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细菌群落改良剂有效降低土壤中铅/镉的生物有效性及其在小麦中的积累。

Bacterial consortium amendment effectively reduces Pb/Cd bioavailability in soil and their accumulation in wheat.

作者信息

Zhu Xiaozhen, Ju Wenliang, Beiyuan Jingzi, Chao Herong, Zhang Zhiqin, Chen Li, Cui Qingliang, Qiu Tianyi, Zhang Wenju, Huang Min, Shen Yufang, Fang Linchuan

机构信息

State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau, College of Natural Resources and Environment, Northwest A&F University, Yangling, 712100, China; College of Xingzhi, Zhejiang Normal University, Jinhua, 321000, China.

School of Environment, Tsinghua University, Beijing, 100084, China.

出版信息

J Environ Manage. 2024 Nov;370:122789. doi: 10.1016/j.jenvman.2024.122789. Epub 2024 Oct 5.

Abstract

Microbial remediation can maintain the sustainability of farmlands contaminated with heavy metals (HMs). However, the effects of bacterial consortium on crop growth and potential risks under HM stress, as well as its mechanisms, are still unclear compared with a single microorganism. Here, we investigated the effect of a bacterial consortium consisting of some HMs-resistant bacteria, including Bacillus cereus, Bacillus thuringiensis, and Herbaspirillum huttiense, on plant growth promotion and inhibition of Pb/Cd accumulation within different contaminated soil-wheat systems through pot experiments. The results showed that microbial inoculation alleviated HMs-induced growth inhibition by activating antioxidant enzymes and inhibiting lipid peroxidation, and enhanced plant growth in the bacterial consortium. Compared to a single strain (Bacillus cereus, Bacillus thuringiensis, or Herbaspirillum huttiense), the bacterial consortium was more conducive to improving root development and reducing the content of available HMs in soil (4.5-10.3%) and its transfer to shoot (4.3-8.4%). Moreover, bacterial consortium significantly increased soil enzyme activities and available nutrients, resulting in nearly twice that of a single strain on the effect of soil quality and plant growth. Correlation analysis and least square path analysis showed that the bacterial consortium could significantly reduce the HMs-enrichment/transport from soil to shoot than a single strain by regulating soil available HMs and biochemical properties, as well as the parameters for plant growth. This study emphasizes that bacterial consortium promotes the growth of the crop wheat and reduces the risk of HMs entering human food chain, further providing an effective strategy for the safe production of food crops in contaminated soils.

摘要

微生物修复可以维持重金属污染农田的可持续性。然而,与单一微生物相比,细菌联合体在重金属胁迫下对作物生长的影响、潜在风险及其作用机制仍不清楚。在此,我们通过盆栽试验研究了由一些抗重金属细菌组成的细菌联合体,包括蜡样芽孢杆菌、苏云金芽孢杆菌和赫氏草螺菌,对不同污染土壤-小麦系统中促进植物生长和抑制铅/镉积累的作用。结果表明,微生物接种通过激活抗氧化酶和抑制脂质过氧化减轻了重金属诱导的生长抑制,并增强了细菌联合体中的植物生长。与单一菌株(蜡样芽孢杆菌、苏云金芽孢杆菌或赫氏草螺菌)相比,细菌联合体更有利于改善根系发育,降低土壤中有效重金属含量(4.5-10.3%)及其向地上部的转移(4.3-8.4%)。此外,细菌联合体显著提高了土壤酶活性和有效养分,在土壤质量和植物生长效应方面比单一菌株高出近两倍。相关性分析和最小二乘路径分析表明,细菌联合体通过调节土壤有效重金属和生化特性以及植物生长参数,比单一菌株能更显著地降低重金属从土壤到地上部的富集/转运。本研究强调细菌联合体促进了作物小麦的生长,降低了重金属进入人类食物链的风险,进一步为污染土壤中粮食作物的安全生产提供了有效策略。

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