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The influence of salinity on toxicological effects of arsenic in digestive gland of clam Ruditapes philippinarum using metabolomics

机译:用代谢组学研究盐度对菲律宾蛤仔消化腺中砷的毒理作用的影响

摘要

Ruditapes philippinarum, a clam that thrives in intertidal zones of various salinities, is a useful biomonitor to marine contaminants. We investigated the influence of dilution to 75% and 50% of normal seawater salinity (31.1) on the responses of the digestive gland of R. philippinarum to arsenic exposure (20 mu g/L), using nuclear magnetic resonance (NMR)-based metabolomics. After acute arsenic exposure for 48 h, salinity-dependent differential metabolic responses were detected. In normal seawater, arsenic exposure increased the concentrations of branched-chain amino acids, and of threonine, proline, phosphocholine and adenosine, and it decreased the levels of alanine, hypotaurine, glucose, glycogen and ATP in the digestive glands. Differential changes in metabolic biomarkers observed at lower salinity (similar to 23.3) included elevation of succinate, taurine and ATP, and depletion of branched-chain amino acids, threonine and glutamine. Unique effects of arsenic at the lowest salinity (similar to 15.6) included down-regulation of glutamate, succinate and ADP, and up-regulation of phosphocholine. We conclude that salinity influences the metabolic responses of this clam to arsenic.
机译:菲律宾蛤仔(Ruditapes philippinarum)在各种盐度的潮间带壮成长,是一种有用的生物污染物监测海洋污染物的生物。我们使用基于核磁共振(NMR)的方法,研究了稀释至正常海水盐度(31.1)的75%和50%对菲律宾蛤(R. philippinarum)消化腺对砷暴露(20μg / L)的反应的影响。代谢组学。急性砷暴露48小时后,检测到盐度依赖性差异代谢反应。在正常的海水中,砷暴露会增加分支链氨基酸以及苏氨酸,脯氨酸,磷酸胆碱和腺苷的浓度,并会降低消化腺中丙氨酸,次牛磺酸,葡萄糖,糖原和ATP的含量。在较低盐度(类似于23.3)下观察到的代谢生物标志物的差异性变化包括琥珀酸,牛磺酸和ATP的升高,以及支链氨基酸,苏氨酸和谷氨酰胺的消耗。砷在最低盐度(类似于15.6)下的独特作用包括谷氨酸,琥珀酸盐和ADP的下调,以及磷酸胆碱的上调。我们得出结论,盐度影响了这种蛤对砷的代谢反应。

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