首页> 外文期刊>Canadian journal of microbiology >Plant-growth-promoting rhizobacteria Bacillus subtilis RR4 isolated from rice rhizosphere induces malic acid biosynthesis in rice roots
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Plant-growth-promoting rhizobacteria Bacillus subtilis RR4 isolated from rice rhizosphere induces malic acid biosynthesis in rice roots

机译:植物生长促进从水稻根际分离的枯草芽孢杆菌枯草芽孢杆菌枯草芽孢杆菌诱导米根中的苹果酸生物合成

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摘要

Malic acid (MA), one of the major organic acid exudates from roots, plays a significant role in the chemotaxis of beneficial bacteria to the plant’s rhizosphere. In this study, the effect of a plant-growth-promoting rhizobacterium, Bacillus subtilis RR4, on the synthesis and exudation of MA from roots is demonstrated in rice. To test the chemotactic ability of strain RR4 towards MA, a capillary chemotaxis assay was performed, which revealed a positive response (relative chemotactic ratio of 6.15 with 10 μmol/L MA); with increasing concentrations of MA, an elevated chemotactic response was observed. Quantitative polymerase chain reaction, performed to analyze the influence of RR4 on the MA biosynthetic gene, malate synthase ( OsMS ), and the transporter gene, aluminium-activated malate transporter ( OsALMT ), demonstrated significant differential expression, with 1.8- and –0.58-fold changes, respectively, in RR4-treated roots. The gene expression pattern of OsMS corroborated the data obtained by high-performance liquid chromatography, which showed elevated MA levels in roots (1.52-fold), whereas the levels of MA in root exudates were not altered significantly although expression of OsALMT was reduced. Our results demonstrate that B. subtilis RR4 is chemotactic to MA and can induce biosynthesis of MA in rice roots.
机译:苹果酸(MA),其中一个主要的有机酸从根部渗出,在植物根际的有益细菌的趋化性中起着重要作用。在这项研究中,在水稻中证明了植物生长促进的Rhizobacterium,枯草芽孢杆菌RR4对来自根部的合成和渗出的影响。为了测试菌株RR4朝向MA的趋化能力,进行毛细管趋化性测定,显示阳性反应(相对趋化比为6.15,10μmol/ L mA);随着MA的浓度增加,观察到升高的趋化反应。进行定量聚合酶链反应,用于分析RR4对MA生物合成基因,雄性合成酶(OSMS)和转运基因的影响,铝活性苹果酸盐转运蛋白(Osalmt),表现出显着的差异表达,1.8-和-0.58-在RR4处理的根部分别折叠变化。 OSMS的基因表达模式证实了通过高性能液相色谱所获得的数据,其显示在根部(1.52倍)中的MA水平,而根部渗出物的水平不会显着改变,尽管osalmt的表达降低。我们的结果表明,B.枯草芽孢杆菌RR4是MA的趋化性,可以在水稻根中诱导MA的生物合成。

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