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首页> 外文期刊>Molecular Plant-Microbe Interactions >Rhizobium etli Genetically Engineered for the Heterologous Expression of Vitreoscilla sp. Hemoglobin: Effects on Free-Living and Symbiosis
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Rhizobium etli Genetically Engineered for the Heterologous Expression of Vitreoscilla sp. Hemoglobin: Effects on Free-Living and Symbiosis

机译:基因改造的根瘤菌用于玻璃体菌种的异源表达。血红蛋白:对自由生活和共生的影响

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Oxygen concentration is an environmental signal that regulates nitrogen fixation in the Rhizobium -legume symbiosis. We investigated the effect of the heterologous expression of Vitreoscilla sp. hemoglobin (VHb), which is an oxygen-binding protein, in Rhizobium etli . The vhb gene and its native promoter were subcloned in the plasmid pMR4 and transformed into the R. etli strain CE3. Free-living cultures of engineered R. etli CE3 expressed the vhb gene, as shown by the CO-difference spectral and sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) analyses of cell extracts. The expression of vhb in free-living R. etli grown under most limiting oxygen concentrations resulted in an increase in respiratory activity, chemical energy content, and expression of the nitrogen-fixation gene nifHc . Bacteroids isolated from nodules of bean plants inoculated with the engineered R. etli CE3 expressed the vhb gene, as shown by RNA slot-blot analysis. Bean plants inoculated with the engineered strain exhibited higher nitrogenase activity and total nitrogen content (68% and 14 to 53%, respectively) than bean plants inoculated with the R. etli wild type. These results suggest that the synthesis of VHb in engineered R. etli stimulated the respiratory efficiency of free-living rhizobia, and also probably of symbiotic bacteroids, thus leading to higher levels of symbiotic nitrogen fixation.
机译:氧气浓度是一种环境信号,可调节豆科植物根瘤菌共生中的固氮作用。我们调查了玻璃体sp。的异源表达的影响。血红蛋白(VHb),是一种结合氧的蛋白质,在根瘤菌中。 vhb基因及其天然启动子被亚克隆到质粒pMR4中,并转化到R. etli菌株CE3中。经工程改造的R. etli CE3的自由生活培养物表达vhb基因,如细胞提取物的CO差光谱和十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)分析所示。 vhb在最大极限氧浓度下生长的自由活动R. etli中的表达导致呼吸活性,化学能含量和固氮基因nifHc的表达增加。从经工程改造的R. etli CE3接种的豆类植物结节中分离出的类细菌表达了vhb基因,如RNA印迹分析所示。接种工程菌株的豆类植物比接种R. etli野生型的豆类植物具有更高的固氮酶活性和总氮含量(分别为68%和14至53%)。这些结果表明,在工程R. etli中合成VHb可以刺激自由生活的根瘤菌以及共生类细菌的呼吸效率,从而导致更高的共生固氮水平。

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