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Autore: | Saharan G. S. |
Titolo: | Clubroot disease of crucifers : biology, ecology and disease management / / Govind Singh Saharan, Naresh K. Mehta, Prabhu Dayal Meena |
Pubblicazione: | Gateway East, Singapore : , : Springer, , [2021] |
©2021 | |
Descrizione fisica: | 1 online resource (778 pages) |
Disciplina: | 632.3 |
Soggetto topico: | Plant diseases |
Crucíferes | |
Patologia vegetal | |
Soggetto genere / forma: | Llibres electrònics |
Persona (resp. second.): | MehtaNaresh K. |
MeenaP. D (Prabhu Dayal) | |
Nota di contenuto: | Intro -- Foreword -- Preface -- Acknowledgements -- Contents -- About the Authors -- Abbreviations -- Symbols -- 1: Clubroot Perspective -- 1.1 Introduction -- 1.2 Host Crops and Their Importance -- 1.3 The Disease and Pathogen -- 1.4 The Resting Spores -- 1.5 The Environmental Factors of the Soil -- 1.6 Soil Temperature and Other Biotic Interactions -- 1.7 Evolution of Host-Pathogen Interaction -- 1.8 The Plasmodiophora brassicae Genome -- 1.9 Historical Research Development -- 1.9.1 Studies on Clubroot Disease Discovery -- 1.9.2 Initial Scientific Studies Period (1830-1930) -- 1.9.3 Modern Era of the Twentieth Century -- i. Establishing Pathogen Biology, Host Responses, and Clubroot Management -- ii. Epidemiology, Biochemistry, and Physiology -- 1.9.4 Present Era of the Twenty-First Century -- i. Host Metabolism and Clubroot Development -- ii. Genetic of Host-Parasite Interaction -- Inheritance of Resistance -- iv. Pathotype Virulence Versus Host Resistance -- v. Molecular Mechanism of Pathogenicity -- vi. Induction of Gene in Brassica by P. brassicae -- 1.10 Challenging Aspects of Clubroot Disease Management -- 1.10.1 Interactions of Physical, Chemical, and Nutritional Factors -- 1.10.2 Interactions of Biological Factors -- 1.10.3 Soil Suppressiveness and Conduciveness -- 1.10.4 Host Resistance -- 1.10.5 Use of Molecular Techniques -- 1.10.6 Complexities of Soil Environmental Factors -- 1.11 Pathogen Diagnosis and Quantification -- 1.12 Detection of Clubroot Pathogen -- 1.12.1 Bait Plants -- 1.12.2 Fluorescent Microscopy -- 1.12.3 Serology -- 1.12.4 Polymerase Chain Reaction (PCR) -- 1.13 Major Sources of Information on Clubroot -- References -- 2: The Disease: Clubroot -- 2.1 Introduction -- 2.2 Disease Synonymous -- 2.3 History of Clubroot Introduction and Distribution -- 2.4 Geographical Distribution. |
2.4.1 Geographical Distribution of Clubroot in China -- 2.5 Economic Importance -- 2.6 Host Range -- 2.7 Symptomatology -- 2.7.1 Anatomical Symptoms -- 2.8 Disease Assessment -- 2.8.1 Disease Severity Index of Watson (1965) -- 2.8.2 Disease Assessment Scale of Ricarova et al. (2016b) -- 2.8.3 Disease Assessment scale of Linnasalmi and Toiviainen (1991) -- 2.8.4 Disease Assessment scale of Kim et al. (2016) -- 2.8.5 Disease Assessment scale of Porth et al. (2003) -- 2.8.6 Disease Assessment scale of Strelkov et al. (2018) -- 2.8.7 Disease Assessment scale in Relation to Virulence -- 2.8.8 Disease Assessment scale of Xue et al. (2008) -- 2.8.9 Scoring Scale of Wu et al. (2012) -- 2.8.10 Disease Assessment Scales of Deora et al. (2012) -- 2.8.11 Disease Assessment Scale for Root-Hair Infection of He et al. (2019) -- 