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Agarwala, N.

Publications and source records attributed to Agarwala, N..

2 recordsLinked to original sources

Heat shock-mediated transformation in several Gram-negative bacteria such as Ralstonia pseudosolanacearum, Pseudomonas aeruginosa, Pseudomonas putida, and Enterobacter roggenkampii

Transformation of foreign DNA, subjecting Escherichia coli to CaCl2 treatment followed by heat shock exposure, is a regular approach in recombinant DNA technology. However, in spite of its large popularity in E. coli, heat shock transformation is rarely reported in other Gram-negative bacteria. Instead, techniques such as natural transformation, conjugation, or electroporation are used in those bacteria. In this study, we have successfully implemented the heat shock transformation in four different Gram-negative bacteria, such as Ralstonia pseudosolanacearum, Pseudomonas aeruginosa, Pseudomonas putida, and Enterobacter roggenkampii. The standard heat shock transformation procedure used for E. coli DH5 has been modified. The pDSK-GFPuv plasmid bearing the green fluorescence gene was directly transferred to Ralstonia pseudosolanacearum by heat shock at 50 {o}C for 60 seconds. For Pseudomonas aeruginosa, Pseudomonas putida, and Enterobacter roggenkampii, the cells were made competent using CaCl2, followed by performing transformation by heat shock at 50 {o}C for 180 seconds. The transformants were resistant to kanamycin as well as exhibited fluorescence. These transformants were used to study the colonization pattern of tomato seedlings. Our study suggested that the heat shock transformation method can also be performed to introduce genes in other Gram-negative bacteria, other than E. coli.

microbiology↗

Pseudomonas aeruginosa SPT08, a tomato endophyte, improves plant growth and controls bacterial wilt in tomato

Endophytes are a class of non-pathogenic microorganisms that reside within a plant and contribute to their health. Here, we isolated several endophytes from cotyledon-stage tomato seedlings that inhibited the growth of Ralstonia pseudosolanacearum, the bacterial wilt pathogen of tomato. One such endophyte, Pseudomonas aeruginosa SPT08, protected tomato seedlings as well as grown-up plants from the wilt disease. SPT08 also improved the tomato plant height by 20% and root growth by 60% in weight. SPT08 colonization inside tomato seedlings as well as in grown-up plants was studied using green fluorescent protein to demonstrate its endophytic behavior. SPT08 exhibited twitching and swimming motility and produced extracellular enzymes such as pectinase, protease, and amylase. SPT08 tested positive for several plant growth-promoting features such as phosphate solubilization, production of siderophore, plant hormone auxin, hydrogen cyanide, and ammonia. These features were further corroborated with SPT08 whole genome sequence. SPT08 genome is 6265489 bp, with 66.59% G+C and 5786 coding genes, including type II, III, and VI protein secretion systems. The antiSMASH tool identified potential for several secondary metabolites, including antibiotics, in SPT08. This study underscores the utility of P. aeruginosa SPT08 bio-protection from bacterial wilt and growth promotion agent in tomato. HighlightsPseudomonas aeruginosa SPT08, an endophyte isolated from tomato seedlings that inhibits bacterial wilt pathogen R. pseudosolanacearum, can control bacterial wilt in tomato plants and enhance the height and root growth.

plant biology↗