Literature DB >> 17947411

Accelerated rate of gene gain and loss in primates.

Matthew W Hahn1, Jeffery P Demuth, Sang-Gook Han.   

Abstract

The molecular changes responsible for the evolution of modern humans have primarily been discussed in terms of individual nucleotide substitutions in regulatory or protein coding sequences. However, rates of nucleotide substitution are slowed in primates, and thus humans and chimpanzees are highly similar at the nucleotide level. We find that a third source of molecular evolution, gene gain and loss, is accelerated in primates relative to other mammals. Using a novel method that allows estimation of rate heterogeneity among lineages, we find that the rate of gene turnover in humans is more than 2.5 times faster than in other mammals and may be due to both mutational and selective forces. By reconciling the gene trees for all of the gene families included in the analysis, we are able to independently verify the numbers of inferred duplications. We also use two methods based on the genome assembly of rhesus macaque to further verify our results. Our analyses identify several gene families that have expanded or contracted more rapidly than is expected even after accounting for an overall rate acceleration in primates, including brain-related families that have more than doubled in size in humans. Many of the families showing large expansions also show evidence for positive selection on their nucleotide sequences, suggesting that selection has been important in shaping copy-number differences among mammals. These findings may help explain why humans and chimpanzees show high similarity between orthologous nucleotides yet great morphological and behavioral differences.

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Year:  2007        PMID: 17947411      PMCID: PMC2147951          DOI: 10.1534/genetics.107.080077

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  49 in total

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5.  Recent segmental duplications in the human genome.

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7.  Slow molecular clocks in Old World monkeys, apes, and humans.

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9.  The Wilhelmine E. Key 2001 Invitational Lecture. Estimation of divergence times for a few mammalian and several primate species.

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  63 in total

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2.  Unified modeling of gene duplication, loss, and coalescence using a locus tree.

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Review 3.  Gene copy-number polymorphism in nature.

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4.  Gene conversion among paralogs results in moderate false detection of positive selection using likelihood methods.

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Review 5.  Lineage-specific transcription factors and the evolution of gene regulatory networks.

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Review 6.  Explaining human uniqueness: genome interactions with environment, behaviour and culture.

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7.  Differential loss of embryonic globin genes during the radiation of placental mammals.

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Review 8.  From evolutionary genetics to human immunology: how selection shapes host defence genes.

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10.  Friend or foe? Evolutionary history of glycoside hydrolase family 32 genes encoding for sucrolytic activity in fungi and its implications for plant-fungal symbioses.

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Journal:  BMC Evol Biol       Date:  2009-06-30       Impact factor: 3.260

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