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重金属固定细菌与钙多肽结合降低了小麦对 Cd 的吸收,并改变了根际细菌群落。

Heavy metal-immobilizing bacteria combined with calcium polypeptides reduced the uptake of Cd in wheat and shifted the rhizosphere bacterial communities.

机构信息

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 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 Agricultural Engineering, Nanyang Normal University, Nanyang, 473061, PR China.

出版信息

Environ Pollut. 2020 Dec;267:115432. doi: 10.1016/j.envpol.2020.115432. Epub 2020 Aug 18.

Abstract

In situ stabilization techniques for the "remediation" of heavy metal-contaminated soil are a novel and inexpensive technology. However, the mechanisms underlying the interaction of exogenous passivators with the bacterial community in wheat rhizosphere soil remain unclear. Soil static culture and pot experiments were conducted to evaluate the effects and mechanisms of the heavy metal-immobilizing bacterium Enterobacter bugandensis TJ6 and calcium polypeptides (CPPs) and their association with Cd uptake in wheat, soil quality and the rhizobacterial community structure. The results showed that compared with the control treatment (CK), the TJ6, CPP, and TJ6+CPP treatments significantly decreased the diethylenetriaminepentaacetic acid (DTPA)-extractable Cd (25.2%-60.1%) content and increased the pH, organic matter content and urease activity in the wheat rhizosphere soil, which resulted in decreases in the Cd (21.5%-77.8%) content in wheat tissues (grain, straw, and roots). In particular, the TJ6+CPP treatment was more effective at decreasing Cd accumulation in grains. Furthermore, the TJ6+CPP treatment improved the diversity of the soil bacterial community in the wheat rhizosphere, and the relative abundances of Proteobacteria, Firmicutes, Arthrobacter, Microvirga, Ensifer, Brevundimonas, Devosia and Pedobacter were enriched. These results suggest that the TJ6+CPP treatment decreased the uptake of Cd in wheat by i) providing essential elements (N and C sources), ii) increasing the pH and reducing the bioavailable Cd content in wheat rhizosphere soil, iii) allowing colonization to promote plant growth and Cd-resistant bacteria, and iv) increasing the abundance of genes associated with ABC transporters, carbon metabolism and oxidative phosphorylation in the rhizosphere bacterial community. Our results showed that the heavy metal-immobilizing bacterium TJ6 combined with CPPs decreased the Cd content and increased the bacterial community diversity of wheat rhizosphere soil. Our results also highlight the potential of using heavy metal-immobilizing bacteria and CPPs to ensure the safe production of crops growing on heavy metal-polluted soils.

摘要

原位稳定技术是一种新颖且廉价的修复重金属污染土壤的技术。然而,外源钝化剂与小麦根际土壤细菌群落相互作用的机制尚不清楚。本研究采用土壤静态培养和盆栽试验,评估重金属固定细菌 Enterobacter bugandensis TJ6 和钙肽(CPPs)及其与小麦 Cd 吸收、土壤质量和根际细菌群落结构的关系。结果表明,与对照处理(CK)相比,TJ6、CPP 和 TJ6+CPP 处理显著降低了小麦根际土壤中 DTPA 可提取 Cd(25.2%-60.1%)含量,增加了 pH 值、有机质含量和脲酶活性,导致小麦组织(籽粒、秸秆和根系)中 Cd 含量降低(21.5%-77.8%)。特别是 TJ6+CPP 处理能更有效地降低籽粒中 Cd 的积累。此外,TJ6+CPP 处理改善了小麦根际土壤细菌群落的多样性,增加了 Proteobacteria、Firmicutes、Arthrobacter、Microvirga、Ensifer、Brevundimonas、Devosia 和 Pedobacter 的相对丰度。这些结果表明,TJ6+CPP 处理通过以下几种方式减少了小麦对 Cd 的吸收:i)提供必需元素(N 和 C 源),ii)增加 pH 值并降低小麦根际土壤中 Cd 的生物有效性,iii)促进定殖以促进植物生长和 Cd 抗性细菌,iv)增加与 ABC 转运体、碳代谢和氧化磷酸化相关的根际细菌群落基因的丰度。本研究表明,重金属固定细菌 TJ6 与 CPPs 联合使用降低了小麦根际土壤 Cd 含量,增加了根际土壤细菌群落的多样性。研究结果还强调了利用重金属固定细菌和 CPPs 确保在重金属污染土壤上安全生产作物的潜力。

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