously been mysterious, like the observation that without much obvious change to the genome over all, one can get fairly radical changes in form.
    “There aren’t new genes arising every time a new species arises,” said Dr. Brian K. Hall, a developmental biologist at Dalhousie University in Nova Scotia. “Basically you take existing genes and processes and modify them, and that’s why humans and chimps can be 99 percent similar at the genome level.”
    Evo-devo has also begun to shine a light on a phenomenon with which evolutionary biologists have long been familiar, the way in which different species will come up with sometimes jaw-droppingly similar solutions when confronted with the same challenges.
    Among the placental mammals of the Americas and the marsupials of Australia, for example, have evolved the same sorts of animals independently: beasts that burrowed, loping critters that grazed, creatures that had long snouts for eating ants, and versions of wolf.
    In the same way, the cichlids have evolved pairs of matching species, arising independently in separate lakes in Africa. In Lake Malawi, for example, there is a long and flat-headed species with a deep underbite that looks remarkably like an unrelated species that lives a similar lifestyle in Lake Tanganyika. There is another cichlid with a bulging brow and frowning lips in Lake Malawi with, again, an unrelated but otherwise extremely similar-looking cichlid in Lake Tanganyika. The same jaws, heads, and ways of living can be seen to evolve again and again.
    The findings of evo-devo suggest that such parallels might in fact be expected. For cichlids are hardly coming up with new genetic solutions to eating tough snails as they each crank up the BMP4 or tinker with other toolkit genes. Instead, whether in Lake Malawi or Lake Tanganyika, they may be using the same genes to develop the same forms that provide the same solutions to the same ecological challenges. Why not, when even the beaked birds flying overhead are using the very same genes?
    Evo-devo has even begun to give biologists new insight into one of the most beautiful examples of recurring forms: the evolution of mimicry.
    It has long been a source of amazement how some species seem so able to evolve near-perfect mimicry of another. Poisonous species often evolve bright warning colors, which have been reproduced by nonpoisonous species or by other, similarly poisonous species, hoping to fend off curious predators.
    Now in a new study of Heliconius butterflies, Dr. Mathieu Joron, an evolutionary biologist at the University of Edinburgh, and colleagues, found evidence that the mimics may be using some of the same genes to produce their copycat warning colors and patterns.
    The researchers studied several species of tropical Heliconius butterflies, all of which are nasty-tasting to birds and which mimic one another’s color patterns. Dr. Joron and colleagues found that some of the main elements of the patterns — a yellow band in Heliconius melpomene and Heliconius erato and a complex tiger-stripe pattern in Heliconius numata — are controlled by a single region of DNA, a tightly linked set of genes known as a supergene.
    Dr. Joron said he and colleagues were still mapping the details of color pattern control within the supergene. But if this turned out to function, as researchers suspected, like a toolkit gene turning the patterns on and off, it could explain both the prevalence of mimicry in Heliconius and the apparent ease with which these species have been shown to repeatedly evolve such superbly matching patterns.
    One of evo-devo’s greatest strengths is its cross-disciplinary nature, bridging not only evolutionary and developmental studies but gaps as broad as those between fossil-hunting paleontologists and molecular biologists. One researcher whose approach epitomizes the power of such synthesis is Dr. Neil Shubin, an evolutionary biologist at the University of Chicago and the Field Museum.
    Last year, Dr. Shubin and colleagues reported the discovery of a fossil fish on Ellesmere Island in northern Canada. They had found Tiktaalik, as they named the fish, after searching for six years. They persisted for so long because they were certain that they had found the right age and kind of rock where a fossil of a fish trying to make the transition to life on land was likely to be found. And Tiktaalik appeared to be just such a fish, but it also had a few surprises for the researchers.
    “Tiktaalik is special,” Dr. Shubin said. “It has a flat head with eyes on top. It has gills and lungs. It’s an animal that’s exploring the interface between water and land.”
    But Tiktaalik was a truly stunning discovery because this water-loving fish bore wrists, an attribute thought to have been an innovation confined strictly to animals that had already made the transition to land.
    “This was telling us that a piece of the toolkit, to make arms, legs, hand and feet, could very well be present in fish limbs,” Dr. Shubin said. In other words, the genetic tools or toolkit genes for making limbs to walk on land might well have been present long before fish made that critical leap. But as fascinating as Tiktaalik was, it was also rock hard and provided no DNA that might shed light on the presence or absence of any particular gene.
    So Dr. Shubin did what more and more evo-devo researchers are learning to do: take off one hat (paleontologist) and don another (molecular biologist). Dr. Shubin oversees one of what he says is a small but growing number of laboratories where old-fashioned rock-pounding takes place alongside high-tech molecular DNA studies.
