根际
镉
恶臭假单胞菌
环境修复
植物修复
植物毒性
生物修复
向日葵
重金属
共生
金属毒性
环境化学
污染
生物
环境科学
化学
植物
细菌
农学
生态学
有机化学
遗传学
作者
Cindy H. Wu,Thomas K. Wood,Ashok Mulchandani,Wilfred Chen
标识
DOI:10.1128/aem.72.2.1129-1134.2006
摘要
ABSTRACT The use of plants for rehabilitation of heavy-metal-contaminated environments is an emerging area of interest because it provides an ecologically sound and safe method for restoration and remediation. Although a number of plant species are capable of hyperaccumulation of heavy metals, the technology is not applicable for remediating sites with multiple contaminants. A clever solution is to combine the advantages of microbe-plant symbiosis within the plant rhizosphere into an effective cleanup technology. We demonstrated that expression of a metal-binding peptide (EC20) in a rhizobacterium, Pseudomonas putida 06909, not only improved cadmium binding but also alleviated the cellular toxicity of cadmium. More importantly, inoculation of sunflower roots with the engineered rhizobacterium resulted in a marked decrease in cadmium phytotoxicity and a 40% increase in cadmium accumulation in the plant root. Owing to the significantly improved growth characteristics of both the rhizobacterium and plant, the use of EC20-expressing P. putida endowed with organic-degrading capabilities may be a promising strategy to remediate mixed organic-metal-contaminated sites.
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