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水生生物中非生物因素(特别是盐度)对生理氧化应激和抗氧化状态的调节。

Modulation of physiological oxidative stress and antioxidant status by abiotic factors especially salinity in aquatic organisms.

机构信息

Redox Regulation Laboratory, Department of Zoology, College of Basic Science and Humanities, Odisha University of Agriculture and Technology, Bhubaneswar-751003, India.

Department of Biotechnology, College of Basic Science and Humanities, Odisha University of Agriculture and Technology, Bhubaneswar-751003, India.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2021 Mar;241:108971. doi: 10.1016/j.cbpc.2020.108971. Epub 2021 Jan 6.

Abstract

Exposure to a variety of environmental factors such as temperature, pH, oxygen and salinity may influence the oxidative status in aquatic organisms. The present review article focuses on the modulation of oxidative stress with reference to the generation of reactive oxygen species (ROS) in aquatic animals from different phyla. The focus of the review article is to explore the plausible mechanisms of physiological changes occurring in aquatic animals due to altered salinity in terms of oxidative stress. Apart from the seasonal variations in salinity, global warming and anthropogenic activities have also been found to influence oxidative health status of aquatic organisms. These effects are discussed with an objective to develop precautionary measures to protect the diversity of aquatic species with sustainable conservation. Comparative analyses among different aquatic species suggest that salinity alone or in combination with other abiotic factors are intricately associated with modulation in oxidative stress in a species-specific manner in aquatic animals. Osmoregulation under salinity stress in relation to energy demand and supply are also discussed. The literature survey of >50 years (1960-2020) indicates that oxidative stress status and comparative analysis of redox modulation have evolved from the analysis of various biotic and/or abiotic factors to the study of cellular signalling pathways in these aquatic organisms.

摘要

暴露于温度、pH 值、氧气和盐度等多种环境因素可能会影响水生生物的氧化状态。本综述文章重点关注氧化应激的调节,以及不同门水生动物中活性氧 (ROS) 的产生。本文的重点是探讨由于盐度变化而导致水生动物发生生理变化的可能机制,以及氧化应激。除了盐度的季节性变化外,全球变暖以及人为活动也被发现会影响水生生物的氧化健康状况。本文讨论了这些影响,旨在制定预防措施,以保护水生物种的多样性,实现可持续保护。对不同水生物种的比较分析表明,盐度单独或与其他非生物因素一起,以物种特异性的方式与水生动物的氧化应激调节密切相关。还讨论了与能量需求和供应有关的盐度应激下的渗透压调节。对 50 多年(1960-2020 年)文献的调查表明,氧化应激状态和氧化还原调节的比较分析已经从对各种生物和/或非生物因素的分析演变为对这些水生生物细胞信号通路的研究。

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