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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Microbial diversity, producer-decomposer interactions and ecosystem processes: a theoretical model.
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Microbial diversity, producer-decomposer interactions and ecosystem processes: a theoretical model.

机译:微生物多样性,生产者与分解者之间的相互作用以及生态系统过程:一种理论模型。

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Interactions between the diversity of primary producers and that of decomposers--the two key functional groups that form the basis of all ecosystems--might have major consequences on the functioning of depauperate ecosystems. I present a simple ecosystem model in which primary producers (plants) and decomposers (microbes) are linked through material cycling. The model considers a diversity of plant organic compounds and a diversity of microbial species. Nutrient recycling efficiency from organic compounds to decomposers is then the key parameter that controls ecosystem processes (primary productivity, secondary productivity, producer biomass and decomposer biomass). The model predicts that microbial diversity has a positive effect on nutrient recycling efficiency and ecosystem processes through either greater intensity of microbial exploitation of organic compounds or functional niche complementarity, much like in plants. Microbial niche breadth and overlap should not affect ecosystem processes unless they increase the number of organic compounds that are decomposed. In contrast, the model predicts that plant organic compound diversity can only have a negative effect or, at best, no effect on ecosystem processes, at least in a constant environment. This creates a tension between the effects of plant diversity and microbial diversity on ecosystem functioning, which may explain some recent experimental results.
机译:初级生产者多样性与分解者多样性之间的相互作用(这是构成所有生态系统的基础的两个关键功能组)可能会对贫瘠的生态系统的功能产生重大影响。我提出了一个简单的生态系统模型,其中主要生产者(植物)和分解者(微生物)通过物质循环联系在一起。该模型考虑了多种植物有机化合物和多种微生物物种。从有机化合物到分解物的养分循环效率便成为控制生态系统过程(主要生产力,次要生产力,生产者生物量和分解生物量)的关键参数。该模型预测,微生物多样性可以通过增加微生物对有机化合物的利用强度或功能性生态位互补性而对植物体内的养分循环效率和生态系统过程产生积极影响。微生物生态位的广度和重叠不应影响生态系统过程,除非它们增加了分解的有机化合物的数量。相反,该模型预测,至少在恒定的环境中,植物有机化合物的多样性只会对生态系统进程产生负面影响,或至多没有影响。这在植物多样性和微生物多样性对生态系统功能的影响之间产生了紧张关系,这可能解释了最近的一些实验结果。

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