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Effect of Azospirillum brasilense coinoculated with Rhizobium on Phaseolus vulgaris flavonoids and Nod factor production under salt stress

机译:根瘤菌共接种巴西固氮螺旋藻对盐胁迫下菜豆黄酮和Nod因子产生的影响

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摘要

The effects of salt upon Azospirillum brasilense strain Cd on plant growth, nodulation, flavonoid and lipochitooligosaccharide (LCOs-Nod factor) production, were sequentially followed after 4, 7 and 14 days during a Rhizobium-Phaseolus vulgaris cv. Negro Jamapa interaction, in a hydroponics growth system. Azospirillum brasilense promoted root branching in bean seedling roots and increased secretion of nod-gene-inducing flavonoid species, as detected by high-performance liquid chromatography (HPLC). The results also support that A. brasilense allows a longer, more persistent exudation of flavonoids by bean roots. A general positive effect of Azospirillum-Rhizobium coinoculation on the expression of nod-genes by Rhizobium tropici CIAT899 and Rhizobium etli ISP42, and on nodulation factor patterns, was observed in the presence of root exudates. The negative effects obtained under salt stress on nod-gene expression and on Nod factors' appearance were relieved in coinoculated plants.
机译:在普通根瘤菌-菜豆(Chizobium-Phaseolus culgaris cv)的第4、7和14天后,依次观察了盐对巴西固氮螺旋藻菌株Cd对植物生长,结瘤,类黄酮和脂寡糖(LCOs-Nod因子)产生的影响。在水培生长系统中,Negro Jamapa相互作用。高效液相色谱法(HPLC)检测到,巴西固氮螺菌可促进豆苗根部的根分支,并增加诱导nod基因的类黄酮种类的分泌。该结果还支持巴西青霉允许豆根更长,更持久地渗出类黄酮。在存在根系分泌物的情况下,观察到共接种固氮螺菌根瘤菌对热带根瘤菌CIAT899和根瘤菌ISP42的nod基因表达以及对根瘤因子模式的积极影响。盐胁迫下共接种植株对盐胁迫下的点头基因表达和点头因子出现的负面影响得到缓解。

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