2.8.12 Scoring Scale to Classify Genotypes for Resistance to P. brassicae (Liu et al. 2018) -- 2.9 Dissemination of Clubroot -- References -- 3: The Pathogen: Plasmodiophora brassicae -- 3.1 Introduction -- 3.2 Morphology of Plasmodiophora brassicae in Host-Pathogen Interface -- 3.2.1 Resting Spores -- 3.2.2 Zoospores -- 3.2.3 Plasmodium -- 3.2.4 Morphology of Pathogen into Host Cell -- 3.2.5 Chemical Composition of Resting Spore Wall -- 3.3 Classification and Taxonomy -- 3.3.1 Taxonomy -- 3.4 The Life Cycle of Plasmodiophora brassicae -- 3.5 Molecular Biology of Plasmodiophora brassicae -- 3.5.1 The Size of the P. brassicae Genome -- 3.5.2 Recombination in P. brassicae -- 3.5.3 Genes Discovery of P. brassicae -- 3.5.4 Evolutionary Position of P. brassicae and Other Plasmodiophorids -- 3.5.5 cDNA Cloning Approaches to Identify P. brassicae Genes -- 3.5.6 Plasmodiophora brassicae Gene Structure -- 3.5.7 Gene Functions at the Host-Pathogen Interaction -- 3.6 Molecular Biology of Plasmodiophora brassicae Pathogenesis. | |
3.7 The Plasmodiophora brassicae Genome and Life Stage-Specific Transcriptomics -- 3.8 Genome Characteristics of Pathotypes -- 3.9 Pathogen Dissemination -- 3.9.1 Seed -- 3.9.2 Infected Plant Material -- 3.9.3 Soil -- 3.9.4 Rain and Irrigation Water -- 3.9.5 Animal Fodder and Manure -- 3.10 In Vitro Growth of Plasmodiophora brassicae -- 3.11 Factor Affecting Host-Pathogen Interactions -- 3.11.1 Resting Spore Germination -- 3.11.2 Effects of Root Exudates on Resting Spore Germination -- 3.11.3 Effects of pH on Resting Spore Germination -- 3.11.4 Gall Formation -- References -- 4: Electron Microscopy and Ultra-Structures -- 4.1 Introduction -- 4.2 Electron Microscopy of Infection Process -- 4.2.1 Electron Microscopy of Hairy Root Infection -- 4.2.2 Microscopic Observations -- 4.3 Fine Structures of Plasmodiophora brassicae in Host Tissues -- 4.4 Symptoms of Anatomical Changes -- 4.5 Cellular Events During Gall Formation -- 4.5.1 Plasmodiophora brassicae Increases Cell Division within the Hypocotyl by Exploiting Existing Meristematic Activities -- 4.5.2 Changes in Vascular System Differentiation, and Implications of the Host-Pathogen Interaction -- 4.5.3 Implications of Reduced Gall Size on the Disease Progression -- 4.6 Scanning Electron Microscopy (SEM) of Clubroot Cells -- 4.6.1 Early Young Plasmodia -- 4.6.2 Young Plasmodia -- 4.6.3 Vegetative Plasmodia -- 4.6.4 Resting Spores -- 4.7 Electron Microscopy of Zoosporogenesis -- 4.8 The Ultra-Structure of Mitosis in Plasmodiophora brassicae -- 4.9 Cytological Changes and Ultra-Structures of Plasmodiophora brassicae in Brassica napus Susceptible and Resistant Cultivars -- References -- 5: Pathogenic Variability -- 5.1 Introduction -- 5.2 Occurrence, Distribution, and Pattern of Plasmodiophora brassicae Virulence -- 5.2.1 Australia -- 5.2.2 Canada -- 5.2.3 China -- 5.2.4 Czech Republic. | |
