通过随机物理突变改良细菌菌株,提高磷酸盐溶解效率,促进作物可持续生长

S. Damor, P. Goswami
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引用次数: 0

摘要

阳离子介导的固定作用导致土壤缺磷,从而降低了肥沃土地的农业产量。磷酸盐溶解细菌可以溶解这种固定的磷酸盐。本研究的目的是利用随机紫外诱变来提高从拉贾斯坦邦斋浦尔农业土壤中分离出来的细菌菌株的磷酸盐溶解效率。磷酸盐溶解能力是通过比色法测定的。当紫外线处理 40、50 和 60 分钟时。在利用 16S rRNA 基因测序构建的系统发生树中,分离株 B5 与假单胞菌(Pseudomonas putida)菌株聚类。因此,可以诱变利用假单胞菌和芽孢杆菌等野生菌株来利用土壤中的失磷。这可能是生态学上所期望的一种阐释;然而,还需要更多的研究来调查其中涉及的基本机制及其影响。
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Bacterial Strain Improvement via Random Physical Mutation to Improve Phosphate Solubilization Efficiency for Sustainable Crop Growth
Phosphorus deficiency in soil due to cation-mediated fixation reduces agricultural output from otherwise fertile lands. Phosphate solubilizing bacteria can solubilize this immobilized phosphate. The goal of this study was to use random UV mutagenesis to improve the phosphate solubilizing efficiency of the bacterial strains isolated from agriculture soils of Jaipur, Rajasthan. The phosphate solubilizing capacity was determined using the colorimetric chlorostannous reduced molybdo phosphoric acid blue method. When UV treated for 40, 50, and 60  min. Strain B5 depicted 58.54 %, 133.27 %, and 159.09 % enhanced phosphate solubilization, respectively, in the phylogenetic tree constructed using 16S rRNA gene sequencing, the isolate B5 clustered with Pseudomonas putida strains. Thus wild strains such as Pseudomonas sp. and Bacillus sp. can be mutagenically exploited to avail incapacitated phosphorus in soil. This can be an ecologically desired elucidation; however, more research is needed to investigate the underlying mechanisms involved and their repercussions.
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