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吼猴中信息素感知与全三色视觉共存的遗传学证据。

Genetic evidence for the coexistence of pheromone perception and full trichromatic vision in howler monkeys.

作者信息

Webb David M, Cortés-Ortiz Liliana, Zhang Jianzhi

机构信息

Department of Ecology and Evolutionary Biology, University of Michigan, USA.

出版信息

Mol Biol Evol. 2004 Apr;21(4):697-704. doi: 10.1093/molbev/msh068. Epub 2004 Feb 12.


DOI:10.1093/molbev/msh068
PMID:14963105
Abstract

Vertebrate pheromones are water-soluble chemicals perceived mainly by the vomeronasal organ (VNO) for intraspecific communications. Humans, apes, and Old World (OW) monkeys lack functional genes responsible for the pheromone signal transduction and are generally insensitive to vomeronasal pheromones. It has been hypothesized that the evolutionary deterioration of pheromone sensitivity occurred because pheromone communication became redundant after the emergence of full trichromatic color vision via the duplication of the X-chromosome-linked red/green opsin gene in the common ancestor of hominoids and OW monkeys. Interestingly, full trichromacy also evolved in the New World (NW) howler monkeys via an independent duplication of the same gene. Here we sequenced from three species of howler monkeys an essential component of the VNO pheromone transduction pathway, the gene encoding the ion channel TRP2. In contrast to those of hominoids and OW monkeys, the howler TRP2 sequences have none of the characteristics of pseudogenes. This and other observations indicate that howler monkeys have maintained both their systems of pheromone communication and full trichromatic vision, suggesting that the presence of full trichromacy alone does not lead to the loss of pheromone communication. We suggest that the ecological differences between OW and NW primates, particularly in habitat selection, may have also affected the evolution of pheromone perception.

摘要

脊椎动物的信息素是水溶性化学物质,主要通过犁鼻器(VNO)来感知,用于种内交流。人类、猿类和旧世界(OW)猴缺乏负责信息素信号转导的功能基因,通常对犁鼻器信息素不敏感。据推测,信息素敏感性的进化退化是因为在类人猿和OW猴的共同祖先中,通过X染色体连锁的红/绿视蛋白基因的复制出现了全色觉后,信息素交流变得多余。有趣的是,新世界(NW)吼猴也通过同一基因的独立复制进化出了全色觉。在这里,我们对三种吼猴的犁鼻器信息素转导途径的一个关键成分——编码离子通道TRP2的基因进行了测序。与类人猿和OW猴的基因不同,吼猴的TRP2序列没有任何假基因的特征。这一发现和其他观察结果表明,吼猴既保留了它们的信息素交流系统,也保留了全色觉,这表明仅全色觉的存在并不会导致信息素交流的丧失。我们认为,OW和NW灵长类动物之间的生态差异,特别是在栖息地选择方面,可能也影响了信息素感知的进化。

相似文献

[1]
Genetic evidence for the coexistence of pheromone perception and full trichromatic vision in howler monkeys.

Mol Biol Evol. 2004-4

[2]
The evolution of trichromatic color vision by opsin gene duplication in New World and Old World primates.

Genome Res. 1999-7

[3]
Trichromatic colour vision in New World monkeys.

Nature. 1996-7-11

[4]
Evolutionary deterioration of the vomeronasal pheromone transduction pathway in catarrhine primates.

Proc Natl Acad Sci U S A. 2003-7-8

[5]
Genetic basis of olfactory communication in primates.

Am J Primatol. 2006-6

[6]
Relaxed selective pressure on an essential component of pheromone transduction in primate evolution.

Proc Natl Acad Sci U S A. 2003-3-18

[7]
Rapid turnover and species-specificity of vomeronasal pheromone receptor genes in mice and rats.

Gene. 2004-10-13

[8]
Loss of olfactory receptor genes coincides with the acquisition of full trichromatic vision in primates.

PLoS Biol. 2004-1

[9]
Characterization of TRPC2, an essential genetic component of VNS chemoreception, provides insights into the evolution of pheromonal olfaction in secondary-adapted marine mammals.

Mol Biol Evol. 2010-2-8

[10]
Composition and evolution of the V2r vomeronasal receptor gene repertoire in mice and rats.

Genomics. 2005-9

引用本文的文献

[1]
Genomic and phenotypic evidence support visual and olfactory shifts in primate evolution.

Nat Ecol Evol. 2025-4

[2]
The genomic basis of vomeronasal-mediated behaviour.

Mamm Genome. 2013-7-25

[3]
Identification of two distinct genes at the vertebrate TRPC2 locus and their characterisation in a marsupial and a monotreme.

BMC Mol Biol. 2011-8-19

[4]
Widespread losses of vomeronasal signal transduction in bats.

Mol Biol Evol. 2010-8-6

[5]
Mother-infant bonding and the evolution of mammalian social relationships.

Philos Trans R Soc Lond B Biol Sci. 2006-12-29

[6]
Neurobiology of TRPC2: from gene to behavior.

Pflugers Arch. 2005-10

[7]
The TRPC2 ion channel and pheromone sensing in the accessory olfactory system.

Naunyn Schmiedebergs Arch Pharmacol. 2005-4

[8]
Dramatic variation of the vomeronasal pheromone receptor gene repertoire among five orders of placental and marsupial mammals.

Proc Natl Acad Sci U S A. 2005-4-19

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