560
Views
24
CrossRef citations to date
0
Altmetric
Disease control/Moyens de lutte

Application of plant growth-promoting rhizobacteria (PGPR) in combination with a mild strain of Cucumber mosaic virus (CMV) associated with viral satellite RNAs to enhance growth and protection against a virulent strain of CMV in tomato

, , &
Pages 177-186 | Accepted 12 Apr 2012, Published online: 27 Jun 2012

References

  • Adesemoye , A.O. and Ugoji , E.O. 2009 . Evaluating Pseudomonas aeruginosa as plant growth-promoting rhizobacteria in West Africa . Arch. Phytopathol. Plant Protect , 42 : 188 – 200 .
  • Berg , G. , Marten , P. and Ballin , G. 1996 . Stenotrophomonas maltophilia in the rhizosphere of oilseed rape – occurrence, characterization and interaction with phytopathogenic fungi . Microbiol. Res , 151 : 19 – 27 .
  • Bhuvaneswari , T.V. , Goodman , R.N. and Bauer , W.D. 1980 . Early events in the infection of soybean (Glycine max L. Merr.) by Rhizobium japonicum. I. Location of infectible root cells . Plant Physiol , 66 : 1027 – 1031 .
  • Chabot , R. , Antoun , H. , Kloepper , J.W. and Beauchamp , C.J. 1996 . Root colonization of maize and lettuce by bioluminescent Rhizobium leguminosarum biovar phaseoli . Appl. Environ. Microbiol , 62 : 2767 – 2772 .
  • Clark , M. and Adams , A. 1977 . Characteristic of the microplate method of enzyme-linked immunosorbent assay for detection of plant viruses . J. Gen. Virol , 34 : 475 – 483 .
  • Dashti , N. , Prithviraj , B. , Zhou , X. , Hynes , R.K. and Smith , D.L. 2000a . Combined effects of plant growth-promoting rhizobacteria and genistein on fixation in soya bean at suboptimal root zone temperatures . J. Plant Nutr , 23 : 593 – 604 .
  • Dashti , N. , Prithviraj , B. , Zhou , X. , Hynes , R.K. and Smith , D.L. 2000b . Root and rhizosphere colonization of soybean Glycine max L. Merr. by plant growth promoting rhizobacteria at low root zone temperature and under short season conditions . J. Agron. Crop. Sci , 185 : 15 – 22 .
  • Dashti , N. , Montasser , M.S. , Ali , N.Y. , Bhardwaj , R.G. and Smith , D.L. 2007 . Nitrogen biofixing bacteria compensate for yield loss caused by viral satellite RNA associated with Cucumber mosaic virus in tomato . Plant Pathol. J , 23 : 90 – 96 .
  • De Meyer , G. , Audenaert , K. and Höfte , M. 1999 . Pseudomonas aeruginosa 7NSK-2 induced systemic resistance in tobacco depends on in planta salicylic acid accumulation but is not associated with PR-1a expression . Eur. J. Plant Pathol , 105 : 513 – 517 .
  • Gallitelli , D. , Volvos , C. , Martelli , G.P. , Montasser , M.S. , Tousignant , M.E. and Kaper , J.M. 1991 . Satellite mediated protection of tomato against Cucumber mosaic virus. II. Field test under natural epidemic conditions in Southern Italy . Plant Dis , 75 : 93 – 95 .
  • García , J.A.L. , Probanza , A. , Ramos , B. and Manero , F.J.G. 2004 . Effect of inoculation of Bacillus licheniformis on tomato and pepper . Agronomie , 24 : 169 – 176 .
  • Hu , C. , Hsu , Y. and Lin , N. 2009 . Satellite RNAs and satellite viruses of plants . Viruses , 1 : 1325 – 1350 .
  • Joseph , B. , Ranjan Patra , R. and Lawrence , R. 2007 . Characterization of plant growth promoting rhizobacteria associated with chick pea . Int. J. Plant Prod , 2 : 141 – 152 .
  • Kaper , J.M. and Waterworth , H.E. 1977 . Cucumber mosaic virus-associated RNA-5: causal agent for tomato necrosis . Science , 196 : 429 – 431 .
  • Kloepper , J.W. , Ubana , R.R. , Zehnder , G.W. , Murfy , J.F. , Sikora , E. and Fernandez , C. 1999 . Plant root-bacterial interactions in biological control of soilborne diseases and potential extension to systemic and foliar diseases . Aust. Plant. Pathol , 28 : 21 – 26 .
  • McGarvey , P.B. , Montasser , M.S. and Kaper , J.M. 1994 . Transgenic tomato plants expressing satellite RNS are tolerant to some strains of Cucumber mosaic virus . J. Am. Soc. Hort. Sci , 119 : 642 – 647 .
