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Insights of organic fertilizer micro flora of bovine manure and their useful potentials in sustainable agriculture

机译:牛粪有机肥微生物群的见解及其可持续农业的有用潜力

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Exploration of diverse environmental samples for plant growth-promoting microbes to fulfill the increasing demand for sustainable agriculture resulted in increased use of bacterial biofertilizer. We aimed for the isolation of plant growth-promoting as well as antibiotic sensitive bacteria from bovine manure samples. The basic theme of our study is to highlight potentials of bacteria in manure and the unchecked risk associated with the application of manure i.e. introducing antibiotic-resistant microbial flora, as fertilizer. Fifty-two, morphologically distinct isolates; from eight different manure samples, were subjected to plant growth-promoting parametric tests along with antibiotic resistance. Thirteen antibiotic sensitive bacterial strains with potentials of plant growth promotion further characterized by 16S rRNA ribotyping and the identified genera were Stenotrophomonas , Achromobacter , Pseudomonas , and Brevibacillus . Successful radish seeds germination under sterile in-vitro conditions showed the potential of selected bacterial isolates as plant growth-promoting bacteria. The results of this study confirmed plant growth-promoting characteristics of bovine manures’ bacterial strains along with an alarming antibiotic resistance load which comprises 75% of bacterial isolated population. Our study showed distinct results of un-explored manure bacterial isolates for plant growth promotion and flagged ways associated with unchecked manure application in agriculture soil through high load of antibiotic resistant bacteria.
机译:促进植物生长微生物多样化环境样品的探索,以满足对可持续农业的日益增长的需求,导致细菌生物分析器的使用增加。我们的目标是从牛粪样品中分离植物生长促进以及抗生素敏感细菌。我们研究的基本主题是突出粪肥中细菌的潜力以及与粪肥应用相关的未经检查的风险,即引入抗生素的微生物菌群,作为肥料。五十二,形态上明显的分离;从八个不同的粪便样品中,植物生长促进参数试验以及抗生素抗性。十三个抗生素敏感细菌菌株,具有16s rRNA核糖和鉴定的属的植物生长促进促进的潜在促进促进和鉴定的属是Stenotophomonas,Achromobacter,假单胞菌和Brevibacillus。在无菌的体外条件下成功的萝卜种子萌发显示出选择的细菌分离物作为植物生长促进细菌的潜力。该研究的结果证实了植物生长促进牛粪的细菌菌株以及令人惊出的抗生素抗性载荷,其包含75%的细菌分离的群体。我们的研究表明,通过高负荷通过高负荷的抗生素细菌,未探索粪肥细菌分离株的未探索粪肥细菌分离株的不同结果,并通过高负荷的抗性细菌造成了与农业土壤中未经检查的粪便应用。

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