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Metabolomic shifts associated with heat stress in coral holobionts

机译:与珊瑚储料热应激相关的代谢物转移

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Understanding the response of the coral holobiont to environmental change is crucial to inform conservation efforts. The most pressing problem is “coral bleaching,” usually precipitated by prolonged thermal stress. We used untargeted, polar metabolite profiling to investigate the physiological response of the coral species Montipora capitata and Pocillopora acuta to heat stress. Our goal was to identify diagnostic markers present early in the bleaching response. From the untargeted UHPLC-MS data, a variety of co-regulated dipeptides were found that have the highest differential accumulation in both species. The structures of four dipeptides were determined and showed differential accumulation in symbiotic and aposymbiotic (alga-free) populations of the sea anemone Aiptasia ( Exaiptasia pallida ), suggesting the deep evolutionary origins of these dipeptides and their involvement in symbiosis. These and other metabolites may be used as diagnostic markers for thermal stress in wild coral.
机译:了解珊瑚梭罗对环境变革的回应至关重要,以便为节约努力提供信息。最紧迫的问题是“珊瑚漂白”,通常通过长时间的热应力沉淀。我们使用未标准的,极性代谢物分析,以研究珊瑚物种Montipora Capitata和Pocillopora Acuta的生理反应热应激。我们的目标是鉴定漂白剂早期目前的诊断标志。从未确定的UHPLC-MS数据中,发现各种共调节的二肽在两个物种中具有最高的差异累积。确定了四种二肽的结构,并在海葵Aiptasia(Exapiptasia pallida)的共生和亚氨基生物(藻类)种群中,表明这些二肽的深度进化起源及其参与共生症的深度进化起源。这些和其他代谢物可以用作野生珊瑚中热应力的诊断标记。

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