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一种用于检测土壤中最近培养的芽孢杆菌属优势菌群的选择性聚合酶链式反应-变性梯度凝胶电泳方法的开发与应用

Development and application of a selective PCR-denaturing gradient gel electrophoresis approach to detect a recently cultivated Bacillus group predominant in soil.

作者信息

Tzeneva Vesela A, Li Youguo, Felske Andreas D M, de Vos Willem M, Akkermans Antoon D L, Vaughan Elaine E, Smidt Hauke

机构信息

Laboratory of Microbiology, Wageningen University, Hesselink van Suchtelenweg 4, NL-6703 CT Wageningen, The Netherlands.

出版信息

Appl Environ Microbiol. 2004 Oct;70(10):5801-9. doi: 10.1128/AEM.70.10.5801-5809.2004.

DOI:10.1128/AEM.70.10.5801-5809.2004
PMID:15466517
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC522134/
Abstract

The worldwide presence of a hitherto-nondescribed group of predominant soil microorganisms related to Bacillus benzoevorans was analyzed after development of two sets of selective primers targeting 16S rRNA genes in combination with denaturing gradient gel electrophoresis (DGGE). The high abundance and cultivability of at least some of these microorganisms makes them an appropriate subject for studies on their biogeographical dissemination and diversity. Since cultivability can vary significantly with the physiological state and even between closely related strains, we developed a culture-independent 16S rRNA gene-targeted DGGE fingerprinting protocol for the detection of these bacteria from soil samples. The composition of the B. benzoevorans relatives in the soil samples from The Netherlands, Bulgaria, Russia, Pakistan, and Portugal showed remarkable differences between the different countries. Differences in the DGGE profiles of these communities in archived soil samples from the Dutch Wieringermeer polder were observed over time during which a shift from anaerobic to aerobic and from saline to freshwater conditions occurred. To complement the molecular methods, we additionally cultivated B. benzoevorans-related strains from all of the soil samples. The highest number of B. benzoevorans relatives was found in the soils from the northern part of The Netherlands. The present study contributes to our knowledge of the diversity and abundance of this interesting group of microbes in soils throughout the world.

摘要

在开发了两组靶向16S rRNA基因的选择性引物并结合变性梯度凝胶电泳(DGGE)之后,分析了与苯食芽孢杆菌相关的一组迄今未描述的主要土壤微生物在全球的分布情况。这些微生物中至少有一些具有高丰度和可培养性,这使得它们成为研究其生物地理传播和多样性的合适对象。由于可培养性会因生理状态甚至在密切相关的菌株之间有显著差异,我们开发了一种基于16S rRNA基因的非培养性DGGE指纹图谱协议,用于从土壤样品中检测这些细菌。来自荷兰、保加利亚、俄罗斯、巴基斯坦和葡萄牙的土壤样品中苯食芽孢杆菌亲缘菌的组成在不同国家之间表现出显著差异。在荷兰维灵厄梅尔圩田存档的土壤样品中,随着时间推移,这些群落的DGGE图谱出现了差异,在此期间发生了从厌氧到需氧以及从盐碱地到淡水环境的转变。为了补充分子方法,我们还从所有土壤样品中培养了与苯食芽孢杆菌相关的菌株。在荷兰北部的土壤中发现了数量最多的苯食芽孢杆菌亲缘菌。本研究有助于我们了解世界各地土壤中这一有趣微生物群体的多样性和丰度。

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The Ribosomal Database Project (RDP-II): previewing a new autoaligner that allows regular updates and the new prokaryotic taxonomy.核糖体数据库项目(RDP-II):预览一种允许定期更新的新型自动比对工具和新的原核生物分类法。
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Cultivating the uncultured.培养未培养的微生物。
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