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Ungulate impact on vegetation in a two-level trophic system

机译:在两级营养体系中消除对植被的影响

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A central challenge in ecology is to predict long-term consequences of high herbivore densities on their resources. Here we describe vegetation changes during 26 years following the reintroduction of a wild Svalbard reindeer (Rangifer tarandus platyrhynchus) population that was not subject to predation. The population irrupted, crashed and subsequently fluctuated around lower densities throughout the study period. The irruption generated strong trophic top-down effects on the vegetation including a decline in the cover of mosses, vascular plants and lichens. Previously dominant fruticose lichens, which are preferred forage during winter, were almost depleted and showed no response to the relief in grazing pressure. This in turn indirectly affected rates of recovery in other plant groups subsequent to the crash. Mosses recovered completely and even exceeded pre-reindeer levels 6 years after the population peak. Recovery of vascular plants was more delayed and only partial due to a longterm suppression of common species that are important as reindeer forage. Thus, a suppression of major forage species and a sustained reduction in herbivore densities suggest that overgrazing occurred during the population irruption, possibly inducing a long-term decline in reindeer carrying capacity K. This supports the "exploitation ecosystem hypothesis" predicting top-down control of vegetation by herbivores when predators are absent.
机译:生态学的一个主要挑战是预测高食草动物密度对其资源的长期影响。在这里,我们描述了不受捕食的野生斯瓦尔巴德驯鹿(Rangifer tarandus platyrhynchus)种群的重新引入之后的26年间的植被变化。在整个研究期间,人口在较低的密度下爆发,崩溃并随后波动。喷发对植被产生了强烈的营养自上而下的影响,包括苔藓,维管植物和地衣的覆盖率下降。以前占优势的果糖地衣,在冬季是首选的牧草,几乎枯竭,对放牧压力的减轻没有反应。反过来,这间接影响了事故发生后其他工厂组的恢复速度。种群高峰后6年,苔藓完全恢复,甚至超过了驯鹿前的水平。维管植物的恢复更加延迟,并且仅部分恢复,这是由于长期抑制作为驯鹿饲料重要的常见物种。因此,对主要牧草种类的抑制和草食动物密度的持续降低表明,种群入侵期间过度放牧,可能导致驯鹿承载力K长期下降。这支持“自上而下控制”的“开发生态系统假说”没有掠食者时草食动物的植被

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