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现代海水盐度下嗜 idiomarina 菌株产钙镁方解石和鸟粪石的研究

Ca-Mg kutnahorite and struvite production by Idiomarina strains at modern seawater salinities.

作者信息

González-Muñoz María Teresa, De Linares Concepción, Martínez-Ruiz Francisca, Morcillo Fernando, Martín-Ramos Daniel, Arias José María

机构信息

Departamento de Microbiología, Facultad de Ciencias, Campus Fuentenueva, Universidad de Granada, 18002 Granada, Spain.

出版信息

Chemosphere. 2008 Jun;72(3):465-72. doi: 10.1016/j.chemosphere.2008.02.010. Epub 2008 Mar 19.

Abstract

The production of Mg-rich carbonates by Idiomarina bacteria at modern seawater salinities has been investigated. With this objective, four strains: Idiomarina abyssalis (strain ATCC BAA-312), Idiomarina baltica (strain DSM 15154), Idiomarina loihiensis (strains DSM 15497 and MAH1) were used. The strain I. loihiensis MAH1 is a new isolate, identified in the scope of this work. The four moderately halophilic strains precipitated struvite (NH4MgPO4 x 6H2O) crystals that appear encased by small Ca-Mg kutnahorite [CaMg(CO3)2] spheres and dumbbells, which are also regularly distributed in the bacterial colonies. The proportion of Ca-Mg kutnahorite produced by the bacteria assayed ranged from 50% to 20%, and I. abyssalis also produced monohydrocalcite. All precipitated minerals appeared to be related to the bacterial metabolism and, consequently, can be considered biologically induced. Amino acid metabolism resulted in a release of ammonia and CO2 that increase the pH and CO(3)(2-) concentration of the culture medium, creating an alkaline environment that favoured carbonate and struvite precipitation. This precipitation may be also related to heterogeneous nucleation on negatively charged points of biological structures. Because the nature of the organic matrix determines which ion is preferentially adsorbed and, consequently, which mineral phase is formed, the uniquely high content in odd-iso-branched fatty acids of the Idiomarina suggests that their particular membrane characteristics could induce Ca-Mg kutnahorite production. The Ca-Mg kutnahorite, a mineral with a dolomite-ordered structure, production at seawater salinities is noticeable. To date, such precipitation in laboratory cultures, has only been described in hypersaline conditions. It has also been the first time that biomineralization processes have been related to Idiomarina bacteria.

摘要

对现代海水盐度下嗜压嗜盐菌产生富镁碳酸盐的情况进行了研究。为此,使用了四株菌株:深渊嗜压嗜盐菌(菌株ATCC BAA - 312)、波罗的海嗜压嗜盐菌(菌株DSM 15154)、罗伊氏嗜压嗜盐菌(菌株DSM 15497和MAH1)。罗伊氏嗜压嗜盐菌MAH1菌株是在本研究范围内鉴定出的新分离株。这四株中度嗜盐菌株沉淀出鸟粪石(NH4MgPO4·6H2O)晶体,这些晶体似乎被小的钙镁白铅矿[CaMg(CO3)2]球体和哑铃状体包裹,它们也规则地分布在细菌菌落中。所检测细菌产生的钙镁白铅矿比例在50%至20%之间,深渊嗜压嗜盐菌还产生了一水方解石。所有沉淀的矿物质似乎都与细菌代谢有关,因此可被视为生物诱导的。氨基酸代谢导致氨和二氧化碳的释放,从而提高了培养基的pH值和CO(3)(2-)浓度,创造了有利于碳酸盐和鸟粪石沉淀形成的碱性环境。这种沉淀也可能与生物结构带负电荷点上的异相成核有关。由于有机基质的性质决定了优先吸附哪种离子,进而决定形成哪种矿相,嗜压嗜盐菌中独特的高含量奇数异支链脂肪酸表明其特殊的膜特性可能诱导钙镁白铅矿的产生。在海水盐度下产生具有白云石有序结构的钙镁白铅矿是值得注意的。迄今为止,这种在实验室培养中的沉淀仅在高盐条件下有过描述。这也是首次将生物矿化过程与嗜压嗜盐菌联系起来。

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