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利用细菌rRNA的13C含量定量分析盐沼沉积物中石油烃的微生物利用情况。

Quantifying microbial utilization of petroleum hydrocarbons in salt marsh sediments by using the 13C content of bacterial rRNA.

作者信息

Pearson Ann, Kraunz Kimberly S, Sessions Alex L, Dekas Anne E, Leavitt William D, Edwards Katrina J

机构信息

Department of Earth and Planetary Sciences, Harvard University, 20 Oxford St., Cambridge MA 02138, USA.

出版信息

Appl Environ Microbiol. 2008 Feb;74(4):1157-66. doi: 10.1128/AEM.01014-07. Epub 2007 Dec 14.

Abstract

Natural remediation of oil spills is catalyzed by complex microbial consortia. Here we took a whole-community approach to investigate bacterial incorporation of petroleum hydrocarbons from a simulated oil spill. We utilized the natural difference in carbon isotopic abundance between a salt marsh ecosystem supported by the 13C-enriched C4 grass Spartina alterniflora and 13C-depleted petroleum to monitor changes in the 13C content of biomass. Magnetic bead capture methods for selective recovery of bacterial RNA were used to monitor the 13C content of bacterial biomass during a 2-week experiment. The data show that by the end of the experiment, up to 26% of bacterial biomass was derived from consumption of the freshly spilled oil. The results contrast with the inertness of a nearby relict spill, which occurred in 1969 in West Falmouth, MA. Sequences of 16S rRNA genes from our experimental samples also were consistent with previous reports suggesting the importance of Gamma- and Deltaproteobacteria and Firmicutes in the remineralization of hydrocarbons. The magnetic bead capture approach makes it possible to quantify uptake of petroleum hydrocarbons by microbes in situ. Although employed here at the domain level, RNA capture procedures can be highly specific. The same strategy could be used with genus-level specificity, something which is not currently possible using the 13C content of biomarker lipids.

摘要

溢油的自然修复由复杂的微生物群落催化。在这里,我们采用全群落方法来研究模拟溢油中细菌对石油烃的吸收情况。我们利用富含13C的C4草本植物互花米草支持的盐沼生态系统与贫13C的石油之间碳同位素丰度的自然差异,来监测生物量中13C含量的变化。在为期2周的实验中,使用磁珠捕获方法选择性回收细菌RNA,以监测细菌生物量的13C含量。数据显示,到实验结束时,高达26%的细菌生物量来自新溢油的消耗。这些结果与1969年发生在马萨诸塞州西法尔茅斯的附近一处残留溢油的惰性形成对比。我们实验样本的16S rRNA基因序列也与先前的报告一致,表明γ-变形菌纲、δ-变形菌纲和厚壁菌门在烃类再矿化中的重要性。磁珠捕获方法使得原位量化微生物对石油烃的吸收成为可能。尽管这里是在域水平上使用,但RNA捕获程序可以具有高度特异性。同样的策略可以用于属水平的特异性研究,而这是目前使用生物标志物脂质的13C含量无法做到的。

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本文引用的文献

1
Carbon-isotopic analysis of microbial cells sorted by flow cytometry.
Geobiology. 2007 Mar;5(1):85-95. doi: 10.1111/j.1472-4669.2006.00094.x.
2
Stimulated biodegradation of oil slicks using oleophilic fertilizers.
Environ Sci Technol. 1973 Jun 1;7(6):538-41. doi: 10.1021/es60078a005.
3
Isotope-Ratio-Monitoring Liquid Chromatography Mass Spectrometry (IRM-LCMS): First Results from a Moving Wire Interface System.
Isotopes Environ Health Stud. 1996 Aug;32(2-3):275-83. doi: 10.1080/10256019608036320.
4
Multiple stable isotopes used to trace the flow of organic matter in estuarine food webs.
Science. 1985 Mar 15;227(4692):1361-3. doi: 10.1126/science.227.4692.1361.
6
Unexpected diversity in populations of the many-celled magnetotactic prokaryote.
Environ Microbiol. 2007 Jan;9(1):206-15. doi: 10.1111/j.1462-2920.2006.01129.x.
7
Molecular diversity studies of bacterial communities of oil polluted microbial mats from the Etang de Berre (France).
FEMS Microbiol Ecol. 2006 Dec;58(3):550-62. doi: 10.1111/j.1574-6941.2006.00187.x.
9
RNA-based stable isotope probing and isolation of anaerobic benzene-degrading bacteria from gasoline-contaminated groundwater.
Appl Environ Microbiol. 2006 May;72(5):3586-92. doi: 10.1128/AEM.72.5.3586-3592.2006.
10
Population dynamics within a microbial consortium during growth on diesel fuel in saline environments.
Appl Environ Microbiol. 2006 May;72(5):3531-42. doi: 10.1128/AEM.72.5.3531-3542.2006.

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