Characterization of cadmium-resistant bacteria and their potential for reducing accumulation of cadmium in rice grains

细菌 镉暴露 环境化学 表征(材料科学) 化学 环境科学 生物 材料科学 纳米技术 遗传学 有机化学
作者
Xiaoyan Lin,Renxiang Mou,Zhaoyun Cao,Ping Xu,Xiaoliang Wu,Zhiwei Zhu,Mingxue Chen
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:569-570: 97-104 被引量:125
标识
DOI:10.1016/j.scitotenv.2016.06.121
摘要

Cadmium (Cd) pollution is a serious widespread environmental problem that not only destroys the microbial ecology of soil and decreases crop production, but also poses a serious risk to human health. Many methods have been used for the remediation of Cd pollution but none of these is totally satisfactory. Microbial remediation strategies have attracted increasing interest since they are environmentally friendly and cost-effective. In the present study, three Cd-resistant bacteria were isolated and evaluated for potential application in Cd bioremediation. Based on their morphological, physiological and biochemical characteristics, together with 16S rDNA gene sequence analyses , bacteria were identified as Stenotrophomonas acidaminiphila (2#), Pseudomonas aeruginosa (9#) and Delftia tsuruhatensis (12#). Pseudomonas aeruginosa showed very high tolerance to metals, especially Cd (2200 mg/L), Zn (1800 mg/L) and Pb (1200 mg/L), and is thought to be a multi-metal-resistant bacterium. Pseudomonas aeruginosa was also sensitive to 13 different antibiotics. The effects of the bacterial strains on the growth of rice plants and their ability to reduce Cd accumulation from Cd-contaminated soils in pot experiments were also evaluated. For Oryza sativa L. A grown in contaminated soil (3 mg/kg Cd), the accumulation of Cd was decreased by 31.2 and 25.5% in brown rice and polished rice, respectively, by strain 9#; Pseudomonas aeruginosa was more effective in reducing Cd accumulation in rice grains than a mixture of strains. For Oryza sativa L. B, a mixture of strains acting synergistically was more effective than a single strain in reducing Cd accumulation; treatment with mixed strains (strains + 3 mg/kg Cd) resulted in 41.3, 35.9, and 32.6% reductions in Cd accumulation in unhulled rice, brown rice and polished rice, respectively. Although different results were obtained for two rice varieties, it can still be concluded that Cd-resistant bacteria are suitable for reducing Cd accumulation in rice grains and show potential for bioremediation of Cd-contaminated soils. • Three bacterial strains with high Cd-resistance were isolated and identified. • Strain 9# showed high tolerance to Cd, Zn and Pb, and is a multi-metal-resistant bacterium. • Strain(s) were effective in reducing Cd accumulation in rice grains. • Cd-resistant bacteria show potential in bioremediation.
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