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端粒功能障碍与鹿角杯形珊瑚的暗诱导白化有关。

Telomere dysfunction is associated with dark-induced bleaching in the reef coral Stylophora pistillata.

作者信息

Rouan Alice, Pousse Mélanie, Tambutté Eric, Djerbi Nadir, Zozaya William, Capasso Laura, Zoccola Didier, Tambutté Sylvie, Gilson Eric

机构信息

Université Côte d'Azur-CNRS-Inserm, IRCAN, Nice, France.

Department of Marine Biology, Centre Scientifique de Monaco, Monte Carlo, Principality of Monaco.

出版信息

Mol Ecol. 2022 Dec;31(23):6087-6099. doi: 10.1111/mec.16199. Epub 2021 Oct 15.

DOI:10.1111/mec.16199
PMID:34587336
Abstract

Telomere DNA length is a complex trait controlled by both multiple loci and environmental factors. A growing number of studies are focusing on the impact of stress and stress accumulation on telomere length and the link with survival and fitness in ecological contexts. Here, we investigated the telomere changes occurring in a symbiotic coral, Stylophora pistillata, that has experienced continuous darkness over 6 months. This stress condition led to the loss of its symbionts in a similar manner to that observed during large-scale bleaching events due to climate changes and anthropogenic activities, threatening reef ecosystems worldwide. We found that continuous darkness was associated with telomere length shortening. This result, together with a phylogenetic analysis of the telomere coral proteins and a transcriptome survey of the continuous darkness condition, paves the way for future studies on the role of telomeres in the coral stress response and the importance of environmentally induced telomere shortening in endangered coral species.

摘要

端粒DNA长度是一种由多个基因座和环境因素共同控制的复杂性状。越来越多的研究聚焦于压力和压力积累对端粒长度的影响,以及在生态环境中与生存和适应性的联系。在此,我们研究了共生珊瑚鹿角杯形珊瑚(Stylophora pistillata)在经历了6个月持续黑暗后的端粒变化。这种压力状况导致其共生体丧失,其方式与气候变化和人为活动引起的大规模白化事件中观察到的相似,威胁着全球的珊瑚礁生态系统。我们发现持续黑暗与端粒长度缩短有关。这一结果,连同对端粒珊瑚蛋白的系统发育分析以及对持续黑暗条件的转录组调查,为未来研究端粒在珊瑚应激反应中的作用以及环境诱导的端粒缩短在濒危珊瑚物种中的重要性铺平了道路。

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