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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Aerobic bacterial metabolism of phytol in seawater: effect of particle association on an abiotic intermediate step and its biogeochemical consequences
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Aerobic bacterial metabolism of phytol in seawater: effect of particle association on an abiotic intermediate step and its biogeochemical consequences

机译:海水中植物醇的好氧细菌代谢:颗粒缔合对非生物中间步骤的影响及其生物地球化学后果

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摘要

The biodegradation of phytol by a bacterial community isolated from the oxic zone of a Recent temperate marine sediment was studied in the presence, and in the absence, of a solid support. Analyses of isoprenoid wax esters produced by condensation of bacterial metabolites with themselves, or with phytol, showed that bacterial metabolism of phytol was strongly modified in the presence of the solid support. Aerobic metabolism of phytol involves the transient production of(E)-phytenal, which in turn can be quickly abiotically converted to 6,10,14-trimethylpentadecan-2-one or (E)-phytenic acid. Sorption on mineral particles appears to hinder the addition of water to the activated double bond of(E)-phytenal, which constitutes the first step of its transformation to the Cls isoprenoid ketone. Consequently, it is concluded that in surface temperate sediments phytol must be metabolised mainly via (E)-phytenic acid and that results obtained from in vitro experiments with free cell cultures may not be comparable to processes occuring in marine sedimentary environments. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 32]
机译:在有和没有固体支持物的情况下,研究了从最近的温带海洋沉积物的含氧区中分离出的细菌群落对植物醇的生物降解作用。通过细菌代谢产物与自身或与植物醇缩合产生的类异戊二烯蜡酯的分析表明,在固相支持物的存在下,植物醇的细菌代谢被强烈修饰。植醇的有氧代谢涉及瞬时产生的(E)-植物邻苯二酚,而后者又可以快速非生物地转化为6,10,14-三甲基十五烷-2-酮或(E)-植物六丁烯酸。吸附在矿物颗粒上似乎阻碍了水向(E)-植物烯的活化双键的添加,这构成了其向Cls类异戊二烯酮转化的第一步。因此,得出的结论是,在表面温带沉积物中,植醇必须主要通过(E)-植酸进行代谢,并且利用游离细胞培养物进行的体外实验获得的结果可能与海洋沉积环境中发生的过程不相上下。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:32]

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