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首页> 外文期刊>Soil Biology & Biochemistry >Shifts in microbial communities do not explain the response of grassland ecosystem function to plant functional composition and rainfall change
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Shifts in microbial communities do not explain the response of grassland ecosystem function to plant functional composition and rainfall change

机译:微生物群落的变化不能解释草原生态系统功能对植物功能组成和降雨变化的响应

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摘要

Ecosystem functioning in grasslands is regulated by a range of biotic and abiotic factors, and the role of microbial communities in regulating ecosystem function has been the subject of much recent scrutiny. However, there are still knowledge gaps regarding the impacts of rainfall and vegetation change upon microbial communities and the implications of these changes for ecosystem functioning. We investigated this issue using data from an experimental mesotrophic grassland study in south-east England, which had been subjected to four years of rainfall and plant functional composition manipulations. Soil respiration, nitrogen and phosphorus stocks were measured, and the abundance and community structure of soil microbes were characterised using quantitative PCR and multiplex-TRFLP analysis, respectively. Bacterial community structure was strongly related to the plant functional composition treatments, but not the rainfall treatment. However, there was a strong effect of both rainfall change and plant functional group upon bacterial abundance. There was also a weak interactive effect of the two treatments upon fungal community structure, although fungal abundance was not affected by either treatment. Next, we used a statistical approach to assess whether treatment effects on ecosystem function were regulated by the microbial community. Our results revealed that ecosystem function was influenced by the experimental treatments, but was not related to associated changes to the microbial community. Overall, these results indicate that changes in fungal and bacterial community structure and abundance play a relatively minor role in determining grassland ecosystem function responses to precipitation and plant functional composition change, and that direct effects on soil physical and chemical properties and upon plant and microbial physiology may play a more important role. (C) 2015 Elsevier Ltd. All rights reserved.
机译:草原中的生态系统功能受到一系列生物和非生物因素的调节,微生物群落在调节生态系统功能中的作用已成为近期研究的主题。但是,关于降雨和植被变化对微生物群落的影响以及这些变化对生态系统功能的影响,仍然存在知识空白。我们使用来自英格兰东南部的实验性中养草原研究的数据调查了这个问题,该研究已经经历了四年的降雨和植物功能成分的操纵。测量土壤呼吸,氮和磷储量,并分别通过定量PCR和Multiple-TRFLP分析表征土壤微生物的丰度和群落结构。细菌群落结构与植物功能成分处理密切相关,但与降雨处理无关。然而,降雨变化和植物功能群对细菌丰度都有很强的影响。两种处理对真菌群落结构的相互作用也较弱,尽管两种处理均未影响真菌的丰度。接下来,我们使用统计方法评估微生物群落是否调节了对生态系统功能的治疗效果。我们的结果表明,生态系统功能受实验处理的影响,但与微生物群落的相关变化无关。总体而言,这些结果表明,真菌和细菌群落结构的变化和丰度在确定草地生态系统功能对降水和植物功能成分变化的反应中起相对较小的作用,并且直接影响土壤理化性质以及对植物和微生物生理的影响可能扮演更重要的角色。 (C)2015 Elsevier Ltd.保留所有权利。

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