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Modulation of Endogenous Indole-3-Acetic Acid Biosynthesis in Bacteroids within Medicago sativa Nodules

机译:紫花苜蓿根瘤内细菌内源性吲哚-3-乙酸的生物合成调控

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To evaluate the dose-response effects of endogenous indole-3-acetic acid (IAA) on Medicago plant growth and dry weight production, we increased the synthesis of IAA in both free-living and symbiosis-stage rhizobial bacteroids during Rhizobium -legume symbiosis. For this purpose, site-directed mutagenesis was applied to modify an 85-bp promoter sequence, driving the expression of iaaM and tms2 genes for IAA biosynthesis. A positive correlation was found between the higher expression of IAA biosynthetic genes in free-living bacteria and the increased production of IAA under both free-living and symbiotic conditions. Plants nodulated by RD65 and RD66 strains, synthetizing the highest IAA concentration, showed a significant (up to 73%) increase in the shoot fresh weight and upregulation of nitrogenase gene, nifH , compared to plants nodulated by the wild-type strain. When these plants were analyzed by confocal microscopy, using an anti-IAA antibody, the strongest signal was observed in bacteroids of Medicago sativa RD66 ( Ms -RD66) plants, even when they were located in the senescent nodule zone. We show here a simple system to modulate endogenous IAA biosynthesis in bacteria nodulating legumes suitable to investigate which is the maximum level of IAA biosynthesis, resulting in the maximal increase of plant growth.
机译:为了评估内源吲哚-3-乙酸(IAA)对紫花苜蓿植物生长和干重生产的剂量效应,我们在根瘤菌-豆科植物共生期间增加了自由生活和共生阶段的根瘤菌类细菌中IAA的合成。为此目的,应用定点诱变来修饰85 bp启动子序列,从而驱动iaaM和tms2基因表达用于IAA生物合成。在自由活动和共生条件下,IAA生物合成基因在自由活动细菌中的较高表达与IAA产量的增加之间存在正相关关系。与野生型菌株提名的植物相比,RD65和RD66菌株致瘤的植物合成了最高的IAA浓度,表明其茎鲜重显着增加(高达73%),并且硝化酶基因nifH上调。当使用抗IAA抗体通过共聚焦显微镜分析这些植物时,即使它们位于衰老的根瘤区域,在紫花苜蓿RD66(Ms -RD66)植物的类杆菌中观察到最强的信号。我们在这里显示了一个简单的系统,可在结节性豆科植物的细菌中调节内源性IAA生物合成,这适用于研究IAA生物合成的最大水平,从而导致植物生长的最大增加。

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