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遗传和端粒变异:来自热带鸟类杂交区的见解。

Genetic and telomeric variability: Insights from a tropical avian hybrid zone.

机构信息

School of Biological Sciences, Washington State University, Pullman, Washington, USA.

Program in Ecology, Evolution and Conservation Biology, University of Illinois Urbana-Champaign, Urbana, Illinois, USA.

出版信息

Mol Ecol. 2024 Sep;33(18):e17491. doi: 10.1111/mec.17491. Epub 2024 Aug 27.

Abstract

Telomere lengths and telomere dynamics can correlate with lifespan, behaviour and individual quality. Such relationships have spurred interest in understanding variation in telomere lengths and their dynamics within and between populations. Many studies have identified how environmental processes can influence telomere dynamics, but the role of genetic variation is much less well characterized. To provide a novel perspective on how telomeric variation relates to genetic variability, we longitudinally sampled individuals across a narrow hybrid zone (n = 127 samples), wherein two Manacus species characterized by contrasting genome-wide heterozygosity interbreed. We measured individual (n = 66) and population (n = 3) differences in genome-wide heterozygosity and, among hybrids, amount of genetic admixture using RADseq-generated SNPs. We tested for population differences in telomere lengths and telomere dynamics. We then examined how telomere lengths and telomere dynamics covaried with genome-wide heterozygosity within populations. Hybrid individuals exhibited longer telomeres, on average, than individuals sampled in the adjacent parental populations. No population differences in telomere dynamics were observed. Within the parental population characterized by relatively low heterozygosity, higher genome-wide heterozygosity was associated with shorter telomeres and higher rates of telomere shortening-a pattern that was less apparent in the other populations. All of these relationships were independent of sex, despite the contrasting life histories of male and female manakins. Our study highlights how population comparisons can reveal interrelationships between genetic variation and telomeres, and how naturally occurring hybridization and genome-wide heterozygosity can relate to telomere lengths and telomere dynamics.

摘要

端粒长度和端粒动态与寿命、行为和个体质量相关。这些关系激发了人们对理解种群内和种群间端粒长度及其动态变化的兴趣。许多研究已经确定了环境过程如何影响端粒动态,但遗传变异的作用还远未得到很好的描述。为了提供一个关于端粒变异与遗传变异性如何相关的新视角,我们在一个狭窄的杂交区(n=127 个样本)中对个体进行了纵向采样,在该杂交区中,两个具有截然不同全基因组杂合性的 Manacus 物种杂交。我们使用 RADseq 生成的 SNP 测量了个体(n=66)和种群(n=3)的全基因组杂合性差异,以及杂种中的遗传混合程度。我们检测了种群之间端粒长度和端粒动态的差异。然后,我们研究了端粒长度和端粒动态如何与种群内的全基因组杂合性相关。与相邻亲本种群中采样的个体相比,杂种个体的端粒平均更长。未观察到端粒动态的种群差异。在全基因组杂合性相对较低的亲本种群中,较高的全基因组杂合性与较短的端粒和较高的端粒缩短率相关,而在其他种群中,这种模式不太明显。尽管雄鸟和雌鸟的生活史截然不同,但所有这些关系都与性别无关。我们的研究强调了种群比较如何揭示遗传变异与端粒之间的相互关系,以及自然发生的杂交和全基因组杂合性如何与端粒长度和端粒动态相关。

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