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首页> 外文期刊>FEMS Microbiology Ecology >PCR primers based on different portions of insertion elements can assist genetic relatedness studies, strain fingerprinting and species identification in rhizobia
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PCR primers based on different portions of insertion elements can assist genetic relatedness studies, strain fingerprinting and species identification in rhizobia

机译:基于插入元件不同部分的PCR引物可协助根瘤菌的遗传相关性研究,菌株指纹识别和物种鉴定

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摘要

Using the sequence of an insertion element originally found in Rhizobium sullae, the nitrogen-fixing bacterial symbiont of the legume Hedysarum coronarium, we devised three primer pairs (inbound, outbound and internal primers) for the following applications: (a) tracing genetic relatedness within rhizobia using a method independent of ribosomal inheritance, based on the presence and conservation of IS elements; (b) achieve sensitive and reproducible bacterial fingerprinting; (c) enable a fast and unambiguous detection of rhizobia at the species level. In terms of taxonomy, while in line with part of the 16S rRNA gene- and glutamine synthetase I-based clustering, the tools appeared nonetheless more coherent with the actual geographical ranges of origin of rhizobial species, strengthening the European-Mediterranean connections and discerning them from the asian and american taxa. The fingerprinting performance of the outward-pointing primers, designed upon the inverted repeats, was shown to be at least as sensitive as BOX PCR, and to be functional on a universal basis with all 13 bacterial species tested. The primers designed on the internal part of the transposase gene instead proved highly species-specific for R. sullae, enabling selective distinction from its most related species, and testing positive on every R. sullae strain examined, fulfilling the need of PCR-mediated species identification. A general use of other IS elements for a combined approach to rhizobial taxonomy and ecology is proposed. (c) 2005 Federation of European Microbiological Societies. Published by Elsevier B.V. All rights reserved.
机译:使用最初发现于豆科植物Hedysarum coronarium的固氮细菌共生体-根霉(Rhizobium sullae)中的插入元件的序列,我们为以下应用设计了三个引物对(入站,出站和内部引物):(a)根瘤菌使用一种不依赖核糖体遗传的方法,基于IS元素的存在和保守性; (b)实现敏感且可重复的细菌指纹图谱; (c)能够在物种水平上快速而明确地检测到根瘤菌。就分类学而言,虽然与部分基于16S rRNA基因和谷氨酰胺合成酶I的聚类相一致,但这些工具似乎与根瘤菌物种的实际地理范围更加一致,从而加强了欧洲-地中海的联系并对其进行了识别来自亚洲和美国的分类单元。在反向重复序列上设计的外向型引物的指纹识别性能至少与BOX PCR一样灵敏,并且在所有13种细菌中均具有通用功能。相反,在转座酶基因内部设计的引物被证明对沙雷氏菌具有高度的物种特异性,从而能够与其最相关的物种进行选择性区分,并且对所检测的所有沙雷氏菌菌株均呈阳性,从而满足了PCR介导的物种的需求识别。提出了将其他IS元素普遍用于根瘤菌分类学和生态学相结合的方法。 (c)2005年欧洲微生物学会联合会。由Elsevier B.V.发布。保留所有权利。

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