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首页> 外文期刊>Global change biology >Seagrass ecosystem multifunctionality under the rise of a flagship marine megaherbivore
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Seagrass ecosystem multifunctionality under the rise of a flagship marine megaherbivore

机译:旗舰海洋巨型草食动物崛起下的海草生态系统多功能性

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Abstract Large grazers (megaherbivores) have a profound impact on ecosystem functioning. However, how ecosystem multifunctionality is affected by changes in megaherbivore populations remains poorly understood. Understanding the total impact on ecosystem multifunctionality requires an integrative ecosystem approach, which is especially challenging to obtain in marine systems. We assessed the effects of experimentally simulated grazing intensity scenarios on ecosystem functions and multifunctionality in a tropical Caribbean seagrass ecosystem. As a model, we selected a key marine megaherbivore, the green turtle, whose ecological role is rapidly unfolding in numerous foraging areas where populations are recovering through conservation after centuries of decline, with an increase in recorded overgrazing episodes. To quantify the effects, we employed a novel integrated index of seagrass ecosystem multifunctionality based upon multiple, well‐recognized measures of seagrass ecosystem functions that reflect ecosystem services. Experiments revealed that intermediate turtle grazing resulted in the highest rates of nutrient cycling and carbon storage, while sediment stabilization, decomposition rates, epifauna richness, and fish biomass are highest in the absence of turtle grazing. In contrast, intense grazing resulted in disproportionally large effects on ecosystem functions and a collapse of multifunctionality. These results imply that (i) the return of a megaherbivore can exert strong effects on coastal ecosystem functions and multifunctionality, (ii) conservation efforts that are skewed toward megaherbivores, but ignore their key drivers like predators or habitat, will likely result in overgrazing‐induced loss of multifunctionality, and (iii) the multifunctionality index shows great potential as a quantitative tool to assess ecosystem performance. Considerable and rapid alterations in megaherbivore abundance (both through extinction and conservation) cause an imbalance in ecosystem functioning and substantially alter or even compromise ecosystem services that help to negate global change effects. An integrative ecosystem approach in environmental management is urgently required to protect and enhance ecosystem multifunctionality.
机译:摘要 大型食草动物(巨型食草动物)对生态系统功能具有深远的影响。然而,巨型食草动物种群的变化如何影响生态系统的多功能性仍然知之甚少。了解对生态系统多功能性的总体影响需要一种综合生态系统方法,这在海洋系统中尤其具有挑战性。我们评估了实验模拟放牧强度情景对热带加勒比海草生态系统生态系统功能和多功能性的影响。作为模型,我们选择了一种重要的海洋巨型食草动物,绿海龟,其生态作用正在众多觅食区迅速展开,这些地区的种群在经历了几个世纪的下降后正在通过保护恢复,记录的过度放牧事件有所增加。为了量化这些影响,我们采用了一种新的海草生态系统多功能性综合指数,该指数基于反映生态系统服务的多种公认的海草生态系统功能测量。实验表明,在无海龟放牧的情况下,中度海龟放牧导致的养分循环率和碳储存率最高,而沉积物稳定率、分解率、表生动物丰富度和鱼类生物量最高。相反,密集放牧对生态系统功能的影响过大,多功能性崩溃。这些结果表明:(i)巨型食草动物的回归可以对沿海生态系统的功能和多功能性产生强烈影响,(ii)偏向于巨型食草动物的保护工作,但忽视了捕食者或栖息地等关键驱动因素,可能会导致过度放牧引起的多功能性丧失,以及(iii)多功能指数作为评估生态系统性能的定量工具显示出巨大的潜力。巨型食草动物丰度的大量快速变化(包括灭绝和保护)导致生态系统功能失衡,并大大改变甚至损害生态系统服务,从而有助于消除全球变化的影响。迫切需要在环境管理中采取综合生态系统方法,以保护和加强生态系统的多功能性。

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