Suppr超能文献

在食肉目动物的配子相互作用蛋白中存在正选择。

Positive selection in gamete interaction proteins in Carnivora.

机构信息

Instituto de Biología y Medicina Experimental (IByME-CONICET), Buenos Aires, Argentina.

Unidad de Conocimiento Traslacional Hospitalaria Patagónica, Hospital de Alta Complejidad El Calafate SAMIC, El Calafate, Santa Cruz, Argentina.

出版信息

Mol Ecol. 2024 Mar;33(5):e17263. doi: 10.1111/mec.17263. Epub 2024 Feb 6.

Abstract

The absence of robust interspecific isolation barriers among pantherines, including the iconic South American jaguar (Panthera onca), led us to study molecular evolution of typically rapidly evolving reproductive proteins within this subfamily and related groups. In this study, we delved into the evolutionary forces acting on the zona pellucida (ZP) gamete interaction protein family and the sperm-oocyte fusion protein pair IZUMO1-JUNO across the Carnivora order, distinguishing between Caniformia and Feliformia suborders and anticipating few significant diversifying changes in the Pantherinae subfamily. A chromosome-resolved jaguar genome assembly facilitated coding sequences, enabling the reconstruction of protein evolutionary histories. Examining sequence variability across more than 30 Carnivora species revealed that Feliformia exhibited significantly lower diversity compared to its sister taxa, Caniformia. Molecular evolution analyses of ZP2 and ZP3, subunits directly involved in sperm-recognition, unveiled diversifying positive selection in Feliformia, Caniformia and Pantherinae, although no significant changes were linked to sperm binding. Structural cross-linking ZP subunits, ZP4 and ZP1 exhibited lower levels or complete absence of positive selection. Notably, the fusion protein IZUMO1 displayed prominent positive selection signatures and sites in basal lineages of both Caniformia and Feliformia, extending along the Caniformia subtree but absent in Pantherinae. Conversely, JUNO did not exhibit any positive selection signatures across tested lineages and clades. Eight Caniformia-specific positive selected sites in IZUMO1 were detected within two JUNO-interaction clusters. Our findings provide for the first time insights into the evolutionary trajectories of ZP proteins and the IZUMO1-JUNO gamete interaction pair within the Carnivora order.

摘要

由于豹亚科(包括标志性的南美虎豹 Panthera onca)内物种间缺乏强大的隔离屏障,我们研究了该亚科及相关类群中典型快速进化的生殖蛋白的分子进化。在这项研究中,我们深入研究了作用于透明带(ZP)配子相互作用蛋白家族和精子-卵融合蛋白对 IZUMO1-JUNO 的进化力量,区分了犬形亚目和猫形亚目,并预测豹亚科的分化变化很少。一个染色体分辨率的虎基因组组装促进了编码序列,从而能够重建蛋白质进化史。对 30 多种食肉动物物种的序列变异性进行研究表明,与姐妹分类群犬形亚目相比,猫形亚目表现出明显较低的多样性。直接参与精子识别的 ZP2 和 ZP3 亚基的分子进化分析揭示了猫形亚目、犬形亚目和豹亚科的多样化正选择,尽管与精子结合无关的正选择变化并不显著。结构交联 ZP 亚基 ZP4 和 ZP1 表现出较低水平或完全缺乏正选择。值得注意的是,融合蛋白 IZUMO1 在犬形亚目和猫形亚目的基础谱系中表现出显著的正选择特征和位点,沿着犬形亚目分支延伸,但在豹亚科中缺失。相反,JUNO 在测试的谱系和进化枝中都没有表现出任何正选择特征。在 IZUMO1 中检测到 8 个犬形亚目特异性的正选择位点,位于两个 JUNO 相互作用簇内。我们的研究结果首次提供了关于透明带蛋白和 IZUMO1-JUNO 配子相互作用对在食肉动物目中的进化轨迹的见解。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验