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在一种基础海洋大型藻类中,对全球变化驱动因素的敏感性可能呈正相关或负相关。

Sensitivities to global change drivers may correlate positively or negatively in a foundational marine macroalga.

机构信息

GEOMAR Helmholtz Centre for Ocean Research Kiel, Department of Marine Ecology, Duesternbrooker Weg 20, D-24105, Kiel, Germany.

University of Rostock, Institute of Biological Sciences, Applied Ecology and Phycology, Albert-Einstein-Strasse 3, D-18059, Rostock, Germany.

出版信息

Sci Rep. 2019 Oct 10;9(1):14653. doi: 10.1038/s41598-019-51099-8.

Abstract

Ecological impact of global change is generated by multiple synchronous or asynchronous drivers which interact with each other and with intraspecific variability of sensitivities. In three near-natural experiments, we explored response correlations of full-sibling germling families of the seaweed Fucus vesiculosus towards four global change drivers: elevated CO (ocean acidification, OA), ocean warming (OW), combined OA and warming (OAW), nutrient enrichment and hypoxic upwelling. Among families, performance responses to OA and OW as well as to OAW and nutrient enrichment correlated positively whereas performance responses to OAW and hypoxia anti-correlated. This indicates (i) that families robust to one of the three drivers (OA, OW, nutrients) will also not suffer from the two other shifts, and vice versa and (ii) families benefitting from OAW will more easily succumb to hypoxia. Our results may imply that selection under either OA, OW or eutrophication would enhance performance under the other two drivers but simultaneously render the population more susceptible to hypoxia. We conclude that intraspecific response correlations have a high potential to boost or hinder adaptation to multifactorial global change scenarios.

摘要

全球变化的生态影响是由多个同步或异步的驱动因素产生的,这些驱动因素相互作用,并与种内敏感性的变异相互作用。在三个近自然实验中,我们探索了海藻泡叶藻全同胞幼体家族对四种全球变化驱动因素的响应相关性:升高的 CO(海洋酸化,OA)、海洋变暖(OW)、OA 和变暖的组合(OAW)、营养富集和缺氧上升流。在家族间,对 OA 和 OW 的表现响应以及对 OAW 和营养富集的表现响应呈正相关,而对 OAW 和缺氧的表现响应呈负相关。这表明(i)对三个驱动因素之一(OA、OW、营养物质)具有抗性的家族也不会受到另外两个变化的影响,反之亦然,并且(ii)受益于 OAW 的家族更容易受到缺氧的影响。我们的研究结果可能表明,在 OA、OW 或富营养化条件下的选择将增强对其他两个驱动因素的表现,但同时使种群更容易受到缺氧的影响。我们得出结论,种内响应相关性具有很大的潜力,可以促进或阻碍对多因素全球变化情景的适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35fc/6787226/0eceb3db258d/41598_2019_51099_Fig1_HTML.jpg

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