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Evolution of homologous sequences on the human X and Y chromosomes, outside of the meiotic pairing segment.

A sequence isolated from the long arm of the human Y chromosome detects a highly homologous locus on the X. This homology extends over at least 50 kb of DNA and is postulated to be the result of a transposition event between the X and Y chromosomes during recent human evolution, since homologous sequences are shown to be present on the X chromosome alone in the chimpanzee and gorilla.

Animals

An anthropometric approach to the study of evolution.

The study of human evolution has always been a major issue in physical anthropology. Since computers became available this study became a new dimension in that it became feasible to apply advanced mathematical multivariate methods which make use of morphometric data. However, looking back on what has been achieved so far with these methods, it must be admitted that the results obtained are often unsatisfactory. This has led to a certain lack of acceptance of these methods. In the present paper it is argued that very useful results may be obtained by applying more sophisticated multivariate methods which are specifically designed for the anthropological problems at issue. Three examples are given. The first deals with the controversy between "Creationism" on the one hand and "Evolutionism" on the other. Our results strongly support the Evolutionists' point of view. The second example deals with the reconstruction of human phylogeny. An investigation is discussed which has led to a startling new hypothesis concerning the evolution of man. The last example concerns a preliminary investigation of trends in human sexual dimorphism. The results obtained so far seem to support the opinion expressed by other workers that tendencies exist in our modern society which lead to changes in the present dimorphism.

Animals

The role of neurosis in phylogenetic adaptation, with particular reference to early man.

The author hypothesizes that neurosis results from maladaptation and leads to further maladaptation, thus creating a vicious cycle that can be viewed as having played a significant role in human evolution. Individuals who were less successful in the struggle for survival during prehistory would have been more likely to become neurotic, a maladaptation that would magnify existing genetically transmitted differences in their viability and affect both the choice of a mate and the viability of their offspring. This process would have accelerated human evolution by favoring the most viable. The author relates this theory to his concepts of assortative mating and to other theories of the role of neurosis.

Adaptation, Psychological

Positive Darwinian evolution in human influenza A viruses.

We earlier suggested that type A human influenza virus genes undergo positive Darwinian selection through immune surveillance. This requires more favorable amino acid replacements fixed in antigenic sites among the surviving lineages than among the extinct lineages. We now show that viral hemagglutinins fix proportionately more amino acid replacements in antigenic sites in the trunk of the evolutionary tree (survivors) than in the branches (nonsurvivors), demonstrating that type A human influenza virus is undergoing positive Darwinian evolution. The hemagglutinin gene is evolving 3 times faster than the nonstructural gene and the average age of the sampled nonsurvivors is only 1.6 years, so that extinction is not only common but rapid.

Amino Acid Sequence

Genetic variation and evolution of human parainfluenza virus type 1 hemagglutinin neuraminidase: analysis of 12 clinical isolates.

The extent of genetic variation and evolution in a population of human parainfluenza virus type 1 was investigated. The hemagglutinin neuraminidase genes of 13 isolates collected over a 26-year period were sequenced and compared. All isolates except the 1957 type strain were from a single geographic location and demonstrated significant consistent genetic change from the type strain (47/7 [nucleotide/amino acid] substitutions). Antigenic subgroup A isolates demonstrated minor intragroup differences (9/1 substitutions). However, 18/7 unique substitutions separated subgroup A from B regardless of geographic location or year of isolation. Multiple strains of both subgroups appeared and reappeared over decades with only minor variation. There may be significant genetic differences between clinical isolates based on geographic location, and progressive mutational change may occur. Previously defined antigenic and now genetic subgroups were stable and at least regional in distribution over the period studied. The biologic implications and extent of this variation need further evaluation.

Animals

Polygamy and the evolution of human longevity.

