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Transcriptomes and expression profiling of deep-sea corals from the Red Sea provide insight into the biology of azooxanthellate corals

机译:来自红海的深海珊瑚的转录组和表达谱提供了对偶氮恶藻类珊瑚生物学的深入了解

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摘要

Despite the importance of deep-sea corals, our current understanding of their ecology and evolution is limited due to difficulties in sampling and studying deep-sea environments. Moreover, a recent re-evaluation of habitat limitations has been suggested after characterization of deep-sea corals in the Red Sea, where they live at temperatures of above 20 °C at low oxygen concentrations. To gain further insight into the biology of deep-sea corals, we produced reference transcriptomes and studied gene expression of three deep-sea coral species from the Red Sea, i.e. Dendrophyllia sp., Eguchipsammia fistula, and Rhizotrochus typus. Our analyses suggest that deep-sea coral employ mitochondrial hypometabolism and anaerobic glycolysis to manage low oxygen conditions present in the Red Sea. Notably, we found expression of genes related to surface cilia motion that presumably enhance small particle transport rates in the oligotrophic deep-sea environment. This is the first study to characterize transcriptomes and in situ gene expression for deep-sea corals. Our work offers several mechanisms by which deep-sea corals might cope with the distinct environmental conditions present in the Red Sea As such, our data provide direction for future research and further insight to organismal response of deep-sea coral to environmental change and ocean warming.
机译:尽管深海珊瑚很重要,但是由于采样和研究深海环境的困难,我们目前对它们的生态学和进化的了解仍然有限。此外,在对红海中的深海珊瑚特征化之后,有人建议对栖息地限制进行重新评估,因为它们生活在摄氏20度以上,低氧浓度下。为了进一步了解深海珊瑚的生物学特性,我们制作了参考转录组并研究了来自红海的三种深海珊瑚物种即Dendrophyllia sp。,Eguchipsammia fistula和Rhizotrochus typus的基因表达。我们的分析表明,深海珊瑚利用线粒体低代谢和厌氧糖酵解来管理红海中存在的低氧条件。值得注意的是,我们发现了与表面纤毛运动有关的基因的表达,推测可能在贫营养型深海环境中提高了小颗粒的传输速率。这是第一项表征深海珊瑚转录组和原位基因表达的研究。我们的工作提供了几种机制,深海珊瑚可以通过这些机制来应对红海中存在的独特环境条件。因此,我们的数据为今后的研究提供了方向,并进一步洞察了深海珊瑚对环境变化和海洋变暖的生物响应。

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