Use of a nucleic acid encoding a hypersensitive response...

Multicellular living organisms and unmodified parts thereof and – Method of introducing a polynucleotide molecule into or...

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C514S002600

Reexamination Certificate

active

06998515

ABSTRACT:
The present invention relates to a method of enhancing growth in plants. Transgenic plants or transgenic plant seeds transformed with a DNA molecule encoding a hypersensitive response elicitor polypeptide or protein are grown and, optionally, the transgenic plants or plants resulting from the transgenic plant seeds further have the hypersensitive response elicitor polypeptide or protein applied to them.

REFERENCES:
patent: 4569841 (1986-02-01), Liu
patent: 4597972 (1986-07-01), Taylor
patent: 4601842 (1986-07-01), Caple et al.
patent: 4740593 (1988-04-01), Gonzalez et al.
patent: 4851223 (1989-07-01), Sampson
patent: 4886825 (1989-12-01), Ruess et al.
patent: 4931581 (1990-06-01), Schurter et al.
patent: 5057422 (1991-10-01), Bol et al.
patent: 5061490 (1991-10-01), Paau et al.
patent: 5135910 (1992-08-01), Blackburn et al.
patent: 5173403 (1992-12-01), Tang et al.
patent: 5217950 (1993-06-01), Blackburn et al.
patent: 5243038 (1993-09-01), Ferrari et al.
patent: 5244658 (1993-09-01), Parke
patent: 5260271 (1993-11-01), Blackburn et al.
patent: 5348743 (1994-09-01), Ryals et al.
patent: 5494684 (1996-02-01), Cohen
patent: 5523311 (1996-06-01), Schurter et al.
patent: 5550228 (1996-08-01), Godiard et al.
patent: 5552527 (1996-09-01), Godiard et al.
patent: 5708139 (1998-01-01), Collmer et al.
patent: 5850015 (1998-12-01), Bauer et al.
patent: 6001959 (1999-12-01), Bauer et al.
patent: 6174717 (2001-01-01), Beer et al.
patent: 6228644 (2001-05-01), Bogdanove et al.
patent: 0 612 848 (1994-08-01), None
patent: WO 93/23532 (1993-11-01), None
patent: WO 94/01546 (1994-01-01), None
patent: WO 94/26782 (1994-11-01), None
patent: WO 95/19443 (1995-07-01), None
patent: WO 96/39802 (1996-12-01), None
patent: WO 98/15547 (1998-04-01), None
patent: WO 98/24297 (1998-06-01), None
patent: WO 98/32844 (1998-07-01), None
patent: WO 98/37752 (1998-09-01), None
patent: WO 98/54214 (1998-12-01), None
patent: WO 99/07206 (1999-02-01), None
patent: WO 99/07207 (1999-02-01), None
US 5,650,387, 07/1997, Wei et al. (withdrawn)
Sweetlove et al., Starch metabolism in tubers of transgenic potato (Solanum tuberosum) with increased ADP glucose pyrophosphorylase, 1996, Biochem. J., vol. 320, pp. 493-498.
Thiele et al., Heterologous Expression of Arabidopsis Phytochrome B in Transgenic Potato Influence Photosynthetic . . . , May 1999, vol. 120, pp. 73-81.
Keller et al., Pathogen-Induced Elicition Production in Transgenic Tobacco Generates a . . . , Feb. 1999, The Plant Cell, vol. 11, pp. 223-235.
Kim et al., HrpW ofErwinia amylovora, a New Harpin That Containes a Domain Homologous . . . , Oct. 1998, Journal of Bacteriology, vol. 180, No. 19, pp. 5203-5210.
Ahmad et al, 1996, 8th Int'l Cong. Molec. Plant Microbe Interact.
Majerczak et al, 1996, Ann. Mtg Amer. Phytopath. Soc.
Jock et al, 2004, Environ. Microbiol. 6:480-490.
Collmer et al., “Erwinia chrysanthemiandPseudomonas syringae: Plant Pathogens Trafficking in Extracellular Virulence Proteins,” pp. 43-78.
Frederick et al., “The WTS Water-Soaking Genes ofErwinia stewartiiare Related to hrp Genes,” Seventh International Symposium on Molecular Plant Microbe Interactions, Abstract No. 191 (Jun. 1994).
Wei et al., “Proteinaceous Elicitors of the Hypersensitive Response fromXanthomonas campestrispv.glycines,” Seventh International Symposium on Molecular Plant Microbe Interactions, Abstract No. 244 (Jun. 1994).
Preston et al., “The HrpZ Proteins ofPseudomonas syringaepvs.syringae, glycinea, and tomato are Encoded by an Operon ContainingYersinia yscHomologs and Elicit the Hypersensitive Respose in Tomato but not Soybean,”Mol. Plant-Microbe Interact., 8(5):717-32 (1995).