An alternative to previous explanations of the rapid increase in man's longevity and intelligence during the several million years of his recent evolution from pre-hominid, clearly shorter-lived and less intelligent, primate ancestors is presented. The general thesis is that a very greatly accelerated rate of incorporation of favorable genes or gene combinations can be achieved in surprisingly few generations among social animals provided that dominant males become the patriarchs of many descendents by virtue of their partial or complete monopoly on available females. The conclusion is that man probably differs from his ancesters of 0.5 to 5 million years ago by many thousands of genes (both structural and regulatory) rather than the dozens or few hundreds that have been postulated on the basis of more classical treatments of selection pressures, gene frequency changes and mutation rates. The concepts developed here formally apply only to two alternative alleles, rather than to groups of genes which segregate independently, or to characters determined by multiple alleles. The appropriate mathematical treatment of the latter real situation is not readily visualized; nor is account taken of the likelihood that different tribes of pre-humans developed different specializations via the above mechanisms which were then (later) combined into an emerging human stock through matings between members of different tribes. The very great variability both in longevity and in intelligence between different races of animals such as dogs, which have been the objects of deliberate genetic selection by humans for particular heritable traits, may parallel our own recent history, even though the selection mechanism (deliberate human selection vs. polygamous dominance) is quite different in the two cases. The onset of civilizations consisting of amalgums between smaller, previously competing tribes, together with the humanitarian responsibilities to each other we share as a species, ironically has probably arrested further evolution of human longevity (and perhaps of intelligence) in the modern world. Possibly even retrogressive changes are occurring, except in those rare sub-populations in which special social and cultural practices tend to favor selective perpetuation of characteristics which are usually viewed as beneficial.

Alleles

Evolution of human immunodeficiency virus type 1 nef and long terminal repeat sequences over 4 years in vivo and in vitro.

The evolution of an 851-bp segment of the human immunodeficiency virus type 1 (HIV-1) genome encoding the nef open reading frame and U3/R elements of the long terminal repeat has been followed over a 4-year period in vivo and in vitro. The population of viral sequences at any given time was established by sequencing cloned polymerase chain reaction products. The samples studied were derived from the same man for whom a detailed analysis of the tat gene was previously described (A. Meyerhans, R. Cheynier, J. Albert, M. Seth, S. Kwok, J. Sninsky, L. Morfeldt-Manson, B. Asjö, and S. Wain-Hobson, Cell 58:901-910, 1989). Once again in vitro culture resulted in the selection of minor forms. Over a 4-year period in vivo, there was no obvious selection for, or outgrowth of, any particular nef or U3/R sequence. Few defective nef protein sequences were observed, which argues against nef acting as a negative regulatory factor. Although no functionally defective promoter/trans-activation-responsive elements were identified, the transactivation efficiencies varied between 0.2 and 2 times that of the control. The sequence encoding the most efficient trans-activation-responsive region did not outgrow others. The extreme genetic heterogeneity of the different samples of the locus, either in vivo or in vitro, indicates that there is no such thing as a single, distinct HIV sequence. It is suggested that different HIV-1 loci evolve independently, recombination being responsible for their uncoupling.

Base Sequence

Epigenesis and the evolution of the human brain.

This article proposes an hypothesis for the evolution of the human brain. It is based on the concepts of (i) regulation of nerve cell proliferation, and (ii) selective stabilisation of synapses during development. The former process is supposed to be rigidly regulated by the genome, while the latter (selective stabilisation) is proposed as developing in a more plastic manner. It is suggested here that genetic alterations of the regulation of neuroblast proliferation led to epigenetic rearrangements in selective synapse stabilisation, thus producing significant changes in cerebral connectivity. This view is in agreement with the punctuationalist theory of human evolution, and differs from other approaches to human nature, such as structuralist grammar and sociobiology.

Biological Evolution

Molecular signature of primate astrocytes reveals pathways and regulatory changes contributing to human brain evolution.

