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Gene expression patterns and stress response in marine copepods

机译:海洋co足类动物的基因表达模式和应激反应

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Aquatic organisms are constantly exposed to both physical (e.g. temperature and salinity variations) and chemical (e.g. endocrine disruptor chemicals, heavy metals, hydrocarbons, diatom toxins, and other toxicants) stressors which they react to by activating a series of defense mechanisms. This paper reviews the literature on the defense systems, including detoxification enzymes and proteins (e.g. glutathione S-transferases, heat shock proteins, superoxide dismutase and catalase), studied in copepods at the molecular level. The data indicate high inter- and intra-species variability in copepod response, depending on the type of stressor tested, the concentration and exposure time, and the enzyme isoform studied. Ongoing -omics approaches will allow the identification of new genes which will give a more comprehensive overview of how copepods respond to specific stressors in laboratory and/or field conditions and the effects of these responses on higher trophic levels.
机译:水生生物不断受到物理(例如温度和盐度变化)和化学(例如内分泌干扰物化学物质,重金属,碳氢化合物,硅藻毒素和其他有毒物质)的胁迫,它们通过激活一系列防御机制对其产生反应。本文综述了在co足类动物分子水平上研究的有关防御系统的文献,包括排毒酶和蛋白质(例如谷胱甘肽S转移酶,热休克蛋白,超氧化物歧化酶和过氧化氢酶)。数据表明co足类反应的种间和种内差异很大,这取决于所测试的应激源类型,浓度和暴露时间以及所研究的酶同工型。正在进行的组学方法将允许鉴定新基因,这将提供有关co足类动物如何在实验室和/或田间条件下对特定应激源的反应以及这些反应对更高营养水平的影响的更全面概述。

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