1,154
Views
148
CrossRef citations to date
0
Altmetric
Original Articles

The Inoculation Method Affects Colonization and Performance of Bacterial Inoculant Strains in the Phytoremediation of Soil Contaminated with Diesel Oil

, , &
Pages 35-47 | Published online: 02 Aug 2011

REFERENCES

  • Adam , G and Duncan , H . 2003 . The effect of diesel fuel on common vetch (Vicia sativa L.) plants . Environ Geochem Health. , 25 ( 1 ) : 123 – 130 .
  • Alarcón , A , Davies , F T Jr , Autenrieth , R L and Zuberer , D A . 2008 . Arbuscular mycorrhiza and petroleum-degrading microorganisms enhance phytoremediation of petroleum-contaminated soil . Int J Phytorem. , 10 ( 4 ) : 251 – 263 .
  • Alkorta , I and Garbisu , C . 2001 . Phytoremediation of organic contaminants in soils . Bioresour Technol. , 79 ( 3 ) : 273 – 276 .
  • Andria , V , Reichenauer , T G and Sessitsch , A . 2009 . Expression of alkane monooxygenase (alkB) genes by plant-associated bacteria in the rhizosphere and endosphere of Italian ryegrass (Lolium multiflorum L.) grown in diesel contaminated soil . Environ Pollut. , 157 ( 12 ) : 3347 – 3350 .
  • Beattie , G. 2006 . “ Plant-associated bacteria: survey, molecular phylogeny, genomics and recent advances ” . In Plant-associated bacteria , Edited by: Gnanamanickam , S S . 1 – 56 . Dordrecht, , The Netherlands : Springer .
  • Cébron , A , Beguiristain , T , Faure , P , Norini , M P , Masfaraud , J F and Leyval , C . 2009 . Influence of vegetation on the in situ bacterial community and polycyclic aromatic hydrocarbon (PAH) degraders in aged PAH-contaminated or thermal-desorption-treated soil . Appl Environ Microbiol. , 75 ( 19 ) : 6322 – 6330 .
  • Chaudhry , Q , Blom-Zandstra , M , Gupta , S and Joner , E J . 2005 . Utilising the synergy between plants and rhizosphere microorganisms to enhance breakdown of organic pollutants in the environment . Environ Sci Pollut Res. , 12 ( 1 ) : 34 – 48 .
  • Ciric , L , Philp , J C and Whiteley , A S . 2009 . Hydrocarbon utilization within a diesel-degrading bacterial consortium . FEMS Microbiol Lett. , 303 ( 2 ) : 116 – 122 .
  • Compant , S , Clément , C and Sessitsch , A . 2010 . Plant growth-promoting bacteria in the rhizo- and endosphere of plants: their role, colonization, mechanisms involved and prospects for utilization . Soil Biol Biochem. , 42 ( 5 ) : 669 – 678 .
  • Doty , SL. 2008 . Enhancing phytoremediation through the use of transgenics and endophytes . New Phytol. , 179 ( 2 ) : 318 – 333 .
  • Dzantor , EK. 2007 . Phytoremediation: the state of rhizosphere ‘engineering’ for accelerated rhizodegradation of xenobiotic contaminants . J Chem Technol Biotech. , 82 ( 3 ) : 228 – 232 .
  • Escalante-Espinosa , E , Gallegos-Martínez , M E , Favela-Torres , E and Gutiérrez-Rojas , M . 2005 . Improvement of the hydrocarbon phytoremediation rate by Cyperus laxus Lam. inoculated with a microbial consortium in a model system . Chemosphere. , 59 ( 3 ) : 405 – 413 .
  • Gerhardt , K E , Huang , X D , Glick , B R and Greenberg , B M . 2009 . Phytoremediation and rhizoremediation of organic soil contaminants: Potential and challenges . Plant Sci. , 176 ( 1 ) : 20 – 30 .
  • Germaine , K J , Keogh , E , Ryan , D and Dowling , D N . 2009 . Bacterial endophyte-mediated naphthalene phytoprotection and phytoremediation . FEMS Microbiol Lett. , 296 ( 2 ) : 226 – 234 .
