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Gamete compatibility genes in mammals: candidates applications and a potential path forward

机译:哺乳动物中的配子相容性基因:候选物应用和潜在的发展方向

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摘要

Fertilization represents a critical stage in biology, where successful alleles of a previous generation are shuffled into new arrangements and subjected to the forces of selection in the next generation. Although much research has been conducted on how variation in morphological and behavioural traits lead to variation in fertilization patterns, surprisingly little is known about fertilization at a molecular level, and specifically about how genes expressed on the sperm and egg themselves influence fertilization patterns. In mammals, several genes have been identified whose products are expressed on either the sperm or the egg, and which influence the fertilization process, but the specific mechanisms are not yet known. Additionally, in 2014 an interacting pair of proteins was identified: ‘Izumo’ on the sperm, and ‘Juno’ on the egg. With the identification of these genes comes the first opportunity to understand the molecular aspects of fertilization in mammals, and to identify how the genetic characteristics of these genes influence fertilization patterns. Here, we review recent progress in our understanding of fertilization and gamete compatibility in mammals, which should provide a helpful guide to researchers interested in untangling the molecular mechanisms of fertilization and the resulting impacts on population biology and evolutionary processes.
机译:受精代表了生物学的关键阶段,其中成功的上一代等位基因被改组为新的排列,并受到下一代的选择力的影响。尽管已经进行了大量有关形态和行为特征的变化如何导致受精方式变化的研究,但令人惊讶的是,对分子水平的受精知之甚少,特别是关于精子和卵自身表达的基因如何影响受精方式的知之甚少。在哺乳动物中,已经鉴定出几种基因,这些基因的产物在精子或卵子上表达,并影响受精过程,但具体机制尚不清楚。此外,在2014年,发现了一对相互作用的蛋白质:精子上的“出云”和卵上的“朱诺”。随着这些基因的鉴定,第一个机会来了解哺乳动物受精的分子方面,并确定这些基因的遗传特性如何影响受精方式。在这里,我们回顾了我们对哺乳动物受精和配子相容性的了解的最新进展,这应该为感兴趣的研究人员揭开受精的分子机制及其对种群生物学和进化过程的影响提供有益的指导。

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