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◆ Scientific Reports2025-12-21· Biosorption

Biosorption potential and plant growth promoting activities of zinc tolerant novel Chitinophaga niastensis HMR31 from zinc-infested zone

Ali Asger Bhojiya, Harshada Joshi, Sudhir K. Upadhyay, Devendra Jain

原始摘要(英文原文)· Original abstract
Heavy metal contamination in soil poses serious threats to agriculture, human health, and ecosystems. Bacterial biosorption has emerged as a sustainable, cost-effective, and eco-friendly approach for mitigating metal pollution. In this study, bacterial strain HMR31 was characterized through a polyphasic approach and evaluated for its ability to biosorb Zn(II), Fe(II), Pb(II), Cd(II), and Cr(III). Bacterial Zn accumulation was confirmed by AAS, SEM-EDX, and TEM analyses. The optimal pH, temperature, contact time, initial metal concentration, and biomass dose for heavy metal biosorption were determined. Phenotypic, chemotaxonomic (major fatty acids: iso-C15:0 and C16:1 5c; major hydroxy fatty acid: iso-C17:0 3-OH), and phylogenetic analyses of the 16 S rRNA gene identified the isolate as Chitinophaga niastensis HMR31. The biosorption efficiency followed the order Zn(II) > Fe(II) > Pb(II) > Cd(II) > Cr(III). Optimal biosorption was achieved at pH 7.0, 35 °C, 60 min contact time, 50 mg/L initial metal concentration, and 1.5 mg/mL biomass dose. The strain also exhibited multiple plant growth-promoting traits, including IAA, GA3, NH3, HCN, siderophore, ACC deaminase, and phosphate solubilization activity. In a pot experiment with Vigna radiata under zinc stress, inoculation with HMR31 alleviated toxicity and enhanced growth parameters. Thus, Chitinophaga niastensis HMR31 can be treated as a potential candidate for a concerted method in bioremediation to convert metal-contaminated sites to productive land.
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Biosorption potential and plant growth promoting activities of zinc tolerant novel Chitinophaga niastensis HMR31 from zinc-infested zone — 科研速览 Science Skim