  • Gilbertson , A W , Fitch , M W , Burken , J G and Wood , T K . 2007 . Transport and survival of GFP-tagged root-colonizing microbes: implications for rhizodegradation . Eur J Soil Biol. , 43 ( 4 ) : 224 – 232 .
  • Glick , BR. 2003 . Phytoremediation: synergistic use of plants and bacteria to clean up the environment . Biotechnol Adv. , 21 ( 5 ) : 383 – 393 .
  • Glick , BR. 2010 . Using soil bacteria to facilitate phytoremediation . Biotechnol Adv. , 28 ( 3 ) : 367 – 374 .
  • Gray , D. 1994 . “ Large-scale seed priming techniques and their integration with crop protection treatments ” . In Seed treatment: progress and prospects, monograph 57 , Edited by: Martin , T . 353 – 362 . Farnham, , England : British Crop Protection Council .
  • Gunderson , J J , Knight , J D and Van Rees , K CJ . 2007 . Impact of ectomycorrhizal colonization of hybrid poplar on the remediation of diesel-contaminated soil . J Environ Qual. , 36 ( 4 ) : 927 – 934 .
  • Gurska , J , Wang , W , Gerhardt , K E , Khalid , A M , Isherwood , D M , Huang , X D , Glick , B R and Greenberg , B M . 2009 . Three year field test of a plant growth promoting rhizobacteria enhanced phytoremediation system at a land farm for treatment of hydrocarbon waste . Environ Sci Technol. , 43 ( 12 ) : 4472 – 4479 .
  • Habish , H A and Ishag , H M . 1974 . Nodulation of legumes in the Sudan III. Response of haricot bean to inoculation . Exp Agric. , 10 ( 1 ) : 45 – 50 .
  • Hartmann , A , Schmid , M , Tuinen , D and Berg , G . 2009 . Plant-driven selection of microbes . Plant Soil. , 321 ( 1-2 ) : 235 – 257 .
  • Höfte , M , Mergeay , M and Verstraete , W . 1990 . Marking the rhizopseudomonas strain 7NSK2 with a Mu d(lac) element for ecological studies . Appl Environ Microbiol. , 56 ( 4 ) : 1046 – 1052 .
  • Huang , X D , Glick , B R and Greenberg , M B . 2001 . “ Combining remediation technologies increases kinetics for removal of persistent organic contaminants from soil ” . In Environmental toxicology and risk assessment , Edited by: Greenberg , B M , Hull , R N , Roberts , M H Jr. and Gensemer , R W . 271 – 278 . West Conshohocken, PA : American Society for Testing and Materials .
  • Huang , X D , El-Alawi , Y , Gurska , J , Glick , B R and Greenberg , B M . 2004 . A multi-process phytoremediation system for removal of polycyclic aromatic hydrocarbons from contaminated soils . Environ Pollut. , 130 ( 3 ) : 465 – 476 .
  • Huang , X D , El-Alawi , Y , Gurska , J , Glick , B R and Greenberg , B M . 2005 . A multi-process phytoremediation system for decontamination of persistent total petroleum hydrocarbons (TPHs) from soils . Microchem J. , 81 ( 1 ) : 139 – 147 .
  • Johnson , D L , Maguire , K L , Anderson , D R and McGrath , S P . 2004 . Enhanced dissipation of chrysene in planted soil: the impact of a rhizobial inoculum . Soil Biol Biochem. , 36 ( 1 ) : 33 – 38 .
  • Kaimi , E , Mukaidani , T , Miyoshi , S and Tamaki , M . 2006 . Ryegrass enhancement of biodegradation in diesel-contaminated soil . Environ Exp Bot. , 55 ( 1-2 ) : 110 – 119 .
  • Kloos , K , Munch , J C and Schloter , M . 2006 . A new method for the detection of alkane-monooxygenase homologous genes (alkB) in soils based on PCR-hybridization . J Microbiol Methods. , 66 ( 3 ) : 486 – 496 .
  • Kuffner , M , Puschenreiter , M , Wieshammer , G , Gorfer , M and Sessitsch , A . 2008 . Rhizosphere bacteria affect growth and metal uptake of heavy metal accumulating willows . Plant Soil. , 304 ( 1-2 ) : 35 – 44 .
