首页> 外文期刊>Russian journal of genetics >Factor analysis of interactions between alfalfa nodule bacteria (Sinorhizobium meliloti) genes that regulate symbiotic nitrogen fixation
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Factor analysis of interactions between alfalfa nodule bacteria (Sinorhizobium meliloti) genes that regulate symbiotic nitrogen fixation

机译:调节苜蓿共生固氮基因的苜蓿根瘤菌(Sinorhizobium meliloti)基因之间相互作用的因子分析

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Factor analysis has been conducted for the data on the interaction between the genes of the root nodule bacteria (rhizobia), which influence the efficiency of symbiosis with leguminous plants, including dctA (encoding succinate permease), dctBD (activating the dctA gene due to binding its enhancer in the presence of succinate), rpoN (activating the promoters of dctA and nitrogenase genes nifHDK), and nifA (activating the nitrogenase genes due to binding their enhancers). The analysis of the alfalfa rhizobia (Sinorhizobiummeliloti) recombinants that contain additional copies of these genes suggested the antagonistic (epistatic) interaction between nifA and rpoN. It may be associated either with the competition for C compounds imported into the nodules between the energy production and nitrogen assimilation processes or with the competition for redox potentials between the oxidative phosphorylation and nitrogen fixation processes. Since the phenotypic effects of the studied genes depend on the activity of nitrogen export into the aerial parts of plants, we suppose that its accumulation in bacteroids impairs the activation of the nifHDK genes by the NifA protein due to its interaction with the GlnB protein (the nitrogen metabolism regulator) or with the FixLJ and ActSR proteins (the redox potential regulators).
机译:已对有关根瘤细菌(根瘤菌)基因之间相互作用的数据进行了因子分析,这些基因影响与豆科植物共生的效率,包括dctA(编码琥珀酸通透酶),dctBD(由于结合而激活dctA​​基因)在琥珀酸存在下其增强子),rpoN(激活dctA​​和固氮酶基因nifHDK的启动子)和nifA(由于结合它们的增强子而激活固氮酶基因)。苜蓿根瘤菌(Sinorhizobiummeliloti)重组体的分析表明,这些重组体包含这些基因的其他拷贝,提示nifA和rpoN之间具有拮抗作用(上皮)。它可能与能量产生和氮同化过程之间进入根瘤的C化合物的竞争或氧化磷酸化和固氮过程之间对氧化还原电势的竞争有关。由于所研究基因的表型效应取决于氮向植物地上部分的出口活动,因此我们推测由于其与GlnB蛋白的相互作用,其在类细菌中的积累会破坏NifA蛋白对nifHDK基因的激活。氮代谢调节剂)或FixLJ和ActSR蛋白(氧化还原电位调节剂)。

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