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Microbial Dechlorination of 2356-Tetrachlorobiphenyl under Anaerobic Conditions in the Absence of Soil or Sediment

机译:无土壤或泥沙条件下厌氧条件下2356-四氯联苯的微生物脱氯

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摘要

Bacterial enrichment cultures developed with Baltimore Harbor (BH) sediments were found to reductively dechlorinate 2,3,5,6-tetrachlorobiphenyl (2,3,5,6-CB) when incubated in a minimal estuarine medium containing short-chain fatty acids under anaerobic conditions with and without the addition of sediment. Primary enrichment cultures formed both meta and ortho dechlorination products from 2,3,5,6-CB. The lag time preceding dechlorination decreased from 30 to less than 20 days as the cultures were sequentially transferred into estuarine medium containing dried, sterile BH sediment. In addition, only ortho dechlorination was observed following transfer of the cultures. Sequential transfer into medium without added sediment also resulted in the development of a strict ortho-dechlorinating culture following a lag of more than 100 days. Upon further transfer into the minimal medium without sediment, the lag time decreased to less than 50 days. At this stage all cultures, regardless of the presence of sediment, would produce 2,3,5-CB and 3,5-CB from 2,3,5,6-CB. The strict ortho-dechlorinating activity in the sediment-free cultures has remained stable for more than 1 year through several transfers. These results reveal that the classical microbial enrichment technique using a minimal medium with a single polychlorinated biphenyl (PCB) congener selected for ortho dechlorination of 2,3,5,6-CB. Furthermore, this is the first report of sustained anaerobic PCB dechlorination in the complete absence of soil or sediment.
机译:发现在巴尔的摩港(BH)沉积物上培养的细菌富集培养物在含短链脂肪酸的最小河口培养基中在25°C下温育时,可还原性脱氯2,3,5,6-四氯联苯(2,3,5,6-CB)。有无沉淀物的厌氧条件。初级浓缩培养物形成了2,3,5,6-CB的间位和邻位脱氯产物。由于将培养物依次转移到含有干燥的无菌BH沉积物的河口培养基中,脱氯前的滞后时间从30天减少到不到20天。另外,在培养物转移后仅观察到邻脱氯。在不超过100天的滞后之后,连续转移到不添加沉淀物的培养基中也导致了严格的邻氯脱除培养的发展。进一步转移到没有沉淀的基本培养基中后,滞后时间减少到少于50天。在此阶段,所有培养物,无论是否存在沉积物,都将由2,3,5,6-CB产生2,3,5-CB和3,5-CB。通过无数次转移,无沉淀物培养物中严格的邻位脱氯活性保持稳定超过一年。这些结果揭示了经典的微生物富集技术,该技术使用具有选择用于2,3,5,6-CB邻位脱氯的单一多氯联苯(PCB)同源物的基本培养基。此外,这是在完全没有土壤或沉积物的情况下持续进行厌氧PCB脱氯的第一份报告。

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