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土壤和栽培品种塑造了马铃薯根际的细菌群落。

Soil and cultivar type shape the bacterial community in the potato rhizosphere.

机构信息

Department of Microbial Ecology, Centre for Life Sciences, Nijenborgh 7, 9747 AG, Groningen, The Netherlands.

出版信息

Microb Ecol. 2012 Feb;63(2):460-70. doi: 10.1007/s00248-011-9930-8. Epub 2011 Sep 7.

Abstract

The rhizospheres of five different potato cultivars (including a genetically modified cultivar) obtained from a loamy sand soil and two from a sandy peat soil, next to corresponding bulk soils, were studied with respect to their community structures and potential function. For the former analyses, we performed bacterial 16S ribosomal RNA gene-based PCR denaturing gradient gel electrophoresis (PCR-DGGE) on the basis of soil DNA; for the latter, we extracted microbial communities and subjected these to analyses in phenotype arrays (PM1, PM2, and PM4, Biolog), with a focus on the use of different carbon, sulfur and phosphorus sources. In addition, we performed bacterial PCR-DGGE on selected wells to assess the structures of these substrate-responsive communities. Effects of soil type, the rhizosphere, and cultivar on the microbial community structures were clearly observed. Soil type was the most determinative parameter shaping the functional communities, whereas the rhizosphere and cultivar type also exerted an influence. However, no genetically modified plant effect was observed. The effects were imminent based on general community analysis and also single-compound analysis. Utilization of some of the carbon and sulfur sources was specific per cultivar, and different microbial communities were found as defined by cultivar. Thus, both soil and cultivar type shaped the potato root-associated bacterial communities that were responsive to some of the substrates in phenotype arrays.

摘要

从壤土砂土地和两个沙质泥炭土中获得的五种不同马铃薯品种(包括一种转基因品种)的根际土壤及其相应的原状土壤的群落结构和潜在功能进行了研究。对于前者的分析,我们基于土壤 DNA 进行了细菌 16S 核糖体 RNA 基因的 PCR 变性梯度凝胶电泳(PCR-DGGE);对于后者,我们提取了微生物群落,并在表型阵列(PM1、PM2 和 PM4、Biolog)中对其进行了分析,重点是利用不同的碳、硫和磷源。此外,我们还对选定的井进行了细菌 PCR-DGGE 分析,以评估这些底物响应群落的结构。土壤类型、根际和品种对微生物群落结构的影响明显。土壤类型是塑造功能群落的最决定性参数,而根际和品种类型也有影响。然而,没有观察到转基因植物的影响。这些影响是基于一般的群落分析和单一化合物分析而立即出现的。一些碳源和硫源的利用是每种品种特有的,并且通过品种发现了不同的微生物群落。因此,土壤和品种类型共同塑造了对表型阵列中一些底物有反应的马铃薯根相关细菌群落。

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