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生物钟基因与亚洲短趾百灵繁殖内分泌激活和行为的个体变异有关。

Clock gene is associated with individual variation in the activation of reproductive endocrine and behavior of Asian short toed lark.

机构信息

College of life and environment sciences, Minzu university of China, Beijing, 100081, China.

Guangdong institute of applied biological resources, Guangzhou, 510260, China.

出版信息

Sci Rep. 2017 Nov 3;7(1):15002. doi: 10.1038/s41598-017-15064-7.

Abstract

Within year individual variation in the timing of seasonal reproduction within wild bird populations in highly seasonal environments can be pronounced, but the molecular and physiological mechanisms responsible for this variation are unclear. We investigated the relationship between Clock gene poly-Q length, activation of the HPG endocrine axis, and the timing of breeding behavior, in a wild population of the Asian short-toed lark (Calandrella cheleensis) in Inner Mongolia, China. Six variants of Clock gene poly-Q alleles were identified in this population. Clock poly-Q mean allele length was positively correlated with the mean peak date deviation of individual birds. The shorter an individual's Clock poly-Q mean allele length, the earlier its plasma LH, T and E2 values peaked. Mean Clock poly-Q allele length of nestlings in the same nest were positively correlated with the standardized laying date of the first egg in that nest. These results suggest that the Clock gene influences the reproductive timing of birds through its effect on the HPG endocrine axis, and that individual variation in the timing of reproduction may have a genetic basis.

摘要

在高度季节性环境中,野生鸟类群体季节性繁殖时间的个体差异在一年内可能很明显,但导致这种差异的分子和生理机制尚不清楚。我们在中国内蒙古的亚洲短趾百灵(Calandrella cheleensis)的野生种群中研究了 Clock 基因多-Q 长度、HPG 内分泌轴的激活与繁殖行为时间之间的关系。在该种群中鉴定出了 Clock 基因多-Q 等位基因的六个变体。Clock 多-Q 平均等位基因长度与个体鸟类平均峰值日期偏差呈正相关。个体的 Clock 多-Q 平均等位基因长度越短,其血浆 LH、T 和 E2 值达到峰值的时间越早。同一巢中雏鸟的平均 Clock 多-Q 等位基因长度与该巢第一枚卵的标准化产卵日期呈正相关。这些结果表明,Clock 基因通过其对 HPG 内分泌轴的影响影响鸟类的繁殖时间,并且繁殖时间的个体差异可能具有遗传基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04b1/5670178/813be5629821/41598_2017_15064_Fig1_HTML.jpg

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