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枝角类对淡水盐化的种特异性敏感性:来自生活史和种群动态变化的证据。

Size-specific sensitivity of cladocerans to freshwater salinization: Evidences from the changes in life history and population dynamics.

机构信息

Jiangsu Key Laboratory for Biodiversity and Biotechnology, School of Biological Sciences, Nanjing Normal University, 1 Wenyuan Road, Nanjing, 210023, China.

Jiangsu Key Laboratory for Biodiversity and Biotechnology, School of Biological Sciences, Nanjing Normal University, 1 Wenyuan Road, Nanjing, 210023, China.

出版信息

Environ Pollut. 2022 Mar 1;296:118770. doi: 10.1016/j.envpol.2021.118770. Epub 2021 Dec 30.

Abstract

The salinization of the global freshwater system caused by various human activities and climate change has become a common problem threatening freshwater biodiversity and resources, which may affect a variety of species of cladocerans at individual and population levels. In order to comprehensively evaluate the impact of salinization on different-sized cladocerans at individual and population levels, we exposed two species of cladocerans with obvious body size difference, Daphnia magna and Moina macrocopa, to seven salinities (0, 0.02, 0.04, 0.06, 0.08, 0.10, 0.12 M), recorded individual life history traits and population growth dynamics, and used multiple mechanistic models to fit the data. At the individual level, the median effect concentration of survival time, total offspring per female, and number of broods of D. magna were significantly higher than those of M. macrocopa. At the population level, the decrease in carrying capacity of D. magna with increasing salinity was significantly less than that of M. macrocopa. At the same salinity treatment, the integrated biomarker response indexes value of M. macrocopa is higher than that of D. magna. Therefore, it was further inferred that the sensitivity of small-sized species M. macrocopa to salinity stress is significantly higher than that of big-sized species D. magna. Thus, freshwater salinization may result in the replacement of smaller salt-intolerant cladocerans with larger salt-tolerant cladocerans, which may have dramatic effects on freshwater communities and ecosystems. Additionally, the increase of salinity had a greater impact on the population level of D. magna and M. macrocopa than on the individual level, indicating that population level of cladocerans was more susceptible to salinity stress. Experiments only based on individuals may underestimate the ecologically related changes in populations and communities, thus understanding the impact of salinization on freshwater systems needs to consider multiple ecological levels.

摘要

全球淡水资源因人类活动和气候变化而发生的盐化,已成为威胁淡水生物多样性和资源的共同问题,这可能会影响到个体和种群水平的各种枝角类物种。为了全面评估盐化对个体和种群水平不同大小的枝角类的影响,我们将两种体型差异明显的枝角类,大型溞(Daphnia magna)和蒙古裸腹溞(Moina macrocopa)暴露于 7 种盐度(0、0.02、0.04、0.06、0.08、0.10 和 0.12 M)中,记录个体生活史特征和种群增长动态,并使用多个机制模型拟合数据。在个体水平上,大型溞的生存时间、每个雌性的总后代数和产卵次数的中值效应浓度明显高于蒙古裸腹溞。在种群水平上,大型溞的种群承载量随盐度增加而下降的幅度明显小于蒙古裸腹溞。在相同盐度处理下,蒙古裸腹溞的综合生物标志物反应指数值高于大型溞。因此,可以进一步推断,小体型物种蒙古裸腹溞对盐胁迫的敏感性明显高于大型物种大型溞。因此,淡水盐化可能导致较小的不耐盐枝角类被较大的耐盐枝角类取代,这可能对淡水群落和生态系统产生巨大影响。此外,盐度增加对大型溞和蒙古裸腹溞的种群水平的影响大于对个体水平的影响,这表明枝角类的种群水平更容易受到盐胁迫的影响。仅基于个体的实验可能会低估与种群和群落相关的生态变化,因此了解盐化对淡水系统的影响需要考虑多个生态水平。

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