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在发酵和土壤条件下,利用农业工业废物培养的解磷微生物的多功能特性。

Multifunctional properties of phosphate-solubilizing microorganisms grown on agro-industrial wastes in fermentation and soil conditions.

机构信息

Department of Chemical Engineering, Faculty of Sciences, University of Granada, Granada 18071, Spain.

出版信息

Appl Microbiol Biotechnol. 2010 Feb;85(5):1287-99. doi: 10.1007/s00253-009-2366-0. Epub 2009 Nov 28.

Abstract

One of the most studied approaches in solubilization of insoluble phosphates is the biological treatment of rock phosphates. In recent years, various techniques for rock phosphate solubilization have been proposed, with increasing emphasis on application of P-solubilizing microorganisms. The P-solubilizing activity is determined by the microbial biochemical ability to produce and release metabolites with metal-chelating functions. In a number of studies, we have shown that agro-industrial wastes can be efficiently used as substrates in solubilization of phosphate rocks. These processes were carried out employing various technologies including solid-state and submerged fermentations including immobilized cells. The review paper deals critically with several novel trends in exploring various properties of the above microbial/agro-wastes/rock phosphate systems. The major idea is to describe how a single P-solubilizing microorganism manifests wide range of metabolic abilities in different environments. In fermentation conditions, P-solubilizing microorganisms were found to produce various enzymes, siderophores, and plant hormones. Further introduction of the resulting biotechnological products into soil-plant systems resulted in significantly higher plant growth, enhanced soil properties, and biological (including biocontrol) activity. Application of these bio-products in bioremediation of disturbed (heavy metal contaminated and desertified) soils is based on another important part of their multifunctional properties.

摘要

一种研究最多的溶解不溶性磷酸盐的方法是对磷矿石进行生物处理。近年来,已经提出了各种用于溶解磷矿石的技术,越来越强调应用解磷微生物。解磷活性取决于微生物生化能力,以产生和释放具有金属螯合功能的代谢物。在许多研究中,我们已经表明,农业工业废物可以有效地用作溶解磷矿石的基质。这些过程是通过包括固定化细胞在内的固态和淹没发酵等各种技术进行的。这篇综述论文批判性地探讨了探索上述微生物/农业废物/磷矿石系统各种特性的几种新趋势。主要思想是描述单一的解磷微生物在不同环境中如何表现出广泛的代谢能力。在发酵条件下,解磷微生物被发现产生各种酶、铁载体和植物激素。进一步将由此产生的生物技术产品引入土壤-植物系统,导致植物生长显著增加、土壤特性得到改善以及生物(包括生物防治)活性增强。这些生物制品在受干扰(重金属污染和荒漠化)土壤的生物修复中的应用基于其多功能特性的另一个重要部分。

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