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快速进化在起作用:环境筛选支持珊瑚适应炎热、酸性和缺氧的极端栖息地。

Rapid Evolution in Action: Environmental Filtering Supports Coral Adaptation to a Hot, Acidic, and Deoxygenated Extreme Habitat.

作者信息

Leiva Carlos, Torda Gergely, Zhou Chengran, Pan Yunrui, Harris Jess, Xiang Xueyan, Tan Shangjin, Tian Wei, Hume Benjamin, Miller David J, Li Qiye, Zhang Guojie, Cooke Ira, Rodolfo-Metalpa Riccardo

机构信息

Marine Laboratory, University of Guam, Guam, USA.

Laboratoire d'Excellence CORAIL, ENTROPIE (UMR9220), IRD, Nouméa, New Caledonia.

出版信息

Glob Chang Biol. 2025 Mar;31(3):e70103. doi: 10.1111/gcb.70103.

Abstract

The semienclosed Bouraké lagoon in New Caledonia is a natural system that enables observation of evolution in action with respect to stress tolerance in marine organisms, a topic directly relevant to understanding the consequences of global climate change. Corals inhabiting the Bouraké lagoon endure extreme conditions of elevated temperature (> 33°C), acidification (7.2 pH units), and deoxygenation (2.28 mg O2 L-1), which fluctuate with the tide due to the lagoon's geomorphology. To investigate the underlying bases of the apparent stress tolerance of these corals, we combined whole genome resequencing of the coral host and ITS2 metabarcoding of the photosymbionts from 90 Acropora tenuis colonies from three localities along the steep environmental gradient from Bouraké to two nearby control reefs. Our results highlight the importance of coral flexibility to associate with different photosymbionts in facilitating stress tolerance of the holobiont; but, perhaps more significantly, strong selective effects were detected at specific loci in the host genome. Fifty-seven genes contained SNPs highly associated with the extreme environment of Bouraké and were enriched in functions related to sphingolipid metabolism. Within these genes, the conserved sensor of noxious stimuli TRPA1 and the ABCC4 transporter stood out due to the high number of environmentally selected SNPs that they contained. Protein 3D structure predictions suggest that a single-point mutation causes the rotation of the main regulatory domain of TRPA1, which may be behind this case of natural selection through environmental filtering. While the corals of the Bouraké lagoon provide a striking example of rapid adaptation to extreme conditions, overall, our results highlight the need to preserve the current standing genetic variation of coral populations to safeguard their adaptive potential to ongoing rapid environmental change.

摘要

新喀里多尼亚半封闭的布拉凯泻湖是一个自然系统,能让人们观察海洋生物在实际中对压力的耐受性的演变,这一主题与理解全球气候变化的影响直接相关。栖息在布拉凯泻湖的珊瑚承受着高温(>33°C)、酸化(pH值7.2个单位)和脱氧(2.28毫克O₂/升)的极端条件,由于泻湖的地貌,这些条件会随潮汐波动。为了研究这些珊瑚明显的压力耐受性的潜在基础,我们结合了珊瑚宿主的全基因组重测序以及来自90个细枝鹿角珊瑚群体的光合共生体的ITS2元条形码分析,这些群体采自沿着从布拉凯到附近两个对照礁的陡峭环境梯度的三个地点。我们的结果突出了珊瑚与不同光合共生体关联的灵活性在促进共生体压力耐受性方面的重要性;但是,也许更重要的是,在宿主基因组的特定位点检测到了强烈的选择效应。57个基因含有与布拉凯的极端环境高度相关的单核苷酸多态性(SNP),并且在与鞘脂代谢相关的功能中富集。在这些基因中,有害刺激的保守传感器TRPA1和ABCC4转运蛋白因其所含的大量受环境选择的SNP而脱颖而出。蛋白质三维结构预测表明,单点突变导致TRPA1主要调节结构域的旋转,这可能是通过环境筛选进行自然选择的原因。虽然布拉凯泻湖的珊瑚提供了一个快速适应极端条件的显著例子,但总体而言,我们的结果强调了保护珊瑚种群当前现存遗传变异的必要性,以保障它们对持续快速环境变化的适应潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3795/11874183/3942cb6265b7/GCB-31-e70103-g005.jpg

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