首页> 外文期刊>Acta Physiologiae Plantarum >The effects of gibberellins and mepiquat chloride on nitrogenase activity in Bradyrhizobium japonicum
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The effects of gibberellins and mepiquat chloride on nitrogenase activity in Bradyrhizobium japonicum

机译:赤霉素和盐酸甲基哌草酮对日本根瘤菌根瘤菌固氮酶活性的影响

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Application of plant growth regulators (PGRs) to soybean plants is known to induce changes in nitrogenase activity in root nodules, and this led us to hypothesize that PGRs would affect nitrogenase activity in free-living rhizobia cultures. Little is known about the molecular basis of the effects of PGRs on nitrogenase activity in free-living rhizobia cultures. Therefore, a comparative study was conducted on the effects of gibberellins (GA(3)) and mepiquat chloride (PIX), which regulate plant growth, on the nitrogenase activity of the nitrogen-fixing bacterium Bradyrhizobium japonicum. Fix and nif gene regulation and protein expression in free-living cultures of B. japonicum were investigated using real-time PCR and two-dimensional electrophoresis after treatment with GA(3) or PIX. GA(3) treatment decreased nitrogenase activity and the relative expression of nifA, nifH, and fixA genes, but these effects were reversed by PIX treatment. As expected, several proteins involved in nitrogenase synthesis were down-regulated in the GA(3)-treated group. Conversely, several proteins involved in nitrogenase synthesis were up-regulated in the PIX-treated group, including bifunctional ornithine acetyltransferase/N-acetylglutamate synthase, transaldolase, ubiquinol-cytochrome C reductase iron-sulfur subunit, electron transfer flavoprotein subunit beta, and acyl-CoA dehydrogenase. Two-pot experiments were conducted to evaluate the effects of GA(3) and PIX on nodulation and nitrogenase activity in Rhizobium-treated legumes. Interestingly, GA(3) treatment increased nodulation and depressed nitrogenase activity, but PIX treatment decreased nodulation and enhanced nitrogenase activity. Our data show that the nif and fix genes, as well as several proteins involved in nitrogenase synthesis, are up-regulated by PIX and down-regulated by GA(3), respectively, in B. japonicum.
机译:已知将植物生长调节剂(PGR)用于大豆植物会诱导根瘤中固氮酶活性发生变化,这使我们推测PGR会影响自由生活的根瘤菌培养物中的固氮酶活性。在自由生活的根瘤菌培养物中,PGR对固氮酶活性影响的分子基础知之甚少。因此,对赤霉素(GA(3))和氯化甲基哌草胺(PIX)进行调节植物生长,对固氮细菌日本根瘤菌的固氮酶活性进行了比较研究。用GA(3)或PIX处理后,使用实时PCR和二维电泳研究了日本根瘤菌(B. japonicum)自由生活培养物中的Fix和nif基因调控以及蛋白质表达。 GA(3)处理降低了固氮酶的活性以及nifA,nifH和fixA基因的相对表达,但这些影响被PIX处理所逆转。不出所料,GA(3)处理组中的一些蛋白质参与固氮酶合成被下调。相反,在PIX处理组中,涉及固氮酶合成的几种蛋白质上调,包括双功能鸟氨酸乙酰转移酶/ N-乙酰谷氨酸合酶,反式醛缩酶,泛醇-细胞色素C还原酶铁-硫亚基,电子转移黄素蛋白亚基β和酰基-亚基。 CoA脱氢酶。进行了两锅实验,以评估GA(3)和PIX对根瘤菌处理过的豆科植物中结瘤和固氮酶活性的影响。有趣的是,GA(3)处理增加了结瘤和抑制了固氮酶的活性,但PIX处理则减少了结瘤和增强了固氮酶的活性。我们的数据显示,日本血吸虫中的nif和fix基因,以及涉及固氮酶合成的几种蛋白质,分别被PIX上调和GA(3)下调。

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