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Plant growth-promoting rhizobacteria induce changes in Arabidopsis thaliana gene expression of nitrate and ammonium uptake genes

机译:植物生长促进无根杆菌诱导拟南芥拟南芥基因表达的变化硝酸盐和铵吸收基因

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Plant growth-promoting rhizobacteria (PGPR) enhance plant growth under the influence of multigenic processes, including nitrate (NO? 3 ) and ammonium (NH+ 4 ) uptake genes, which could potentially explain the improvement in plant nutrition and plant growth promotion. Studies on the effects of PGPR inoculation on regulation of NO? 3 and NH+ 4 plant uptake genes and nutrient accumulation using soil or soil-like substrates are limited. Here, we tested the hypothesis that the application of PGPR Bacillus mixtures increases overall plant growth, nutrient uptake and the transcript levels of nitrate and ammonium uptake genes in Arabidopsis thaliana. All three PGPR mixtures tested in this study significantly increased plant shoot fresh weight, root fresh, chlorophyll content, nutrient uptake and plant diameter. The transcript levels of five nitrate and four ammonium uptake genes were significantly higher in PGPR-treated plants compared to untreated plants. These results demonstrate that plant growth promotion and enhanced nutrient uptake by select PGPR mixtures.
机译:植物生长促进的根瘤菌(PGPR)在多粒程过程的影响下增强植物生长,包括硝酸盐(NOβ3)和铵(NH + 4)摄取基因,这可能会解释植物营养和植物生长促进的改善。 PGPR接种对NO监管的影响研究吗?使用土壤或土壤样板的3和NH + 4种植植物摄取基因和营养积累是有限的。在这里,我们测试了PGPR芽孢杆菌混合物的应用增加了整体植物生长,营养吸收和硝酸铵的转录水平,亚硝酸盐和氨基铵的转录水平。本研究中测试的所有三种PGPR混合物显着增加了植物芽鲜重,根新鲜,叶绿素含量,营养吸收和植物直径。与未处理的植物相比,PGPR处理的植物中,PGPR处理的植物的转录物水平明显高。这些结果表明,通过选择PGPR混合物,植物生长促进和增强的营养吸收。

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