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真菌诱导铅转化为磷氯铅矿。

Lead transformation to pyromorphite by fungi.

机构信息

Division of Molecular Microbiology, College of Life Sciences, University of Dundee, Dundee DD1 5EH, Scotland, UK.

出版信息

Curr Biol. 2012 Feb 7;22(3):237-41. doi: 10.1016/j.cub.2011.12.017. Epub 2012 Jan 12.

Abstract

Lead (Pb) is a serious environmental pollutant in all its chemical forms [1]. Attempts have been made to immobilize lead in soil as the mineral pyromorphite using phosphate amendments (e.g., rock phosphate, phosphoric acid, and apatite [2-5]), although our work has demonstrated that soil fungi are able to transform pyromorphite into lead oxalate [6, 7]. Lead metal, an important structural and industrial material, is subject to weathering, and soil contamination also occurs through hunting and shooting [8, 9]. Although fungi are increasingly appreciated as geologic agents [10-12], there is a distinct lack of knowledge about their involvement in lead geochemistry. We examined the influence of fungal activity on lead metal and discovered that metallic lead can be transformed into chloropyromorphite, the most stable lead mineral that exists. This is of geochemical significance, not only regarding lead fate and cycling in the environment but also in relation to the phosphate cycle and linked with microbial transformations of inorganic and organic phosphorus. This paper provides the first report of mycogenic chloropyromorphite formation from metallic lead and highlights the significance of this phenomenon as a biotic component of lead biogeochemistry, with additional consequences for microbial survival in lead-contaminated environments and bioremedial treatments for Pb-contaminated land.

摘要

铅(Pb)以其所有化学形式都是一种严重的环境污染物[1]。人们曾试图使用磷酸盐添加剂(例如磷灰石、磷酸和磷灰石[2-5])将土壤中的铅固定在矿物磷铅矿中,尽管我们的工作表明土壤真菌能够将磷铅矿转化为草酸铅[6,7]。作为一种重要的结构和工业材料,金属铅会受到风化的影响,而狩猎和射击也会导致土壤污染[8,9]。尽管真菌作为地质作用因素越来越受到重视[10-12],但人们对它们在铅地球化学中的参与程度知之甚少。我们研究了真菌活动对金属铅的影响,发现金属铅可以转化为最稳定的铅矿物——氯磷铅矿。这具有地球化学意义,不仅涉及到环境中铅的命运和循环,还涉及到磷酸盐循环以及与微生物对无机和有机磷的转化有关。本文首次报道了从金属铅中形成的真菌性氯磷铅矿,并强调了这一现象作为铅生物地球化学中生物组成部分的重要性,这对受铅污染环境中微生物的生存和受铅污染土地的生物修复处理都有额外的影响。

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