牡蛎
代谢组
太平洋牡蛎
生物
蛋白质组
代谢组学
地幔(地质学)
牡蛎
蛋白质组学
肌球蛋白
生物化学
细胞生物学
生物信息学
渔业
古生物学
基因
作者
Wei Lei,Qing Wang,Xuanxuan Ning,Changkao Mu,Chunlin Wang,Ruiwen Cao,Huifeng Wu,Ming Cong,Fei Li,Chenglong Ji,Jianmin Zhao
标识
DOI:10.1016/j.cbd.2014.12.001
摘要
Ocean acidification (OA) has been found to affect an array of normal physiological processes in mollusks, especially posing a significant threat to the fabrication process of mollusk shell. In the current study, the impact of exposure to elevated pCO2 condition was investigated in mantle tissue of Crassostrea gigas by an integrated metabolomic and proteomic approach. Analysis of metabolome and proteome revealed that elevated pCO2 could affect energy metabolism in oyster C. gigas, marked by differentially altered ATP, succinate, MDH, PEPCK and ALDH levels. Moreover, the up-regulated calponin-2, tropomyosins and myosin light chains indicated that elevated pCO2 probably caused disturbances in cytoskeleton structure in mantle tissue of oyster C. gigas. This work demonstrated that a combination of proteomics and metabolomics could provide important insights into the effects of OA at molecular levels.
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