  • Lanzotti , V. 2006 . The analysis of onion and garlic . J Chromatogr A. , 1112 ( 1-2 ) : 3 – 22 .
  • Lapinskienė , A , Martinkus , P and Rebždaitė , V . 2006 . Eco-toxicological studies of diesel and biodiesel fuels in aerated soil . Environ Pollut. , 142 ( 3 ) : 432 – 437 .
  • Lutz , M P , Wenger , S , Maurhofer , M , Défago , G and Duffy , B . 2004 . Signaling between bacterial and fungal biocontrol agents in a strain mixture . FEMS Microbiol Ecol. , 48 ( 3 ) : 447 – 455 .
  • McGuinness , M and Dowling , D . 2009 . Plant-associated bacterial degradation of toxic organic compounds in soil . Int J Environ Res Public Health. , 6 ( 8 ) : 2226 – 2247 .
  • Müller , H and Berg , G . 2008 . Impact of formulation procedures on the effect of the biocontrol agent Serratia plymuthica HRO-C48 on Verticillium wilt in oilseed rape . BioControl. , 53 ( 6 ) : 905 – 916 .
  • Müller , H , Westendorf , C , Leitner , E , Chernin , L , Riedel , K , Schmidt , S , Eberl , L and Berg , G . 2009 . Quorum-sensing effects in the antagonistic rhizosphere bacterium Serratia plymuthica HRO-C48 . FEMS Microbiol Ecol. , 67 ( 3 ) : 468 – 478 .
  • Nelson , E B . 2004 . Microbial dynamics and interactions in the spermosphere . Annu Rev Phytopathol. , 42 : 271 – 309 .
  • Olson , P E , Castro , A , Joern , M , Duteau , N M , Pilon-Smits , E and Reardon , K F . 2008 . Effects of agronomic practices on phytoremediation of an aged PAH-contaminated soil . J Environ Qual. , 37 : 1439 – 1446 .
  • Peng , S , Zhou , Q , Cai , Z and Zhang , Z . 2009 . Phytoremediation of petroleum contaminated soils by Mirabilis jalapa L. in a greenhouse plot experiment . J Hazard Mater. , 168 ( 2-3 ) : 1490 – 1496 .
  • Pilon-Smits , E. 2005 . Phytoremediation . Annu Rev Plant Biol. , 56 : 15 – 39 .
  • Ramos , J L , Duque , E , van Dillewjin , P , Daniels , C , Krell , T , Espinosa-Urgel , M , Ramos-González , M I , Rodríguez , S , Matilla , M , Wittich , R and Segura , A . 2010 . “ Removal of hydrocarbons and other related chemicals via the rhizosphere of plants ” . In Handbook of hydrocarbon and lipid microbiology , Edited by: Timmes , K N . 2575 – 2581 . Berlin, , Germany : Springer Berlin Heidelberg .
  • Rentz , J A , Alvarez , P JJ and Schnoor , J L . 2005 . Benzo[a]pyrene co-metabolism in the presence of plant root extracts and exudates: implications for phytoremediation . Environ Pollut. , 136 ( 3 ) : 477 – 484 .
  • Risher , J F and Rhoads , S W . 1995 . Toxicological profile for fuel oils , Atlanta, GA : U.S. Department of Health and Human Services, Public Health Service, Agency for Toxic Substances and Disease Registry, chapter 88 .
  • Sambrook , J , Fritsch , EF and Maniatis , T . 1989 . “ Molecular cloning ” . In , 2nd ed. , A3 Cold Spring Harbor, NY : Cold Spring Harbor Laboratory Press .
  • Rosenblueth , M and Martínez-Romero , E . 2006 . Bacterial endophytes and their interactions with hosts . Mol Plant Microbe Interact. , 19 ( 8 ) : 827 – 837 .
  • Schiffmann , J and Alper , Y . 1968 . Inoculation of peanuts by application of rhizobium suspension into the planting furrows . Exp Agric. , 4 ( 3 ) : 219 – 226 .
  • Sturz , A V and Christie , B R . 1996 . Endophytic bacteria of red clover as agents of allelopathic clover-maize syndromes . Soil Biol Biochem. , 28 ( 4-5 ) : 583 – 588 .
