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Bottom-up effects of host-plant species diversity and top-down effects of ants interactively increase plant performance

机译:宿主植物物种多样性的自下而上效应和蚂蚁的自上而下效应以交互方式提高植物性能

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摘要

While plant diversity is well known to increase primary productivity, whether these bottom-up effects are enhanced by reciprocal top-down effects from the third trophic level is unknown. We studied whether pine tree species diversity, aphid-tending ants and their interaction determined plant performance and arthropod community structure. Plant diversity had a positive effect on aphids, but only in the presence of mutualistic ants, leading to a threefold greater number of both groups in the tri-specific cultures than in monocultures. Plant diversity increased ant abundance not only by increasing aphid number, but also by increasing ant recruitment per aphid. The positive effect of diversity on ants in turn cascaded down to increase plant performance; diversity increased plant growth (but not biomass), and this effect was stronger in the presence of ants. Consequently, bottom-up effects of diversity within the same genus and guild of plants, and top-down effects from the third trophic level (predatory ants), interactively increased plant performance. © 2012 The Royal Society.
机译:虽然众所周知,植物多样性会提高初级生产力,但尚不清楚这些自下而上的效应是否会由于第三次营养级的逆向自上而下的效应而增强。我们研究了松树树种多样性,蚜虫趋向性蚂蚁及其相互作用是否决定了植物的生长性能和节肢动物的群落结构。植物多样性对蚜虫有积极的影响,但仅在存在共有蚂蚁的情况下,导致三特异性培养中两组的数量比单培养中的数量高三倍。植物多样性不仅通过增加蚜虫数量来增加蚂蚁丰度,而且还通过增加每个蚜虫的蚂蚁募集来增加蚂蚁丰度。多样性对蚂蚁的积极影响反过来又降低了,以提高植物的生长性能;多样性增加了植物的生长(但没有增加生物量),并且在有蚂蚁的情况下这种作用更强。因此,同一属和行会的多样性的自下而上的影响,以及来自第三营养级(捕食性蚂蚁)的自上而下的影响,交互地提高了植物的生长性能。 ©2012皇家学会。

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