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Insect mutualisms buffer warming effects on multiple trophic levels

机译:昆虫共生在多个营养水平上缓冲变暖效应

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Insect mutualisms can have disproportionately large impacts on local arthropod and plant communities and their responses to climatic change. The objective of this study was to determine if the presence of insect mutualisms affects host plant and herbivore responses to warming. Using open-top warming chambers at Harvard Forest, Massachusetts, USA, we manipulated temperature and presence of ants and Chaitophorus populicola aphids on Populus tremuloides host plants and monitored ant attendance and persistence of C. populicola, predator abundance, plant stress, and abundance of Myzus persicae, a pest aphid that colonized plants during the experiment. We found that, regardless of warming, C. populicola persistence was higher when tended by ants, and some ant species increased aphid persistence more than others. Warming had negligible direct but strong indirect effects on plant stress. Plant stress decreased with warming only when both ants and C. populicola aphids were present and engaged in mutualism. Plant stress was increased by warming-induced reductions in predator abundance and increases in M. persicae aphid abundance. Altogether, these findings suggest that insect mutualisms could buffer the effects of warming on specialist herbivores and plants, but when mutualisms are not intact, the direct effects of warming on predators and generalist herbivores yield strong indirect effects of warming on plants.
机译:昆虫共生对当地节肢动物和植物群落及其对气候变化的响应可能会产生不成比例的巨大影响。这项研究的目的是确定昆虫共生的存在是否会影响寄主植物和草食动物对变暖的反应。使用位于美国马萨诸塞州哈佛森林的开放式恒温箱,我们控制了杨树寄主植物上蚂蚁和Chaitophorus populicola蚜虫的温度和存在,并监测了C. populicola的蚂蚁出没率和持久性,捕食者的丰度,植物胁迫以及它们的丰度。桃蚜(Myzus persicae),一种在试验过程中定植于植物中的有害蚜虫。我们发现,不管变暖如何,当由蚂蚁照料时,C。populicola的持久性都较高,并且某些蚂蚁物种比其他物种更增加了蚜虫的持久性。变暖对植物胁迫的直接影响可忽略不计,但间接影响很大。仅当蚂蚁和C. populicola蚜虫同时存在并相互促进时,植物的胁迫才会随着变暖而降低。变暖导致的捕食者丰度降低和桃蚜分枝杆菌蚜虫的丰度增加使植物胁迫增加。总而言之,这些发现表明昆虫共生可以缓冲变暖对特殊食草动物和植物的影响,但是当共生关系不完整时,变暖对食肉动物和通才草食动物的直接影响会产生变暖对植物的强烈间接影响。

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