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利用反硝化菌作为模式类群,将土壤功能操作范围与微生物生物多样性和群落组成联系起来。

Soil functional operating range linked to microbial biodiversity and community composition using denitrifiers as model guild.

机构信息

Swedish University of Agricultural Sciences, Department of Microbiology, Uppsala, Sweden.

出版信息

PLoS One. 2012;7(12):e51962. doi: 10.1371/journal.pone.0051962. Epub 2012 Dec 20.

Abstract

Soil microorganisms are key players in biogeochemical cycles. Yet, there is no consistent view on the significance of microbial biodiversity for soil ecosystem functioning. According to the insurance hypothesis, declines in ecosystem functioning due to reduced biodiversity are more likely to occur under fluctuating, extreme or rapidly changing environmental conditions. Here, we compare the functional operating range, a new concept defined as the complete range of environmental conditions under which soil microbial communities are able to maintain their functions, between four naturally assembled soil communities from a long-term fertilization experiment. A functional trait approach was adopted with denitrifiers involved in nitrogen cycling as our model soil community. Using short-term temperature and salt gradients, we show that the functional operating range was broader and process rates were higher when the soil community was phylogenetically more diverse. However, key bacterial genotypes played an important role for maintaining denitrification as an ecosystem functioning under certain conditions.

摘要

土壤微生物是生物地球化学循环的关键参与者。然而,对于微生物生物多样性对土壤生态系统功能的重要性,目前还没有一致的看法。根据保险假说,在环境条件波动、极端或快速变化的情况下,由于生物多样性减少而导致的生态系统功能下降更有可能发生。在这里,我们比较了长期施肥实验中四个自然组合的土壤群落之间的功能操作范围,这是一个新定义的概念,指的是土壤微生物群落能够维持其功能的完整环境条件范围。我们采用了参与氮循环的反硝化菌作为我们的模式土壤群落的功能特征方法。通过短期的温度和盐度梯度实验,我们发现当土壤群落的系统发育多样性更高时,功能操作范围更宽,过程速率也更高。然而,在某些条件下,关键的细菌基因型对于维持反硝化作用作为生态系统功能发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d43e/3527374/acbab5d94115/pone.0051962.g001.jpg

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