Bauer et al., “Erwinia chrysanthemihrp Genes and their Involvement in Elicitation of the Hypersenstitive Response in Tabacco,” Sixth International Symposium on Molecular Plant Microbe Interactions, Abstract No. 146 (Jul. 1992).
Stryer, L., “Enzymes are Highly Specific,”Biochemistry, San Francisco: W.H. Freeman and Company, p. 116 (1975).
Keen et al., “Inhibition of the Hypersensitive Reaction of Soybean Leaves to IncompatiblePseudomonasspp. byBlasticidin S, Streptomycinor Elevated Temperature,”Physiological Plant Pathology, 18:325-37 (1981).
Lerner, R.A., “Tapping the Immunological Repertoire to Produce Antibodies of Predetermined Specificity,”Nature, 299:592-96 (1982).
Stakawicz et al., “Cloned Avirulence Gene ofPseudomonas Syringaepv.glycineaDetermines Race-specific Incompatibility onGlycine max(L.) Merr.,”Proc. Natl. Acad. Sci. USA, 81:6024-28 (1984).
Bauer et al., “Erwinia chrysanthemiHarpinEch: An Elicitor of the Hypersensitive Response that Contributes to Soft-Rot Pathogenesis,”MPMI, 8(4):484-91 (1995).
Huang et al., “Characterization of the hrp Cluster fromPseudomonas syringaepv.syringae61 and TnphoA Tagging of Genes Encoding Exported or Membrane-Spanning Hrp Proteins,”Molec. Plant-Microbe Interact., 4(5):469-76 (1991).
Huang et al., “ThePseudomonas syringaepv.syringae61 hrpH Product, an Envelope Protein Required for Elicitation of the Hypersensitive Response in Plants,”J. Bacteriol., 174(21):6878-85 (1992).
Bonas, U., “hrp Genes of Phytopathogenic Bacteria,”Current Topics in Microbio., 192:79-98 (1994).
Arlat et al., “PopA1, A Protein Which Induces a Hypersensitivity-Like Response on Specific ProteinPetuniaGenotypes, is Secreted via the Hrp Pathway ofPseudomonas solanacearum,” The EMBO J., 13(3):543-53 (1994).
Kessmann et al., “Induction of Synthetic Acquired Disease Resistance in Plants By Chemicals,”Ann. Rev. Phytopathol., 32:439-59 (1994).
Kelman, A., “The Relationship of Pathogenicity inPseudomonas solanacearumTo Colony Appearance on a Tetrazolium Medium,”Phytopathology, 44:693-95 (1954).
Winstead et al., “Inoculation Techniques For Evaluating Resistance toPseudomonas solanacearum,” Phytopathology, 42:628-34 (1952).
Ahi et al., “Iron Bound-Siderophores, Cyanic Acid, and Antibodies Involved in Supression ofThielaviopsis basiocolaby aPseudomonas fluorescensStrain,”J. Phytopathology, 116:121-34 (1986).
Anderson et al., “Responses of Beam to Root Colonization withPseudomonas putidain a Hydroponic System,”Phytopathology, 75(9):992-5 (1985).
Gardner et al., “Growth Promotion and Inhibition by Antibiotic-Producing Fluorescent Pseudomonads on Citrus Roots,”Plant and Soil, 77:103-13 (1984).
Kloepper, J.W., “Effect of Seed Piece Inoculation with Plant Growth-Promoting Rhizobacteria on Populations ofErwinia carotovoraon Potato Roots and In Daughter Tubers,”Phytopathology, 73(2):217-19 (1983).
Atkinson et al., “The Hypersensitive Reaction of Tobacco toPseudomonas syringaepv.pisi,” Plant Physiol., 79:843-47 (1985).
Huyng et al., “Bacterial Blight of Soybean: Regulation of a Pathogen Gene Determining Host Cultiver Specificity,”Science, 245:1374-77 (1986).
Kloepper et al., “Plant Growth-Promoting Rhizobacteria on Canola (Rapeseed),”Plant Disease, 72(1):42-6 (1988).
Kloepper et al., “PseudomonasSiderophores: A Mechanism Explaining Disease-Suppressive Soils,”Current Microbiology, 4:317-20 (1980).
Kloepper et al., “Emergence-Promoting Rhizobacteria: Description and Implications for Agriculture,” In:Iron, Siderophores, and Plant Disease, Swinborne (ed), Plenum, NY, 155-64 (1986).
Kloepper et al., “Relationships on in vitro Antibiosis of Plant Growth-Promoting Rhizobacteria to Plant Growth and the Displacement of Root Microflora,”Phytopathology, 71(10):1020-24 (1981).
Kloepper et al., “Effects of Rhizosphere Colonization by Plant Growth-Promoting Rhizobacteria on Potato Plant Development and Yield,”Phytopathology, 70(11):1078-82 (1991).
Kloepper et al., “Plant Growth Promotion Mediated by Rhizosphere Bacterial Colonizers,” In:The Rhizosphere and Plant Growth,—315-32, Keister et al. (eds), pp. 315-2

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