高盐工业废水蒸发池中硫酸盐还原菌的长期监测。

Eitan Ben-Dov, Ariel Kushmaro, Asher Brenner
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引用次数: 13

摘要

在41个月的时间里,研究了高盐工业废水蒸发池中硫酸盐还原菌(SRB)的丰度和季节动态,特别是极端嗜盐性SRB(属于嗜盐Desulfocella halophila)。采用实时荧光定量PCR (qPCR)技术对工业废水中SRB的存在进行了检测,并设计了一套扩增异化亚硫酸盐还原酶(dsrA)基因的引物。SRB在夏季丰度较高(10(6)~ 10(8)个目标ml(-1)),秋春季丰度较低(10(3)~ 10(5)个目标ml(-1))。然而,尽管废水温度较低(12-14℃),但在冬季向蒸发池中添加浓缩的溶解有机物会立即导致SRB的增殖。这些结果表明,qPCR方法可用于快速测量SRB,为高盐工业废水等恶劣环境中SRB的丰度提供有价值的信息。尽管通过qPCR检测到了SRB的繁殖,但低水平的H2S已经维持了5年以上,这表明在废水蒸发池进行人工盐化(约16% w/v NaCl)后,SRB的活性可能受到抑制。
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Long-term surveillance of sulfate-reducing bacteria in highly saline industrial wastewater evaporation ponds.

Abundance and seasonal dynamics of sulfate-reducing bacteria (SRB), in general, and of extreme halophilic SRB (belonging to Desulfocella halophila) in particular, were examined in highly saline industrial wastewater evaporation ponds over a forty one month period. Industrial wastewater was sampled and the presence of SRB was determined by quantitative real-time PCR (qPCR) with a set of primers designed to amplify the dissimilatory sulfite reductase (dsrA) gene. SRB displayed higher abundance during the summer (10(6)-10(8) targets ml(-1)) and lower abundance from the autumn-spring (10(3)-10(5) targets ml(-1)). However, addition of concentrated dissolved organic matter into the evaporation ponds during winter immediately resulted in a proliferation of SRB, despite the lower wastewater temperature (12-14 degrees C). These results indicate that the qPCR approach can be used for rapid measurement of SRB to provide valuable information about the abundance of SRB in harsh environments, such as highly saline industrial wastewaters. Low level of H2S has been maintained over five years, which indicates a possible inhibition of SRB activity, following artificial salination (approximately 16% w/v of NaCl) of wastewater evaporation ponds, despite SRB reproduction being detected by qPCR.

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