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具有编码三核苷酸重复序列的哺乳动物生物钟基因中的选择特征:对研究高速适应基因组学的启示。

Signatures of selection in mammalian clock genes with coding trinucleotide repeats: Implications for studying the genomics of high-pace adaptation.

作者信息

Prentice Melanie B, Bowman Jeff, Lalor Jillian L, McKay Michelle M, Thomson Lindsay A, Watt Cristen M, McAdam Andrew G, Murray Dennis L, Wilson Paul J

机构信息

Department of Environmental and Life Sciences Trent University Peterborough ON Canada.

Wildlife Research and Monitoring Section Ontario Ministry of Natural Resources and Forestry Peterborough ON Canada.

出版信息

Ecol Evol. 2017 Aug 8;7(18):7254-7276. doi: 10.1002/ece3.3223. eCollection 2017 Sep.

DOI:10.1002/ece3.3223
PMID:28944015
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5606889/
Abstract

Climate change is predicted to affect the reproductive ecology of wildlife; however, we have yet to understand if and how species can adapt to the rapid pace of change. Clock genes are functional genes likely critical for adaptation to shifting seasonal conditions through shifts in timing cues. Many of these genes contain coding trinucleotide repeats, which offer the potential for higher rates of change than single nucleotide polymorphisms (SNPs) at coding sites, and, thus, may translate to faster rates of adaptation in changing environments. We characterized repeats in 22 clock genes across all annotated mammal species and evaluated the potential for selection on repeat motifs in three clock genes (,, and ) in three congeneric species pairs with different latitudinal range limits: Canada lynx and bobcat ( and ), northern and southern flying squirrels ( and ), and white-footed and deer mouse ( and ). Signatures of positive selection were found in both the interspecific comparison of Canada lynx and bobcat, and intraspecific analyses in Canada lynx. Northern and southern flying squirrels showed differing frequencies at common alleles and a signature of balancing selection. Regional excess homozygosity was found in the deer mouse at suggesting disruptive selection, and further analyses suggested balancing selection in the white-footed mouse. These preliminary signatures of selection and the presence of trinucleotide repeats within many clock genes warrant further consideration of the importance of candidate gene motifs for adaptation to climate change.

摘要

据预测,气候变化将影响野生动物的繁殖生态;然而,我们尚未了解物种是否以及如何能够适应这种快速的变化。生物钟基因是功能性基因,可能通过时间线索的变化对适应季节性变化至关重要。这些基因中的许多都包含编码三核苷酸重复序列,与编码位点的单核苷酸多态性(SNP)相比,它们具有更高的变化率潜力,因此,可能转化为在变化环境中更快的适应率。我们对所有已注释哺乳动物物种的22个生物钟基因中的重复序列进行了表征,并评估了在三个具有不同纬度范围限制的同属物种对中的三个生物钟基因(、和)中对重复基序进行选择的潜力:加拿大猞猁和短尾猫(和)、北方和南方鼯鼠(和)以及白足鼠和鹿鼠(和)。在加拿大猞猁和短尾猫的种间比较以及加拿大猞猁的种内分析中均发现了正选择的特征。北方和南方鼯鼠在常见等位基因上表现出不同的频率以及平衡选择的特征。在鹿鼠的处发现了区域纯合性过剩,表明存在分裂选择,进一步分析表明白足鼠存在平衡选择。这些初步的选择特征以及许多生物钟基因中三核苷酸重复序列的存在,值得进一步考虑候选基因基序对适应气候变化的重要性。

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