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无界限:导致分化和生殖隔离的基因组、生物体及生态相互作用。

No boundaries: genomes, organisms, and ecological interactions responsible for divergence and reproductive isolation.

作者信息

Etges William J

机构信息

From Program in Ecology and Evolutionary Biology, Department of Biological Sciences, 1 University of Arkansas, Fayetteville, AR.

出版信息

J Hered. 2014;105 Suppl 1(Suppl 1):756-70. doi: 10.1093/jhered/esu039.

Abstract

Revealing the genetic basis of traits that cause reproductive isolation, particularly premating or sexual isolation, usually involves the same challenges as most attempts at genotype-phenotype mapping and so requires knowledge of how these traits are expressed in different individuals, populations, and environments, particularly under natural conditions. Genetic dissection of speciation phenotypes thus requires understanding of the internal and external contexts in which underlying genetic elements are expressed. Gene expression is a product of complex interacting factors internal and external to the organism including developmental programs, the genetic background including nuclear-cytotype interactions, epistatic relationships, interactions among individuals or social effects, stochasticity, and prevailing variation in ecological conditions. Understanding of genomic divergence associated with reproductive isolation will be facilitated by functional expression analysis of annotated genomes in organisms with well-studied evolutionary histories, phylogenetic affinities, and known patterns of ecological variation throughout their life cycles. I review progress and prospects for understanding the pervasive role of host plant use on genetic and phenotypic expression of reproductive isolating mechanisms in cactophilic Drosophila mojavensis and suggest how this system can be used as a model for revealing the genetic basis for species formation in organisms where speciation phenotypes are under the joint influences of genetic and environmental factors.

摘要

揭示导致生殖隔离,尤其是交配前或性隔离性状的遗传基础,通常涉及与大多数基因型-表型映射尝试相同的挑战,因此需要了解这些性状在不同个体、种群和环境中,特别是在自然条件下是如何表达的。因此,物种形成表型的遗传剖析需要了解潜在遗传元件得以表达的内部和外部环境。基因表达是生物体内部和外部复杂相互作用因素的产物,这些因素包括发育程序、包括核-细胞型相互作用在内的遗传背景、上位关系、个体间相互作用或社会效应、随机性以及生态条件的普遍变化。对具有深入研究的进化历史、系统发育亲缘关系以及整个生命周期中已知生态变异模式的生物体进行注释基因组的功能表达分析,将有助于理解与生殖隔离相关的基因组分歧。我回顾了在理解寄主植物利用对嗜仙人掌的莫哈韦果蝇生殖隔离机制的遗传和表型表达的普遍作用方面取得的进展和前景,并提出如何将这个系统用作一个模型,以揭示在物种形成表型受到遗传和环境因素共同影响的生物体中物种形成的遗传基础。

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SEXUAL ISOLATION AMONG POPULATIONS OF DROSOPHILA MOJAVENSIS.莫哈韦果蝇种群间的性隔离
Evolution. 1991 Sep;45(6):1525-1529. doi: 10.1111/j.1558-5646.1991.tb02656.x.
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REPRODUCTIVE ISOLATION IN SONORAN DESERT DROSOPHILA.索诺兰沙漠果蝇的生殖隔离
Evolution. 1983 May;37(3):649-652. doi: 10.1111/j.1558-5646.1983.tb05585.x.

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