Emerging Strategies for Enhancing Crop Resistance to Microbial Pathogens
暂无分享,去创建一个
[1] E. Ward,et al. Increased tolerance to two oomycete pathogens in transgenic tobacco expressing pathogenesis-related protein 1a. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[2] R. Dixon,et al. Purification and biochemical characterization of proteins which bind to the H-box cis-element implicated in transcriptional activation of plant defense genes. , 1993, The Plant journal : for cell and molecular biology.
[3] T. Suslow,et al. Resistance to Rhizoctonia solani in transgenic tobacco , 1993 .
[4] E. Farmer,et al. Octadecanoid-redived signals in plants , 1992 .
[5] L. Herrera-Estrella,et al. Expression of a Bacterial Phaseolotoxin–Resistant Ornithyl Transcarbamylase in Transgenic Tobacco Confers Resistance to Pseudomonas Syringae pv. Phaseolicola , 1992, Bio/Technology.
[6] C. Lamb,et al. Elicitor- and wound-induced oxidative cross-linking of a proline-rich plant cell wall protein: A novel, rapid defense response , 1992, Cell.
[7] I. Raskin. Salicylate, a new plant hormone. , 1992, Plant physiology.
[8] N. Raikhel,et al. The gene for stinging nettle lectin (Urtica dioica agglutinin) encodes both a lectin and a chitinase. , 1992, The Journal of biological chemistry.
[9] S. Potter,et al. Acquired resistance in Arabidopsis. , 1992, The Plant cell.
[10] P. Albersheim,et al. Cloning and characterization of the gene encoding the endopolygalacturonase-inhibiting protein (PGIP) of Phaseolus vulgaris L. , 1992, The Plant journal : for cell and molecular biology.
[11] J. Vandekerckhove,et al. A carrot somatic embryo mutant is rescued by chitinase. , 1992, The Plant cell.
[12] G. Pearce,et al. Structure, expression, and antisense inhibition of the systemin precursor gene. , 1992, Science.
[13] G. Jach,et al. Expression of a Barley Ribosome-Inactivating Protein Leads to Increased Fungal Protection in Transgenic Tobacco Plants , 1992, Bio/Technology.
[14] T. Frey,et al. Identification of a high-affinity binding protein for a hepta-beta-glucoside phytoalexin elicitor in soybean. , 1992, European journal of biochemistry.
[15] S. Briggs,et al. A Biochemical Phenotype for a Disease Resistance Gene of Maize. , 1992, The Plant cell.
[16] Jennifer A. Smith,et al. Pseudomonas syringae pv. syringae induces systemic resistance to Pyricularia oryzae in rice , 1991 .
[17] R. Cressman,et al. Transgenic Plants with Enhanced Resistance to the Fungal Pathogen Rhizoctonia solani , 1991, Science.
[18] T. Kutchan,et al. Molecular cloning, expression, and induction of berberine bridge enzyme, an enzyme essential to the formation of benzophenanthridine alkaloids in the response of plants to pathogenic attack. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[19] P. Albersheim,et al. Membrane responses induced by oligogalacturonides in suspension-cultured tobacco cells. , 1991, The Plant journal : for cell and molecular biology.
[20] J. Dangl,et al. Identification and molecular mapping of a single Arabidopsis thaliana locus determining resistance to a phytopathogenic Pseudomonas syringae isolate. , 1991, The Plant journal : for cell and molecular biology.
[21] T. Boller,et al. Rapid changes of protein phosphorylation are involved in transduction of the elicitor signal in plant cells. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[22] J. A. Ryals,et al. Coordinate Gene Activity in Response to Agents That Induce Systemic Acquired Resistance. , 1991, The Plant cell.
[23] D. Klessig,et al. Identification of a soluble salicylic acid-binding protein that may function in signal transduction in the plant disease-resistance response. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[24] D. Inzé,et al. Pterocarpan phytoalexin biosynthesis in elicitor-challenged chickpea (Cicer arietinum L.) cell cultures. Purification, characterization and cDNA cloning of NADPH:isoflavone oxidoreductase. , 1991, European journal of biochemistry.
[25] J. Ohlrogge,et al. Expression of a fungal sesquiterpene cyclase gene in transgenic tobacco. , 1991, Plant physiology.
