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Evolution of Genes Involved in Gamete Interaction: Evidence for Positive Selection Duplications and Losses in Vertebrates

机译:证据的正向选择重复和损失脊椎动物:在配子互动相关基因的演变

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摘要

Genes encoding proteins involved in sperm-egg interaction and fertilization exhibit a particularly fast evolution and may participate in prezygotic species isolation , . Some of them (ZP3, ADAM1, ADAM2, ACR and CD9) have individually been shown to evolve under positive selection , , suggesting a role of positive Darwinian selection on sperm-egg interaction. However, the genes involved in this biological function have not been systematically and exhaustively studied with an evolutionary perspective, in particular across vertebrates with internal and external fertilization. Here we show that 33 genes among the 69 that have been experimentally shown to be involved in fertilization in at least one taxon in vertebrates are under positive selection. Moreover, we identified 17 pseudogenes and 39 genes that have at least one duplicate in one species. For 15 genes, we found neither positive selection, nor gene copies or pseudogenes. Genes of teleosts, especially genes involved in sperm-oolemma fusion, appear to be more frequently under positive selection than genes of birds and eutherians. In contrast, pseudogenization, gene loss and gene gain are more frequent in eutherians. Thus, each of the 19 studied vertebrate species exhibits a unique signature characterized by gene gain and loss, as well as position of amino acids under positive selection. Reflecting these clade-specific signatures, teleosts and eutherian mammals are recovered as clades in a parsimony analysis. Interestingly the same analysis places Xenopus apart from teleosts, with which it shares the primitive external fertilization, and locates it along with amniotes (which share internal fertilization), suggesting that external or internal environmental conditions of germ cell interaction may not be the unique factors that drive the evolution of fertilization genes. Our work should improve our understanding of the fertilization process and on the establishment of reproductive barriers, for example by offering new leads for experiments on genes identified as positively selected.
机译:编码参与精卵相互作用和受精的蛋白质的基因表现出特别快的进化,并可能参与合子前物种的分离。它们中的某些(ZP3,ADAM1,ADAM2,ACR和CD9)已被单独证明在正选择下进化,表明正达尔文选择对精子-蛋相互作用的作用。但是,尚未从进化的角度系统地和详尽地研究涉及这种生物学功能的基因,特别是在具有内部和外部受精作用的脊椎动物之间。在这里,我们显示在实验中显示出在脊椎动物的至少一个分类群中参与受精的69个基因中的33个基因处于正选择状态。此外,我们鉴定了17个假基因和39个基因,在一个物种中至少有一个重复项。对于15个基因,我们既未发现阳性选择,也未发现基因拷贝或假基因。硬骨鱼的基因,尤其是参与精子-卵膜融合的基因,在正选择下比鸟和eutherian的基因更常见。相比之下,假名,基因丢失和基因获得在欧洲人中更为常见。因此,所研究的19种脊椎动物中的每一种都表现出独特的特征,其特征在于基因的得失,正选择下氨基酸的位置。反映这些进化枝特有的特征的是,硬骨鱼和欧亚哺乳动物在简约分析中作为进化枝被回收。有趣的是,相同的分析将爪蟾与硬骨鱼区分开来,它们与它们共享原始的外部受精,并将其与羊膜(共享内部的受精)一起定位,这表明生殖细胞相互作用的外部或内部环境条件可能不是导致生殖细胞相互作用的独特因素。驱动受精基因的进化。我们的工作应增进我们对受精过程和生殖障碍的认识,例如,为鉴定为阳性的基因提供实验新线索。

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