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通过与群体型团藻目藻类进行叶绿体基因组比较对衣藻目中单细胞物种的进化分析

Evolutionary Analysis of Unicellular Species in Chlamydomonadales Through Chloroplast Genome Comparison With the Colonial Volvocine Algae.

作者信息

Hu Yuxin, Xing Weiyue, Song Huiyin, Zhu Huan, Liu Guoxiang, Hu Zhengyu

机构信息

Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Front Microbiol. 2019 Jun 18;10:1351. doi: 10.3389/fmicb.2019.01351. eCollection 2019.

Abstract

This study is the first determination of six chloroplast genomes of colonial volvocine algae, , , , , , and . Based on 55 chloroplast protein-coding genes, we compared the nonsynonymous (dN) and synonymous (dS) substitution rates between colonial volvocine algae and the other unicellular Chlamydomonadales species. When refer to the dN, we found 27 genes were significantly different, among them, 19 genes were significant higher in unicellular species (FDR-adjusted < 0.05). When refer to the dS, we found 10 genes were significantly different, among them, 6 genes were significant higher in unicellular species (FDR-adjusted < 0.05). Then we identified 14 putative fast-evolving genes and 11 putative positively selected genes of unicellular species, we analyzed the function of positively selected sites of the overlap genes of putative fast-evolving and positively selected genes, and found some sites were close to the important functional region of the proteins. Photosynthesis is the process to transform and store solar energy by chloroplast, it plays a vital role in the survival of algae, this study is the first to use the chloroplast genomes to analysis the evolutionary relationship between colonial and unicellular species in Chlamydomonadales. We found more genes have higher substitution rates in unicellular species and proposed that the fast-evolving and positively selected two genes, and , may help to improve the photosynthetic efficiency of unicellular species in Chlamydomonadales.

摘要

本研究首次测定了群体型团藻目藻类、、、、、和的六个叶绿体基因组。基于55个叶绿体蛋白质编码基因,我们比较了群体型团藻目藻类与其他单细胞衣藻目物种之间的非同义(dN)和同义(dS)替换率。在参考dN时,我们发现27个基因存在显著差异,其中19个基因在单细胞物种中显著更高(FDR校正<0.05)。在参考dS时,我们发现10个基因存在显著差异,其中6个基因在单细胞物种中显著更高(FDR校正<0.05)。然后我们鉴定出单细胞物种的14个假定快速进化基因和11个假定正选择基因,分析了假定快速进化基因和正选择基因重叠基因的正选择位点功能,发现一些位点靠近蛋白质的重要功能区域。光合作用是叶绿体转化和储存太阳能的过程,它在藻类生存中起着至关重要的作用,本研究首次利用叶绿体基因组分析衣藻目中群体型和单细胞物种之间的进化关系。我们发现单细胞物种中有更多基因具有更高的替换率,并提出快速进化和正选择的两个基因和可能有助于提高衣藻目单细胞物种的光合效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/246e/6591512/876180576ef8/fmicb-10-01351-g001.jpg

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