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Genetic, physiological and biochemical characterization of Bacillus sp. strain RMB7 exhibiting plant growth promoting and broad spectrum antifungal activities

机译:芽孢杆菌的遗传,生理和生化特性。菌株RMB7具有促进植物生长和广谱抗真菌活性

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Background Plant growth promoting rhizobacteria (PGPR) are functionally diverse group of bacteria having immense potential as biofertilizers and biopesticides. Depending upon their function, they may serve as partial replacements for chemical fertilizer or pesticides as an eco-friendly and cost-effective alternatives as compared to their synthetic counterparts. Therefore, isolation, characterization and practical evaluation of PGPRs having the aforementioned multifaceted beneficial characteristics, are essentially required. This study describes the detailed polyphasic characterization of Bacillus sp. strain RMB7 having profound broad spectrum antifungal activity and plant growth promoting potential. Results Based on 16S rRNA gene sequencing, strain RMB7 was identified as Bacillus specie. This strain exhibited the production of 8?mg. L?1of indole-3-acetic acid (IAA) in tryptophan-supplemented medium. It was able to solubilize 50.6?mg. L?1 tri-calcium phosphate, reduced 601ηmol acetylene h?1/vial and inhibited >70% growth of nine fungal phytopathogens tested in vitro. Under natural pathogen pressure, inoculation with strain RMB7 and RMB7-supernatant conferred resistance by arugula plant against Pythium irregulare with a concurrent growth improvement over non-inoculated plants. The T-RFLP analysis based on 16S rRNA gene showed that inoculation with RMB7 or its supernatant have a major impact on the indigenous rhizosphere bacterial population. Mass spectrometric analysis revealed the production of lipopeptide surfactins as well as iturin A presence in crude extract of RMB7. PCR-amplification further confirmed the presence of genes involved in the biosynthesis of these two bioactive lipopeptide compounds. Conclusions The data show that Bacillus sp. strain RMB7 has multifaceted beneficial characteristics. It may be an ideal plant growth promoting as well as biocontrol agent, for its integrated use in disease and nutrient management strategies.
机译:背景技术促进植物生长的根际细菌(PGPR)是功能多样的细菌类,具有作为生物肥料和生物农药的巨大潜力。取决于它们的功能,与合成的同类产品相比,它们可以作为化肥或杀虫剂的部分替代品,是一种生态友好且具有成本效益的替代品。因此,本质上需要具有上述多方面有益特征的PGPR的分离,表征和实际评估。这项研究描述了芽孢杆菌的详细多相表征。菌株RMB7具有广谱的抗真菌活性和促进植物生长的潜力。结果基于16S rRNA基因测序,鉴定出RMB7菌株为芽孢杆菌。该菌株显示出8mg的产量。色氨酸补充培养基中的吲哚-3-乙酸(IAA)的L ?1 。能够溶解50.6mg。 L ?1 磷酸三钙,降低601nmol乙炔h ?1 /小瓶,并抑制了体外测试的9种真菌植物病原体的> 70%生长。在自然病原体压力下,芝麻菜植物接种了RMB7和RMB7上清菌株,使它们对不规则腐霉菌具有抗性,同时与未接种植物相比,其生长得到改善。基于16S rRNA基因的T-RFLP分析表明,接种RMB7或其上清液对本地根际细菌种群具有重大影响。质谱分析显示,粗提取物中存在脂肽表面活性素以及iturin A的存在,为7元。 PCR扩增进一步证实了涉及这两种生物活性脂肽化合物的生物合成的基因的存在。结论数据表明芽孢杆菌属。菌株RMB7具有多方面的有益特征。它可能是一种理想的植物生长促进剂以及生物防治剂,因为它可以综合用于疾病和营养管理策略。

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