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受精过程中的种属特异性机制。

Species-specific mechanisms during fertilization.

机构信息

Research Institute of Molecular Pathology (IMP), Vienna BioCenter (VBC), Vienna, Austria.

Research Institute of Molecular Pathology (IMP), Vienna BioCenter (VBC), Vienna, Austria.

出版信息

Curr Top Dev Biol. 2020;140:121-144. doi: 10.1016/bs.ctdb.2019.10.005. Epub 2019 Nov 19.

Abstract

The perpetuation and preservation of distinct species rely on mechanisms that ensure that only interactions between gametes of the same species can give rise to viable and fertile offspring. Species-specificity can act at various stages, ranging from physical/behavioral pre-copulatory mechanisms, to pre-zygotic incompatibility during fertilization, to post-zygotic hybrid incompatibility. Herein, we focus on our current knowledge of the molecular mechanisms responsible for species-specificity during fertilization. While still poorly understood, decades of research have led to the discovery of molecules implicated in species-specific gamete interactions, starting from initial sperm-egg attraction to the binding of sperm and egg. While many of these molecules have been described as species-specific in their mode of action, relatively few have been demonstrated as such with definitive evidence. Thus, we also raise remaining questions that need to be addressed in order to characterize gamete interaction molecules as species-specific.

摘要

物种的延续和保存依赖于确保只有同种配子之间的相互作用才能产生有活力和可育后代的机制。物种特异性可以在不同阶段起作用,范围从物理/行为性的交配前机制,到受精过程中的合子前不亲和性,再到合子后的杂种不亲和性。在此,我们专注于我们目前对受精过程中物种特异性的分子机制的了解。尽管仍然知之甚少,但几十年来的研究已经发现了参与种间配子相互作用的分子,从最初的精子-卵子吸引到精子和卵子的结合。虽然许多这些分子的作用模式被描述为种特异性的,但相对较少的分子被证明具有明确的证据。因此,我们还提出了一些仍需解决的问题,以便将配子相互作用分子作为种特异性来进行特征描述。

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