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利用不同生态位来源的植物促生菌联合对油菜进行镉的植物提取。

Cadmium phytoextraction through Brassica juncea L. under different consortia of plant growth-promoting bacteria from different ecological niches.

机构信息

MOE Key Laboratory of Environment Remediation and Ecological Health, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China.

School of Marine Sciences, Ningbo University, Ningbo 315211, China.

出版信息

Ecotoxicol Environ Saf. 2022 Jun 1;237:113541. doi: 10.1016/j.ecoenv.2022.113541. Epub 2022 Apr 25.

Abstract

Combined bioaugmentation inoculants composed of two or more plant growth-promoting bacteria (PGPB) were more effective than single inoculants for plant growth and cadmium (Cd) removal in contaminated soils. However, the principles of consortia construction still need to be discovered. Here, a pot experiment with Cd natural polluted soil was conducted and PGPB consortia with different ecological niches from hyperaccumulator Sedum alfredii Hance were used to compare their effects and mechanisms on plant growth condition, Cd phytoextraction efficiency, soil enzymatic activities, and rhizospheric bacterial community of Brassica juncea L. The results showed that both rhizospheric and endophytic PGPB consortia inoculants promoted plant growth (6.9%-22.1%), facilitated Cd uptake (230.0%-350.0%) of oilseed rape, increased Cd phytoextraction efficiency (343.0%-441.0%), and enhanced soil Cd removal rates (92.0%-144.0%). PGPB consortia inoculants also enhanced soil microbial carbon by 22.2%-50.5%, activated the activities of soil urease and sucrase by 74.7%-158.4% and 8.4%-61.3%, respectively. Simultaneously, PGPB consortia inoculants increased the relative abundance of Flavobacterium, Rhodanobacter, Kosakonia, Pseudomonas and Paraburkholderia at the genus level, which may be beneficial to plant growth promotion and bacterial phytopathogen biocontrol. Although the four PGPB consortia inoculants promoted oilseed growth, amplified Cd phytoextraction, and changed bacterial community structure in rhizosphere soil, their original ecological niches were not a decisive factor for the efficiency of PGPB consortia. therefore, the results enriched the present knowledge regarding the significant roles of PGPB consortia as bioaugmentation agents and preliminarily explored construction principles of effective bioaugmentation inoculants, which will provide insights into the microbial responses to combined inoculation in the Cd-contaminated soils.

摘要

由两种或更多种植物促生细菌 (PGPB) 组成的联合生物增植接种剂比单一接种剂更能有效促进植物生长和去除污染土壤中的镉 (Cd)。然而,联合体构建的原则仍有待发现。在这里,进行了一项 Cd 天然污染土壤的盆栽实验,使用与超积累植物垂序商陆不同生态位的 PGPB 联合体来比较它们对植物生长条件、Cd 植物提取效率、土壤酶活性和 Brassica juncea L. 根际细菌群落的影响和机制。结果表明,根际和内生 PGPB 联合体接种剂均能促进植物生长(6.9%-22.1%),促进油菜吸收 Cd(230.0%-350.0%),提高 Cd 植物提取效率(343.0%-441.0%),并增强土壤 Cd 去除率(92.0%-144.0%)。PGPB 联合体接种剂还增加了土壤微生物碳 22.2%-50.5%,分别激活土壤脲酶和蔗糖酶活性 74.7%-158.4%和 8.4%-61.3%。同时,PGPB 联合体接种剂增加了属水平上黄杆菌属、Rhodanobacter 属、Kosakonia 属、假单胞菌属和 Paraburkholderia 属的相对丰度,这可能有利于植物生长促进和细菌植物病原菌的生物防治。虽然四种 PGPB 联合体接种剂均促进了油菜生长,放大了 Cd 的植物提取效率,改变了根际土壤的细菌群落结构,但它们的原始生态位并不是 PGPB 联合体效率的决定性因素。因此,结果丰富了 PGPB 联合体作为生物增植剂的重要作用的现有知识,并初步探索了有效生物增植接种剂的构建原则,这将为微生物对 Cd 污染土壤中联合接种的反应提供深入了解。

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