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从盖夫萨磷矿中分离的粘质沙雷氏菌 CTM50650 的矿物磷酸盐溶解活性的特征。

Characterization of the mineral phosphate solubilizing activity of Serratia marcescens CTM 50650 isolated from the phosphate mine of Gafsa.

机构信息

Laboratoire d'Enzymes et de Métabolites des Procaryotes (LEMP), Centre de Biotechnologie de Sfax, Route de Sidi Mansour Km 6, BP "1177", 3018 Sfax, Tunisia.

出版信息

Arch Microbiol. 2009 Nov;191(11):815-24. doi: 10.1007/s00203-009-0513-8. Epub 2009 Sep 22.

Abstract

The mineral phosphate solubilizing (MPS) ability of a Serratia marcescens strain, namely CTM 50650, isolated from the phosphate mine of Gafsa, was characterized on a chemically defined medium (NBRIP broth). Various insoluble inorganic phosphates, including rock phosphate (RP), calcium phosphate (CaHPO(4)), tri-calcium phosphate (Ca(3)(PO(4))(2)) and hydroxyapatite were tested as sole sources of phosphate for bacterial growth. Solubilization of these phosphates by S. marcescens CTM 50650 was very efficient. Indeed, under optimal conditions, the soluble phosphorus (P) concentration it produced reached 967, 500, 595 and 326 mg/l from CaHPO(4), Ca(3)(PO(4))(2), hydroxyapatite and RP, respectively. Study of the mechanisms involved in the MPS activity of CTM 50650, showed that phosphate solubilization was concomitant with significant drop in pH. HPLC-analysis of culture supernatants revealed the secretion of gluconic acid (GA) resulting from direct oxidation pathway of glucose when the CTM 50650 cells were grown on NBRIP containing glucose as unique carbon source. This was correlated with the simultaneous detection by PCR for the first time in a S. marcescens strain producing GA, of a gene encoding glucose dehydrogenase responsible for GA production, as well as the genes pqqA, B, C and E involved in biosynthesis of its PQQ cofactor. This study is expected to lead to the development of an environmental-friendly process for fertilizer production considering the capacity of S. marcescens CTM 50650 to achieve yields of P extraction up to 75% from the Gafsa RP.

摘要

从盖夫萨磷矿中分离到的一株粘质沙雷氏菌(Serratia marcescens)菌株 CTM 50650 具有溶解矿物磷酸盐的能力,其特点是在化学定义培养基(NBRIP 肉汤)上。各种不溶性无机磷酸盐,包括磷矿(RP)、磷酸钙(CaHPO(4))、磷酸三钙(Ca(3)(PO(4))(2))和羟磷灰石,被用作细菌生长的唯一磷源进行测试。S. marcescens CTM 50650 对这些磷酸盐的溶解非常有效。实际上,在最佳条件下,它从 CaHPO(4)、Ca(3)(PO(4))(2)、羟磷灰石和 RP 产生的可溶性磷(P)浓度分别达到 967、500、595 和 326 mg/l。对 CTM 50650 参与 MPS 活性的机制的研究表明,磷酸盐溶解伴随着 pH 值的显著下降。对培养上清液的 HPLC 分析表明,当 CTM 50650 细胞在含有葡萄糖作为唯一碳源的 NBRIP 上生长时,通过葡萄糖的直接氧化途径分泌了葡萄糖酸(GA)。这与同时检测到的 PCR 结果相吻合,即首次在产生 GA 的 S. marcescens 菌株中检测到一种编码葡萄糖脱氢酶的基因,该酶负责 GA 的产生,以及参与其 PQQ 辅因子生物合成的 pqqA、B、C 和 E 基因。考虑到 S. marcescens CTM 50650 从盖夫萨 RP 中提取 P 的产量高达 75%,这项研究有望开发出一种环保的肥料生产工艺。

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