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首页> 外文期刊>Annals of microbiology >Selection of symbiotic efficient and high salt-tolerant rhizobia strains by gamma irradiation
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Selection of symbiotic efficient and high salt-tolerant rhizobia strains by gamma irradiation

机译:γ射线筛选高效共生高耐盐根瘤菌菌株

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Gamma irradiation was used on Rhizobium tropici CIAT 899 and Mesorhizobium ciceri 835 nodulating, respectively, common bean and chickpea in order to select individual rhizobia mutant highly tolerant to salt and symbiotically effective. Radiosensibility analysis showed that 800?Gy was the highest dose of gamma rays supported by tested strains. The irradiated clones at 700 and 800?Gy were more tolerant to salt stress and phosphorus deficiency compared to control strains, which proved that gamma irradiation was effective in changing physiological and phenotypic characteristics via random mutations. Likewise, biochemical analysis showed that tested clones had a variable superoxide dismutase and catalase activities especially in Mesorhizobium ciceri 835. The increase of antioxidant enzyme activities in some mutants was related to tolerance acquisition that protects effective symbiosis against oxidative damage induced by abiotic stresses. Thus, efficient symbiotic nitrogen fixation rhizobia under salt stress were identified.
机译:为了分别选择对豆类和鹰嘴豆有根瘤的热带根瘤菌CIAT 899和中型根瘤菌835进行伽马射线辐照,以选择对盐具有高度耐受性和共生效果的单个根瘤菌突变体。放射敏感性分析表明,800?Gy是受试菌株支持的最高剂量的伽马射线。与对照菌株相比,在700和800?Gy的辐照克隆对盐胁迫和磷缺乏的耐受性更高,这证明了γ辐照可通过随机突变有效改变生理和表型特征。同样,生化分析表明,测试的克隆具有可变的超氧化物歧化酶和过氧化氢酶活性,尤其是在中生根瘤菌835中。某些突变体中抗氧化酶活性的增加与耐受性获得有关,该耐受性可保护有效的共生抵抗非生物胁迫引起的氧化损伤。因此,鉴定了在盐胁迫下有效的共生固氮根瘤菌。

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