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固定金属的假单胞菌 WRS8 通过改变与金属固定相关的细菌种群丰度来减少芫荽中的重金属积累。

Metal-immobilizing Pseudomonas taiwanensis WRS8 reduces heavy metal accumulation in Coriandrum sativum by changing the metal immobilization-related bacterial population abundances.

机构信息

College of Life Sciences, Nanjing Agricultural University, Key Laboratory of Agricultural and Environmental Microbiology, Ministry of Agriculture, Nanjing, 210095, China.

出版信息

Environ Sci Pollut Res Int. 2023 Jul;30(31):76911-76922. doi: 10.1007/s11356-023-27967-2. Epub 2023 May 29.

Abstract

Metal-immobilizing bacteria play a critical role in metal accumulation in vegetables. However, little is known concerning the mechanisms involved in bacteria-induced reduced metal availability and uptake in vegetables. In this study, the impacts of metal-immobilizing Pseudomonas taiwanensis WRS8 on the plant biomass, Cd and Pb availability and uptake in two coriander (Coriandrum sativum L.) cultivars, and bacterial community structure were investigated in the polluted soil. Strain WRS8 increased the biomass of two coriander cultivars by 25-48% and reduced Cd and Pb contents in the edible tissues by 40-59% and available Cd and Pb contents in the rhizosphere soils by 11.1-15.2%, compared with the controls. Strain WRS8 significantly increased the pH values and relative abundances of the dominant populations of Sphingomonas, Pseudomonas, Gaiellales, Streptomyces, Frankiales, Bradyrhizobium, and Luteimonas, while strain WRS8 significantly decreased the relative abundances of the dominant populations of Gemmatimonadaceae, Nitrospira, Haliangium, Paenibacillus, Massilia, Bryobacter, and Rokubacteriales and the rare bacterial populations of Enterorhabdus, Roseburia, Luteibacter, and Planifilum in the rhizosphere soils, compared with the controls. Significantly negative correlations were observed between the available metal concentrations and the abundances of Pseudomonas, Luteimonas, Frankiales, and Planifilum. These results implied that strain WRS8 could affect the abundances of the dominant and rare bacterial populations involved in metal immobilization, resulting in increased pH values and decreased metal availability and uptake in the vegetables in the contaminated soil.

摘要

金属固定细菌在蔬菜中金属积累方面起着至关重要的作用。然而,关于细菌诱导的蔬菜中金属生物有效性降低和吸收减少的机制知之甚少。在这项研究中,研究了金属固定假单胞菌 WRS8 对受污染土壤中两种芫荽(Coriandrum sativum L.)品种的植物生物量、Cd 和 Pb 生物有效性和吸收、以及细菌群落结构的影响。与对照相比,菌株 WRS8 使两种芫荽品种的生物量增加了 25-48%,并使可食用组织中的 Cd 和 Pb 含量降低了 40-59%,根际土壤中的有效 Cd 和 Pb 含量降低了 11.1-15.2%。与对照相比,菌株 WRS8 显著增加了土壤中优势种群的 Sphingomonas、Pseudomonas、Gaiellales、Streptomyces、Frankiales、Bradyrhizobium 和 Luteimonas 的相对丰度,而显著降低了 Gemmatimonadaceae、Nitrospira、Haliangium、Paenibacillus、Massilia、Bryobacter 和 Rokubacteriales 的相对丰度以及根际土壤中稀有细菌种群 Enterorhabdus、Roseburia、Luteibacter 和 Planifilum 的相对丰度。根际土壤中可利用金属浓度与 Pseudomonas、Luteimonas、Frankiales 和 Planifilum 的丰度呈显著负相关。这些结果表明,菌株 WRS8 可能影响参与金属固定的优势和稀有细菌种群的丰度,导致受污染土壤中蔬菜的 pH 值升高,金属生物有效性降低,吸收减少。

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