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跨代基因组分析揭示了肠道寄生虫中的等位基因振荡和纯化选择。

Transgenerational genomic analyses reveal allelic oscillation and purifying selection in a gut parasite .

作者信息

Wei Xiuxiu, Zheng Jialan, Evans Jay D, Huang Qiang

机构信息

Jiangxi Key Laboratory of Honeybee Biology and Beekeeping, Jiangxi Agricultural University, Nanchang, China.

Honeybee Research Institute, Jiangxi Agricultural University, Nanchang, China.

出版信息

Front Microbiol. 2022 Nov 1;13:927892. doi: 10.3389/fmicb.2022.927892. eCollection 2022.

Abstract

Standing genetic variation is the predominant source acted on by selection. Organisms with high genetic diversity generally show faster responses toward environmental change. is a microsporidian parasite of honey bees, infecting midgut epithelial cells. High genetic diversity has been found in this parasite, but the mechanism for the parasite to maintain this diversity remains unclear. This study involved continuous inoculation of to honey bees. We found that the parasites slowly increased genetic diversity over three continuous inoculations. The number of lost single nucleotide variants (SNVs) was balanced with novel SNVs, which were mainly embedded in coding regions. Classic allele frequency oscillation was found at the regional level along the genome, and the associated genes were enriched in apoptosis regulation and ATP binding. The ratio of synonymous and non-synonymous substitution suggests a purifying selection, and our results provide novel insights into the evolutionary dynamics in microsporidian parasites.

摘要

固定遗传变异是受选择作用的主要来源。具有高遗传多样性的生物体通常对环境变化表现出更快的反应。[具体名称未给出]是蜜蜂的一种微孢子虫寄生虫,感染中肠上皮细胞。已发现这种寄生虫具有高遗传多样性,但其维持这种多样性的机制仍不清楚。本研究涉及对蜜蜂持续接种[具体名称未给出]。我们发现,在连续三次接种过程中,寄生虫的遗传多样性缓慢增加。丢失的单核苷酸变异(SNV)数量与新的SNV数量达到平衡,新的SNV主要嵌入编码区域。在全基因组的区域水平上发现了经典的等位基因频率振荡,且相关基因在细胞凋亡调控和ATP结合方面富集。同义替换与非同义替换的比例表明存在纯化选择,我们的研究结果为微孢子虫寄生虫的进化动力学提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cce/9664190/65f761e91000/fmicb-13-927892-g001.jpg

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