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加拿大猞猁(Lynx canadensis)时钟基因编码三核苷酸重复序列选择中的空间和环境影响。

Spatial and environmental influences on selection in a clock gene coding trinucleotide repeat in Canada lynx (Lynx canadensis).

作者信息

Prentice Melanie B, Bowman Jeff, Murray Dennis L, Khidas Kamal, Wilson Paul J

机构信息

Department of Environmental & 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

Mol Ecol. 2020 Dec;29(23):4637-4652. doi: 10.1111/mec.15652. Epub 2020 Oct 18.

DOI:10.1111/mec.15652
PMID:32989809
Abstract

Clock genes exhibit substantial control over gene expression and ultimately life-histories using external cues such as photoperiod, and are thus likely to be critical for adaptation to shifting seasonal conditions and novel environments as species redistribute their ranges under climate change. Coding trinucleotide repeats (cTNRs) are found within several clock genes, and may be interesting targets of selection due to their containment within exonic regions and elevated mutation rates. Here, we conduct inter-specific characterization of the NR1D1 cTNR between Canada lynx and bobcat, and intra-specific spatial and environmental association analyses of neutral microsatellites and our functional cTNR marker, to investigate the role of selection on this locus in Canada lynx. We report signatures of divergent selection between lynx and bobcat, with the potential for hybrid-mediated gene flow in the area of range overlap. We also provide evidence that this locus is under selection across Canada lynx in eastern Canada, with both spatial and environmental variables significantly contributing to the explained variation, after controlling for neutral population structure. These results suggest that cTNRs may play an important role in the generation of functional diversity within some mammal species, and allow for contemporary rates of adaptation in wild populations in response to environmental change. We encourage continued investment into the study of cTNR markers to better understand their broader relevance to the evolution and adaptation of mammals.

摘要

生物钟基因利用光周期等外部线索对基因表达乃至最终的生活史表现出实质性控制,因此在物种因气候变化重新分布其分布范围时,可能对适应不断变化的季节条件和新环境至关重要。编码三核苷酸重复序列(cTNRs)存在于多个生物钟基因中,由于它们位于外显子区域且突变率较高,可能是有趣的选择目标。在这里,我们对加拿大猞猁和短尾猫之间的NR1D1 cTNR进行种间特征分析,并对中性微卫星和我们的功能性cTNR标记进行种内空间和环境关联分析,以研究该位点的选择对加拿大猞猁的作用。我们报告了猞猁和短尾猫之间趋异选择的特征,在分布范围重叠区域存在杂交介导的基因流动的可能性。我们还提供证据表明,在控制中性种群结构后,该位点在加拿大东部的加拿大猞猁中受到选择,空间和环境变量均对解释的变异有显著贡献。这些结果表明,cTNRs可能在某些哺乳动物物种功能多样性的产生中发挥重要作用,并使野生种群能够对环境变化做出当代适应率。我们鼓励继续投入对cTNR标记的研究,以更好地理解它们与哺乳动物进化和适应的更广泛相关性。

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Spatial and environmental influences on selection in a clock gene coding trinucleotide repeat in Canada lynx (Lynx canadensis).加拿大猞猁(Lynx canadensis)时钟基因编码三核苷酸重复序列选择中的空间和环境影响。
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