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Multifarious beneficial traits and plant growth promoting potential of Serratia marcescens KiSII and Enterobacter sp. RNF 267 isolated from the rhizosphere of coconut palms (Cocos nucifera L.). | LitMetric

AI Article Synopsis

  • Two types of bacteria, KiSII and RNF 267, were identified from coconut palm roots as Serratia marcescens and Enterobacter sp., showing characteristics like phosphate solubilization and ammonification.
  • These bacteria can thrive in various pH levels, cold temperatures, and salty conditions, with S. marcescens KiSII having additional benefits like nitrogen fixation and antibiotic production.
  • When used on paddy and cowpea seeds, these bacteria improved plant growth and nutrient absorption significantly, suggesting their potential as bioinoculants for healthier coconut seedlings and greater benefits for coconut farming.

Article Abstract

Two plant growth promoting bacteria designated as KiSII and RNF 267 isolated from the rhizosphere of coconut palms were identified as Serratia marcescens and Enterobacter sp. based on their phenotypic features, BIOLOG studies and 16S rRNA gene sequence analysis. Both bacteria exhibited phosphate solubilization, ammonification, and production of indole acetic acid, β-1, 3 glucanase activities and 1-aminocyclopropane-1-carboxylate-deaminase activity. They could also tolerate a range of pH conditions, low temperature and salinity (NaCl). In addition, S. marcescens KiSII exhibited N- fixation potential, chitinase activity, siderophore production and antibiotics production. Seed bacterization with these bacteria increased the growth parameters of test plants such as paddy and cowpea over uninoculated control in green house assay. In coconut seedlings, significant increase in growth and nutrient uptake accompanied with higher populations of plant beneficial microorganisms in their rhizospheres were recorded on inoculation with both the PGPRs. The present study clearly revealed that PGPRs can aid in production of healthy and vigorous seedlings of coconut palm which are hardy perennial crops. They offer a scope to be developed into novel PGPR based bioinoculants for production of elite seedlings that can benefit the coconut farming community and the coconut based ecology.

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Source
http://dx.doi.org/10.1007/s11274-012-1163-6DOI Listing

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