Microbial recognition and activation of plant defense systems.
暂无分享,去创建一个
[1] M. Mock,et al. Calmodulin-activated bacterial adenylate cyclases as virulence factors. , 1993, Trends in microbiology.
[2] R. Dixon,et al. Dissection of the functional architecture of a plant defense gene promoter using a homologous in vitro transcription initiation system. , 1993, The Plant cell.
[3] P. Low,et al. Independent elicitation of the oxidative burst and phytoalexin formation in cultured plant cells , 1993 .
[4] J. Jakobek,et al. Generalized Induction of Defense Responses in Bean Is Not Correlated with the Induction of the Hypersensitive Reaction. , 1993, The Plant cell.
[5] I. Somssich,et al. Rapid activation of a novel plant defense gene is strictly dependent on the Arabidopsis RPM1 disease resistance locus. , 1992, The EMBO journal.
[6] N. Chua,et al. Two G-box-related sequences confer different expression patterns in transgenic tobacco. , 1992, The Plant cell.
[7] H. Yamamoto,et al. Rapid stimulation of 5-lipoxygenase activity in potato by the fungal elicitor arachidonic Acid. , 1992, Plant physiology.
[8] J. Chappell,et al. Inhibition of phytoalexin biosynthesis in elicitor-treated tobacco cell-suspension cultures by calcium/calmodulin antagonists. , 1992, Plant physiology.
[9] P. Quail,et al. GT‐2: a transcription factor with twin autonomous DNA‐binding domains of closely related but different target sequence specificity. , 1992, The EMBO journal.
[10] I. Raskin,et al. Signal molecules in systemic plant resistance to pathogens and pests , 1992, Cell.
[11] U. Conrath,et al. Dichloroisonicotinic and salicylic acid, inducers of systemic acquired resistance, enhance fungal elicitor responses in parsley cells , 1992 .
[12] J. Darnell,et al. Interferon-dependent tyrosine phosphorylation of a latent cytoplasmic transcription factor. , 1992, Science.
[13] 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.
[14] S. He,et al. Harpin, elicitor of the hypersensitive response produced by the plant pathogen Erwinia amylovora. , 1992, Science.
[15] J. Blein,et al. Migration of the Fungal Protein Cryptogein within Tobacco Plants. , 1992, Plant physiology.
[16] J. Kan,et al. Molecular analysis of the avirulence gene avr9 of the fungal tomato pathogen Cladosporium fulvum fully supports the gene-for-gene hypothesis. , 1992 .
[17] M. Lyle. Molecules record sea change , 1992, Nature.
[18] R. Foster,et al. Sequences flanking the hexameric G-box core CACGTG affect the specificity of protein binding. , 1992, The Plant cell.
[19] G. Pearce,et al. Structure, expression, and antisense inhibition of the systemin precursor gene. , 1992, Science.
[20] 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.
[21] M. Sutherland. The generation of oxygen radicals during host plant responses to infection , 1991 .
[22] 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.
[23] B. Weisshaar,et al. Light‐inducible and constitutively expressed DNA‐binding proteins recognizing a plant promoter element with functional relevance in light responsiveness. , 1991, The EMBO journal.
[24] M. Hahn,et al. A specific, high-affinity binding site for the hepta-beta-glucoside elicitor exists in soybean membranes. , 1991, The Plant cell.
[25] H. Signer,et al. Increase in Salicylic Acid at the Onset of Systemic Acquired Resistance in Cucumber , 1990, Science.
[26] B. Staskawicz,et al. Widespread distribution and fitness contribution of Xanthomonas campestris avirulence gene avrBs2 , 1990, Nature.
[27] K. Hahlbrock,et al. Fungal elicitor triggers rapid, transient, and specific protein phosphorylation in parsley cell suspension cultures. , 1990, The Journal of biological chemistry.
[28] 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.
[29] R. Dixon,et al. Signals and transduction mechanisms for activation of plant defenses against microbial attack , 1989, Cell.
[30] C. Lamb,et al. Glutathione causes a massive and selective induction of plant defense genes. , 1988, Plant physiology.
[31] J. Ebel,et al. Effects of Ca2+ on phytoalexin induction by fungal elicitor in soybean cells. , 1987, Archives of biochemistry and biophysics.
[32] C. Lamb,et al. Transcriptional activation of plant defense genes by fungal elicitor, wounding, and infection , 1987, Molecular and cellular biology.
[33] R. Dixon. THE PHYTOALEXIN RESPONSE: ELICITATION, SIGNALLING AND CONTROL OF HOST GENE EXPRESSION , 1986 .
[34] H. Kauss,et al. Chitosan-elicited callose synthesis in soybean cells as a ca-dependent process. , 1985, Plant physiology.
[35] P. D. Wit,et al. Evidence for the occurrence of race and cultivar-specific elicitors of necrosis in intercellular fluids of compatible interactions of C. fulvum and tomato , 1982 .
[36] A. Osbourn,et al. Advances in Molecular Genetics of Plant-Microbe Interactions , 1994, Current Plant Science and Biotechnology in Agriculture.
[37] D. Scheel,et al. Studies on elicitor recognition and signal transduction in plant defence , 1993 .
[38] F. Katagiri,et al. Plant transcription factors: present knowledge and future challenges. , 1992, Trends in genetics : TIG.
[39] Sarah J. Gurr,et al. Molecular plant pathology : a practical approach , 1992 .
[40] D. K. Willis,et al. Current ReviewhrpGenes of Phytopathogenic Bacteria , 1991 .
[41] N. Keen. Gene-for-gene complementarity in plant-pathogen interactions. , 1990, Annual review of genetics.
[42] R. Dixon,et al. Activation, structure, and organization of genes involved in microbial defense in plants. , 1990, Advances in genetics.
[43] B. Lugtenberg,et al. Signal Molecules in Plants and Plant-Microbe Interactions , 1989, NATO ASI Series.
[44] A. Nishi,et al. The elicitation of phytoalexins by Ca2+ and cyclic AMP in carrot cells , 1987 .
[45] M. Grant. Calculation of Selection Coefficients Against Unnecessary Genes for Virulence from Field Data , 1983 .