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Detritivores ameliorate the enhancing effect of plant-based trophic cascades on nitrogen cycling in an old-field system

机译:DetRitivores改善了植物的营养级联对旧场系统中氮循环的增强作用

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摘要

Nitrogen (N) cycling is a fundamental process central to numerous ecosystem functions and services. Accumulating evidence suggests that species within detritus-and plant-based food chains can play an instrumental role in regulating this process. However, the effects of each food chain are usually examined in isolation of each other, so it remains uncertain if their effects are equally important or if one chain exerts predominant control. We experimentally manipulated the species composition of detritus-based (isopods and spiders) and plant-based (grasshoppers and spiders) food chains individually and in combination within mesocosms containing plants and microbes from an old-field ecosystem. We tested: (i) their relative impact on N cycling, and (ii) whether interactions between them moderated the influence of one group or the other. We found that spiders in plant-based food chains exerted the only positive effect on N cycling. Detritus-based food chains had no net effects on N cycling but, when combined with plant-based food chains, ameliorated the positive effects of plant-based species. Our results suggest that detritus-based food chains may ultimately limit rates of N cycling by eroding the enhancing effects of plant-based food chains when antagonistic interactions between detritus-and plant-based species exist.
机译:氮气(n)循环是众多生态系统功能和服务的基本流程。累积证据表明,德累斯特和工厂的食物链内的物种可以在规范这一过程方面发挥作用作用。然而,每种食物链的效果通常彼此分离检查,因此如果它们的效果同样重要或者如果一个链施加主要对照,则仍然不确定。我们通过单独和植物型(蚱蜢和蜘蛛)食物链进行实验地操作豆系基(异垫子和蜘蛛)食物链,并组合在含有旧场生态系统的植物和微生物中的植物和微生物中。我们测试了:(i)它们对N循环的相对影响,(ii)它们之间的相互作用是否适中了一个组或另一组的影响。我们发现植物的食物链中的蜘蛛施加了对N循环的唯一积极影响。基于Detritus的食物链对N循环没有净效应,但是,与植物的食物链相结合时,改善了植物基物种的积极作用。我们的研究结果表明,当存在滴灌和植物基物种之间的拮抗相互作用时,碎屑基食物链最终可能最终通过侵蚀植物的食物链的增强效果来限制N循环的速率。

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