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Characterization of Rhizobacteria from field grown Genetically Modified (GM) and non-GM maizes

机译:田间种植的转基因(GM)和非转基因玉米的根际细菌的表征

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This study was done to examine the rhizobacteria from field grown Genetically Modified (GM) maize and its non-GM counterpart. Rhizospheric soil samples were collected at 30 days after sowing (DAS) and at post-harvest from two experimental fields in Gauteng, South Africa. Total rhizobacteria (cfu/g) in GM and non-GM soil samples was not significantly different across the different media 30 DAS and at post-harvest. Rhizobacterial isolates obtained were biochemically characterized using the analytical profile index. Species of Pseudomonas, Aeromonas, Sphingomonas, Burkholderia, Stenotrophomonas, Achromobacter, Ewingella and Bacillus were screened in vitro for plant growth promoting traits such as, ammonia production, catalase activity, indole acetic acid production, phosphate solubilisation, hydrogen cyanide production and antifungal activity. All the 32 rhizobacterial strains tested in this study were positive for catalase activity, ammonia production and IAA production; 90.6% were positive for phosphate solubilisation, 34.3% for indicate antifungal activity but none for hydrogen cyanide production. These findings contributed to the quest for potential biofertilizers and biocontrol agents for sustainable agriculture.
机译:进行这项研究是为了研究田间种植的转基因玉米及其非转基因玉米的根际细菌。播种后30天(DAS)和收获后在南非豪登省的两个试验田中收集了根际土壤样品。 GM和非GM土壤样品中的总根际细菌(cfu / g)在不同培养基30 DAS和收获后没有显着差异。使用分析谱指数对获得的根瘤菌分离物进行生化鉴定。体外筛选了假单胞菌,气单胞菌,鞘氨醇单胞菌,伯克霍尔德氏菌,嗜单胞菌,无色杆菌,叶氏菌和芽孢杆菌的物种,以促进植物生长的特性,例如氨产生,过氧化氢酶活性,吲哚乙酸产生,磷酸盐增溶,氰化氢产生和抗真菌活性。这项研究中测试的所有32种根瘤菌菌株的过氧化氢酶活性,氨气产量和IAA产量均呈阳性。磷酸盐增溶阳性率为90.6%,指示抗真菌活性为34.3%,但氰化氢生产则无。这些发现有助于寻求可持续农业的潜在生物肥料和生物防治剂。

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