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基于气相色谱/质谱联用代谢组学的[具体对象]对热应激的代谢反应

Metabolic response of to heat stress using GC/MS-based metabolomics.

作者信息

Jiang Yazhou, Jiao Haifeng, Sun Peng, Yin Fei, Tang Baojun

机构信息

East China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Shanghai, China.

Ningbo Academy of Ocean and Fishery, Ningbo, Zhejiang, China.

出版信息

PeerJ. 2020 Jan 28;8:e8445. doi: 10.7717/peerj.8445. eCollection 2020.

Abstract

Marine mollusks are commonly subjected to heat stress. To evaluate the effects of heat stress on the physiological metabolism of the ark shell , clams were exposed to different high temperatures (24, 28 and 32 °C) for 72 h. The oxygen consumption and ammonia excretion rates were measured at 2, 12, 24, 48 and 72 h. The results indicated that the metabolic rates of the ark shell significantly increased with increasing heat stress, accompanied by mortalities in response to prolonged exposure. A metabolomics approach based on gas chromatography coupled with mass spectrometry was further applied to assess the changes of metabolites in the mantle of the ark shell at 32 °C. Moreover, multivariate and pathway analyses were conducted for the different metabolites. The results showed that the heat stress caused changes in energy metabolism, amino acid metabolism, osmotic regulation, carbohydrate metabolism and lipid metabolism through different metabolic pathways. These results are consistent with the significant changes of oxygen consumption rate and ammonia excretion rate. The present study contributes to the understanding of the impacts of heat stress on intertidal bivalves and elucidates the relationship between individual-level responses and underlying molecular metabolic dynamics.

摘要

海洋软体动物经常受到热应激。为了评估热应激对魁蚶生理代谢的影响,将魁蚶暴露于不同的高温(24、28和32°C)下72小时。在2、12、24、48和72小时测量耗氧率和排氨率。结果表明,随着热应激的增加,魁蚶的代谢率显著提高,同时长时间暴露会导致死亡。进一步采用基于气相色谱-质谱联用的代谢组学方法,评估32°C下魁蚶外套膜中代谢物的变化。此外,对不同代谢物进行了多变量和通路分析。结果表明,热应激通过不同的代谢途径导致能量代谢、氨基酸代谢、渗透调节、碳水化合物代谢和脂质代谢发生变化。这些结果与耗氧率和排氨率的显著变化一致。本研究有助于理解热应激对潮间带双壳贝类的影响,并阐明个体水平反应与潜在分子代谢动态之间的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d933/6993748/92ac830a5f5d/peerj-08-8445-g001.jpg

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