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在田间条件下,产脲酶细菌与羊粪联合抑制小麦对镉的吸收。

Inhibition of cadmium uptake by wheat with urease-producing bacteria combined with sheep manure under field conditions.

机构信息

Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing, 100081, PR China; Collaborative Innovation of Water Security for the Water Source Region of Mid-line of the South-to-North Diversion Project of Henan Province, College of Life Sciences and Agricultural Engineering, Nanyang Normal University, Nanyang, 473061, PR China.

Collaborative Innovation of Water Security for the Water Source Region of Mid-line of the South-to-North Diversion Project of Henan Province, College of Life Sciences and Agricultural Engineering, Nanyang Normal University, Nanyang, 473061, PR China.

出版信息

Chemosphere. 2022 Apr;293:133534. doi: 10.1016/j.chemosphere.2022.133534. Epub 2022 Jan 6.

Abstract

In heavy metal-contaminated farmland, microorganisms or organic fertilizers can be used to minimize heavy metal uptake by crops to ensure food safety. However, the mechanisms by which urease-producing and metal-immobilizing bacteria combined with manure inhibit Cd uptake in wheat (Triticum aestivum L.) remain unclear. Herein, the effects of Enterobacter bugandensis TJ6, sheep manure (SM), and TJ6 combined with SM on Cd uptake by wheat and the mechanisms involved were investigated under field conditions. The results showed that strain TJ6 increased the urease activity and the proportion of strains with a high Cd adsorption capacity in SM, thereby enhancing the Cd adsorption capacity of SM in solution. Strain TJ6 combined with SM improved the rhizosphere soil urease activity, NH/NO ratio, and pH, thus reducing the Cd content (75.9%) in wheat grain. In addition, TJ6+SM reduced the bacterial community diversity but shifted the structure of the bacterial community in rhizosphere soil. Interestingly, the relative abundances of urease-producing bacteria and metal-immobilizing bacteria (Enterobacter, Bacillus, Exiguobacterium, Rhizobium, and Serratia) in rhizosphere soil were enriched, which enhanced wheat resistance to Cd toxicity. These results showed that urease-producing and metal-immobilizing bacteria combined with sheep manure can inhibit the uptake of Cd by wheat.

摘要

在重金属污染农田中,可以利用微生物或有机肥料来最大限度地减少农作物对重金属的吸收,以确保食品安全。然而,产脲酶和固定金属的细菌与有机肥结合抑制小麦(Triticum aestivum L.)吸收镉的机制尚不清楚。本研究在田间条件下,研究了肠杆菌 TJ6、羊粪(SM)以及 TJ6 与 SM 结合对小麦吸收镉的影响及其作用机制。结果表明,菌株 TJ6 提高了 SM 中的脲酶活性和高镉吸附能力菌株的比例,从而增强了 SM 在溶液中的镉吸附能力。TJ6 与 SM 结合提高了根际土壤的脲酶活性、NH/NO 比和 pH 值,从而降低了小麦籽粒中的镉含量(75.9%)。此外,TJ6+SM 降低了根际土壤细菌群落的多样性,但改变了根际土壤细菌群落的结构。有趣的是,根际土壤中产脲酶细菌和固定金属细菌(肠杆菌、芽孢杆菌、极端杆菌、根瘤菌和沙雷氏菌)的相对丰度增加,增强了小麦对镉毒性的抗性。这些结果表明,产脲酶和固定金属的细菌与羊粪结合可以抑制小麦对镉的吸收。

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