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A stoichiometric perspective of the effect of herbivore dung on ecosystem functioning

机译:食草动物粪便对生态系统功能的影响的化学计量观点

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Ungulate herbivores play a prominent role in maintaining the tree–grass balance in African savannas. Their top‐down role through selective feeding on either trees or grasses is well studied, but their bottom‐up role through deposition of nutrients in dung and urine has been overlooked. Here, we propose a novel concept of savanna ecosystem functioning in which the balance between trees and grasses is maintained through stoichiometric differences in dung of herbivores that feed on them. We describe a framework in which N 2 ‐fixing trees and grasses, as well as ungulate browsing and grazing herbivores, occupy opposite positions in an interconnected cycle of processes. The framework makes the testable assumption that the differences in dung N:P ratio among browsers and grazers are large enough to influence competitive interactions between N 2 ‐fixing trees and grasses. Other key elements of our concept are supported with field data from a Kenyan savanna.
机译:松散的食草动物在维持非洲大草原的草木平衡方面发挥着重要作用。通过选择性饲喂树木或草类而自上而下的作用已得到很好的研究,但由于粪便和尿液中养分的沉积而自下而上的作用却被忽略了。在这里,我们提出了一种稀树草原生态系统功能的新概念,其中通过以草食动物为食的草食动物粪便中的化学计量差异来维持树木与草之间的平衡。我们描述了一个框架,其中固定N 2的树和草以及有蹄类动物的浏览和放牧食草动物在相互联系的过程循环中占据相反的位置。该框架做出了可检验的假设,即浏览器和放牧者之间粪便N:P比率的差异大到足以影响固定N 2的树木和草之间的竞争性相互作用。肯尼亚大草原的实地数据支持了我们概念的其他关键要素。

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