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经选择的希瓦氏菌属菌株接种的豆科植物生长在添加硅酸钙的重金属污染土壤中。

Leguminous plants nodulated by selected strains of Cupriavidus necator grow in heavy metal contaminated soils amended with calcium silicate.

机构信息

Departamento de Ciência do Solo, Universidade Federal de Lavras, C.P.3037, Lavras, Minas Gerais, Brazil,

出版信息

World J Microbiol Biotechnol. 2013 Nov;29(11):2055-66. doi: 10.1007/s11274-013-1369-2. Epub 2013 May 14.

Abstract

Increasing concern regarding mining area environmental contamination with heavy metals has resulted in an emphasis of current research on phytoremediation. The aim of the present study was to assess the efficiency of symbiotic Cupriavidus necator strains on different leguminous plants in soil contaminated with heavy metals following the application of inorganic materials. The application of limestone and calcium silicate induced a significant increase in soil pH, with reductions in zinc and cadmium availability of 99 and 94 %, respectively. In addition, improved nodulation of Mimosa caesalpiniaefolia, Leucaena leucocephala and Mimosa pudica in soil with different levels of contamination was observed. Significant increases in the nitrogen content of the aerial parts of the plant were observed upon nodulation of the root system of Leucaena leucocephala and Mimosa pudica by strain UFLA01-659 (36 and 40 g kg(-1)) and by strain UFLA02-71 in Mimosa caesalpiniaefolia (39 g kg(-1)). The alleviating effect of calcium silicate resulted in higher production of dry matter from the aerial part of the plant, an increase in nodule number and an increase in the nitrogen fixation rate. The results of the present study demonstrate that the combination of rhizobia, leguminous plants and calcium silicate may represent a key factor in the remediation of areas contaminated by heavy metals.

摘要

由于人们越来越关注矿区重金属环境污染问题,因此当前的研究重点集中在植物修复上。本研究旨在评估共生铜绿假单胞菌菌株在施加无机材料后对受重金属污染土壤中不同豆科植物的修复效率。施用石灰石和硅酸钙可显著提高土壤 pH 值,使锌和镉的有效性分别降低 99%和 94%。此外,还观察到在不同污染水平的土壤中,含羞草、银合欢和含羞草的结瘤情况得到了改善。当根瘤菌 UFLA01-659(36 和 40 g kg(-1)) 和 UFLA02-71 分别在银合欢和含羞草根系上结瘤时,可显著提高地上部分植物氮含量(39 g kg(-1))。硅酸钙的缓解作用可使植物地上部分干物质产量更高、结瘤数更多、固氮速率更高。本研究结果表明,根瘤菌、豆科植物和硅酸钙的结合可能是修复重金属污染区的关键因素。

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