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海洋酸化对桡足类动物的影响。

Effects of ocean acidification on copepods.

作者信息

Wang Minghua, Jeong Chang-Bum, Lee Young Hwan, Lee Jae-Seong

机构信息

Key Laboratory of the Coastal and Wetland Ecosystems (Xiamen University), Ministry of Education, Xiamen, 361102, China.

Department of Biological Science, College of Science, Sungkyunkwan University, Suwon 16419, South Korea.

出版信息

Aquat Toxicol. 2018 Mar;196:17-24. doi: 10.1016/j.aquatox.2018.01.004. Epub 2018 Jan 5.

Abstract

Ocean acidification (OA) leads to significant changes in seawater carbon chemistry, broadly affects marine organisms, and considered as a global threat to the fitness of marine ecosystems. Due to the crucial role of copepods in marine food webs of transferring energy from primary producers to higher trophic levels, numerous studies have been conducted to examine the impacts of OA on biological traits of copepods such as growth and reproduction. Under OA stress, the copepods demonstrated species-specific and stage-dependent responses. Notably, different populations of the same copepod species demonstrated different sensitivities to the increased pCO. In copepods, the deleterious effects of OA are also reinforced by other naturally occurring co-stressors (e.g., thermal stress, food deprivation, and metal pollution). Given that most OA stress studies have focused on the effects of short-term exposure (shorter than a single generation), experiments using adults might have underestimated the damaging effects of OA and the long-term multigenerational exposure to multiple stressors (e.g., increased pCO and food shortage) will be required. Particularly, omics-based technologies (e.g., genomics, proteomics, and metabolomics) will be helpful to better understand the underlying processes behind biological responses (e.g., survival, development, and offspring production) at the mechanistic level which will improve our predictions of the responses of copepods to climate change stressors including OA.

摘要

海洋酸化(OA)导致海水碳化学发生显著变化,广泛影响海洋生物,并被视为对海洋生态系统健康的全球威胁。由于桡足类在海洋食物网中具有将能量从初级生产者传递到更高营养级的关键作用,因此已经开展了大量研究来考察海洋酸化对桡足类生物特征(如生长和繁殖)的影响。在海洋酸化胁迫下,桡足类表现出物种特异性和阶段依赖性反应。值得注意的是,同一桡足类物种的不同种群对升高的pCO₂表现出不同的敏感性。在桡足类中,海洋酸化的有害影响还会因其他自然存在的共同胁迫因素(如热胁迫、食物匮乏和金属污染)而加剧。鉴于大多数海洋酸化胁迫研究都集中在短期暴露(短于一个世代)的影响上,使用成体进行的实验可能低估了海洋酸化的破坏作用,因此需要进行长期多代暴露于多种胁迫因素(如升高的pCO₂和食物短缺)的实验。特别是,基于组学的技术(如基因组学、蛋白质组学和代谢组学)将有助于在机制层面更好地理解生物反应(如生存、发育和后代产出)背后的潜在过程,这将提高我们对桡足类对包括海洋酸化在内的气候变化胁迫因素反应的预测能力。

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