首页> 外文期刊>Journal of applied microbiology >Phosphate-solubilization mechanism and in vitro plant growth promotion activity mediated by Pantoea eucalypti isolated from Lotus tenuis rhizosphere in the Salado River Basin (Argentina)
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Phosphate-solubilization mechanism and in vitro plant growth promotion activity mediated by Pantoea eucalypti isolated from Lotus tenuis rhizosphere in the Salado River Basin (Argentina)

机译:萨洛多河流域(阿根廷)莲花特有根际分离的泛酸桉介导的磷酸盐增溶机理和体外植物生长促进活性

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摘要

Aims:To isolate and characterize phosphate-solubilizing strains from a constrained environment such as the Salado River Basin and to assess their phosphate-solubilizing mechanisms, to further selection of the most promising strains to inoculate and improve the implantation and persistence of Lotus tenuis in the most important area devoted to meat-cow production in Argentina.Methods and Results:Fifty isolates were obtained and through BOX-PCR analysis, 17 non-redundant strains were identified. Subsequently, they were found to be related to Pantoea, Erwinia, Pseudomonas, Rhizobium and Enterobacter genera, via 16S rRNA gene sequence analysis. This was in agreement with the clusters obtained by antibiotic resistance analysis. All isolates were tested for their phosphate-solubilizing activity and selected strains were inoculated onto L. tenuis plants. The most efficient isolate, was identified as Pantoea eucalypti, a novel species in terms of plant growth-promoting rhizobacteria.Conclusions:The isolates obtained in this study showed a significant in vitro plant-growth promoting activity onto Lotus tenuis and the best of them solubilizes phosphate mainly via induction of the metabolism through secretion and oxidation of gluconic acid.Singnificance and Impact of the Study:The use of these bacteria as bioinoculants, alone or in combination with nitrogen-fixing micro-organisms, could be a sustainable practice to facilitate the nutrient supply to Lotus tenuis plants and preventing negative side-effects such as eutrophication.
机译:目的:从萨拉多河盆地等受限制的环境中分离和鉴定可溶解磷酸盐的菌株,并评估其可溶解磷酸盐的机制,进一步选择最有希望的菌株来接种和改善莲花ten在该地区的植入和持久性。方法与结果:获得50株分离株,通过BOX-PCR分析鉴定出17株非冗余菌株。随后,通过16S rRNA基因序列分析,发现它们与泛菌,欧文氏菌,假单胞菌,根瘤菌和肠杆菌属有关。这与通过抗生素抗性分析获得的簇一致。测试了所有分离物的磷酸盐增溶活性,并将选择的菌株接种到ten.luuis植物上。就植物促生根瘤菌而言,最有效的分离株被鉴定为Pantoea eucalypti。磷酸盐的作用主要是通过葡萄糖酸的分泌和氧化来诱导新陈代谢。研究的意义和影响:单独或与固氮微生物结合使用这些细菌作为生物触媒剂,可能是一种可持续的实践,可促进向莲花特有植物提供营养,并防止诸如富营养化的负面副作用。

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