[26] G. Pearce,et al. A Polypeptide from Tomato Leaves Induces Wound-Inducible Proteinase Inhibitor Proteins , 1991, Science.
[27] A. Campbell,et al. Transgenic plant aequorin reports the effects of touch and cold-shock and elicitors on cytoplasmic calcium , 1991, Nature.
[28] M. Sutherland. The generation of oxygen radicals during host plant responses to infection , 1991 .
[29] I. Raskin,et al. Salicylic acid is a systemic signal and an inducer of pathogenesis-related proteins in virus-infected tobacco. , 1991, The Plant cell.
[30] P. Baeuerle,et al. Reactive oxygen intermediates as apparently widely used messengers in the activation of the NF‐kappa B transcription factor and HIV‐1. , 1991, The EMBO journal.
[31] C. Woloshuk,et al. Pathogen-induced proteins with inhibitory activity toward Phytophthora infestans. , 1991, The Plant cell.
[32] B. Shapiro. The control of oxidant stress at fertilization. , 1991, Science.
[33] Jennifer A. Smith,et al. Rapid induction of systemic resistance in cucumber by Pseudomonas syringae pv. syringae , 1991 .
[34] E. Farmer,et al. Oligosaccharide signaling in plants. Specificity of oligouronide-enhanced plasma membrane protein phosphorylation. , 1991, The Journal of biological chemistry.
[35] W. Barz,et al. Elicitor Induction of Cytochrome P-450 Monooxygenases in Cell Suspension Cultures of Chickpea (Cicer arietinum L.) and Their Involvement in Pterocarpan Phytoalexin Biosynthesis , 1991 .
[36] R. Leah,et al. Biochemical and molecular characterization of three barley seed proteins with antifungal properties. , 1991, The Journal of biological chemistry.
[37] N. Raikhel,et al. Lectins, lectin genes, and their role in plant defense. , 1991, The Plant cell.
[38] J. Chappell,et al. Regulation of a sesquiterpene cyclase in cellulase-treated tobacco cell suspension cultures. , 1990, Plant physiology.
[39] H. Signer,et al. Increase in Salicylic Acid at the Onset of Systemic Acquired Resistance in Cucumber , 1990, Science.
[40] N. Brisson,et al. High levels of tryptamine accumulation in transgenic tobacco expressing tryptophan decarboxylase. , 1990, Plant physiology.
[41] R. Dixon,et al. Abnormal plant development and down-regulation of phenylpropanoid biosynthesis in transgenic tobacco containing a heterologous phenylalanine ammonia-lyase gene. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[42] R. Fluhr,et al. A major stylar matrix polypeptide (sp41) is a member of the pathogenesis‐related proteins superclass. , 1990, The EMBO journal.
[43] R. Dixon,et al. Plant Defense Gene Promoter-Reporter Gene Fusions in Transgenic Plants: Tools for Identification of Novel Inducers , 1990, Bio/Technology.
[44] I. Somssich,et al. A 125 bp promoter fragment is sufficient for strong elicitor‐mediated gene activation in parsley. , 1990, The EMBO journal.
[45] B. Staskawicz,et al. Widespread distribution and fitness contribution of Xanthomonas campestris avirulence gene avrBs2 , 1990, Nature.
[46] W. Peacock,et al. Chitinase, beta-1,3-glucanase, osmotin, and extensin are expressed in tobacco explants during flower formation. , 1990, The Plant cell.
[47] R. Dixon,et al. Developmental and environmental regulation of a bean chalcone synthase promoter in transgenic tobacco. , 1990, The Plant cell.
[48] S. Sekido,et al. N-フェニルスルホニル-2-クロロイソニコチン酸アミドのイネいもち病に対する作用特性 , 1990 .
[49] K. Hahlbrock,et al. Fungal elicitor triggers rapid, transient, and specific protein phosphorylation in parsley cell suspension cultures. , 1990, The Journal of biological chemistry.
[50] M. Baggiolini,et al. Turning on the respiratory burst. , 1990, Trends in biochemical sciences.