    He and colleagues began a study of the living but ancient fish known as the paddlefish. What they found, reported last month in the journal Nature, was that these thoroughly fishy fish were turning on control genes known as Hox genes, in a manner characteristic of the four-limbed, land-loving beasts known as tetrapods.
    Tetrapods include cows, people, birds, rodents and so on. In other words, the potential for making fingers, hands and feet, crucial innovations used in emerging from the water to a life of walking and crawling on land, appears to have been present in fish, long before they began flip-flopping their way out of the muck. “The genetic tools to build fingers and toes were in place for a long time,” Dr. Shubin wrote in an e-mail message. “Lacking were the environmental conditions where these structures would be useful.” He added, “Fingers arose when the right environments arose.”
    And here is another of the main themes to emerge from evo-devo. Major events in evolution like the transition from life in the water to life on land are not necessarily set off by the arising of the genetic mutations that will build the required body parts, or even the appearance of the body parts themselves, as had long been assumed. Instead, it is theorized that the right ecological situation, the right habitat in which such bold, new forms will prove to be particularly advantageous, may be what is required to set these major transitions in motion.
    So far, most of the evo-devo work has been on animals, but researchers have begun to ask whether the same themes are being played out in plants.
    Of particular interest to botanists is what Darwin described as an “abominable mystery”: the origin of flowering plants. A critical event in the evolution of plants, it happened, by paleontological standards, rather suddenly.
    So what genes were involved in the origin of flowers? Botanists know that during development, the genes known as MADS box genes lay out the architecture of the blossom. They do so by turning on other genes, thereby determining what will develop where — petals here, reproductive parts there and so on, in much the same manner that Hox genes determine the general layout of parts in animals. Hox genes have had an important role in the evolution of animal form. But have MADS box genes had as central a role in the evolution of plants?
    So far, said Dr. Vivian F. Irish, a developmental biologist at Yale University, the answer appears to be yes. There is a variety of circumstantial evidence, the most interesting of which is the fact that the MADS box genes exploded in number right around the time that flowering plants first appeared.
    “It’s really analogous to what’s going on in Hox genes,” said Dr. Irish, though she noted that details of the role of the MADS box genes remained to be worked out. “It’s very cool that evolution has used a similar strategy in two very different kingdoms.”
    Amid the enthusiast hubbub, cautionary notes have been sounded. Dr. Jerry Coyne, an evolutionary biologist at the University of Chicago, said that as dramatic as the changes in form caused by mutations in toolkit genes can be, it was premature to credit these genes with being the primary drivers of the evolution of novel forms and diversity. He said that too few studies had been done so far to support such broad claims, and that it could turn out that other, more mundane workaday genes, of the sort that were being studied long before evo-devo appeared on the scene, would play equally or even more important roles.
    “I urge caution,” Dr. Coyne said. “We just don’t know.”
    All of which goes to show that like all emerging fields, evo-devo’s significance and the uniqueness of its contributions will continue to be reassessed. It will remain to be seen just how separate or incorporated into the rest of evolutionary thinking its findings will end up being. Paradoxically, it was during just such a flurry of intellectual synthesis and research activity, the watershed known as the New or Modern Synthesis in which modern evolutionary biology was born in the last century, that developmental thinking was almost entirely ejected from the science of evolution.
    But perhaps today synthesizers can do better, broadening their focus without constricting their view of evolution as they try to take in all of the great pageant that is the history of life.
    “We’re still a very young field,” Dr. Gilbert said. “But I think this is a new evolutionary synthesis, an emerging evolutionary synthesis. I think we’re seeing it.”

    Darwin Still Rules, but Some Biologists Dream of a Paradigm Shift

    Modern Science taking their first feeble steps out of the Dark Ages of Disconnected Specialization?

    ".........Is Darwin due for an upgrade? There are growing calls among some evolutionary biologists for just such a revision. The failure to consider how biodiversity grows reflects an even more troubling flaw in the modern synthesis: it lacks any real sense of history......."
    Explore the Potential of the Possible Human and Michael Murphy's Future of the Body. Understand that to trash and ignore thousands upon thousands of years of mastered wisdom on human nature is dangerous to survival. Highly specialized, yet narrow and shallow vision, breed and fertilize skewed and stale views of our expanding window to reality, which in turn create the trouble with foundational physics, perpetuating stagnant energy evolution, fostering global warming and the coming nuclear resource wars

    NYT June 26, 2007
    Essay
    Darwin Still Rules, but Some Biologists Dream of a Paradigm Shift
    By DOUGLAS H. ERWIN
    Is Darwin due for an upgrade? There are growing calls among some evolutionary biologists for just such a revision, although they differ about what form this might take. But those calls could also be exaggerated. There is nothing scientists enjoy more than the prospect of a good paradigm shift.