  • Tesar , M , Reichenauer , T G and Sessitsch , A . 2002 . Bacterial rhizosphere populations of black poplar and herbal plants to be used for phytoremediation of diesel fuel . Soil Biol Biochem. , 34 ( 12 ) : 1883 – 1892 .
  • Ueno , A , Ito , Y , Yamamoto , Y , Yumoto , I and Okuyama , H . 2006 . Bacterial community changes in diesel-oil-contaminated soil microcosms biostimulated with LURIA-BERTANI medium or bioaugmented with petroleum-degradimg bacterium, Pseudomonas aeruginosa strain WatG . J Basic Microbiol. , 46 ( 4 ) : 310 – 317 .
  • Ueno , A , Ito , Y , Yumoto , I and Okuyama , H . 2007 . Isolation and characterization of bacteria from soil contaminated with diesel oil and the possible use of these in autochthonous bioaugmentation . World J Microbiol Biotechnol. , 23 ( 12 ) : 1739 – 1745 .
  • Villacieros , M , Whelan , C , Mackova , M , Molgaard , J , Sánchez-Contreras , M , Lloret , J , De Cárcer , D A , Oruezábal , R I , Bolaños , L , Macek , T , Karlson , U , Dowling , D N , Martín , M and Rivilla , R . 2005 . Polychlorinated biphenyl rhizoremediation by Pseudomonas fluorescens F113 derivatives, using a Sinorhizobium meliloti nod system to drive bph gene expression . Appl Environ Microbiol. , 71 ( 5 ) : 2687 – 2694 .
  • Wang , F C , Qian , K and Green , L A . 2005 . GCxMS of diesel: a two-dimensional separation approach . Anal Chem. , 77 ( 9 ) : 2777 – 2785 .
  • Wang , C , Wang , D and Zhou , Q . 2004 . Colonization and persistence of a plant growth-promoting bacterium Pseudomonas fluorescens strain CS85, on roots of cotton seedlings . Can J Microbiol. , 50 ( 7 ) : 475 – 481 .
  • Weyens , N , van der Lelie , D , Artois , T , Smeets , K , Taghavi , S , Newman , L , Carleer , R and Vangronsveld , J . 2009a . Bioaugmentation with engineered endophytic bacteria improves contaminant fate in phytoremediation . Environ Sci Technol. , 43 ( 24 ) : 9413 – 9418 .
  • Weyens , N , van der Lelie , D , Taghavi , S , Newman , L and Vangronsveld , J . 2009b . Exploiting plant-microbe partnerships to improve biomass production and remediation . Trends Biotechnol. , 27 ( 10 ) : 591 – 598 .
  • Weyens , N , van der Lelie , D , Taghavi , S and Vangronsveld , J . 2009c . Phytoremediation: plant-endophyte partnerships take the challenge . Curr Opin Biotechnol. , 20 ( 2 ) : 248 – 254 .
  • Wilson , K J , Sessitsch , A , Corbo , J C , Giller , K E , Akkermans , A D and Jefferson , R A . 1995 . β-Glucuronidase (GUS) transposons for ecological and genetic studies of rhizobia and other gram-negative bacteria . Microbiology. , 141 ( 7 ) : 1691 – 1705 .
  • Yateem , A , Al-Sharrah , T and Bin-Haji , A . 2007 . Investigation of microbes in the rhizosphere of selected grasses for rhizoremediation of hydrocarbon-contaminated soils . Soil Sediment Contam. , 16 ( 3 ) : 269 – 280 .
  • Yousaf , S , Andria , V , Reichenauer , T G , Smalla , K and Sessitsch , A . 2010a . Phylogenetic and functional diversity of alkane degrading bacteria associated with Italian ryegrass (Lolium multiflorum) and birdsfoot trefoil (Lotus corniculatus) in a petroleum oil-contaminated environment . J Hazard Mater. , 184 ( 1–3 ) : 523 – 532 .
  • Yousaf , S , Ripka , K , Reichenauer , T G , Andria , V , Afzal , M and Sessitsch , A . 2010b . Hydrocarbon degradation and plant colonization by selected bacterial strains isolated from Italian ryegrass and birdsfoot trefoil . J Appl Microbiol. , 109 ( 4 ) : 1389 – 1401 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.