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环境压力因素、复杂相互作用与海洋底栖生物群落的响应。

Environmental stressors, complex interactions and marine benthic communities' responses.

机构信息

Québec-Océan, Department of Biology, Université Laval, 1045, av. de la Médecine, Québec, G1V 0A6, Canada.

Maurice Lamontagne Institute, Fisheries and Oceans Canada, 850 route de la Mer, Mont-Joli, G5H 3Z4, Canada.

出版信息

Sci Rep. 2021 Feb 18;11(1):4194. doi: 10.1038/s41598-021-83533-1.

Abstract

The increasing number and diversity of anthropogenic stressors in marine habitats have multiple negative impacts on biological systems, biodiversity and ecosystem functions. Methods to assess cumulative effects include experimental manipulations, which may identify non-linear responses (i.e. synergies, antagonisms). However, experiments designed to test these ideas are uncommon, generally focusing on single biological responses. We conducted a manipulative experiment to investigate the isolated and combined effects of warming (+ 6 °C), salinity variation (freshwater pulses or presses), and nutrient enrichment (natural or enriched) following one and three month's exposure, on responses measured at multiple levels of biological complexity in a simple bivalve assemblage. More specifically, we determined effects on bivalve mortality, growth, shell mineralization, and energy content, as well as microphytobenthos biomass. Salinity variation and nutrient enrichment, individually and combined, caused strong impacts on some of the measured variables and their effect varied through time. In contrast, warming had no effect. Our work highlights the prevalence of antagonistic interactions, the importance of examining effects of single and multiple stressors through time, and of considering multiple responses to understand the complexity behind stressor interactions.

摘要

人为压力源在海洋生境中的数量和多样性不断增加,对生物系统、生物多样性和生态系统功能造成了多种负面影响。评估累积效应的方法包括实验操作,这些操作可以识别非线性响应(即协同作用、拮抗作用)。然而,旨在检验这些想法的实验并不常见,通常侧重于单一的生物响应。我们进行了一项操纵实验,以研究在一个简单的双壳类动物组合中,在一个月和三个月的暴露后,单独和联合的变暖(+6°C)、盐度变化(淡水脉冲或压力)和营养富集(自然或富集)对多个生物复杂性水平的响应的影响。更具体地说,我们确定了对双壳类动物死亡率、生长、壳矿化和能量含量以及微型底栖生物生物量的影响。盐度变化和营养富集单独和联合作用对一些测量变量产生了强烈影响,其影响随时间而变化。相比之下,变暖没有影响。我们的工作强调了拮抗相互作用的普遍性,强调了通过时间检查单一和多种胁迫因素的影响以及考虑多种响应以理解胁迫相互作用背后的复杂性的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bac/7892560/b01f0c1a1e88/41598_2021_83533_Fig1_HTML.jpg

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