Isolation, screening, and characterization of plant growth enhancing endophytic bacteria from halophytic Heliotropium curassavicum L. collected from salt stress areas of Srikakulam, Andhra Pradesh

Q4 Immunology and Microbiology Journal of Applied and Natural Science Pub Date : 2023-09-19 DOI:10.31018/jans.v15i3.4727
D. Sandhya Deepika, M. Sridevi, J. Lavanya
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Abstract

Farmers use excessive chemical fertilizers to boost crop productivity to meet growing agricultural demands. However, this practice is costly and environmentally hazardous. Sustainable increase in crop yield can be achieved through alternatives like microbial-based fertilizers. In the quest to identify plant growth-promoting endophytic bacteria, the present study was carried out and selected unexplored halophytic plant Heliotropium curassavicum L. Thirteen endophytic bacterial strains were isolated from both aerial and root portions of H.curassavicum. These isolates were tested for salt tolerance, enzyme production, and synthesis of growth-promoting secondary metabolites, like Indole-3-acetic acid (IAA) and phosphate solubilization . Most of the isolates belonged to the Bacillus family, exhibiting varying Gram staining and biochemical reactions. The majority are Gram-positive bacteria, non-motile, spore formers, and exist in two cells or chains. All isolates could tolerate up to 10% NaCl concentration and a temperature of 42°C. Based on phenotypic, bio-chemical characteristics, isolate HCR3 showed promising properties in synthesizing IAA and phosphate solubilization abilities. The isolate HCR3 grew well upto 10% NaCl concentration and also 42°C temperature. Based on molecular characterization by using 16S rRNA gene-based analysis HCR3 isolate was identified and belonged to the Genus Pseudomonas with the highest similarity index with Pseudomonas khazarica sp. HCR3 showed IAA production of 37µg ml-1, had a phosphate solubilization ability of 3.5 ppm, and recorded protease activity on gelatin medium. The findings highlight the potential of HCR3 and other strains from halophytic H. curassavicum L. to enhance plant growth through secondary bioactive metabolites, offering eco-friendly solutions for sustainable agriculture.
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安得拉邦Srikakulam盐胁迫区盐生植物Heliotropium curassavicum L.促植物生长内生细菌的分离、筛选及特性研究
农民使用过量的化肥来提高作物产量,以满足日益增长的农业需求。然而,这种做法既昂贵又对环境有害。作物产量的可持续增长可以通过微生物肥料等替代品来实现。为了鉴定促进植物生长的内生细菌,本研究选择了未开发的盐生植物Heliotropium curassavicum L.进行了研究,从H.curassavicum的地上和根部分分离到了13株内生细菌。测试了这些菌株的耐盐性、酶产量和促进生长的次级代谢物的合成,如吲哚-3-乙酸(IAA)和磷酸盐增溶性。大多数分离株属于芽孢杆菌科,表现出不同的革兰氏染色和生化反应。大多数是革兰氏阳性菌,不运动,孢子形成,存在于两个细胞或链中。所有菌株均能耐受高达10%的NaCl浓度和42°C的温度。基于表型和生化特性,分离物HCR3在合成IAA和磷酸盐增溶能力方面表现出良好的性能。HCR3在10% NaCl浓度和42℃温度下生长良好。基于16S rRNA基因分析的分子鉴定结果表明,HCR3菌株属于假单胞菌属,与khazarica Pseudomonas sp.相似度最高。HCR3菌株IAA产量为37µg ml-1,磷酸盐增溶能力为3.5 ppm,在明胶培养基上具有蛋白酶活性。这一发现强调了HCR3和其他盐生植物H. curassavicum L.菌株通过次生生物活性代谢物促进植物生长的潜力,为可持续农业提供了生态友好的解决方案。
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来源期刊
Journal of Applied and Natural Science
Journal of Applied and Natural Science Immunology and Microbiology-Immunology and Microbiology (all)
CiteScore
0.80
自引率
0.00%
发文量
168
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