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首页> 外文期刊>Scientific reports. >Uncovering mechanisms of global ocean change effects on the Dungeness crab (Cancer magister) through metabolomics analysis
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Uncovering mechanisms of global ocean change effects on the Dungeness crab (Cancer magister) through metabolomics analysis

机译:通过代谢组科分析揭开全球海洋变化对肿大蟹(癌症鼹鼠)的影响

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The Dungeness crab is an economically and ecologically important species distributed along the North American Pacific coast. To predict how Dungeness crab may physiologically respond to future global ocean change on a molecular level, we performed untargeted metabolomic approaches on individual Dungeness crab juveniles reared in treatments that mimicked current and projected future pH and dissolved oxygen conditions. We found 94 metabolites and 127 lipids responded in a condition-specific manner, with a greater number of known compounds more strongly responding to low oxygen than low pH exposure. Pathway analysis of these compounds revealed that juveniles may respond to low oxygen through evolutionarily conserved processes including downregulating glutathione biosynthesis and upregulating glycogen storage, and may respond to low pH by increasing ATP production. Most interestingly, we found that the response of juveniles to combined low pH and low oxygen exposure was most similar to the low oxygen exposure response, indicating low oxygen may drive the physiology of juvenile crabs more than pH. Our study elucidates metabolic dynamics that expand our overall understanding of how the species might respond to future ocean conditions and provides a comprehensive dataset that could be used in future ocean acidification response studies.
机译:Dungenty Crab是一种经济上和生态的重要物种,沿着北美太平洋海岸分布。为了预测如何在分子水平对未来的全球海洋变化进行生理学上的螃蟹,我们对在治疗中饲养的个体心肺蟹幼年中表现了未标准的代原曲目,以模仿电流和预测的未来pH和溶解的氧气条件。我们发现94个代谢物和127个脂质以特异性特异性的方式响应,具有更多的已知化合物比低pH暴露更强烈响应低氧气。这些化合物的途径分析显示,通过进化的保守过程可以通过进化谷胱甘肽生物合成和上调糖原储存来响应低氧,并且可以通过增加ATP生产来响应低pH。最有意义的是,我们发现幼绒到合并低pH和低氧暴露的响应最为类似于低氧暴露响应,表明低氧可能会使少年蟹的生理学越来越多。我们的研究阐明了代谢动态,扩大了我们对物种如何应对未来海洋状况的整体理解,并提供可用于未来海洋酸化反应研究的全面数据集。

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