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首页> 外文期刊>Applied and Environmental Microbiology >Root colonization of maize and lettuce by bioluminescent Rhizobium leguminosarum biovar phaseoli.
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Root colonization of maize and lettuce by bioluminescent Rhizobium leguminosarum biovar phaseoli.

机译:玉米和莴苣通过生物发光的根瘤菌根瘤菌biovar phaseoli的根定植。

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Two strains of Rhizobium leguminosarum bv. phaseoli and three other plant growth-promoting rhizobacteria (PGPR) were examined for the potential of maize and lettuce root colonization. All of these strains were selected in vitro for their phosphate-solubilizing abilities. Maize and lettuce seeds were treated with derivatives of all strains marked with lux genes for bioluminescence and resistance to kanamycin and rifampin prior to planting in nonsterile Promix and natural soil. The introduced bacterial strains were quantified on roots by dilution plating on antibiotic media together with observation of bioluminescence. Rhizobia were superior colonizers compared with other tested bacteria; rhizobial root populations averaged log 4.1 CFU/g (fresh weight) on maize roots 4 weeks after seeding and log 3.7 CFU/g (fresh weight) on lettuce roots 5 weeks after seeding. The average populations of the recovered PGPR strains were log 3.5 and log 3.0 CFU/g (fresh weight) on maize and lettuce roots, respectively. One of the three PGPR was not recovered later than the first week after seeding in Promix. Bioluminescence also permitted visualization of in situ root colonization in rhizoboxes and demonstrated the efficiency of rhizobial strains to colonize and survive on maize and lettuce roots.
机译:两种豆科根瘤菌菌株。检查了菜豆和其他三种促进植物生长的根际细菌(PGPR)的玉米和生菜根定殖的潜力。体外选择所有这些菌株具有磷酸盐增溶能力。在非无菌Promix和天然土壤中种植之前,用所有带有lux基因标记的菌株的衍生物处理玉米和生菜种子,这些菌株具有生物发光性以及对卡那霉素和利福平的抗性。通过在抗生素培养基上进行稀释平板接种并观察生物发光,对根部上引入的细菌菌株进行定量。与其他经过测试的细菌相比,根瘤菌是更好的定居者。播种后4周,玉米根上的根瘤菌根种群平均log 4.1 CFU / g(鲜重),播种后5周,生菜根上的log 3 3.7 CFU / g(鲜重)。回收的PGPR菌株在玉米和生菜根上的平均种群分别为log 3.5和log 3.0 CFU / g(鲜重)。三种PGPR中的一种在播种到Promix之后的第一周才恢复。生物发光还可以观察到根瘤菌在根中的原位定植,并证明了根瘤菌菌株在玉米和生菜根上定殖和存活的效率。

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