Jha Prabhat, Kumar Ashok
Birla Institute of Technology and Science, Bioscience Group, Pilani, India.
Microb Ecol. 2009 Jul;58(1):179-88. doi: 10.1007/s00248-009-9485-0. Epub 2009 Feb 18.
Nine diazotrophic bacteria were isolated from surface-sterilized roots and culms of wheat variety Malviya-234, which is grown with very low or no inputs of nitrogen fertilizer. Out of the nine bacteria, four showed indole acetic acid (IAA) production, and five were positive for P solubilization. One isolate, WM234C-3, showed appreciable level of nitrogenase activity, IAA production, and P solubilization ability, and was further characterized with a view to exploiting its plant growth promoting activity. Based on 16S rDNA sequence analysis, this isolate was identified as Achromobacter xylosoxidans. Diazotrophic nature of this particular isolate was confirmed by Western blot analysis of dinitrogenase reductase and amplification of nifH. Analysis of the nifH sequence showed close homology with typical diazotrophic bacteria. Endophytic nature and cross-infection ability of WM234C-3 were tested by molecular tagging with gusA fused to a constitutive promoter followed by inoculation onto rice seedlings in axenic conditions. At 21 days after inoculation, the roots showed blue staining, the most intense color being at the emergence of lateral roots and root tips. Microscopic observation confirmed colonization of gus-tagged WM234C-3 in the intercellular spaces of cortical as well as vascular zones of roots. Inoculation of gus-tagged WM234C-3 to rice plants resulted in significant increase in root/shoot length, fresh weight, and chlorophyll a content. Plant growth promoting features coupled with cross-infection ability suggest that this endophytic bacterium may be exploited as agricultural agent for various crops after a thorough and critical pathogenicity test.
从小麦品种Malviya - 234表面消毒的根和茎中分离出9株固氮细菌,该品种在极低氮肥投入或不施氮肥的情况下种植。在这9株细菌中,4株能产生吲哚乙酸(IAA),5株解磷呈阳性。其中一株分离菌WM234C - 3表现出可观的固氮酶活性、IAA产生能力和解磷能力,并对其进行了进一步表征,以开发其促进植物生长的活性。基于16S rDNA序列分析,该分离菌被鉴定为木糖氧化无色杆菌。通过对固氮酶还原酶的蛋白质免疫印迹分析和nifH基因的扩增,证实了该特定分离菌的固氮性质。nifH序列分析显示与典型固氮细菌有密切的同源性。通过将gusA与组成型启动子融合进行分子标记,然后在无菌条件下接种到水稻幼苗上,测试了WM234C - 3的内生性质和交叉感染能力