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根瘤菌属中固氮作用的调控。诱导三叶草根瘤菌固氮酶活性突变体的分离。

Regulation of nitrogen fixation in Rhizobium spp. Isolation of mutants of Rhizobium trifolii which induce nitrogenase activity.

作者信息

O'Gara F, Shanmugam K T

出版信息

Biochim Biophys Acta. 1977 Dec 22;500(2):277-90. doi: 10.1016/0304-4165(77)90020-4.

Abstract

This communication describes the isolation and characterization of mutants of Rhizobium trifolii which can induce nitrogenase activity in defined liquid medium. Two procedures were used for the isolation of these mutants from R. trifolii strain DT-6: (1) following chemical mutagenesis, slow growing mutants were selected which were unable to utilize NH+4 as sole source of nitrogen; (2) as spontaneous mutants resistant to the glutamate analogue L-methionine-DL-sulfoximine. Mutants (DT-71, DT-125) isolated by these procedures induced nitrogenase activity in the free-living state, whereas the parent strain lacked this property. Induction of nitrogenase activity in these mutants occurred during the late exponential phase of growth when the rate of protein synthesis was decreasing. The addition of NH+4 to a medium containing glutamate as the nitrogen-source resulted in a 50--70% reduction (repression?) of nitrogenase activity; in contrast, the rate of protein synthesis or the rate of respiration was not influenced by exogenous NH+4. Biochemical analysis showed that these mutants (strains DT-71 and DT-125) have defects in both nitrogen and carbon metabolism. The levels of glutamate synthase (both NADP+ -and NAD+ -dependent activities) and glutamate dehydrogenase (NAD+-dependent activity) were markedly lower. In addition, the mutants were found to have no detectable ribitol dehydrogenase or beta-galactosidase activity. These findings are discussed in relation to a mechanism of regulation of symbiotic nitrogen fixation.

摘要

本通讯描述了三叶草根瘤菌突变体的分离与特性,这些突变体能够在特定液体培养基中诱导固氮酶活性。从三叶草根瘤菌菌株DT-6中分离这些突变体采用了两种方法:(1)化学诱变后,选择生长缓慢且不能利用NH₄⁺作为唯一氮源的突变体;(2)作为对谷氨酸类似物L-蛋氨酸-DL-亚砜亚胺有抗性的自发突变体。通过这些方法分离得到的突变体(DT-71、DT-125)在自由生活状态下可诱导固氮酶活性,而亲本菌株则缺乏此特性。这些突变体中固氮酶活性的诱导发生在生长的指数后期,此时蛋白质合成速率正在下降。向以谷氨酸作为氮源的培养基中添加NH₄⁺会导致固氮酶活性降低50%-70%(抑制?);相反,蛋白质合成速率或呼吸速率不受外源NH₄⁺的影响。生化分析表明,这些突变体(菌株DT-71和DT-125)在氮和碳代谢方面均有缺陷。谷氨酸合酶(NADP⁺-和NAD⁺-依赖活性)和谷氨酸脱氢酶(NAD⁺-依赖活性)的水平明显较低。此外,发现这些突变体没有可检测到的核糖醇脱氢酶或β-半乳糖苷酶活性。结合共生固氮的调控机制对这些发现进行了讨论。

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Regulation of nitrogen fixation in Rhizobium sp.根瘤菌属中固氮作用的调控
Appl Environ Microbiol. 1976 Oct;32(4):483-8. doi: 10.1128/aem.32.4.483-488.1976.

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