Maroniche Guillermo A, García Julia E, Salcedo Florencia, Creus Cecilia M
Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Argentina; Facultad de Ciencias Agrarias, Universidad Nacional de Mar del Plata (UNMdP), Balcarce, Buenos Aires, Argentina.
Instituto de Microbiología y Zoología Agrícola (IMyZA), Instituto Nacional de Tecnología Agropecuaria (INTA), Buenos Aires, Argentina.
Microbiol Res. 2017 Jan;195:1-10. doi: 10.1016/j.micres.2016.11.009. Epub 2016 Nov 16.
Since their discovery, plant-growth promoting rhizobacteria from the genus Azospirillum have been subjected to intensive research due to their biotechnological potential as crop inoculants. Phylogenetic analysis of Azospirillum spp. is carried out by 16S rRNA sequencing almost exclusively, but inconsistencies and low confidence often arise when working with close species. In this work, it was observed that these difficulties might be explained by a high number of rRNA operons with considerable inter-genic variability within Azospirillum genomes. To search for alternative genetic markers from a list of housekeeping genes, the correlation between pairwise gene and whole-genome similarities was examined. Due to its good performance, rpoD was selected for further analyses. Genus-specific primers for the PCR-amplification and sequencing of rpoD from Azospirillum spp. were designed and tested on 16 type strains of different species. The sequences obtained were used for inferring a phylogenetic tree of the genus, which was in turn used as a reference to successfully identify a collection of 31 azospirilla isolated from many different locations of Argentine. In addition, several strains that might represent novel species were detected. The results indicate that the sequencing of rpoD is a suitable alternative method for a confident molecular identification in Azospirillum spp.
自被发现以来,固氮螺菌属的植物促生根际细菌因其作为作物接种剂的生物技术潜力而受到深入研究。固氮螺菌属物种的系统发育分析几乎完全通过16S rRNA测序进行,但在处理近缘物种时常常出现不一致和低置信度的情况。在这项工作中,观察到这些困难可能是由于固氮螺菌基因组内存在大量具有相当大基因间变异性的rRNA操纵子所致。为了从管家基因列表中寻找替代遗传标记,研究了成对基因与全基因组相似性之间的相关性。由于其良好的性能,选择了rpoD进行进一步分析。设计了用于从固氮螺菌属物种PCR扩增和测序rpoD的属特异性引物,并在16种不同物种的模式菌株上进行了测试。获得的序列用于推断该属的系统发育树,该系统发育树又被用作成功鉴定从阿根廷许多不同地点分离的31株固氮螺菌的参考。此外,还检测到了几株可能代表新物种的菌株。结果表明,rpoD测序是一种适用于固氮螺菌属可靠分子鉴定的替代方法。