Acquired resistance triggered by elicitins in tobacco and other plants

Springer Science and Business Media LLC - Tập 102 Số 2 - Trang 181-192 - 1996
Philippe Bonnet1, Eva Bourdon1, Michel Ponchet1, Jean‐Pierre Blein2, Pierre Ricci1
1Station de Botanique et Pathologie végétale INRA, Antibes Cedex, France
2Laboratoire de Phytopharmacie INRA-Université de Bourgogne, Dijon Cedex, France

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Bailey BA, Dean JFD and Anderson JD (1990) An ethylene biosynthesis-inducing endoxylanase elicits electrolyte leakage and necrosis inNicotiana tabacum cv Xanthi leaves. Plant Physiol 94: 1849–1854

Billard V, Bruneteau M, Bonnet P, Ricci P, Pernollet J-C, Huet J-C, Vergne A, Richard G and Michel G (1988) Chromatographic purification and characterization of elicitors of necrosis on tobacco produced by incompatiblePhytophthora species. J Chromatogr 44: 87–94

Blein J-P, Milat M-L and Ricci P (1991) Responses of cultured tobacco cells to cryptogein, a proteinaceous elicitor fromPhytophthora cryptogea: possible plasmalemma involvement. Plant Physiol 95: 486–491

Bonnet P (1988) Purification de divers filtrats de culture dePhytophthora et activités biologiques sur le tabac des différentes fractions. Agronomie 8: 347–350

Bonnet P, Lacourt I, Venard P and Ricci P (1994) Diversity in pathogenicity to tobacco and in elicitin production among isolates ofPhytophthora parasitica. J Phytopathol 141: 25–37

Bonnet P, Poupet A, Abad P, Venard P and Cardin L (1986) Induction de nécroses foliaires, de protéines b et de résistance dans les interactions tabac-Phytophthora. Agronomie 6: 829–837

Bonnet P, Poupet A and Bruneteau M (1985) Toxicité vis-à-vis du tabac des fractions purifiées d'un filtrat de culture dePhytophthora cryptogea Pethyb. & Laff. Agronomie 5: 275–282

Cameron RK, Dixon RA and Lamb CJ (1994) Biologically induced systemic acquired resistance inArabidopsis thaliana. Plant J 5: 715–725

Chaplin JF (1962) Transfer of black-shank resistance fromNicotiana plumbaginifolia to flue-curedNicotiana tabacum. Tob Sci. 6: 182–187

Culver JN and Dawson WO (1991) Tobacco mosaic virus elicitor coat protein genes produce a hypersensitive phenotype in transgenicNicotiana sylvestris plants. Mol Plant-Microbe Interact 4: 458–463

Darlington CD and Wylie AP (1955) Chromosome Atlas of Flowering Plants. George Allen and Unwin Ltd, London.

Devergne JC, Bonnet P, Panabières F, Blein JP and Ricci P (1992) Migration of the fungal protein cryptogein within tobacco plants. Plant Physiol 99: 843–847

Kamoun S, Young M, Glascock CB and Tyler BM (1993) Extracellular protein elicitors fromPhytophthora: host-specificity and induction of resistance to bacterial and fungal pathogens. Mol Plant Microbe Interact 6: 15–25

Keller H, Blein J-P, Bonnet P, Bourdon E, Panabières F and Ricci P (1994) Responses of tobacco to elicitins, proteins fromPhytophthora spp. eliciting acquired resistance. In: Daniels M (ed) Advances in Molecular Genetics of Plant-Microbe Interactions. 3 (pp. 327–332) Kluwer Academic Publishers

Keller H, Blein J-P, Bonnet P and Ricci P (1995) Physiological and molecular characteristics of elicitin-induced systemic acquired resistance in tobacco. Plant Physiol (in press).