    Paradigm shifts are the stuff of scientific revolutions. They change how we view the world, the sorts of questions that scientists consider worth asking, and even how we do science. The discovery of DNA marked one such shift, the theory of plate tectonics another.
    Many scientists suffer from a kind of split personality. We believe that this is the most exciting time to be working while yearning for the excitement of a revolution. What ambitious scientist would not want to be part of a paradigm shift? Not surprisingly, this yearning occasionally manifests itself in proclamations that a revolution is at hand.
    To understand the current tumult it helps to understand how our evolutionary framework developed. It was constructed from the 1930s to 1950s by early geneticists, paleontologists and others, who disagreed about the efficacy of natural selection in driving evolutionary change (Darwin’s big idea) and about the nature of the underlying genetic variation upon which natural selection could act. What they came to agree on was called the modern synthesis, and it established an intellectual zeitgeist that continues today, and has been continually adapted, in the best evolutionary fashion, to encompass new discoveries.
    That synthesis holds that mutations to DNA create new variants of existing genes within a species. Natural selection, driven by competition for resources, allows the best-adapted individuals to produce the most surviving offspring. So adaptive variants of genes become more common. Although selection is often seen, even by biologists who should know better, as primarily negative, removing poorly adapted individuals, Charles Darwin understood that it was a powerful creative tool.
    It is the primary agent in shaping new adaptations. Computer simulations have shown how selection can produce a complex eye from a simple eyespot in just a few hundred thousand years.
    In the past few years every element of this paradigm has been attacked. Concerns about the sources of evolutionary innovation and discoveries about how DNA evolves have led some to propose that mutations, not selection, drive much of evolution, or at least the main episodes of innovation, like the origin of major animal groups, including vertebrates.
    Comparative studies of development have illuminated how genes operate, and evolve, and this places less emphasis on the gradual accumulation of small genetic changes emphasized by the modern synthesis. Work in ecology has emphasized the role organisms play in building their own environments, and studies of the fossil record raise questions about the role of competition. The last major challenge to the modern synthesis came in the 1970s and 1980s as my paleontological colleagues, including the late Stephen Jay Gould, argued for a hierarchical view of evolution, with selection occurring at many levels, including between species.
    Transitions between species documented by the fossil record seemed to be abrupt, perhaps too abrupt to be explained by the modern synthesis. If this were generally true, it could render irrelevant much of natural selection occurring within species, because just as mutations are produced randomly with respect to the needs of a species, with selection shaping these into new adaptations, new species might evolve randomly with species selection shaping them into evolutionary trends. This challenge was greeted with less than fulsome praise by evolutionary biologists studying changes within species. The resulting hubbub has yet to fully die down. But the newer work cuts closer to the core of the modern synthesis, and is potentially more revolutionary, because it addresses the fundamental question of how really new things happen in the history of life. What brought about the origin of animals, or the invasion of land?
    The Achilles’ heel of the modern synthesis, as noted by the philosopher Ron Amundson, is that it deals primarily with the transmission of genes from one generation to the next, but not how genes produce bodies. The recent discoveries in the new field of evolutionary developmental biology, or evo-devo, that the gene Pax-6 controls the formation of eyes in mice and humans, Nkx2.5 heart formation, and a suite of other genes the formation of the nervous system, has provided a means to investigate the genetic and developmental mechanisms influencing how the form of organisms has evolved, not just their genes. Perhaps the most exciting area in evolution is in exploring how rewiring the circuitry of genes produces different arthropod appendages, or wingspots on butterflies.
    Eric H. Davidson, a colleague of mine at CalTech, has dissected the network of interactions between the genes that build the gut of sea urchins and starfish during development. When he compares these gene networks, there is a core of about five genes whose interactions are essential to forming the gut, and which have been preserved for some 500 million years.
    One advantage developmental biologists have over paleontologists is that they can experiment on the development of these animals. Most of the genes in this network can be removed, and the developing embryo finds a way to compensate. But these five core genes, which form what Davidson calls a kernel, cannot be modified: change any one of them and no embryo forms at all. There is no reason to think that there was anything unusual about how this kernel first evolved some 500 million years ago (before sea urchins and starfish split into different groups), but once the kernel formed it locked development onto a certain path. These events, small and large, limit the range of possibilities on which natural selection can act. These questions about mechanism were not even being asked under the modern synthesis.
