Microbial Diversity and Hydrocarbon Degrading Gene Capacity of a Crude Oil Field Soil as Determined by Metagenomics Analysis

被引:50
作者
Abbasian, Firouz [1 ,2 ]
Palanisami, Thavamani [1 ,2 ]
Megharaj, Mallavarapu [1 ,2 ]
Naidu, Ravi [1 ,2 ]
Lockington, Robin [2 ,3 ]
Ramadass, Kavitha [2 ,3 ]
机构
[1] Univ Newcastle, GCER, Fac Sci & Informat Technol, Callaghan, NSW 2308, Australia
[2] Univ Newcastle, Cooperat Res Ctr Environm Risk Assessment & Remed, Callaghan, NSW, Australia
[3] Univ South Australia, Future Ind Inst FFI, Adelaide, SA, Australia
关键词
metagenomic study; crude oil well; microbial diversity; alkanes; aromatic hydrocarbons; CONTAMINATED SOIL; BACTERIA; BIODEGRADATION; BIOREMEDIATION; BIOSTIMULATION; IDENTIFICATION; MONOOXYGENASE; DEGRADATION; CULTIVATION; STRAIN;
D O I
10.1002/btpr.2249
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Soils contaminated with crude oil are rich sources of enzymes suitable for both degradation of hydrocarbons through bioremediation processes and improvement of crude oil during its refining steps. Due to the long term selection, crude oil fields are unique environments for the identification of microorganisms with the ability to produce these enzymes. In this metagenomic study, based on Hiseq Illumina sequencing of samples obtained from a crude oil field and analysis of data on MG-RAST, Actinomycetales (9.8%) were found to be the dominant microorganisms, followed by Rhizobiales (3.3%). Furthermore, several functional genes were found in this study, mostly belong to Actinobacteria (12.35%), which have a role in the metabolism of aliphatic and aromatic hydrocarbons (2.51%), desulfurization (0.03%), element shortage (5.6%), and resistance to heavy metals (1.1%). This information will be useful for assisting in the application of microorganisms in the removal of hydrocarbon contamination and/or for improving the quality of crude oil. (C) 2016 American Institute of Chemical Engineers Biotechnol.
引用
收藏
页码:638 / 648
页数:11
相关论文
共 39 条
  • [21] Characterization of hydrocarbon-degrading and biosurfactant-producing Pseudomonas sp P-1 strain as a potential tool for bioremediation of petroleum-contaminated soil
    Pacwa-Plociniczak, Magdalena
    Plaza, Grazyna Anna
    Poliwoda, Anna
    Piotrowska-Seget, Zofia
    [J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2014, 21 (15) : 9385 - 9395
  • [22] C-S Targeted Biodegradation of Dibenzothiophene by Stenotrophomonas sp NISOC-04
    Papizadeh, Moslem
    Ardakani, Mohammad Roayaei
    Motamedi, Hossein
    Rasouli, Iraj
    Zarei, Mohammad
    [J]. APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2011, 165 (3-4) : 938 - 948
  • [23] Fresh and weathered crude oil effects on potential denitrification rates of coastal marsh soil
    Pietroski, Jason P.
    White, John R.
    DeLaune, Ronald D.
    Wang, Jim J.
    Dodla, Syam K.
    [J]. CHEMOSPHERE, 2015, 134 : 120 - 126
  • [24] Raghukumar C, 2001, APPL MICROBIOL BIOT, V57, P433
  • [25] Rayment GE., 1992, The Australian Laboratory Handbook of Soil and Water Chemical Methods
  • [26] Identification of Novel Methane-, Ethane-, and Propane-Oxidizing Bacteria at Marine Hydrocarbon Seeps by Stable Isotope Probing
    Redmond, Molly C.
    Valentine, David L.
    Sessions, Alex L.
    [J]. APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2010, 76 (19) : 6412 - 6422
  • [27] Development of an analytical procedure for weathered hydrocarbon contaminated soils within a UK risk-based framework
    Risdon, Graeme C.
    Pollard, Simon J. T.
    Brassington, Kirsty J.
    McEwan, Jamie N.
    Paton, Graeme I.
    Semple, Kirk T.
    Coulon, Frederic
    [J]. ANALYTICAL CHEMISTRY, 2008, 80 (18) : 7090 - 7096
  • [28] Saharan B. S., 2011, GENET ENG BIOTECHNOL, V2011, P1
  • [29] Carbazole angular dioxygenation and mineralization by bacteria isolated from hydrocarbon-contaminated tropical African soil
    Salam, L. B.
    Ilori, M. O.
    Amund, O. O.
    Numata, M.
    Horisaki, T.
    Nojiri, H.
    [J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2014, 21 (15) : 9311 - 9324
  • [30] The membrane-associated monooxygenase in the butane-oxidizing Gram-positive bacterium Nocardioides sp. strain CF8 is a novel member of the AMO/PMO family
    Sayavedra-Soto, Luis A.
    Hamamura, Natsuko
    Liu, Chih-Wen
    Kimbrel, Jeffrey A.
    Chang, Jeff H.
    Arp, Daniel J.
    [J]. ENVIRONMENTAL MICROBIOLOGY REPORTS, 2011, 3 (03): : 390 - 396