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首页> 外文期刊>Archives of microbiology >ISOLATION AND CHARACTERIZATION OF DEHALOSPIRILLUM MULTIVORANS GEN NOV, SP NOV, A TETRACHLOROETHENE-UTILIZING, STRICTLY ANAEROBIC BACTERIUM
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ISOLATION AND CHARACTERIZATION OF DEHALOSPIRILLUM MULTIVORANS GEN NOV, SP NOV, A TETRACHLOROETHENE-UTILIZING, STRICTLY ANAEROBIC BACTERIUM

机译:四氯乙烯严格厌氧菌多脱盐螺旋藻GEN NOV,SP NOV的分离和鉴定

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摘要

A strictly anaerobic bacterium dechlorinating tetrachloroethene (perchloroethylene, PCE) via trichloroethene (TCE) to cis-1,2-dichloroethene (DCE) was isolated from activated sludge with pyruvate plus PCE as energy substrates. The organism, called Dehalospirillum multivorans, is a gram-negative spirillum that does not form spores. The G+C content of the DNA was 41.5 mol%. According to 16S rRNA gene sequence analysis, D. multivorans represents a new genus and a new species belonging to the epsilon subdivision of Proteobacteria. Quinones, cytochromes b and c, and corrinoids were extracted from the cells. D. multivorans grew in defined medium with PCE and H-2 as sole energy sources and acetate as carbon source; the growth yield under these conditions was 1.4 g of cell protein per mol chloride released. Alternatively to PCE, fumarate and nitrate could serve as electron accepters; sulfate could not replace fumarate, nitrate, or PCE in this respect. In addition to H-2, the organism utilized a variety of electron donors for dechlorination (pyruvate, lactate, ethanol, formate, glycerol). Upon growth on pyruvate plus PCE, the main fermentation products formed were acetate, lactate, DCE, and H-2 At optimal pH (7.3-7.6) and temperature (30 degrees C), and in the presence of pyruvate (20 mM) and PCE (160 mu M), a dechlorination rate of about 50 nmol min(-1) (mg cell protein)-1 and a doubling time of about 2.5 h were obtained with growing cultures. The ability to reduce PCE to DCE appears to be constitutive under the experimental conditions applied since cultures growing in the absence of PCE for several generations immediately started dechlorination when transferred to a medium containing PCE. The organism may be useful for bioremediation of environments polluted with tetrachloroethene. [References: 20]
机译:从活性污泥中分离出一种严格的厌氧细菌,该细菌通过三氯乙烯(TCE)将四氯乙烯(perchloroethylene,PCE)脱氯为顺式1,2-二氯乙烯(DCE),并以丙酮酸和PCE作为能量底物。该生物体称为多噬菌体Dehalospirillum,它是一种革兰氏阴性菌,不会形成孢子。 DNA的G + C含量为41.5mol%。根据16S rRNA基因序列分析,D。multivorans代表了一个新属和一个新物种,属于Proteobacteria的ε细分。从细胞中提取醌,细胞色素b和c以及类胡萝卜素。 D. multivorans在限定的培养基中生长,其中PCE和H-2为唯一能源,乙酸盐为碳源。在这些条件下,每摩尔氯化物释放出1.4 g细胞蛋白。作为PCE的替代品,富马酸酯和硝酸盐可以用作电子受体。在这方面,硫酸盐不能代替富马酸盐,硝酸盐或PCE。除了H-2外,该生物还利用各种电子供体进行脱氯(丙酮酸,乳酸,乙醇,甲酸,甘油)。在丙酮酸和PCE上生长后,形成的主要发酵产物是乙酸盐,乳酸盐,DCE和H-2,在最佳pH(7.3-7.6)和温度(30℃)以及丙酮酸(20 mM)和随着生长的培养,获得了PCE(160μM),约50 nmol min(-1)(mg细胞蛋白)-1的脱氯速率和约2.5 h的加倍时间。将PCE还原为DCE的能力在所应用的实验条件下似乎是组成性的,因为在不存在PCE的情况下生长数代的培养物在转移到含有PCE的培养基中后立即开始脱氯。该生物可用于对被四氯乙烯污染的环境进行生物修复。 [参考:20]

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