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三疣梭子蟹暴露于低盐度环境下的代谢表型调控策略

Strategy of metabolic phenotype modulation in Portunus trituberculatus exposed to low salinity.

作者信息

Ye Yangfang, An Yanpeng, Li Ronghua, Mu Changkao, Wang Chunlin

机构信息

School of Marine Sciences, Ningbo University , Ningbo 315211, China.

出版信息

J Agric Food Chem. 2014 Apr 16;62(15):3496-503. doi: 10.1021/jf405668a. Epub 2014 Apr 1.

Abstract

Extreme low salinity influences normal crab growth, morphogenesis, and production. Some individuals of swimming crab Portunus trituberculatus have, however, an inherent ability to adapt to such a salinity fluctuation. This study investigated the dynamic metabolite alterations of two P. trituberculatus strains, namely, a wild one and a screened (low-salinity tolerant) one in response to low-salinity challenge by combined use of NMR spectroscopy and high-throughput data analysis. The dominant metabolites in crab muscle were found to comprise amino acids, sugars, carboxylic acids, betaine, trimethylamine-N-oxide, 2-pyridinemethanol, trigonelline, and nucleotides. These results further showed that the strategy of metabolic modulation of P. trituberculatus after low-salinity stimulus includes osmotic rebalancing, enhanced gluconeogenesis from amino acids, and energy accumulation. These metabolic adaptations were manifested in the accumulation of trimethylamine-N-oxide, ATP, 2-pyridinemethanol, and trigonelline and in the depletion of the amino acid pool as well as in the fluctuation of inosine levels. This lends support to the fact that the low-salinity training accelerates the responses of crabs to low-salinity stress. These findings provide a comprehensive insight into the mechanisms of metabolic modulation in P. trituberculatus in response to low salinity. This work highlights the approach of NMR-based metabonomics in conjunction with multivariate data analysis and univariate data analysis in understanding the strategy of metabolic phenotype modulation against stressors.

摘要

极低盐度会影响螃蟹的正常生长、形态发生和产量。然而,三疣梭子蟹的一些个体具有适应这种盐度波动的内在能力。本研究通过结合使用核磁共振光谱和高通量数据分析,调查了两种三疣梭子蟹菌株(即野生菌株和筛选出的耐低盐菌株)在应对低盐度挑战时的动态代谢物变化。发现螃蟹肌肉中的主要代谢物包括氨基酸、糖类、羧酸、甜菜碱、氧化三甲胺、2-吡啶甲醇、胡芦巴碱和核苷酸。这些结果进一步表明,三疣梭子蟹在低盐度刺激后的代谢调节策略包括渗透平衡、增强氨基酸的糖异生作用和能量积累。这些代谢适应表现为氧化三甲胺、ATP、2-吡啶甲醇和胡芦巴碱的积累,以及氨基酸池的消耗和肌苷水平的波动。这支持了低盐度训练加速螃蟹对低盐度应激反应的事实。这些发现全面深入地了解了三疣梭子蟹对低盐度的代谢调节机制。这项工作突出了基于核磁共振的代谢组学方法与多变量数据分析和单变量数据分析相结合,在理解针对应激源的代谢表型调节策略方面的作用。

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