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Linking Toluene Degradation with Specific Microbial Populations in Soil

机译:将甲苯降解与土壤中特定微生物种群联系起来

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摘要

Phospholipid fatty acid (PLFA) analysis of a soil microbial community was coupled with 13C isotope tracer analysis to measure the community’s response to addition of 35 μg of [13C]toluene ml of soil solution−1. After 119 h of incubation with toluene, 96% of the incorporated 13C was detected in only 16 of the total 59 PLFAs (27%) extracted from the soil. Of the total 13C-enriched PLFAs, 85% were identical to the PLFAs contained in a toluene-metabolizing bacterium isolated from the same soil. In contrast, the majority of the soil PLFAs (91%) became labeled when the same soil was incubated with [13C]glucose. Our study showed that coupling 13C tracer analysis with PLFA analysis is an effective technique for distinguishing a specific microbial population involved in metabolism of a labeled substrate in complex environments such as soil.
机译:土壤微生物群落的磷脂脂肪酸(PLFA)分析与 13 C同位素示踪分析相结合,以测量该群落对添加35μg[ 13 C]甲苯的响应毫升土壤溶液 -1 。与甲苯温育119小时后,从土壤中提取的59种PLFA中只有16种(27%)检出了掺入的 13 C的96%。在全部 13 C富集的PLFA中,有85%与从同一土壤分离的甲苯代谢细菌中所含的PLFA相同。相反,当同一土壤与[ 13 C]葡萄糖孵育时,大多数土壤PLFA(91%)被标记。我们的研究表明, 13 C示踪剂分析与PLFA分析相结合是一种有效的技术,可用于区分复杂环境(例如土壤)中与标记底物代谢有关的特定微生物种群。

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