[51] R. Dixon,et al. Developmental and environmental regulation of a phenylalanine ammonia-lyase-beta-glucuronidase gene fusion in transgenic tobacco plants. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[52] D F Klessig,et al. Disease response to tobacco mosaic virus in transgenic tobacco plants that constitutively express the pathogenesis-related PR1b gene. , 1989, Virology.
[53] D. Matthews,et al. Purification and Characterization of S-Adenosyl-l-methionine:6a-Hydroxymaackiain 3-O-Methyltransferase from Pisum sativum. , 1989, Plant physiology.
[54] F. Stirpe,et al. Specificity of ribosome-inactivating proteins with RNA N-glycosidase activity. , 1989, The Biochemical journal.
[55] W. Broekaert,et al. A Chitin-Binding Lectin from Stinging Nettle Rhizomes with Antifungal Properties , 1989, Science.
[56] R. Fluhr,et al. Pathogenesis-related proteins are developmentally regulated in tobacco flowers. , 1989, The Plant cell.
[57] P. Albersheim,et al. Host-Pathogen Interactions : XXXIII. A Plant Protein Converts a Fungal Pathogenesis Factor into an Elicitor of Plant Defense Responses. , 1989, Plant physiology.
[58] K. Hahlbrock,et al. A phenylalanine ammonia‐lyase gene from parsley: structure, regulation and identification of elicitor and light responsive cis‐acting elements. , 1989, The EMBO journal.
[59] P. Low,et al. Rapid Stimulation of an Oxidative Burst during Elicitation of Cultured Plant Cells : Role in Defense and Signal Transduction. , 1989, Plant physiology.
[60] R. Meuwissen,et al. Constitutive expression of pathogenesis-related proteins PR-1, GRP, and PR-S in tobacco has no effect on virus infection. , 1989, The Plant cell.
[61] R. Dixon,et al. Signals and transduction mechanisms for activation of plant defenses against microbial attack , 1989, Cell.
[62] T. Boller,et al. Antifungal Hydrolases in Pea Tissue : II. Inhibition of Fungal Growth by Combinations of Chitinase and beta-1,3-Glucanase. , 1988, Plant physiology.
[63] R. Dixon,et al. Glutathione and fungal elicitor regulation of a plant defense gene promoter in electroporated protoplasts. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[64] W. Barz,et al. Isolation of pterocarpan synthase, the terminal enzyme of pterocarpan phytoalexin biosynthesis in cell suspension cultures of Cicer arietinum , 1988 .
[65] R. Welle,et al. Induction of phytoalexin synthesis in soybean: enzymatic cyclization of prenylated pterocarpans to glyceollin isomers. , 1988, Archives of biochemistry and biophysics.
[66] J. Bennetzen,et al. Allele-specific and Mutator-associated instability at the Rpl disease-resistance locus of maize , 1988, Nature.
[67] L. M. Lagrimini,et al. Molecular cloning of complementary DNA encoding the lignin-forming peroxidase from tobacco: Molecular analysis and tissue-specific expression. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[68] J. Ebel,et al. Effects of Ca2+ on phytoalexin induction by fungal elicitor in soybean cells. , 1987, Archives of biochemistry and biophysics.
[69] R. Welle,et al. Dimethylallylpyrophosphate:3,9‐dihydroxypterocarpan 10‐dimethylallyl transferase from Phaseolus vulgaris Identification of the reaction product and properties of the enzyme , 1987 .
[70] C. Lamb,et al. Transcriptional activation of plant defense genes by fungal elicitor, wounding, and infection , 1987, Molecular and cellular biology.
[71] C. Lamb,et al. Differential accumulation of plant defense gene transcripts in a compatible and an incompatible plant-pathogen interaction. , 1986, Molecular and cellular biology.
[72] W. K. Roberts,et al. Isolation and partial characterization of two antifungal proteins from barley. , 1986, Biochimica et biophysica acta.
[73] C. Lamb,et al. Rapid Switching of Plant Gene Expression Induced by Fungal Elicitor , 1985 .
[74] R. Dixon,et al. Differential induction of chalcone synthase mRNA activity at the onset of phytoalexin accumulation in compatible and incompatible plant-pathogen interactions. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[75] J. Kuc. Induced Immunity to Plant Disease , 1982 .