    The failure to consider how biodiversity grows reflects an even more troubling flaw in the modern synthesis: it lacks any real sense of history. This may sound odd, as evolution is about history. A geologist would describe evolutionary theory as uniformitarian: “The present is the key to the past.” This is the principle we use that by understanding how processes operate today we can understand past events. Evolutionary theory assumes that the processes we can study among fruit flies disporting themselves in a laboratory capture the broad sweep of evolutionary change.
    But just as the erosive power of a river changes the future options for the course of the river, so evolution itself changes future evolutionary possibilities. This can happen in simple ways, as termites construct their own environment by building termite mounds. These mounds may last for dozens or hundreds of years and provide a sort of ecological inheritance for generations of termites.
    The first cyanobacteria turned carbon dioxide into oxygen and set off a revolution that completely changed the chemistry of the oceans and atmosphere. Most species modify their environment and this often changes how selection affects them: they construct, at least in part, their own environment. As evolutionary biologists we have little understanding of what these processes mean for evolution.
    Does all this add up to a new modern synthesis? There is certainly no consensus among evolutionary biologists, but development, ecology, genetics and paleontology all provide new perspectives on how evolution operates, and how we should study it. None of these concerns provide a scintilla of hope for creationists, as scientific investigations are already providing new insights into these issues. The foundations for a paradigm shift may be in place, but it may be some time before we see whether a truly novel perspective develops or these tensions are accommodated within an expanded modern synthesis.
    Douglas H. Erwin is a senior scientist at the National Museum of Natural History at the Smithsonian Institution and a research professor at the Santa Fe Institute.

    Humans Have Spread Globally, and Evolved Locally

    Modern Science taking their first feeble steps out of the Dark Ages of Disconnected Specialization?

    ".........Historians often assume that they need pay no attention to human evolution because the process ground to a halt in the distant past. That assumption is looking less and less secure in light of new findings based on decoding human DNA......."
    Explore the Potential of the Possible Human and Michael Murphy's Future of the Body. Understand that to trash and ignore thousands upon thousands of years of mastered wisdom on human nature is dangerous to survival. Highly specialized, yet narrow and shallow vision, breed and fertilize skewed and stale views of our expanding window to reality, which in turn create the trouble with foundational physics, perpetuating stagnant energy evolution, fostering global warming and the coming nuclear resource wars

    NYT June 26, 2007
    Humans Have Spread Globally, and Evolved Locally
    By NICHOLAS WADE
    Historians often assume that they need pay no attention to human evolution because the process ground to a halt in the distant past. That assumption is looking less and less secure in light of new findings based on decoding human DNA.
    People have continued to evolve since leaving the ancestral homeland in northeastern Africa some 50,000 years ago, both through the random process known as genetic drift and through natural selection. The genome bears many fingerprints in places where natural selection has recently remolded the human clay, researchers have found, as people in the various continents adapted to new diseases, climates, diets and, perhaps, behavioral demands.
    A striking feature of many of these changes is that they are local. The genes under selective pressure found in one continent-based population or race are mostly different from those that occur in the others. These genes so far make up a small fraction of all human genes.
    A notable instance of recent natural selection is the emergence of lactose tolerance — the ability to digest lactose in adulthood — among the cattle-herding people of northern Europe some 5,000 years ago. Lactase, the enzyme that digests the principal sugar of milk, is usually switched off after weaning. But because of the great nutritional benefit for cattle herders of being able to digest lactose in adulthood, a genetic change that keeps the lactase gene switched on spread through the population.
    Lactose tolerance is not confined to Europeans. Last year, Sarah Tishkoff of the University of Maryland and colleagues tested 43 ethnic groups in East Africa and found three separate mutations, all different from the European one, that keep the lactase gene switched on in adulthood. One of the mutations, found in peoples of Kenya and Tanzania, may have arisen as recently as 3,000 years ago.
    That lactose tolerance has evolved independently four times is an instance of convergent evolution. Natural selection has used the different mutations available in European and East African populations to make each develop lactose tolerance. In Africa, those who carried the mutation were able to leave 10 times more progeny, creating a strong selective advantage.
    Researchers studying other single genes have found evidence for recent evolutionary change in the genes that mediate conditions like skin color, resistance to malaria and salt retention.
    The most striking instances of recent human evolution have emerged from a new kind of study, one in which the genome is scanned for evidence of selective pressures by looking at a few hundred thousand specific sites where variation is common.
    Last year Benjamin Voight, Jonathan Pritchard and colleagues at the University of Chicago searched for genes under natural selection in Africans, Europeans and East Asians. In each race, some 200 genes showed signals of selection, but without much overlap, suggesting that the populations on each continent were adapting to local challenges.
