Download PDF The Cambridge Dictionary of Human Biology and Evolution by LARRY L. MAI


Sinopsis

Human biology is a diverse and multidisciplinary field that includes or borrows from anthropology, anatomy, auxology, evolutionary biology, genetics, geology, physiology, and zoology. In our studies of human biology we found that medical or general biology dictionaries often did not define many terms used in non-clinical human biology. This was especially true of the core terms used in physical anthropology and primatology.We have attempted to bridge that gap with this work. This compilation is intended to define and elaborate on the more important terms used in human biology and evolution. For readers with little background in these subjects, it identifies and provides definitions of core terms most frequently used in these areas. In addition, we have attempted to define, and occasionally annotate or expand on, subjects of interest to advanced students and professionals, such as fossil specimens, paleontological sites, and primate genera.




Content

  1. The Cambridge Dictionary of Human Biology and Evolution
  2. Ataxonomy of extinct primates
  3. Ataxonomy of recent and extant primates
  4. Table of extant primate species
  5. Ageological time scale
  6. Terrestrial chronology of the Pleistocene ‘ice age’ in the northern hemisphere
  7. Marine oxygen isotope chronology
  8. Anatomical landmarks, postcranial bones and major muscle groups
  9. Event timeline of human biology and evolution
  10. Tentative hominid phylogeny
  11. The Greek alphabet




Download PDF WHY EVOLUTION IS TRUE by Jerry A. Coyne



Sinopsis


If anything is true about nature, it is that plants and animals seem intricately and almost perfectly designed for living their lives. Squids and flatfish change color and pattern to blend in with their surroundings, becoming invisible to predator and prey. Bats have radar to home in on insects at night. Hummingbirds, which can hover in place and change position in an instant, are far more agile than any human helicopter, and have long tongues to sip nectar lying deep within flowers. And the flowers they visit also appear designed—to use hummingbirds as sex aids. For, while the hummingbird is busy sipping nectar, the flower attaches pollen to its bill, enabling it to fertilize the next flower that the bird visits. Nature resembles a well-oiled machine, with every species an intricate cog or gear.

What does all this seem to imply? A master mechanic, of course. This conclusion was most famously expressed by the eighteenth-century English philosopher William Paley. If we came across a watch lying on the ground, he said, we would certainly recognize it as the work of a watchmaker. Likewise, the existence of well-adapted organisms and their intricate features surely implied a conscious, celestial designer—God. Let’s look at Paley’s argument, one of the most famous in the history of philosophy:

When we come to inspect the watch, we perceive . . . that its several parts are framed and put together for a purpose, e.g. that they are so formed and adjusted as to produce motion, and that motion so regulated as to point out the hour of the day; that, if the different parts had been differently shaped from what they are, if a different size from what they are, or placed after any other manner, or in any other order than that in which they are placed, either no motion at all would have been carried on in the machine, or none which would have answered the use that is now served by it. . . . Every indication of contrivance, every manifestation of design, which existed in the watch, exists in the works of nature; with the difference, on the side of nature, of being greater and more, and that in a degree which exceeds all computation.

The argument Paley put forward so eloquently was both commonsensical and ancient. When he and his fellow “natural theologians” described plants and animals, they believed that they were cataloging the grandeur and ingenuity of God manifested in his well-designed creatures.




Content

  1. What Is Evolution? 
  2. Written in the Rocks
  3. Remnants: Vestiges, Embryos, and Bad Design
  4. The Geography of Life 
  5. The Engine of Evolution 
  6. How Sex Drives Evolution 
  7. The Origin of Species 
  8. What About Us? 
  9. Evolution Redux




                  Download PDF Evolutionary Conservation Geneticsby by Jacob Höglund


                  Sinopsis


                  Extinction is a fact. Ever since organic life fi rst evolved on this planet, life forms have been changing. New species have arisen and old ones have gone extinct (Raup 1992). Speciation, the birth of new species, and extinction, the death of species, are as natural events in evolution as birth and death of individuals in demography. Seen over the entire history of organic life on Earth, biodiversity has generally increased. There has been a build up of life forms. However, five times in the evolutionary past of the planet have mass extinction events taken place. The so-called big fi ve are periods when the rate of extinction of species has become vastly elevated and have outnumbered the level of new species forming (Raup 1994). It is now established that some of the elevated levels of mass extinction coincide with major celestial impacts on the Earth’s surface and their climatic consequences, although some workers advocate more complex scenarios that include a number of factors that may explain mass extinction (Erwin 2006). Today we are witnessing a sixth major mass extinction event and this time celestial impact has nothing to do with it. It is beyond doubt that this event is caused by the activities of one of the species inhabiting the Earth: modern humans. I can think of no other scientifi c activity more important than trying to understand the causes and consequences of this contemporary mass extinction. This book is therefore concerned with a proposition put forward some years ago that extinction of species is somehow related to loss of genetic variation.

                  It has been suggested that genetic variation is crucial for the persistence of populations (Soulé 1980, 1986, 1987, Frankel and Soulé 1981, Gilpin and Soulé 1986). Two reasons have been given. In the short term, inbreeding and genetic drift leads to lower fi tness of individuals and increased extinction risk of populations. In the long term, populations that lose genetic variation cannot evolve since evolution cannot proceed without genetic variation. In a world of rapid environmental change, any population that is unable to adapt to changing conditions will go extinct (Spielman et al. 2004).


