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代谢和神经元信号通路的基因组区域在一个移动的鸟类杂种区内具有时间一致性。

Genomic regions underlying metabolic and neuronal signaling pathways are temporally consistent in a moving avian hybrid zone.

机构信息

Department of Ecology and Evolutionary Biology, University of Colorado Boulder, Boulder, Colorado, 80309.

Department of Biology, Villanova University, Villanova, Pennsylvania, 19085.

出版信息

Evolution. 2020 Jul;74(7):1498-1513. doi: 10.1111/evo.13970. Epub 2020 Jun 15.

Abstract

The study of hybrid zones can provide insight into the genetic basis of species differences that are relevant for the maintenance of reproductive isolation. Hybrid zones can also provide insight into climate change, species distributions, and evolution. The hybrid zone between black-capped chickadees (Poecile atricapillus) and Carolina chickadees (Poecile carolinensis) is shifting northward in response to increasing winter temperatures but is not increasing in width. This pattern indicates strong selection against chickadees with admixed genomes. Using high-resolution genomic data, we identified regions of the genomes that are outliers in both time points and do not introgress between the species; these regions may be involved in the maintenance of reproductive isolation. Genes involved in metabolic regulation processes were overrepresented in this dataset. Several gene ontology categories were also temporally consistent-including glutamate signaling, synaptic transmission, and catabolic processes-but the nucleotide variants leading to this pattern were not. Our results support recent findings that hybrids between black-capped and Carolina chickadees have higher basal metabolic rates than either parental species and suffer spatial memory and problem-solving deficits. Metabolic breakdown, as well as spatial memory and problem-solving, in hybrid chickadees may act as strong postzygotic isolation mechanisms in this moving hybrid zone.

摘要

杂交区的研究可以深入了解与生殖隔离维持相关的物种差异的遗传基础。杂交区还可以深入了解气候变化、物种分布和进化。黑顶山雀(Poecile atricapillus)和卡罗莱纳山雀(Poecile carolinensis)之间的杂交区正在向北迁移,以应对冬季温度的升高,但宽度并没有增加。这种模式表明,混合基因组的山雀受到强烈的选择压力。利用高分辨率基因组数据,我们确定了在两个时间点都是异常值且在物种之间不渐渗的基因组区域;这些区域可能参与生殖隔离的维持。在这个数据集里,涉及代谢调节过程的基因数量过多。这个数据集还包括几个在时间上一致的基因本体类别——包括谷氨酸信号、突触传递和分解代谢过程——但导致这种模式的核苷酸变体却没有。我们的研究结果支持了最近的发现,即黑顶山雀和卡罗莱纳山雀之间的杂交种比任何一个亲本物种的基础代谢率都高,并且存在空间记忆和解决问题的缺陷。在这个不断变化的杂交区中,代谢崩溃以及空间记忆和解决问题的能力可能是杂种山雀强有力的合子后隔离机制。

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