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首页> 外文期刊>Science Advances >Genomic signatures in the coral holobiont reveal host adaptations driven by Holocene climate change and reef specific symbionts
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Genomic signatures in the coral holobiont reveal host adaptations driven by Holocene climate change and reef specific symbionts

机译:珊瑚Holobiont中的基因组特征揭示了全新世气候变化和礁特有共生驱动的主机适应

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Genetic signatures caused by demographic and adaptive processes during past climatic shifts can inform predictions of species’ responses to anthropogenic climate change. To identify these signatures in Acropora tenuis , a reef-building coral threatened by global warming, we first assembled the genome from long reads and then used shallow whole-genome resequencing of 150 colonies from the central inshore Great Barrier Reef to inform population genomic analyses. We identify population structure in the host that reflects a Pleistocene split, whereas photosymbiont differences between reefs most likely reflect contemporary (Holocene) conditions. Signatures of selection in the host were associated with genes linked to diverse processes including osmotic regulation, skeletal development, and the establishment and maintenance of symbiosis. Our results suggest that adaptation to post-glacial climate change in A. tenuis has involved selection on many genes, while differences in symbiont specificity between reefs appear to be unrelated to host population structure.
机译:过去气候变化期间的人口统计和自适应过程引起的遗传签名可以告知物种对人为气候变化的反应的预测。为了识别Acropora Tenuis中的这些签名,通过全球变暖威胁的Reef-Building珊瑚,我们首先从长期读取中组装了基因组,然后使用了来自中央港口大堡礁的150个殖民地的浅全基因组重试,以告知人群基因组分析。我们识别反映普利科肾上腺分裂的宿主中的人口结构,而珊瑚礁之间的照片差异最有可能反映当代(全茂)条件。宿主中选择的签名与与不同过程相关的基因相关,包括渗透调节,骨骼发育以及共生的建立和维持。我们的研究结果表明,适应A. Tenuis在冰川后气候变化的适应涉及许多基因的选择,而珊瑚礁之间的Symbiont特异性的差异似乎与宿主人口结构无关。

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