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NADH-Glutamate Synthase in Alfalfa Root Nodules. Genetic Regulation and Cellular Expression

机译:苜蓿根瘤中的NADH-谷氨酸合酶。遗传的 调控和细胞表达

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摘要

NADH-dependent glutamate synthase (NADH-GOGAT; EC 1.4.1.14) is a key enzyme in primary nitrogen assimilation in alfalfa (Medicago sativa L.) root nodules. Here we report that in alfalfa, a single gene, probably with multiple alleles, encodes for NADH-GOGAT. In situ hybridizations were performed to assess the location of NADH-GOGAT transcript in alfalfa root nodules. In wild-type cv Saranac nodules the NADH-GOGAT gene is predominantly expressed in infected cells. Nodules devoid of bacteroids (empty) induced by Sinorhizobium meliloti 7154 had no NADH-GOGAT transcript detectable by in situ hybridization, suggesting that the presence of the bacteroid may be important for NADH-GOGAT expression. The pattern of expression of NADH-GOGAT shifted during root nodule development. Until d 9 after planting, all infected cells appeared to express NADH-GOGAT. By d 19, a gradient of expression from high in the early symbiotic zone to low in the late symbiotic zone was observed. In 33-d-old nodules expression was seen in only a few cell layers in the early symbiotic zone. This pattern of expression was also observed for the nifH transcript but not for leghemoglobin. The promoter of NADH-GOGAT was evaluated in transgenic alfalfa plants carrying chimeric β-glucuronidase promoter fusions. The results suggest that there are at least four regulatory elements. The region responsible for expression in the infected cell zone contains an 88-bp direct repeat.
机译:依赖NADH的谷氨酸合酶(NADH-GOGAT; EC 1.4.1.14)是苜蓿(Medicago sativa L.)根瘤中一次氮同化的关键酶。在这里,我们报道在苜蓿中,可能具有多个等位基因的单个基因编码NADH-GOGAT。进行原位杂交以评估NADH-GOGAT转录本在苜蓿根瘤中的位置。在野生型cv Saranac结节中,NADH-GOGAT基因主要在受感染的细胞中表达。苜蓿中华根瘤菌(Sinorhizobium meliloti)7154诱导的无类细菌结节(空)没有可通过原位杂交检测到的NADH-GOGAT转录物,表明该类细菌的存在可能对NADH-GOGAT表达很重要。 NADH-GOGAT的表达模式在根瘤发育过程中发生了变化。直到种植后第9天,所有感染的细胞似乎都表达NADH-GOGAT。到第19天,观察到从早期共生区高表达到晚期共生区低表达的梯度。在33天大的结节中,仅在几个细胞层中发现了表达 早期共生带。还观察到这种表达模式 nifH成绩单,但不是血红蛋白。的 在转基因苜蓿中评估了NADH-GOGAT的启动子 携带嵌合β-葡萄糖醛酸酶启动子融合的植物。的 结果表明,至少有四个监管要素。的 负责在受感染细胞区域表达的区域包含一个 88 bp直接重复。

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