首页> 外文期刊>Indian Journal of Microbiology >Co-inoculation of Urea and DAP Tolerant Sinorhizobium meliloti and Pseudomonas aeruginosa as Integrated Approach for Growth Enhancement of Brassica juncea
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Co-inoculation of Urea and DAP Tolerant Sinorhizobium meliloti and Pseudomonas aeruginosa as Integrated Approach for Growth Enhancement of Brassica juncea

机译:尿素和DAP耐性的混合接种苜蓿中华根瘤菌和铜绿假单胞菌是增强芥菜生长的综合方法

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Two plant growth promoting rhizobacteria-Sinorhizobium meliloti RMP1 and Pseudomonas aeruginosa GRC_2 were studied for integrated nutrient management to obtain improved yield of Brassica juncea. Low concentrations of urea and diammonium phosphate (DAP) stimulated the growth of both S. meliloti RMP1 and P. aeruginosa GRC_2.1 M of urea and 0.35 M of DAP was found lethal for RMP1, while 1.3 M and 0.37 M concentrations of urea and DAP proved to be toxic for GRC_2.Lc_(50) was observed as 0.49 M of urea and 0.15 M of DAP for RMP1, and 0.66 M urea and 0.18 M of DAP for GRC2. Urea and DAP adaptive variants of RMP1 and GRC_2 was isolated. Adaptive bacterial variants had better growth rates at sub-lethal (Lc_(50)) concentrations of urea and DAP as compared to non-adaptive variants. They also retained plant growth promoting attributes similar to non adaptive variants. GRC_2 and RMP1 did not affect the growth of each other and were chemotactically active for DAP, urea as well as root exudates of B. juncea. Both the isolates colonized well in the rhizosphere of B. juncea, as their populations were recorded ≈5 log10 cfu g-1 after 120 days. Interestingly, the colonization ability was found even better when both strains were co-inoculated, as their population was recorded in the range of ≈6 log_(10) cfu g~(-1) after 120 days. In field trials, application of RMP1 and GRC_2 resulted in significant increase in biomass and yield of B. juncea as compared to control. However, yield was better with application of half dose and full dose of recommended fertilizers. Interestingly, the biomass as well as yield improved further when both isolates were applied together along with half dose of recommended fertilizers.
机译:研究了两种促进植物生长的根瘤菌-Sinorhizobium meliloti RMP1和铜绿假单胞菌GRC_2的综合营养管理,以提高芥菜的产量。低浓度的尿素和磷酸二铵(DAP)刺激了苜蓿链球菌RMP1和铜绿假单胞菌GRC_2.1 M的尿素和0.35 M的DAP对RMP1具有致命性,而尿素和磷酸二铵的浓度分别为1.3 M和0.37 M DAP被证明对GRC_2有毒.Lc_(50)被观察为RMP1为0.49 M尿素和0.15 M DAP,对于GRC2为0.66 M尿素和DAP 0.18 M.分离了RMP1和GRC_2的尿素和DAP适应性变体。与非适应性变体相比,适应性细菌变体在尿素和DAP的亚致死浓度(Lc_(50))下具有更好的生长速率。他们还保留了类似于非适应性变体的植物生长促进特性。 GRC_2和RMP1互不影响其生长,并且对芥菜芽孢杆菌的DAP,尿素和根系分泌物具有趋化活性。两种分离物都很好地在芥菜根际中定殖,因为它们的种群在120天后记录到≈5log10 cfu g-1。有趣的是,当两种菌株同时接种时,其定殖能力甚至更高,因为它们的种群在120天后记录在≈6log_(10)cfu g〜(-1)的范围内。在田间试验中,与对照相比,施用RMP1和GRC_2可以使芥菜型杆菌的生物量和产量显着增加。但是,使用半剂量和全剂量推荐肥料时,产量更高。有趣的是,将两种分离物与一半剂量的推荐肥料一起施用时,生物量和产量进一步提高。

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