  • Meunchang , S. , Thongra-Ar , P. , Sanoh , S. , Kaewsuralikhiti , S. and Ando , S. Development of rhizobacteria as a biofertilizer for rice production . International workshop on sustained management of the soil-rhizosphere system for efficient crop production and fertilizer use . October 16th–20th 2006 . pp. 1 – 7 . Bangkok , , Thailand : Land Development Department .
  • Montasser , M.S. , Tousignant , M.E. and Kaper , J.M. 1991 . Satellite-mediated protection of vegetable crops against Cucumber mosaic virus. I. Protection of tomato in the greenhouse and under simulated epidemic conditions in the field . Plant Dis , 75 : 86 – 92 .
  • Montasser , M.S. , Tousignant , M.E. and Kaper , J.M. 1998 . Viral satellite RNAs for the prevention of Cucumber mosaic virus disease in field-grown pepper and melon plants . Plant Dis , 82 : 1298 – 1303 .
  • Montasser , M.S. , Dashti , N.H. , Ali , N.Y. , Bhardwaj , R. and Al-Hamar , B. 2006a . Occurrence of three strains of Cucumber mosaic virus affecting tomato in Kuwait . Plant Pathol. J , 22 : 51 – 62 .
  • Montasser , M.S. , Al Hamar , B. and Bhardwaj , R.G. 2006b . Biological control of a severe viral strain using a benign viral satellite RNA associated with Cucumber mosaic virus . Plant Pathol. J , 22 : 131 – 138 .
  • Murphy , J.F. , Reddy , M.S. , Ryu , C.M. , Kloepper , J.W. and Li , R. 2003 . Rhizobacteria-mediated growth promotion of tomato leads to protection against Cucumber mosaic virus . Phytopathology , 93 : 1301 – 1307 .
  • Nelson, L.M. (2004). Plant growth promoting rhizobacteria: prospects for new inoculants. [Online.] Crop Manage. doi: 10.1094/Cm-2004-0301-05 RV. http://www.plantmanagementnetwork.org/pub/cm/review/2004/rhizobacteria/ (http://www.plantmanagementnetwork.org/pub/cm/review/2004/rhizobacteria/) (Accessed: 4 March 2009 ).
  • Radwan , S.S. , Dashti , N. and El-Nemr , I.M. 2005 . Enhancing the growth of Vicia faba plants by microbial inoculation to improve their phytoremediation potential for oily desert areas . Int. J. Phytoremed , 7 : 19 – 32 .
  • Radwan , S.S. , Dashti , N. , El-Nemr , I.M. and Khanafer , M. 2007 . Hydrocarbon utilization by nodule bacteria and plant growth promoting rhizobacteria . Int. J. Phytoremed , 9 : 1 – 11 .
  • Raupauch , G.S. and Kloepper , J.W. 1998 . Mixtures of plant growth-promoting rhizobacteria enhance biological control of multiple Cucumber pathogens . Phytopathology , 88 : 1158 – 1164 .
  • Roossinck , M.J. , Sleat , D. and Palukaitis , P. 1992 . Satellite RNAs of plant viruses: structures and biological effects . Microbiol. Rev , 56 : 265 – 279 .
  • Roossinck , M.J. , Kaplan , I. and Palukaitis , P. 1997 . Support of a Cucumber mosaic virus satellite RNA maps to a single amino acid proximal to the helicase domain of the helper virus . J. Virol , 71 : 608 – 612 .
  • Sayama , H.T. , Kominato , S.M. , Natsuaki , T. and Kaper , J.M. 1993 . Field testing of a satellite containing attenuated strain of Cucumber mosaic virus for tomato protection in Japan . Phytopathology , 83 : 405 – 410 .
  • Schmidt , C.S. , Alavi , M. , Cardinale , M. , Muller , H. and Berg , G. 2010 . Root colonization and plant growth promotion by Stenotrophomonas rhizophilia DSM14405 . FEMS Microbiol. Ecol , 74 : 124 – 135 .
  • Tomlinson , J.A. 1987 . Epidemiology and control of virus diseases of vegetables . Ann. Appl. Biol , 110 : 661 – 681 .
  • Wolf , A. , Fritze , A. , Hagemann , M. and Berg , G. 2002 . Stenotrophomonas rhizophilia sp. nov., a novel plant-associated bacterium with antifungal properties . Int. J. Syst. Evol. Microbiol , 52 : 1937 – 1944 .
  • Xu , P. and Roossinck , M.J. 2000 . Cucumber mosaic virus D satellite RNA-induced programmed cell death in tomato . Plant Cell , 12 : 1079 – 1092 .
  • Zehnder , G.W. , Yao , C. , Murphy , J.F. , Sikora , E.R. and Kloepper , J.W. 2000 . Induction of resistance in tomato against Cucumber mosaic cucumovirus by plant growth promoting rhizobacteria . Biocontrol , 45 : 125 – 135 .

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.