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Detecting coevolution of positively selected in turtles sperm-egg fusion proteins

机译:检测乌龟精子蛋融合蛋白积极选择的共同作用

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摘要

Physically interacting sperm-egg proteins have been identified using gene-modified animals in some mammal species. Three proteins are essential for sperm-egg binding: Izumo1 on the sperm surface, and JUNO and CD9 on the egg surface. Most proteins linked to reproductive function evolve rapidly among species by positive selection, and have correlated evolutionary rates to compensate for changes on both the sperm and egg. Up to now, interactions between sperm and egg proteins have not been identified in non-mammalian vertebrates, such as turtles that have interspecific hybrids that can produce surviving F1 generations. To explore the potential physical interactions of sperm-egg proteins in turtle species, the coding region of Izumo1, JUNO, and CD9 homologous genes (named Tu-Izumo1, Tu-JUNO, and Tu-CD9) in six turtle species (Mauremys reevesii, M. mutica, M. sinensis, Cistoclemmys flavomarginata, Platysternon megacephalum and Chrysemys picta bellii) were identified, amplified, and sequenced, and tissue-specific expression was analyzed in M. reevesii. We constructed phylogenetic trees and analyzed the signatures of coevolution between sperm-egg protein pairs using MirrorTree Server and linear regression methods. The results showed that Tu-Izumo1, Tu-JUNO, and Tu-CD9 proteins have correlated evolutionary rates, and that the area where Tu-Izumo1 interacts with Tu-JUNO has only one positive selection site in some turtle species. These results suggest there is a potential interaction between Tu-Izumo1 and Tu-JUNO among turtles that can interbreed, and that a significantly lower positive selection in the interaction region may be one of the reasons why turtle hybrids are so common. Further studies are required to uncover Tu-Izumo1, Tu-JUNO and Tu-CD9 protein biological functions during gamete fusion.
机译:在一些哺乳动物物种中使用基因改性的动物鉴定了物理上相互作用的精子蛋白。三种蛋白质对于精子蛋结合是必不可少的:精子表面上的Izumo1,蛋和蛋白表面上的CD9。与生殖功能相关的大多数蛋白质通过阳性选择在物种之间迅速发展,并且具有相关的进化速率,以补偿精子和卵子的变化。到目前为止,精子和蛋蛋白之间的相互作用尚未在非哺乳动物脊椎动物中鉴定,例如具有可以产生幸存的F1代的杂种的乌龟。探讨龟类物种中精子蛋蛋白的潜在物理相互作用,Izumo1,juno和CD9同源基因的编码区(Tu-Izumo1,Tu-juno和Tu-cd9),在六种龟类(Mauremys Reevesii,鉴定,鉴定,扩增和测序,鉴定了Mutica,M.InceNsis,Cistoclemmmys Flavomarganata,Platysternon Megacephalum和Chrysemys Picta Bellii,并在M.Reevesii中分析了组织特异性表达。我们构建了系统发育树木,并使用Mirrortree服务器和线性回归方法分析了精子蛋蛋白对之间的共同签名。结果表明,Tu-Izumo1,Tu-Juno和Tu-CD9蛋白具有相关的进化率,并且Tu-Izumo1与Tu-Juno相互作用的区域只有一个龟类的一个正选择性位点。这些结果表明Tu-Izumo1和Tu-Juno之间存在杂交之间的潜在相互作用,并且相互作用区域的阳性选择显着降低的阳性选择可能是为什么龟杂交种是如此普遍的原因之一。在配子融合期间,需要进一步的研究来揭示Tu-Izumo1,Tu-Juno和Tu-CD9蛋白质生物学功能。

著录项

  • 来源
    《Mechanisms of Development》 |2019年第2019期|共7页
  • 作者单位

    Anhui Normal Univ Life Sci Coll Prov Key Lab Conservat &

    Exploitat Res Biol Resou Wuhu Anhui Peoples R China;

    Anhui Normal Univ Life Sci Coll Prov Key Lab Conservat &

    Exploitat Res Biol Resou Wuhu Anhui Peoples R China;

    Anhui Normal Univ Life Sci Coll Prov Key Lab Conservat &

    Exploitat Res Biol Resou Wuhu Anhui Peoples R China;

    Anhui Normal Univ Life Sci Coll Prov Key Lab Conservat &

    Exploitat Res Biol Resou Wuhu Anhui Peoples R China;

    Anhui Normal Univ Life Sci Coll Prov Key Lab Conservat &

    Exploitat Res Biol Resou Wuhu Anhui Peoples R China;

    Anhui Normal Univ Life Sci Coll Prov Key Lab Conservat &

    Exploitat Res Biol Resou Wuhu Anhui Peoples R China;

    Anhui Normal Univ Life Sci Coll Prov Key Lab Conservat &

    Exploitat Res Biol Resou Wuhu Anhui Peoples R China;

    Anhui Normal Univ Life Sci Coll Prov Key Lab Conservat &

    Exploitat Res Biol Resou Wuhu Anhui Peoples R China;

    Anhui Normal Univ Life Sci Coll Prov Key Lab Conservat &

    Exploitat Res Biol Resou Wuhu Anhui Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

    Sperm-egg fusion; Tu-Izumo1; Tu-JUNO; Tu-CD9; Hybridization;

    机译:精子蛋融合;TU-IZUMO1;TU-JUNO;TU-CD9;杂交;

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