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未来变暖和酸化对褐藻墨角藻(褐藻门)防污和抗食草特性的影响。

Future warming and acidification effects on anti-fouling and anti-herbivory traits of the brown alga Fucus vesiculosus (Phaeophyceae).

作者信息

Raddatz Stefanie, Guy-Haim Tamar, Rilov Gil, Wahl Martin

机构信息

Department of Benthic Ecology, GEOMAR, Helmholtz Centre for Ocean Research Kiel, Düsternbrooker Weg 20, 24105, Kiel, Germany.

Department of Marine Biology, Israel Oceanographic and Limnological Research, National Institute of Oceanography, P.O. Box 8030, Haifa, 31080, Israel.

出版信息

J Phycol. 2017 Feb;53(1):44-58. doi: 10.1111/jpy.12473. Epub 2016 Nov 1.

Abstract

Human-induced ocean warming and acidification have received increasing attention over the past decade and are considered to have substantial consequences for a broad range of marine species and their interactions. Understanding how these interactions shift in response to climate change is particularly important with regard to foundation species, such as the brown alga Fucus vesiculosus. This macroalga represents the dominant habitat former on coastal rocky substrata of the Baltic Sea, fulfilling functions essential for the entire benthic community. Its ability to withstand extensive fouling and herbivory regulates the associated community and ecosystem dynamics. This study tested the interactive effects of future warming, acidification, and seasonality on the interactions of a marine macroalga with potential foulers and consumers. F. vesiculosus rockweeds were exposed to different combinations of conditions predicted regionally for the year 2100 (+∆5°C, +∆700 μatm CO ) using multifactorial long-term experiments in novel outdoor benthic mesocosms ("Benthocosms") over 9-12-week periods in four seasons. Possible shifts in the macroalgal susceptibility to fouling and consumption were tested using consecutive bioassays. Algal susceptibility to fouling and grazing varied substantially among seasons and between treatments. In all seasons, warming predominantly affected anti-fouling and anti-herbivory interactions while acidification had a subtle nonsignificant influence. Interestingly, anti-microfouling activity was highest during winter under warming, while anti-macrofouling and anti-herbivory activities were highest in the summer under warming. These contrasting findings indicate that seasonal changes in anti-fouling and anti-herbivory traits may interact with ocean warming in altering F. vesiculosus community composition in the future.

摘要

在过去十年中,人为导致的海洋变暖和酸化受到了越来越多的关注,并被认为会对广泛的海洋物种及其相互作用产生重大影响。对于诸如褐藻墨角藻(Fucus vesiculosus)这样的基础物种而言,了解这些相互作用如何随气候变化而变化尤为重要。这种大型藻类是波罗的海沿岸岩石基质上的主要栖息地形成者,履行着对整个底栖生物群落至关重要的功能。它抵御大量附着生物和食草动物的能力调节着相关的群落和生态系统动态。本研究测试了未来变暖和酸化以及季节性对一种海洋大型藻类与潜在附着生物和消费者之间相互作用的综合影响。利用多因素长期实验,在新型户外底栖中宇宙(“底栖生物宇宙”)中,将墨角藻岩藻在四个季节里暴露于预测的2100年区域条件的不同组合下(+∆5°C,+∆700 μatm CO₂),为期9至12周。通过连续的生物测定来测试大型藻类对附着和被消费的易感性可能发生的变化。藻类对附着和啃食的易感性在不同季节和不同处理之间有很大差异。在所有季节中,变暖主要影响防污和防食草动物的相互作用,而酸化的影响微弱且不显著。有趣的是,在变暖条件下,冬季的抗微生物附着活性最高,而在变暖条件下,夏季的抗大型附着生物和抗食草动物活性最高。这些截然不同的结果表明,防污和防食草动物特性的季节性变化可能与海洋变暖相互作用,从而在未来改变墨角藻的群落组成。

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