Kloepper JW, Tuzun S and Kuc JA (1992) Proposed definitions related to induced disease resistance. Biocontrol Science and Technology 2: 349–351

Kuc J (1982) Plant immunization-mechanisms and practical implications. In: Wood RKS (ed) Active defense mechanisms in plants. A37 (pp. 157–178) Plenum Press, New York & London

Le Berre J-Y, Panabières F, Ponchet M, Denoroy L, Bonnet P, Marais A and Ricci P (1994) Occurence of multiple forms of elicitins inPhytophthora cryptogea. Plant Physiology and Biochemistry 32: 251–258

McIntyre JL and Dodds JA (1979) Induction of localized and systemic protection againstPhytophthora parasitiva var.nicotianae by tobacco mosaic virus infection of tobacco hypersensitive to the virus. Physiol Plant Pathol 15: 321–330

Milat M-L, Ducruet J-M, Ricci P, Marty F and Blein J-P (1991) Physiological and structural changes in tobacco leaves treated with cryptogein, a proteinaceous elicitor fromPhytophthora cryptogea. Phytopathology 81: 1364–1368

Mouton-Perronnet F, Bruneteau M, Denoroy L, Bouliteau P, Ricci P, Bonnet P and Michel G (1995) Elicitin produced by an isolate ofPhytophthora parasitica pathogenic to tobacco. Phytochemistry 38: 41–44

Nespoulos C, Huet J-C and Pernollet J-C (1992) Structure-function relationships ofα andΒ elicitins, signal proteins involved in the plant-Phytophthora interaction. Planta 186: 551–557

Padgett HS and Beachy RN (1993) Analysis of a tobacco mosaic virus strain capable of overcomingN gene-mediated resistance. Plant Cell 5: 577–586

Pernollet J-C, Sallantin M, Sallé-Tourne M and Huet J-C (1993) Elicitin isoforms from sevenPhytophthora species: comparison of their physico-chemical properties and toxicity to tobacco and other plant species. Physiol Mol Plant Pathol 42: 53–67

Ricci P, Bonnet P, Huet J-C, Sallantin M, Beauvais-Cante F, Bruneteau M, Billard V, Michel G and Pernollet J-C (1989) Structure and activity of proteins from pathogenic fungiPhytophthora eliciting necrosis and acquired resistance in tobacco. Eur J Biochem 183: 555–563

Ricci P, Panabières F, Bonnet P, Maia N, Ponchet M, Devergne J-C, Marais A, Cardin L, Milat M-L and Blein J-P (1993) Proteinaceous elicitors of plant defence responses. In: Fritig B and Legrand M (ed) Mechanisms of Plant Defence Responses (pp. 121–135) Kluver Academic Publishers, Dordrecht

Ricci P, Trentin F, Bonnet P, Venard P, Mouton-Perronnet F and Bruneteau M (1992) Differential production of parasiticein, an elicitor of necrosis and resistance in tobacco, by isolates ofPhytophthora parasitica. Plant Pathol 41: 298–307

Ross AF (1961a) Localized acquired resistance to plant virus infection in hypersensitive hosts. Virology 14: 329–339

Ross AF (1961b) Systemic acquired resistance induced by localized virus infections in plants. Virology 14: 340–358

Ryals J, Scott U and Ward E (1994) Systemic acquired resistance. Plant Physiol 104: 1109–1112

Vernooij B, Friedrich L, Ahl Goy P, Staub T, Kessmann H and Ryals J (1995) 2,6-dichloroisonicotinic acid-induced resistance to pathogens without the accumulation of salicylic acid. Mol Plant-Microbe Interact 8: 228–234

Viard M-P, Martin F, Pugin A, Ricci P and Blein J-P (1994) Protein phosphorylation is induced in tobacco cells by the elicitor cryptogein. Plant Physiol 104: 1245–1249

Ward ER, Uknes SJ, Williams SC, Dincher SS, Wiederhold DL, Alexander DC, Ahl-Goy P, Métraux J-P and Ryals JA (1991) Coordinate gene activity in response to agents that induce systemic acquired resistance. Plant Cell 3: 1085–1094