                  Content

                  1. The extinction vortex, is genetic variation related to extinction?
                  2. How to measure genetic variation
                  3. Inbreeding, geographic subdivision, and gene flow
                  4. Genetic diversity in changing environments
                  5. Genes under selection: Mhc and others
                  6. Local adaptation
                  7. Ecological genomics
                  8. An evolutionary conservation biology





                  Download PDF Evolution SELECTED LETTERS OF CHARLES DARWIN 1860–1870 EDITED BY FREDERICK BURKHARDT



                  Sinopsis

                  The decade immediately following publication of On the origin of species in 1859 to the eve of publication of Descent of man in 1871 was arguably the most intense and productive of Charles Darwin’s life. These were years in which the implications of the theories made public through Origin were explored and debated around the world, not only in the scientific community but in the public arena. Darwin, so far as his health would allow, set about countering criticisms with ever more detailed researches into complex mechanisms in organisms, teasing out how they could be explained as adaptations arising through the operation of natural selection. He also sought answers to the questions he knew Origin had not answered, in particular concerning the mechanisms of inheritance, and the evolutionary role of competition for sexual partners.

                  At the beginning of this period Darwin still intended to write the ‘Big Book’ on species of which Origin was only an abstract. As he resumed work on what had been intended as a single chapter on pigeon-breeding, however, it quickly became apparent that a detailed exposition of the production of domestic varieties of the
                  various animals he was researching would require a separate publication. In fact as his researches deepened and widened publications expanded out of one another like Russian dolls: a planned final chapter on human origins for Variation under domestication became another two-volume work, Descent of man and selection in relation to sex, and his work on the relationship of human and animal emotions outgrew the confines of Descent and was eventually published in 1872 as Expression of the emotions in man and animals.

                  The year 1859 had ended well for Darwin, who had been delighted at the news that the first edition of Origin had sold out on its first day, and was both relieved and deeply gratified by the generally positive initial reaction of his scientific colleagues. It was the more critical responses that were to set the tone for the next decade, however. Darwin’s major task in these years was to respond in detail, privately through letters and publicly through a rapid series of new editions and further publications, to both the specific scientific arguments raised against his theory and the philosophical qualms it inspired. A second, revised, edition of Origin was already out in January 1860, and the third substantially updated edition by the end of the year. By 1870,Darwin had published a fifth edition and was already gathering material for the sixth and final edition, published in 1872.

                  There was support for Darwin’s theories in a series of significant publications by others. To Darwin’s satisfaction, Henry Walter Bates’s work on protective mimicry invoked the mechanism of natural selection to explain the development of complex markings in insects. Thomas Henry Huxley’s Evidence as to man’s place in nature was published in 1863, as was Charles Lyell’s Antiquity of man, although this disappointed Darwin in its cautious stance. Darwin keenly followed the debates about his work. His ideas gained ground throughout the 1860s, as the numerous honorary fellowships and degrees bestowed upon him attest, but their acceptance was not achieved without struggle and was not wholesale. The annual award of the Royal Society of London’s Copley Medal became a battleground between Darwin’s supporters, such as Thomas Huxley and Hugh Falconer, and those members of the scientific establishment who, while respecting many of Darwin’s achievements, were anxious that the society not be seen to endorse the theories contained in Origin. Unsuccessful nominations in1862 and 1863 were followed by a narrow and controversial victory in 1864.

                  Critical reviews of Origin appeared abroad also, in particular in France, and many naturalists, such as the botanist Charles Naudin, although continuing to assist Darwin in his research, remained unconvinced by his arguments. In Germany, Darwin’s theories were spread by younger scholars such as Ernst Haeckel but resisted, to Darwin’s distress, by others. Darwin’s revisions to the fifth edition of Origin were made largely in direct response to criticisms such as those from the botanist Carl von Nägeli. One criticism that Darwin was very conscious could be levelled at the arguments in Origin was the absence of any explanation of how inheritance worked. He countered this with his theory of ‘pangenesis’, first privately circulated in 1865 but not published until 1868, when it appeared in Variation. Darwin postulated that ‘gemmules’ present in bodily fluids and transmitted fromparent to child had the ability to develop into different parts of organisms, but could lie dormant from generation to generation. Painfully conscious of the difficulty of supporting this theory with evidence, Darwin was disappointed, but not surprised, by its mixed reception. Darwin continued to be deeply interested in all questions concerning heredity, encouraging his cousin, Francis Galton, in his experiments transfusing blood in rabbits, and even suggesting that a question on cousin-marriage be inserted in the national census to gather data on the effects of inbreeding in humans.

                  Darwin had more success with the development of his theories concerning sexual selection. One of the arguments raised against natural selection was its inability to account for beauty in nature where that beauty apparently failed to offer any survival advantage. Much of Darwin’s correspondence in this period reflects his interest in gathering evidence of the importance of colour, sound, and smell in the attraction of sexual partners. He debated the relative importance of the mechanisms of sexual selection and natural selection in correspondence with Alfred Russel Wallace, who was inclined to attach less significance to the operation of sexual selection than was Darwin.