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Metabolite and gene expression responses in juvenile flounder Paralichthys olivaceus exposed to reduced salinities

机译:盐度降低的少年比目鱼的代谢产物和基因表达反应

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摘要

Seawater salinity is one of the most important changeable environmental factors influencing the behavior, survival, growth and production of marine organisms. In this work, metabolite and gene expression profiles were used to elucidate the biological effects of reduced salinities in juvenile flounder Paralichthys olivaceus. Metabolic profiling indicated that both reduced salinities (23.3%o and 15.6%) enhanced proteolysis and disturbed osmotic regulation and energy metabolism in juvenile flounder P. olivaceus. Furthermore, the low salinity (15.6%o) enhanced anaerobic metabolism indicated by the elevated lactate in flounder tissue extracts. Gene expression profiles exhibited that reduced salinities could induce immune stress and oxidative stress and disturb energy metabolism in juvenile flounder P. olivaceus. In addition, reduced salinities might promote the growth and gonadal differentiation in juvenile flounder P. olivaceus. (C) 2017 Elsevier Ltd. All rights reserved.
机译:海水盐度是影响海洋生物的行为,生存,生长和生产的最重要的可变环境因素之一。在这项工作中,代谢物和基因表达谱被用来阐明盐度降低的少年比目鱼Paralichthys olivaceus的生物学效应。代谢谱分析表明,盐度降低(分别为23.3%和15.6%)都增强了青少年比目鱼(P. olivaceus)的蛋白水解作用,并破坏了渗透调节和能量代谢。此外,低盐度(15.6%)提高了厌氧代谢,这是比目鱼组织提取物中乳酸含量升高的结果。基因表达谱显示盐度降低可以诱导幼体比目鱼(P. olivaceus)的免疫应激和氧化应激并干扰能量代谢。此外,盐度降低可能会促进比目鱼(P. olivaceus)幼鱼的生长和性腺分化。 (C)2017 Elsevier Ltd.保留所有权利。

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