    Another study, by Scott Williamson of Cornell University and colleagues, published in PLoS Genetics this month, found 100 genes under selection in Chinese, African-Americans and European-Americans.
    In most cases, the source of selective pressure is unknown. But many genes associated with resistance to disease emerge from the scans, confirming that disease is a powerful selective force. Another category of genes under selective pressure covers those involved in metabolism, suggesting that people were responding to changes in diet, perhaps associated with the switch from hunting and gathering to agriculture.
    Several genes involved in determining skin color have been under selective pressure in Europeans and East Asians. But Dr. Pritchard’s study detected skin color genes only in Europeans, and Dr. Williamson found mostly genes selected in Chinese.
    The reason for the difference is that Dr. Pritchard’s statistical screen detects genetic variants that have become very common in a population but are not yet universal. Dr. Williamson’s picks up variants that have already swept through a population and are possessed by almost everyone.
    The findings suggest that Europeans and East Asians acquired their pale skin through different genetic routes and, in the case of Europeans, perhaps as recently as around 7,000 years ago.
    Another puzzle is presented by selected genes involved in brain function, which occur in different populations and could presumably be responses to behavioral challenges encountered since people left the ancestral homeland in Africa.
    But some genes have more than one role, and some of these brain-related genes could have been selected for other properties.
    Two years ago, Bruce Lahn, a geneticist at the University of Chicago, reported finding signatures of selection in two brain-related genes of a type known as microcephalins, because when mutated, people are born with very small brains. Two of the microcephalins had come under selection in Europeans and one in Chinese, Dr. Lahn reported.
    He suggested that the selected forms of the gene had helped improved cognitive capacity and that many other genes, yet to be identified, would turn out to have done the same in these and other populations.
    Neither microcephalin gene turned up in Dr. Pritchard’s or Dr. Williamson’s list of selected genes, and other researchers have disputed Dr. Lahn’s claims. Dr. Pritchard found that two other microcephalin genes were under selection, one in Africans and the other in Europeans and East Asians.
    Even more strikingly, Dr. Williamson’s group reported that a version of a gene called DAB1 had become universal in Chinese but not in other populations. DAB1 is involved in organizing the layers of cells in the cerebral cortex, the site of higher cognitive functions.
    Variants of two genes involved in hearing have become universal, one in Chinese, the other in Europeans.
    The emerging lists of selected human genes may open new insights into the interactions between history and genetics. “If we ask what are the most important evolutionary events of the last 5,000 years, they are cultural, like the spread of agriculture, or extinctions of populations through war or disease,” said Marcus Feldman, a population geneticist at Stanford. These cultural events are likely to have left deep marks in the human genome.
    A genomic survey of world populations by Dr. Feldman, Noah Rosenberg and colleagues in 2002 showed that people clustered genetically on the basis of small differences in DNA into five groups that correspond to the five continent-based populations: Africans, Australian aborigines, East Asians, American Indians and Caucasians, a group that includes Europeans, Middle Easterners and people of the Indian subcontinent. The clusterings reflect “serial founder effects,” Dr. Feldman said, meaning that as people migrated around the world, each new population carried away just part of the genetic variation in the one it was derived from.
    The new scans for selection show so far that the populations on each continent have evolved independently in some ways as they responded to local climates, diseases and, perhaps, behavioral situations.
    The concept of race as having a biological basis is controversial, and most geneticists are reluctant to describe it that way. But some say the genetic clustering into continent-based groups does correspond roughly to the popular conception of racial groups.
    “There are difficulties in where you put boundaries on the globe, but we know now there are enough genetic differences between people from different parts of the world that you can classify people in groups that correspond to popular notions of race,” Dr. Pritchard said.
    David Reich, a population geneticist at the Harvard Medical School, said that the term “race” was scientifically inexact and that he preferred “ancestry.” Genetic tests of ancestry are now so precise, he said, that they can identify not just Europeans but can distinguish between northern and southern Europeans. Ancestry tests are used in trying to identify genes for disease risk by comparing patients with healthy people. People of different races are excluded in such studies. Their genetic differences would obscure the genetic difference between patients and unaffected people.
    No one yet knows to what extent natural selection for local conditions may have forced the populations on each continent down different evolutionary tracks. But those tracks could turn out to be somewhat parallel. At least some of the evolutionary changes now emerging have clearly been convergent, meaning that natural selection has made use of the different mutations available in each population to accomplish the same adaptation.
    This is the case with lactose tolerance in European and African peoples and with pale skin in East Asians and Europeans.