Sahoo Ranjan K, Ansari Mohammad W, Dangar Tushar K, Mohanty Santanu, Tuteja Narendra
Plant Molecular Biology Group, International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, 110067, New Delhi, India.
Protoplasma. 2014 May;251(3):511-23. doi: 10.1007/s00709-013-0547-2. Epub 2013 Sep 5.
Biological nitrogen fixation (BNF) is highly effective in the field and potentially useful to reduce adverse effects chemical fertilisers. Here, Azotobacter species were selected via phenotypic, biochemical and molecular characterisations from different rice fields. Acetylene reduction assay of Azotobacter spp. showed that Azotobacter vinelandii (Az3) fixed higher amount of nitrogen (121.09 nmol C2H4 mg(-1) bacteria h(-1)). Likewise, its plant growth functions, viz. siderophore, hydrogen cyanide, salicylic acid, IAA, GA3, zeatin, NH3, phosphorus solubilisation, ACC deaminase and iron tolerance, were also higher. The profile of gDNA, plasmid DNA and cellular protein profile depicted inter-generic and inter-specific diversity among the isolates of A. vinelandii. The PCR-amplified genes nifH, nifD and nifK of 0.87, 1.4 and 1.5 kb , respectively, were ascertained by Southern blot hybridisation in isolates of A. vinelandii. The 16S rRNA sequence from A. vinelandii (Az3) was novel, and its accession number (JQ796077) was received from NCBI data base. Biofertiliser formulation of novel A. vinelandii isolates along with commercial one was evaluated in rice (Oriza sativa L. var. Khandagiri) fields. The present finding revealed that treatment T4 (Az3) (A. vinelandii) are highly efficient to improved growth and yield of rice crop.
生物固氮在田间具有高效性,对于减少化肥的负面影响具有潜在作用。在此,通过表型、生化和分子特征从不同稻田中筛选出了固氮菌属菌种。对固氮菌属进行乙炔还原测定表明,维涅兰德固氮菌(Az3)固定的氮量更高(121.09 nmol C2H4 mg(-1) 细菌 h(-1))。同样,其植物生长功能,即铁载体、氰化氢、水杨酸、吲哚乙酸、赤霉素、玉米素、氨、磷溶解、ACC脱氨酶和铁耐受性也更高。维涅兰德固氮菌分离株的基因组DNA、质粒DNA和细胞蛋白质谱显示出属间和种间的多样性。通过Southern印迹杂交在维涅兰德固氮菌分离株中确定了PCR扩增的nifH、nifD和nifK基因,大小分别为0.87、1.4和1.5 kb。来自维涅兰德固氮菌(Az3)的16S rRNA序列是新的,其登录号(JQ796077)已从NCBI数据库获得。在水稻(Oriza sativa L. var. Khandagiri)田中对新型维涅兰德固氮菌分离株与市售菌剂的生物肥料配方进行了评估。目前的研究结果表明,处理T4(Az3)(维涅兰德固氮菌)对提高水稻作物的生长和产量非常有效。