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首页> 外文期刊>Journal of Plant Physiology >Nitrogenase and antioxidant enzyme activities in Phaseolus vulgaris nodules formed by Rhizobium tropici isogenic strains with varying tolerance to salt stress
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Nitrogenase and antioxidant enzyme activities in Phaseolus vulgaris nodules formed by Rhizobium tropici isogenic strains with varying tolerance to salt stress

机译:对盐胁迫耐受性不同的热带根瘤菌同基因菌株形成的菜豆结节中的固氮酶和抗氧化酶活性

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摘要

Common bean plants inoculated with salt-tolerant Rhizobium tropici wild-type strain CIAT899 formed a more active symbiosis than did its decreased salt-tolerance (DST) mutant derivatives (HB8, HB10, HB12 and HB13). The mutants formed partially effective (HB10, HB12) or almost ineffective (HB8, HB13) nodules (Fix(d)) under non-saline conditions. The DST mutant formed nodules that accumulated more proline than did the wild-type nodules, while soluble sugars were accumulated mainly in ineffective nodules. Under salt stress, plant growth, nitrogen fixation, and the activities of the antioxidant defense enzymes of nodules were affected in all symbioses tested. Overall, mutant nodules showed lower antioxidant enzyme activities than wild-type nodules. Levels of nodule catalase appeared to correlate with symbiotic nitrogen-fixing efficiency. Superoxide dismutase and dehydroascorbate reductase seem to function in the molecular mechanisms underlying the tolerance of nodules to salinity.
机译:与耐盐性降低的DST突变体衍生物(HB8,HB10,HB12和HB13)相比,用耐盐的热带根瘤菌野生型菌株CIAT899接种的普通豆类植物具有更活跃的共生作用。在非盐碱条件下,突变体形成部分有效(HB10,HB12)或几乎无效(HB8,HB13)结节(Fix(d))。 DST突变体形成的结节比野生型结节积累了更多的脯氨酸,而可溶性糖主要在无效结节中积累。在盐胁迫下,所有共生酶均影响植物的生长,固氮和根瘤抗氧化防御酶的活性。总体而言,突变结节的抗氧化酶活性低于野生型结节。结节过氧化氢酶的水平似乎与共生固氮效率相关。超氧化物歧化酶和脱氢抗坏血酸还原酶似乎在结核对盐度耐受性的分子机制中起作用。

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