眼内容剜除术(眼科)
海参
代谢物
代谢组学
脂质代谢
代谢途径
生物
新陈代谢
生态学
生物化学
生物信息学
医学
病理
替代医学
作者
Da Huo,Fang Su,Wei Cui,Shilin Liu,Libin Zhang,Hongsheng Yang,Lina Sun
标识
DOI:10.1016/j.marpolbul.2022.113993
摘要
When encountering adverse environmental conditions, some holothurians can eject their internal organs in a process called evisceration. As global warming intensified, eviscerated and intact sea cucumbers both experience heat stress, but how they performed was uncertain. We constructed 24 metabolomics profiles to reveal the metabolite changes of eviscerated and intact sea cucumbers under normal and high temperature conditions, respectively. Carboxylic acids and fatty acyls were the most abundant metabolic categories in evisceration and heat stress treatments, respectively. Neural transduction was involved in sea cucumber evisceration and stress response, and the commonly enriched pathway was “neuroactive ligand-receptor interaction”. Lipid metabolism in eviscerated sea cucumbers differed from those of intact individuals and was more seriously affected by heat stress. Choline is a key metabolite for revealing the evisceration mechanism. Our results contribute to understanding the mechanisms of evisceration in sea cucumbers, and how sea cucumbers might respond to increasingly warming ocean conditions.
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