Effective rhizoinoculation and biofilm formation by arsenic immobilizing halophilic plant growth promoting bacteria (PGPB) isolated from mangrove rhizosphere: A step towards arsenic rhizoremediation

根际 生物修复 红树林 细菌 生物膜 生物 环境修复 地下水砷污染 亚砷酸盐 砷毒性 化学 环境化学 植物 污染 生态学 有机化学 遗传学
作者
Ivy Mallick,Chandrima Bhattacharyya,S. M. MUKHERJI,Dhritiman Dey,Somesh Chandra Sarkar,Ujjal Kumar Mukhopadhyay,Abhrajyoti Ghosh
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:610-611: 1239-1250 被引量:215
标识
DOI:10.1016/j.scitotenv.2017.07.234
摘要

Arsenic (As) uptake by plants is largely influenced by the presence of microbial consortia and their interactions with As. In the coastal region of Bengal deltaic plain of Eastern India, the As-contaminated groundwater is frequently used for irrigation purposes resulting in an elevated level of soil As in agricultural lands. The health hazards associated with As necessitates development of cost-effective remediation strategies to reclaim contaminated agricultural lands. Among the available technologies developed in recent times, bioremediation using bacteria has been found to be the most propitious. In this study, two As-resistant halophilic bacterial strains Kocuria flava AB402 and Bacillus vietnamensis AB403 were isolated, identified and characterized from mangrove rhizosphere of Sundarban. The isolates, AB402 and AB403, could tolerate 35mM and 20mM of arsenite, respectively. The effect of As on the exopolysaccharide (EPS) synthesis, biofilm formation, and root association was evaluated for both the bacterial strains. Arsenic adsorption on the cell surfaces and intracellular accumulation in both the bacterial strains were promising under culture conditions. Moreover, both the strains when used as inoculum, not only promoted the growth of rice seedlings but also decreased As uptake and accumulation in plants.
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