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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Altering species interactions outweighs the effects of experimental warming in structuring a rocky shore community
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Altering species interactions outweighs the effects of experimental warming in structuring a rocky shore community

机译:在构造多石的海岸社区中,改变物种之间的相互作用比实验变暖的影响更为重要

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摘要

The strength and direction of interspecific interactions governing communities is expected to change with increasing global temperatures. However, in many ecosystems it remains unclear which species interactions are most likely to be altered under increasing thermal stress and what impacts, if any, such altered interactions will have on community structure. We investigated the interactive effects of increased temperature and altered species interactions on the structure of a rocky intertidal community by deploying black and white plates in areas with or without the dominant grazer, the limpet Cellana tramoserica. Plates effectively manipulated substratum temperature, whilst anti-fouling paint effectively manipulated the strength of algal-herbivore interactions. Plates without C. tramoserica quickly developed and maintained abundant macroalgal assemblages irrespective of thermal stress. By contrast, the abundance of barnacles remained relatively low and did not differ across thermal treatments, although they were slightly more abundant in plots where C. tramoserica had been excluded. These results support recent findings that altered species interactions are anticipated to have greater effects on community structure than the direct impacts of warming, challenging the view community structure under warming climatic conditions can be predicted from individual responses of populations to increasing thermal stress. Based on these and other recent findings we therefore advocate for greater inclusion of biotic interactions into climate change models that aim to predict the state of future ecological communities.
机译:预计随着全球温度的升高,统治社区的种间相互作用的强度和方向将发生变化。然而,在许多生态系统中,尚不清楚在不断增加的热应力下最有可能改变哪些物种相互作用,以及这种改变后的相互作用将对群落结构产生何种影响(如果有的话)。我们通过在有或没有显性掠食者(虫Cellana tramoserica)的区域部署黑白板,研究了温度升高和物种相互作用对岩石潮间带群落结构的相互作用的影响。板有效地控制了基质温度,而防污涂料则有效地控制了藻-草食动物相互作用的强度。不论热应力如何,无角果弯曲杆菌的平板都能快速发育并保持大量的大型藻类组合。相比之下,藤壶的丰度仍然相对较低,并且在热处理之间没有差异,尽管在排除了弯孢梭菌的地块中藤壶的数量略多。这些结果支持了最近的发现,即与变暖的直接影响相比,预计物种相互作用的变化对群落结构的影响更大,可以根据人口对热应力不断增加的反应来预测变暖气候条件下的群落结构挑战。因此,基于这些和其他近期发现,我们主张将生物相互作用进一步纳入旨在预测未来生态群落状况的气候变化模型中。

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