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首页> 外文期刊>The Journal of Experimental Biology >Fine-tuning of seasonal timing of breeding is regulated downstream in the underlying neuro-endocrine system in a small songbird
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Fine-tuning of seasonal timing of breeding is regulated downstream in the underlying neuro-endocrine system in a small songbird

机译:繁殖的季节性时序的微调在小鸣鸟的底层神经内分泌系统下调下游

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摘要

The timing of breeding is under selection in wild populations as a result of climate change, and understanding the underlying physiological processes mediating this timing provides insight into the potential rate of adaptation. Current knowledge on this variation in physiology is, however, mostly limited to males. We assessed whether individual differences in the timing of breeding in females are reflected in differences in candidate gene expression and, if so, whether these differences occur in the upstream (hypothalamus) or downstream (ovary and liver) parts of the neuroendocrine system. We used 72 female great tits from two generations of lines artificially selected for early and late egg laying, which were housed in climate-controlled aviaries and went through two breeding cycles within 1 year. In the first breeding season we obtained individual egg-laying dates, while in the second breeding season, using the same individuals, we sampled several tissues at three time points based on the timing of the first breeding attempt. For each tissue, mRNA expression levels were measured using qPCR for a set of candidate genes associated with the timing of reproduction and subsequently analysed for differences between generations, time points and individual timing of breeding. We found differences in gene expression between generations in all tissues, with the most pronounced differences in the hypothalamus. Differences between time points, and early- and late-laying females, were found exclusively in the ovary and liver. Altogether, we show that fine-tuning of the seasonal timing of breeding, and thereby the opportunity for adaptation in the neuroendocrine system, is regulated mostly downstream in the neuro-endocrine system.
机译:由于气候变化,育种时间在野生群体中选择,并且了解调解此时序的潜在生理过程提供了洞察力的适应潜在速度。然而,关于这种生理学变异的目前的知识是主要限于雄性。我们评估了女性中繁殖时机的个体差异是否反映在候选基因表达中的差异中,如果是的话,这些差异是否在神经内分泌系统的上游(下丘脑)或下游(卵巢和肝脏)部分中发生。我们使用了从两代线的女性大山雀,用于早期和晚期鸡蛋铺设,其被居住在气候控制的禽类上,并在1年内经历了两次育种周期。在第一次繁殖季节,我们获得了个体卵巢日期,而在第二次繁殖季节,使用同一个体,我们基于第一次育种尝试的时间来在三个时间点上采样几个组织。对于每个组织,使用QPCR测量mRNA表达水平,用于与再生的时序相关的一组候选基因,随后分析几代,时间点和繁殖的各个时间之间的差异。我们发现所有组织中代几代基因表达的差异,具有丘脑中最明显的差异。时间点和早期和晚期女性之间的差异仅在卵巢和肝脏中发现。完全,我们表明,育种季节性调整的微调,从而适应神经内分泌系统的机会,主要是神经内分泌系统下游。

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