Adhikari Arindam, Nandi Suvodip, Bhattacharya Indrabrata, Roy Mithu De, Mandal Tanusri, Dutta Subrata
Department of Biotechnology, O.I.S.T. Vidyasagar University, Paschim Medinipur, India ; AICRP on Vegetables crops, Directorate of research, BCKV, Kalyani, India.
AICRP on Vegetables crops, Directorate of research, BCKV, Kalyani, India.
Bioinformation. 2015 Oct 31;11(10):474-80. doi: 10.6026/97320630011474. eCollection 2015.
Molecular evolution analysis of 16S rRNA sequences of native Pseudomonas strains and different fluorescent pseudomonads were conducted on the basis of Molecular Evolutionary Genetics Analysis version 5.2 (MEGA5.2). Topological evaluations show common origin for native strains with other known strains with available sequences at GenBank database. Phylogenetic affiliation of different Pseudomonas sp based on 16S rRNA gene shows that molecular divergence contributes to the genetic diversity of Pseudomonas sp. Result indicate direct dynamic interactions with the rhizospheric pathogenic microbial community. The selection pressure acting on 16S rRNA gene was related to the nucleotide diversity of Pseudomonas sp in soil rhizosphere community among different agricultural crops. Besides, nucleotide diversity among the whole population was very low and tajima test statistic value (D) was also slightly positive (Tajima׳s test statistics D value 0.351). This data indicated increasing trends of infection of soil-borne pathogens under gangetic-alluvial regions of West Bengal due to high degree of nucleotide diversity with decreased population of plant growth promoting rhizobacteria like fluorescent Pseudomonads in soil.
基于分子进化遗传分析软件5.2版(MEGA5.2),对本地假单胞菌菌株和不同荧光假单胞菌的16S rRNA序列进行了分子进化分析。拓扑评估表明,本地菌株与GenBank数据库中具有可用序列的其他已知菌株具有共同起源。基于16S rRNA基因的不同假单胞菌属的系统发育归属表明,分子差异导致了假单胞菌属的遗传多样性。结果表明其与根际致病微生物群落存在直接动态相互作用。作用于16S rRNA基因的选择压力与不同农作物根际土壤中假单胞菌属的核苷酸多样性有关。此外,整个群体中的核苷酸多样性非常低,并且塔吉玛检验统计值(D)也略为正值(塔吉玛检验统计值D为0.351)。该数据表明,由于核苷酸多样性程度高,而土壤中促进植物生长的根际细菌(如荧光假单胞菌)数量减少,西孟加拉邦恒河冲积地区土壤传播病原体的感染呈上升趋势。