[76] R. Laine,et al. Eicosapentaenoic and Arachidonic Acids from Phytophthora infestans Elicit Fungitoxic Sesquiterpenes in the Potato. , 1981, Science.
[77] O. Yoder. Toxins in Pathogenesis , 1980 .
[78] J. Dangl. Regulatory Elements Controlling Developmental and Stress-induced Expression of Phenylpropanoid Genes , 1992 .
[79] Jonathan D. G. Jones,et al. Approaches and progress in the molecular cloning of plant disease resistance genes. , 1992 .
[80] F. Katagiri,et al. Plant transcription factors: present knowledge and future challenges. , 1992, Trends in genetics : TIG.
[81] J. Kan,et al. Cloning and characterization of cDNA of avirulence gene avr9 of the fungal pathogen Cladosporium fulvum, causal agent of tomato leaf mold. , 1991 .
[82] E. Ward,et al. Induced Systemic Resistance in Cucumber in Response to 2,6-Dichloro-Isonicotinic Acid and Pathogens , 1991 .
[83] I. Somssich,et al. Signals in Plant Defense Gene Activation , 1991 .
[84] R. Dixon,et al. Isoflavone O-methyltransferase activities in elicitor-treated cell suspension cultures of Medicago sativa☆ , 1991 .
[85] G. Hrazdina,et al. Stereoisomerism in plant disease resistance: induction and isolation of the 7,2'-dihydroxy-4',5'-methylenedioxyisoflavone oxidoreductase, an enzyme introducing chirality during synthesis of isoflavonoid phytoalexins in pea (Pisum sativum L). , 1991, Archives of biochemistry and biophysics.
[86] M. Stayton,et al. Bacteria expressing avirulence gene D produce a specific elicitor of the soybean hypersensitive reaction. , 1990 .
[87] R. Spooner,et al. Immunotoxins: status and prospects. , 1990, Trends in biotechnology.
[88] A. Lois,et al. Regulation of expression of the casbene synthetase gene during elicitation of castor bean seedlings with pectic fragments. , 1990, Archives of biochemistry and biophysics.
[89] D. Bowles,et al. Defense-related proteins in higher plants. , 1990, Annual review of biochemistry.
[90] N. Keen. Gene-for-gene complementarity in plant-pathogen interactions. , 1990, Annual review of genetics.
[91] R. Dixon,et al. Activation, structure, and organization of genes involved in microbial defense in plants. , 1990, Advances in genetics.
[92] D. A. Smith,et al. Induction and purification of kievitone hydratase from Fusarium solani f. sp. phaseoli. , 1990, Phytochemistry.
[93] R. Dixon,et al. Molecular Communication in Interactions Between Plants and Microbial Pathogens , 1990 .
[94] D. Klessig,et al. The Pathogenesis-Related Proteins of Plants , 1989 .
[95] P. S. Matthews,et al. Phytoalexin detoxification: importance for pathogenicity and practical implications. , 1989, Annual review of phytopathology.
[96] R. Ebert,et al. The mechanism of action of barley toxin: a type 1 ribosome-inactivating protein with RNA N-glycosidase activity. , 1988, Biochimica et biophysica acta.
[97] B. Staskawicz,et al. Host Range Determinants in Plant Pathogens and Symbionts , 1988 .
[98] C. Lamb,et al. Chitinase cDNA cloning and mRNA induction by fungal elicitor, wounding, and infection. , 1988, Plant Physiology.
[99] M. Iwata,et al. Probenazole and Burst of Respiration in Rice Leaf Tissue Infected with Blast Fungus , 1985 .
[100] R. Dixon,et al. Phytoalexins: enzymology and molecular biology. , 1983, Advances in enzymology and related areas of molecular biology.
[101] Y. Sekizawa,et al. Mode of Controlling Action of Probenazole against Rice Blast Disease with Reference to the Induced Resistance Mechanism in Rice Plant , 1981 .
[102] M. D. Woodward. Phaseoluteone and other 5-hydroxyisoflavonoids from phaseolus vulgaris , 1979 .
[103] T. Hymowitz,et al. A new isoflavone phytoalexin from fungus-inoculated stems of Glycine wightii , 1977 .