Astrocytes contribute to the development and regulation of the higher-level functions of the brain, the critical targets of evolution. However, how astrocytes evolve in primates is unsettled. Here, we obtain human, chimpanzee, and macaque induced pluripotent stem-cell-derived astrocytes (iAstrocytes). Human iAstrocytes are bigger and more complex than the non-human primate iAstrocytes. We identify new loci contributing to the increased human astrocyte. We show that genes and pathways implicated in long-range intercellular signaling are activated in the human iAstrocytes and partake in controlling iAstrocyte complexity. Genes downregulated in human iAstrocytes frequently relate to neurological disorders and were decreased in adult brain samples. Through regulome analysis and machine learning, we uncover that functional activation of enhancers coincides with a previously unappreciated, pervasive gain of "stripe" transcription factor binding sites. Altogether, we reveal the transcriptomic signature of primate astrocyte evolution and a mechanism driving the acquisition of the regulatory potential of enhancers.

Astrocytes

Fragile sites, chromosome evolution, and human neoplasia.

In a study of the possible relationship between human fragile sites, chromosomal rearrangements related to neoplasia, and chromosome regions involved in evolutionary changes, we have found that 17 fragile sites related to cancer, 15 fragile sites not related to cancer, and 17 non-fragile regions also related to human malignancy correspond or are close to bands involved in rearrangements that have taken place during chromosomal evolution in primates.

Animals

Comparative structure and evolution of murine CR2. The homolog of the human C3d/EBV receptor (CD21).

The complete nucleotide sequence of murine complement receptor type 2 (CR2) was determined from two overlapping cDNA clones derived from a lambda gt11 library of late pre-B cell origin. Comparison of the predicted sequence of the 1014 amino acid murine homolog with that of human CR2 revealed marked evolutionary conservation. The murine molecule was 65% identical to human CR2 overall, lacking a single repetitive sequence variably present in man. The 15 approximately 60-75 amino acid short consensus repeats (SCR) that constitute the entire extracellular domain of murine CR2 were 53 to 81% identical to and could be directly aligned with the human protein. As reported, the cytoplasmic tail shared 79% amino acid identity with human CR2, whereas that of the transmembrane was only 33%. Murine CR2 contained 16 potential N-linked glycosylation sites of which 6 were conserved, 4 altered, and 6 lost during human evolution. The hydropathicity profile of the two molecules was nearly colinear with some variation in the N-terminal region of the first repeat, as well as within the sixth and twelfth repeats. RNA blot analysis revealed a approximately 4.0 to 5.0 kb message in murine B lymphocytes, which was absent in T lymphocytes (thymus and spleen), liver, brain, lung, kidney, and heart. A method was devised to more precisely compare the repeat structures. An identity matrix analysis suggests that human ancestral CR2 evolved before divergence of the rodent and primate branches of the evolutionary tree through a series of predictable gene duplications, possibly giving rise to the precursor of human CR1 and murine CRY. The marked structural similarity between the human and murine receptors suggests functional conservation as well.

Amino Acid Sequence

The evolution of human chromosome 21: evidence from in situ hybridization in marsupials and a monotreme.

We have mapped five human chromosome 21 (HSA 21) markers in marsupials and a monotreme, two major groups of mammals that diverged from eutherians 130-150 and 150-170 million years before present (MYrBP), respectively. We have found that these genes map to two distinct autosomal sites, one containing SOD1/CBR/BCEI and the other containing ETS2/INFAR, in the marsupials Macropus eugenii and Sminthopsis macroura (which belong to orders that diverged 40-80 MYrBP), as well as in the monotreme Ornithorhynchus anatinus (the platypus). Since marsupials and monotremes diverged independently from eutherians, these data suggest that HSA 21 genes were originally located in two separate autosomal blocks. In another Sminthopsis species, SOD1 is linked to TRF (a marker on HSA 3q), suggesting that the ancestral SOD1/CBR/BCEI region also included HSA 3 markers. We suggest that these blocks became fused early in the eutherian evolution to form a HSA 3/21 chromosome, which has remained intact in artiodactyls, but has been independently disrupted in both the primate and rodent lineages.

Animals