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Influence of Vitamin B12 and Cocultures on the Growth of Dehalococcoides Isolates in Defined Medium▿

机译:维生素B12和共培养物对特定培养基中脱卤球菌分离物生长的影响▿

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摘要

Bacteria belonging to the genus Dehalococcoides play a key role in the complete detoxification of chloroethenes as these organisms are the only microbes known to be capable of dechlorination beyond dichloroethenes to vinyl chloride (VC) and ethene. However, Dehalococcoides strains usually grow slowly with a doubling time of 1 to 2 days and have complex nutritional requirements. Here we describe the growth of Dehalococcoides ethenogenes 195 in a defined mineral salts medium, improved growth of strain 195 when the medium was amended with high concentrations of vitamin B12, and a strategy for maintaining Dehalococcoides strains on lactate by growing them in consortia. Although strain 195 could grow in defined medium spiked with ∼0.5 mM trichloroethene (TCE) and 0.001 mg/liter vitamin B12, the TCE dechlorination and cellular growth rates doubled when the vitamin B12 concentration was increased 25-fold to 0.025 mg/liter. In addition, the final ratios of ethene to VC increased when the higher vitamin concentration was used, which reflected the key role that cobalamin plays in dechlorination reactions. No further improvement in dechlorination or growth was observed when the vitamin B12 concentration was increased to more than 0.025 mg/liter. In defined consortia containing strain 195 along with Desulfovibrio desulfuricans and/or Acetobacterium woodii and containing lactate as the electron donor, tetrachloroethene (∼0.4 mM) was completely dechlorinated to VC and ethene and there was concomitant growth of Dehalococcoides cells. In the cultures that also contained D. desulfuricans and/or A. woodii, strain 195 cells grew to densities that were 1.5 times greater than the densities obtained when the isolate was grown alone. The ratio of ethene to VC was highest in the presence of A. woodii, an organism that generates cobalamin de novo during metabolism. These findings demonstrate that the growth of D. ethenogenes strain 195 in defined medium can be optimized by providing high concentrations of vitamin B12 and that this strain can be grown to higher densities in cocultures with fermenters that convert lactate to generate the required hydrogen and acetate and that may enhance the availability of vitamin B12.
机译:属于Dehalococcoides属的细菌在氯乙烯的完全脱毒中起关键作用,因为这些生物是已知唯一能够从二氯乙烯脱氯为氯乙烯(VC)和乙烯的微生物。然而,Dehalococcoides菌株通常以1到2倍的倍增时间缓慢生长,并且营养需求复杂。在这里,我们描述了在定义的矿物盐培养基中埃德哈球菌195的生长,当培养基中添加高浓度的维生素B12时,菌株195的生长得以改善,以及通过在联合体中生长来维持乳酸对德哈球菌的菌株的策略。尽管195菌株可以在加有〜0.5 mM三氯乙烯(TCE)和0.001 mg / L维生素B12的特定培养基中生长,但是当维生素B12浓度增加25倍至0.025 mg / L时,TCE的脱氯和细胞生长速率翻倍。此外,当使用较高的维生素浓度时,乙烯与VC的最终比例增加,这反映了钴胺素在脱氯反应中的关键作用。当维生素B12的浓度增加到超过0.025 mg / l时,未观察到脱氯或生长的进一步改善。在含有菌株195和脱硫脱硫弧菌和/或木质醋杆菌的明确联盟中,含有乳酸作为电子供体的四氯乙烯(〜0.4 mM)被完全脱氯成VC和乙烯,并且伴随着Dehalococcoides细胞的生长。在还包含脱硫尿酸杆菌和/或木杆土壤杆菌的培养物中,菌株195细胞生长到的密度比分离株单独生长时获得的密度高1.5倍。在木本曲霉(A. woodii)存在下,乙烯与VC的比例最高,木本曲霉是在代谢过程中从头产生钴胺素的生物。这些发现表明,通过提供高浓度的维生素B12,可以优化在限定培养基中的D. henhenogenes菌株195的生长,并且可以在与发酵罐共同培养的发酵物中将该菌株生长到更高的密度,该发酵罐将乳酸转化为所需的氢和乙酸,可能会增加维生素B12的利用率。

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