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栉孔扇贝的探戈:相互作用、正选择的精子和卵子蛋白的协同进化之舞。

The Tegula tango: a coevolutionary dance of interacting, positively selected sperm and egg proteins.

机构信息

Department of Biological Sciences, Louisiana State University, Baton Rouge, Louisiana 70803, USA.

出版信息

Evolution. 2012 Jun;66(6):1681-94. doi: 10.1111/j.1558-5646.2011.01530.x. Epub 2012 Jan 9.

Abstract

Reproductive proteins commonly show signs of rapid divergence driven by positive selection. The mechanisms driving these changes have remained ambiguous in part because interacting male and female proteins have rarely been examined. We isolate an egg protein the vitelline envelope receptor for lysin (VERL) from Tegula, a genus of free-spawning marine snails. Like VERL from abalone, Tegula VERL is a major component of the VE surrounding the egg, includes a conserved zona pellucida (ZP) domain at its C-terminus, and possesses a unique, negatively charged domain of about 150 amino acids implicated in interactions with the positively charged lysin. Unlike for abalone VERL, where this unique VERL domain occurs in a tandem array of 22 repeats, Tegula VERL has just one such domain. Interspecific comparisons show that both lysin and the VERL domain diverge via positive selection, whereas the ZP domain evolves neutrally. Rates of nonsynonymous substitution are correlated between lysin and the VERL domain, consistent with sexual antagonism, although lineage-specific effects, perhaps owing to different ecologies, may alter the relative evolutionary rates of sperm- and egg-borne proteins.

摘要

生殖蛋白通常表现出快速分化的迹象,这是由正选择驱动的。这些变化的驱动机制在一定程度上仍然不清楚,部分原因是很少研究相互作用的雄性和雌性蛋白。我们从自由产卵的海洋蜗牛 Tegula 中分离出一种卵蛋白卵黄包膜受体溶菌酶(VERL)。与鲍鱼中的 VERL 一样,Tegula VERL 是围绕卵子的 VE 的主要成分,其 C 端包含一个保守的透明带(ZP)结构域,并且具有一个独特的、带负电荷的大约 150 个氨基酸的结构域,该结构域与带正电荷的溶菌酶相互作用。与鲍鱼 VERL 不同的是,鲍鱼 VERL 中的这种独特的 VERL 结构域以 22 个重复串联排列,而 Tegula VERL 只有一个这样的结构域。种间比较表明,溶菌酶和 VERL 结构域都通过正选择发生分化,而 ZP 结构域则呈中性进化。尽管谱系特异性效应可能由于不同的生态而改变精子和卵子携带的蛋白质的相对进化速率,但溶菌酶和 VERL 结构域之间的非同义替换率呈相关性,这与性拮抗一致。

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