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基于16S rRNA、假单胞菌属特异性基因和rpoD基因序列分析推导的荧光假单胞菌的系统发育关系。

Phylogenetic relationships of fluorescent pseudomonads deduced from the sequence analysis of 16S rRNA, Pseudomonas-specific and rpoD genes.

作者信息

Rajwar Asmita, Sahgal Manvika

机构信息

Department of Microbiology, College of Basic Sciences and Humanities, Govind Ballabh Pant University of Agriculture and Technology, Pantnagar, US Nagar, Uttarakhand, India.

出版信息

3 Biotech. 2016 Jun;6(1):80. doi: 10.1007/s13205-016-0386-x. Epub 2016 Feb 23.

Abstract

Phylogenetic relationship of 22 FLPs was revealed on the basis of polymorphism in three genes namely 16S rDNA, Pseudomonas-specific and rpoD gene regions. The primers for 16S rDNA, Pseudomonas-specific region and rpoD gene region were amplifying a region of 1492, 990 and 760 bp, respectively, from all the isolates investigated. The RFLP analysis of the PCR products resulted in a classification of these fluorescent pseudomonads which was best answered by rpoD-based RFLP analysis. The 22 FLPs were placed in two major clusters and seven subclusters suggesting that these were genotypically heterogenous and might belong to several species within Pseudomonas sensu stricto. Sequence analysis of these three genes for three selected isolates AS5, AS7 and AS15 showed 16S rDNA and Pseudomonas-specific gene region phylogenies were generally similar, but rpoD gene phylogeny was somewhat different from these two genes. These results were also congruent with the results of RFLP of these three genes. rpoD provided comparable phylogenetic resolution to that of the 16S rRNA and Pseudomonas-specific genes at all taxonomic levels, except between closely related organisms (species and subspecies levels), for which it provided better resolution. This is particularly relevant in the context of a growing number of studies focusing on subspecies diversity, in which single-copy protein-encoding genes such as rpoD could complement and better justify the information provided by the 16S rRNA gene. Hence rpoD can be used further as an evolutionary chronometer for species-level identification.

摘要

基于16S rDNA、假单胞菌属特异性基因和rpoD基因区域这三个基因的多态性,揭示了22株荧光假单胞菌(FLPs)的系统发育关系。用于16S rDNA、假单胞菌属特异性基因区域和rpoD基因区域的引物,分别从所有研究的分离株中扩增出1492 bp、990 bp和760 bp的区域。对PCR产物的RFLP分析对这些荧光假单胞菌进行了分类,基于rpoD的RFLP分析能最好地回答分类问题。这22株荧光假单胞菌被分为两个主要簇和七个亚簇,表明它们在基因型上是异质的,可能属于狭义假单胞菌属内的几个物种。对三个选定分离株AS5、AS7和AS15的这三个基因进行序列分析表明,16S rDNA和假单胞菌属特异性基因区域的系统发育通常相似,但rpoD基因的系统发育与这两个基因有些不同。这些结果也与这三个基因的RFLP结果一致。除了在密切相关的生物体(物种和亚种水平)之间,rpoD在所有分类水平上都提供了与16S rRNA和假单胞菌属特异性基因相当的系统发育分辨率,而在密切相关的生物体之间,rpoD提供了更好的分辨率。在越来越多关注亚种多样性的研究背景下,这一点尤为重要,在这些研究中,诸如rpoD这样的单拷贝蛋白质编码基因可以补充并更好地证明16S rRNA基因提供的信息。因此,rpoD可进一步用作物种水平鉴定的进化计时器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a427/4764612/0c3999c77b61/13205_2016_386_Fig1_HTML.jpg

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