...
首页> 外文期刊>International Biodeterioration & Biodegradation >Design of bacterial defined mixed cultures for biodegradation of specific crude oil fractions, using population dynamics analysis by DGGE.
【24h】

Design of bacterial defined mixed cultures for biodegradation of specific crude oil fractions, using population dynamics analysis by DGGE.

机译:使用DGGE进行的种群动态分析,设计细菌定义的混合培养物,用于特定原油馏分的生物降解。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Hydrocarbon-degrading bacteria isolated from oil-polluted soils, were used to design three defined mixed cultures (DMC) for biodegradation of Maya crude oil fractions. The first degrading culture, DMC A was made up with 10 strains. Design of DMC B (six strains) and DMC C (three strains) was based on DGGE profiles obtained throughout biodegradation assays of different petroleum fractions. Biodegradation of the aliphatic fraction (10 000 mg l-1) and an aromatic-polar mixture (5000 mg l-1) was evaluated for the DMC B. Biodegradation of total hydrocarbons (10 000 mg l-1) and its fractions was evaluated for DMC B and DMC C. During biodegradation assays, O2 consumption and CO2 production were assessed by respirometry, while population dynamics of predominant strains was based on PCR-DGGE profiles of partial 16S rDNA. Aliphatic fraction was completely biodegraded by DMC B, while degradation of the aromatic-polar mixture was 12.5% and for total hydrocarbons 40.5%. DMC B was able to degrade the aromatic fraction (31%) and even the polar fraction (19.6%) present in total hydrocarbons. DMC C degraded the aromatic and polar fractions (5.6% and 2%, respectively) present in total hydrocarbons. DGGE profiles of the DMCs indicated that Pseudomonas sp., Gordonia rubripertincta and a non-identified strain were predominant and probably responsible of the hydrocarbons biodegradation. The use of DGGE-fingerprinting to track microbial populations, allowed selecting strains to design efficient oil-degrading defined mixed cultures.
机译:从油污土壤中分离出的可降解碳氢化合物的细菌用于设计三种确定的混合培养物(DMC),以对玛雅原油馏分进行生物降解。第一个降解培养物DMC A由10个菌株组成。 DMC B(六个菌株)和DMC C(三个菌株)的设计是基于通过不同石油馏分的生物降解测定获得的DGGE谱。对DMC B评估了脂肪族馏分(10000 mg l-1)和芳香族极性混合物(5000 mg l-1)的生物降解。评估了总烃(10000 mg l-1)及其馏分的生物降解。在生物降解试验中,通过呼吸测定法评估O2消耗和CO2产生,而主要菌株的种群动态基于部分16S rDNA的PCR-DGGE谱。 DMC B将脂肪部分完全生物降解,而芳香族极性混合物的降解为12.5%,总烃的降解为40.5%。 DMC B能够降解总烃中存在的芳烃部分(31%),甚至极性部分(19.6%)。 DMC C降解了总烃中存在的芳族和极性馏分(分别为5.6%和2%)。 DMC的DGGE图谱表明,假单胞菌(Pseudomonas sp。),戈多尼亚(Gordonia rubripertincincta)和一个未知菌株是主要的,可能是造成烃类生物降解的原因。使用DGGE指纹图谱来跟踪微生物种群,可以选择菌株来设计有效的油降解定义的混合培养物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号