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Delivery and perception of pathogen signals in plants edited by Noel T. Keen ... [et al.].

Colaborador(es): Detalles de publicación: St. Paul, Minn. American Phytopathological Society c2001.Descripción: xii, 268 p. ill. 24 cmISBN:
  • 0890542597
Tema(s): Clasificación CDD:
  • 632.3 D355 21
Contenidos:
Perception of pathogen signals to initiate active defense;-- Delivery of pathogen signals: historical approach;-- Adhesion of fungal spores and effects on plant cells;-- Bacterial Avr proteins: secreted agents of parasitism and elicitors of plant defense;-- Rice receptors for chitin and glucan elicitors;-- Understanding pectate lyase C at the atomic level;-- A new type of host-selective toxin, a protein from Alternaria brassiciola;-- Chlorosis-inducing phytotoxins;-- Molecular genetics of host-specific toxin biosynthesis in Alternaria alternata;-- Victorin, apoptosis and the mitochondrion;-- Suppressors of defense;-- Signaling pathways for TMV;-- Genetic relationships specifying bacterial disease resistance in Xanthomonas;-- Signaling in rice disease resistance;-- Mi-1, a dual function disease resistance gene in tomato;-- Pathogen recognition and signal transduction mediated by the product of the Pto disease resistance gene;-- Regulation of nuclear gene expression in relations to signal molecules;-- Molecular interactions between the rice blast resistance gene Pi-ta and its corresponding avirulence gene;-- The oxidative burst in plants;-- Perception of the syringolide elicitors by soybean cells;-- Citrus responses to a pathogenicity factor;-- Effectors of bacterial virulence and mediators of disease resistance responses;-- Apoptotic response in defense of oats to infections and elicitors;-- Trafficking of pathogenicity-related gene products from xanthomonas citri into plant cell;-- Trafficking of plant defense response compounds;-- Biotechnology as an approach to improving disease resistance in plants.
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Descripciones mejoradas de Syndetics:

An overview of the past 50 years of plant microbe research heads 26 papers from the 8th Japan-US Cooperative Science Seminar on "Plant perception of pathogen signals" held in June 1999 in Marina del Ray, CA. Parallels between plant and animal host defense systems is a major theme. Historical topics of interest that continue to draw attention include: growth hormones, fungal and bacterial toxins, the avirulent gene concept, pathogen elicitors and hypersensitive responses, and the avirulence and harpin molecules. A new seminar focus is Hrp delivery system and apoptosis. Keen is at the U. of California, Riverside. Lacks an index. Annotation copyrighted by Book News, Inc., Portland, OR

Includes bibliographical references.

Perception of pathogen signals to initiate active defense;-- Delivery of pathogen signals: historical approach;-- Adhesion of fungal spores and effects on plant cells;-- Bacterial Avr proteins: secreted agents of parasitism and elicitors of plant defense;-- Rice receptors for chitin and glucan elicitors;-- Understanding pectate lyase C at the atomic level;-- A new type of host-selective toxin, a protein from Alternaria brassiciola;-- Chlorosis-inducing phytotoxins;-- Molecular genetics of host-specific toxin biosynthesis in Alternaria alternata;-- Victorin, apoptosis and the mitochondrion;-- Suppressors of defense;-- Signaling pathways for TMV;-- Genetic relationships specifying bacterial disease resistance in Xanthomonas;-- Signaling in rice disease resistance;-- Mi-1, a dual function disease resistance gene in tomato;-- Pathogen recognition and signal transduction mediated by the product of the Pto disease resistance gene;-- Regulation of nuclear gene expression in relations to signal molecules;-- Molecular interactions between the rice blast resistance gene Pi-ta and its corresponding avirulence gene;-- The oxidative burst in plants;-- Perception of the syringolide elicitors by soybean cells;-- Citrus responses to a pathogenicity factor;-- Effectors of bacterial virulence and mediators of disease resistance responses;-- Apoptotic response in defense of oats to infections and elicitors;-- Trafficking of pathogenicity-related gene products from xanthomonas citri into plant cell;-- Trafficking of plant defense response compounds;-- Biotechnology as an approach to improving disease resistance in plants.

Tabla de contenidos provista por Syndetics

  • Preface(p. i)
  • Sponsors(p. ii)
  • Participants and Observers(p. iii)
  • Chapter 1 Perception of Pathogen Signals to Initiate Active Defense(p. 1)
  • Chapter 2 Delivery of Pathogen Signals: Historical Approach(p. 12)
  • Chapter 3 Adhesion of Fungal Spores and Effects on Plant Cells(p. 25)
  • Chapter 4 Bacterial Avr Proteins: Secreted Agents of Parasitism and Elicitors of Plant Defense(p. 36)
  • Chapter 5 Rice Receptors for Chitin and Glucan Elicitors(p. 46)
  • Chapter 6 Understanding Pectate Lyase C at the Atomic Level(p. 54)
  • Chapter 7 A New Type of Host-Selective Toxin, a Protein from Alternaria brassicicola(p. 68)
  • Chapter 8 Chlorosis-Inducing Phytotoxins: Virulence Factors Produced by Pseudomonas syringae(p. 77)
  • Chapter 9 Molecular Genetics of Host-Specific Toxin Biosynthesis in Alternaria alternata(p. 87)
  • Chapter 10 Victorin, Apoptosis and the Mitochondrion(p. 97)
  • Chapter 11 Suppressors of Defense--Supprescins and Plant Receptor Molecules(p. 112)
  • Chapter 12 Signaling Pathways for TMV--And Wound-Induced Resistance in Tobacco Plants(p. 122)
  • Chapter 13 Genetic Relationships Specifying Bacterial Disease Resistance in Xanthomonas-Pepper Interactions(p. 131)
  • Chapter 14 Signaling in Rice Disease Resistance(p. 137)
  • Chapter 15 Mi-l, a Dual Function Disease Resistance Gene in Tomato(p. 145)
  • Chapter 16 Pathogen Recognition and Signal Transduction Mediated by the Product of the Pto Disease Resistance Gene(p. 154)
  • Chapter 17 Regulation of Nuclear Gene Expression in Relation to Signal Molecules(p. 164)
  • Chapter 18 Molecular Interactions Between the Rice Blast Resistance Gene Pi-ta and its Corresponding Avirulence Gene(p. 174)
  • Chapter 19 The Oxidative Burst in Plants: Mechanism and Function in Induced Resistance(p. 184)
  • Chapter 20 Perception of the Syringolide Elicitors by Soybean Cells(p. 194)
  • Chapter 21 Citrus Responses to a Pathogenicity Factor: The Brown Spot Disease Caused by the Rough Lemon Pathotype of Alternaria alternata(p. 202)
  • Chapter 22 Effectors of Bacterial Virulence and Mediators of Disease Resistance Responses: The Two Faces of Avr(p. 212)
  • Chapter 23 Apoptotic Response in Defense of Oats to Infections and Elicitors(p. 220)
  • Chapter 24 Trafficking of Pathogenicity-related Gene Products from Xanthomonas citri into Plant Cell(p. 229)
  • Chapter 25 Trafficking of Plant Defense Response Compounds(p. 240)
  • Chapter 26 Biotechnology as an Approach to Improving Disease Resistance in Plants(p. 251)
  • Synopsis(p. 265)
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