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在秀丽隐杆线虫的野生分离株中,F-box 和 GPCR 基因具有丰富的遗传多样性和强烈的正选择。

Large genetic diversity and strong positive selection in F-box and GPCR genes among the wild isolates of Caenorhabditis elegans.

机构信息

School of Biological Sciences, The University of Hong Kong, Hong Kong SAR, China.

出版信息

Genome Biol Evol. 2021 May 7;13(5). doi: 10.1093/gbe/evab048.

Abstract

The F-box and chemosensory GPCR (csGPCR) gene families are greatly expanded in nematodes, including the model organism Caenorhabditis elegans, compared to insects and vertebrates. However, the intraspecific evolution of these two gene families in nematodes remain unexamined. In this study, we analyzed the genomic sequences of 330 recently sequenced wild isolates of C. elegans using a range of population genetics approaches. We found that F-box and csGPCR genes, especially the Srw family csGPCRs, showed much more diversity than other gene families. Population structure analysis and phylogenetic analysis divided the wild strains into eight non-Hawaiian and three Hawaiian subpopulations. Some Hawaiian strains appeared to be more ancestral than all other strains. F-box and csGPCR genes maintained a great amount of the ancestral variants in the Hawaiian subpopulation and their divergence among the non-Hawaiian subpopulations contributed significantly to population structure. F-box genes are mostly located at the chromosomal arms and high recombination rate correlates with their large polymorphism. Moreover, using both neutrality tests and Extended Haplotype Homozygosity analysis, we identified signatures of strong positive selection in the F-box and csGPCR genes among the wild isolates, especially in the non-Hawaiian population. Accumulation of high-frequency derived alleles in these genes was found in non-Hawaiian population, leading to divergence from the ancestral genotype. In summary, we found that F-box and csGPCR genes harbour a large pool of natural variants, which may be subjected to positive selection. These variants are mostly mapped to the substrate-recognition domains of F-box proteins and the extracellular and intracellular regions of csGPCRs, possibly resulting in advantages during adaptation by affecting protein degradation and the sensing of environmental cues, respectively.

摘要

F -box 和化学感受 GPCR(csGPCR)基因家族在包括模式生物秀丽隐杆线虫在内的线虫中相较于昆虫和脊椎动物大量扩增。然而,这些基因家族在线虫中的种内进化仍未被研究。在本研究中,我们使用一系列群体遗传学方法分析了 330 个最近测序的秀丽隐杆线虫野生品系的基因组序列。我们发现 F-box 和 csGPCR 基因,特别是 Srw 家族的 csGPCR,比其他基因家族表现出更多的多样性。种群结构分析和系统发育分析将野生株系分为八个非夏威夷和三个夏威夷亚群。一些夏威夷株系似乎比所有其他株系更为原始。F-box 和 csGPCR 基因在夏威夷亚群中保留了大量的祖先变异,它们在非夏威夷亚群之间的分化对种群结构有重要贡献。F-box 基因主要位于染色体臂上,高重组率与其大量多态性相关。此外,我们使用中性检验和扩展单倍型纯合性分析,在野生株系中鉴定出 F-box 和 csGPCR 基因存在强烈的正选择信号,尤其是在非夏威夷种群中。在这些基因中,高频率衍生等位基因的积累在非夏威夷种群中发现,导致与祖先基因型的分歧。总之,我们发现 F-box 和 csGPCR 基因蕴藏着大量的自然变异,这些变异可能受到正选择的影响。这些变异大多映射到 F-box 蛋白的底物识别结构域和 csGPCR 的细胞外和细胞内区域,可能分别通过影响蛋白降解和环境线索的感知,从而在适应过程中带来优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e3e/8120010/0e47af45ffc2/evab048f1.jpg

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