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外源菌株 Rhodococcus sp. 2G 的生物强化可以有效减轻邻苯二甲酸二(2-乙基己基)酯对蔬菜种植的污染。

Bioaugmentation of Exogenous Strain Rhodococcus sp. 2G Can Efficiently Mitigate Di(2-ethylhexyl) Phthalate Contamination to Vegetable Cultivation.

机构信息

Guangdong Provincial Research Center for Environment Pollution Control and Remediation Materials, College of Life Science and Technology , Jinan University , Guangzhou 510632 , China.

Indian River Research and Education Center, Institute of Food and Agricultural Sciences , University of Florida , Fort Pierce , Florida 34945 , United States.

出版信息

J Agric Food Chem. 2019 Jun 26;67(25):6940-6949. doi: 10.1021/acs.jafc.9b01875. Epub 2019 Jun 14.

Abstract

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.

摘要

本研究开发了一种生物强化策略,通过接种分离得到的 Rhodococcus sp. 2G 菌株,同时降低土壤中二(2-乙基己基)邻苯二甲酸酯(DEHP)污染及其在油菜中的生物累积。该菌株能够在 50 至 1600 mg/L 的宽浓度范围内高效降解 DEHP,并通过独特的生化降解途径将 DEHP 转化,这使其有别于其他 Rhodococcus 物种。此外,菌株 2G 在接种蔬菜的根际土壤中很好地定殖,而不会与土著微生物竞争,从而导致土壤中 DEHP 的去除率显著提高(约 95%),同时蔬菜中 DEHP 的生物累积量也显著降低(可食部分约 75%)。种植蔬菜和接种菌株 2G 的根际中酶活性和溶解性有机碳(DOC)含量的提高是减轻 DEHP 对蔬菜种植污染的高效性的原因。本研究为在污染土壤中种植蔬菜以生产安全食品提供了一种很有应用潜力的方法。

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