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德兰氏菌属分离株作为生物修复和生物肥料技术工具的多功能性。

The versatility of Delftia sp. isolates as tools for bioremediation and biofertilization technologies.

机构信息

Unit of Molecular Microbiology, Institute of Biological Research Clemente Esatble, Av. Italia 3318, Montevideo, Uruguay.

出版信息

Curr Microbiol. 2012 Jun;64(6):597-603. doi: 10.1007/s00284-012-0108-5. Epub 2012 Apr 3.

Abstract

Two Pb(II)-resistant bacteria isolated from a soil containing 2,500 mg/kg of Pb were identified by 16S rRNA sequencing analysis as Delftia sp. and designated as 3C and 6C. Both isolates grew at a Pb(II) concentration of 62 mg/L and at the stationary phase showed a Pb(II)-sorption capability of 10 ± 1.5 (3C) and 5 ± 0.8 (6C) mg/g of biomass. Biochemical properties related to heavy metal resistance and plant growth promotion were analyzed and compared with the Cr(VI)-resistant plant growth-promoting Delftia sp. JD2, previously reported by our group. Both isolates and JD2 were resistant to Cr(VI), Pb(II) and many antibiotics, produced siderophores and the phytohormone indole-3-acetic, and showed clover growth-promoting activity in greenhouse conditions. Interestingly, the occurrence of integron class 1 was shown in all isolates. Our results add to previous reports and suggest that bacteria of the genus Delftia could be consider as good candidates for the design of technologies for cleaning up contaminated environments and/or the production of biofertilizers.

摘要

从含 2500mg/kg Pb 的土壤中分离到的两株耐 Pb(II)细菌,通过 16S rRNA 测序分析鉴定为 Delftia sp.,分别命名为 3C 和 6C。两种分离株均能在 Pb(II)浓度为 62mg/L 的条件下生长,在静止期表现出 10±1.5mg/g(3C)和 5±0.8mg/g(6C)的 Pb(II)吸附能力。分析了与重金属抗性和植物生长促进相关的生化特性,并与本课题组先前报道的耐 Cr(VI)的植物促生 Delftia sp. JD2 进行了比较。两种分离株和 JD2 均能耐受 Cr(VI)、Pb(II)和许多抗生素,能产生铁载体和植物激素吲哚-3-乙酸,并在温室条件下具有三叶草生长促进活性。有趣的是,所有分离株均存在整合子 1 类。我们的研究结果补充了先前的报道,表明 Delftia 属细菌可作为设计用于清洁污染环境和/或生产生物肥料的技术的候选菌株。

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