生物强化
邻苯二甲酸盐
根际
生物累积
芸苔属
污染
食品科学
土壤污染
拉伤
接种
红球菌
丁草胺
化学
生物
农学
环境化学
生物修复
园艺
细菌
生态学
杂草防治
有机化学
解剖
遗传学
作者
Hai-Ming Zhao,Huan Du,Chun-Qing Huang,Sha Li,Xian-Hong Zeng,Xuejing Huang,Lei Xiang,Hui Li,Yan-Wen Li,Quan-Ying Cai,Ce-Hui Mo,Zhenli He
标识
DOI:10.1021/acs.jafc.9b01875
摘要
This work developed a bioaugmentation strategy that simultaneously reduced soil di(2-ethylhexyl) phthalate (DEHP) pollution and its bioaccumulation in Brassica parachinensis by inoculating the isolated strain Rhodococcus sp. 2G. This strain could efficiently degrade DEHP at a wide concentration range from 50 to 1600 mg/L and transformed DEHP through a unique biochemical degradation pathway that distinguished it from other Rhodococcus species. Besides, strain 2G colonized well in the rhizosphere soil of the inoculated vegetable without competition with indigenous microbes, resulting in increased removal of DEHP from soil (∼95%) and reduced DEHP bioaccumulation in vegetables (∼75% in the edible part) synchronously. Improved enzyme activities and DOC content in the rhizosphere of the planting vegetable and inoculating strain 2G were responsible for the high efficiency in mitigating DEHP contamination to vegetable cultivation. This work demonstrated a great potential application to grow vegetables in contaminated soil for safe food production.
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