首页> 美国卫生研究院文献>Frontiers in Plant Science >Promotion of arsenic phytoextraction efficiency in the fern Pteris vittata by the inoculation of As-resistant bacteria: a soil bioremediation perspective
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Promotion of arsenic phytoextraction efficiency in the fern Pteris vittata by the inoculation of As-resistant bacteria: a soil bioremediation perspective

机译:接种抗As细菌提高蕨类蕨类植物中砷的植物提取效率:土壤生物修复的观点

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摘要

A greenhouse pot experiment was carried out to evaluate the efficiency of arsenic phytoextraction by the fern Pteris vittata growing in arsenic-contaminated soil, with or without the addition of selected rhizobacteria isolated from the polluted site. The bacterial strains were selected for arsenic resistance, the ability to reduce arsenate to arsenite, and the ability to promote plant growth. P. vittata plants were cultivated for 4 months in a contaminated substrate consisting of arsenopyrite cinders and mature compost. Four different experimental conditions were tested: (i) non-inoculated plants; (ii) plants inoculated with the siderophore-producing and arsenate-reducing bacteria Pseudomonas sp. P1III2 and Delftia sp. P2III5 (A); (iii) plants inoculated with the siderophore and indoleacetic acid-producing bacteria Bacillus sp. MPV12, Variovorax sp. P4III4, and Pseudoxanthomonas sp. P4V6 (B), and (iv) plants inoculated with all five bacterial strains (AB). The presence of growth-promoting rhizobacteria increased plant biomass by up to 45% and increased As removal efficiency from 13% without bacteria to 35% in the presence of the mixed inoculum. Molecular analysis confirmed the persistence of the introduced bacterial strains in the soil and resulted in a significant impact on the structure of the bacterial community.
机译:进行了温室盆栽实验,以评估在受砷污染的土壤中生长的蕨类蕨类植物蕨类植物的植物提取砷的效率,添加或不添加从污染部位分离的选定根瘤菌。选择细菌菌株的抗砷性,将砷还原为亚砷酸盐的能力以及促进植物生长的能力。假单胞菌植物在由毒砂煤渣和成熟的堆肥组成的被污染的基质中培养4个月。测试了四种不同的实验条件:(i)未接种的植物; (ii)接种产生铁载体和减少砷酸盐的细菌假单胞菌(Pseudomonas sp。)的植物。 P1III2和Delftia sp。 P2III5(A); (iii)接种了铁载体和产生吲哚乙酸的细菌芽孢杆菌属的植物。 MPV12,Variovorax sp。 P4III4和Pseudoxanthomonas sp。用所有五种细菌菌株(AB)接种的P4V6(B)和(iv)植物。在混合接种物的存在下,促进生长的根际细菌的存在将植物生物量增加了高达45%,并将As去除效率从无细菌的13%提高到了35%。分子分析证实了引入的细菌菌株在土壤中的持久性,并对细菌群落的结构产生了重大影响。

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