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首页> 外文期刊>Oecologia >Ecosystem engineering affects ecosystem functioning in high-Andean landscapes.
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Ecosystem engineering affects ecosystem functioning in high-Andean landscapes.

机译:生态系统工程影响高安第斯山脉景观中的生态系统功能。

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摘要

Ecosystem engineers are organisms that change the distribution of materials and energy in the abiotic environment, usually creating and maintaining new habitat patches in the landscape. Such changes in habitat conditions have been widely documented to affect the distributions and performances of other species but up to now no studies have addressed how such effects can impact the biotically driven physicochemical processes associated with these landscapes, or ecosystem functions. Based on the widely accepted positive relationship between species diversity and ecosystem functions, we propose that the effects of ecosystem engineers on other species could have an impact on ecosystem functions via two mutually inclusive mechanisms: (1) by adding new species into landscapes, hence increasing species diversity; and (2) by improving the performances of species already present in the landscape. To test these hypotheses, we focused on the effects of a high-Andean ecosystem engineer, the cushion plant Azorella monantha, by comparing the accumulation of plant biomass and nitrogen fixed in plant tissues as species richness increases in landscapes with and without the engineer species. Our results show that both ecosystem functions increased with species richness in both landscape types, but landscapes including A. monantha cushions reached higher outcomes of plant biomass and nitrogen fixed in plant tissues than landscapes without cushions. Moreover, our results indicate that such positive effects on ecosystem functions could be mediated by the two mechanisms proposed above. Then, given the conspicuousness of ecosystem engineering in nature and its strong influence on species diversity, and given the well-known relationship between species diversity and ecosystem function, we suggest that the application of the conceptual framework proposed herein to other ecosystems would help to advance our understanding of the forces driving ecosystem functioning.
机译:生态系统工程师是会改变非生物环境中物质和能量分布的生物,通常会在景观中创建和维护新的栖息地。栖息地条件的这种变化已被广泛记录下来,以影响其他物种的分布和性能,但是到目前为止,还没有研究探讨这种影响如何影响与这些景观或生态系统功能相关的由生物驱动的理化过程。基于物种多样性与生态系统功能之间广为接受的积极关系,我们建议生态系统工程师对其他物种的影响可能通过两种相互包含的机制对生态系统功能产生影响:(1)通过在景观中添加新物种,从而增加物种多样性; (2)通过改善景观中已经存在的物种的性能。为了检验这些假设,我们比较了高安第斯山脉生态系统工程师垫层植物Azorella monantha的影响,通过比较在有和没有工程师物种的景观中物种丰富度的增加,植物生物量和固氮在植物组织中的积累。我们的结果表明,在两种景观类型中,两种生态系统的功能都随着物种的丰富而增加,但是与无垫层的景观相比,包括A. monantha垫层的景观可获得更高的植物生物量和固定在植物组织中的氮含量。此外,我们的结果表明,上述对生态系统功能的积极影响可能由上述两种机制介导。然后,鉴于自然界中生态系统工程的显着性及其对物种多样性的强烈影响,并且鉴于物种多样性与生态系统功能之间的众所周知的关系,我们建议将本文中提出的概念框架应用于其他生态系统将有助于推进我们对推动生态系统功能的因素的理解。

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