Czech Republic and Poland -- 5.2.5 Finland -- 5.2.6 France -- 5.2.7 Germany -- 5.2.8 India -- 5.2.9 Japan -- 5.2.10 Korea -- 5.2.11 Turkey -- 5.3 Identification and Characterization of Plasmodiophora brassicae Pathotypes -- 5.3.1 Molecular Marker for Identification of P. brassicae Pathotypes -- 5.3.2 Identification of Geographical Isolates of P. brassicae by Ribosomal DNA Sequence Polymorphisms -- 5.3.3 Race and Isolate-Specific Molecular Marker -- 5.3.4 Pathotype-Specific Molecular Marker -- 5.4 Differential Sets -- 5.4.1 Validity of Clubroot Differentials Sets and Isolates of Pathogen -- 5.4.2 Limitations of the Current Host Differential Sets -- 5.4.3 Proposed Novel Clubroot Differential Set -- 5.5 Nomenclature of Pathotypes -- 5.6 Proposed Novel Nomenclature System of Pathotypes -- 5.7 Virulence Pattern of Plasmodiophora brassicae Pathotypes -- 5.7.1 Virulence and Spread of Plasmodiophora brassicae (Clubroot) in Alberta, Canada -- 5.8 Pathotype Variation Analysis Through Single Spore -- 5.9 Relationship Between Pathogenic and Genetic Variation in Plasmodiophora brassicae -- 5.10 Global Distribution of Plasmodiophora brassicae Pathotypes -- 5.11 Analysis of Plasmodiophora brassicae Pathotypes Genome -- 5.11.1 Genome Sequencing and Assembly -- 5.11.2 Genome Comparison of P. brassicae Pathotypes -- 5.11.3 The Plasmodiophora brassicae Pathotype 3 Proteome -- 5.12 Intraspecific Biodiversity of Plasmodiophora brassicae -- 5.13 Phylogenetic Analysis of Pathotypes -- 5.14 Polymorphisms in Plasmodiophora brassicae -- 5.15 Production of Pure Genotype Isolates of Plasmodiophora brassicae -- 5.16 Virulence Pattern of Plasmodiophora brassicae Populations on Cruciferous Weeds -- References -- 6: Perpetuation and Survival of the Pathogen -- 6.1 Introduction -- 6.2 Factors Affecting Survival of Pathogen -- 6.2.1 Effect on Resting Spores. | |
6.2.2 Effect on Zoospore -- 6.2.3 Effect of Soil Moisture -- 6.2.4 Effect of Temperature -- 6.2.5 Effect of Light Intensity -- 6.2.6 Effect of Soil Texture and Structure -- 6.2.7 Effect of Spore Load -- 6.2.8 Effect of Pathogenic Variability -- 6.2.9 Effect of Host Resistance -- 6.2.10 Effect of pH, Calcium, and Magnesium -- 6.2.11 Effect of pH, Acidity, and Alkalinity -- 6.2.12 Effect of Boron -- 6.2.13 Effect of Nitrogen, Calcium Cyanamide, Molybdenum, Calcareous Seaweed, and Plant Growth Regulators -- 6.2.14 Effect of Biological Soil Constituents -- 6.2.15 Effect of Host and Non-host Plants -- 6.2.16 Effect of Traditional and Modern Technology -- 6.2.17 An Over View -- References -- 7: Infection and Pathogenesis -- 7.1 Introduction -- 7.2 Process of Infection and Pathogenesis -- 7.2.1 Root-Hair Infection Process -- 7.2.2 Cortical Infection Process -- 7.2.3 Symptom Development and Clubroot Severity -- 7.2.4 Quantification of Resting Spores -- 7.2.5 Effect of Temperature on Cortical Infection by P. brassicae and Clubroot Severity -- 7.2.6 Effect of Host Resistance on Cortical Infection -- 7.2.7 Induction and Role of Metabolites in Clubroot Host-Parasite Interaction -- 7.2.8 Role of Host Hormone Metabolism in Pathogenesis -- 7.2.8.1 Auxin Metabolism and Signaling -- 7.2.8.2 Cytokinin Metabolism -- 7.2.8.3 Role of Other Plant Hormones -- 7.2.8.4 Hormonal Responses to P. brassicae Infection in Brassica Cultivars Differing in Resistance -- 7.2.9 Role of Nitrilase in Clubroot Development -- 7.2.10 Transcriptome Analysis of Arabidopsis Clubroots Indicates a Key Role for Cytokinins in Disease Development During the P... -- 7.2.11 Role of Host Resistance in Modulating Colonization of P. brassicae -- 7.2.12 Role of a Serine Protease pro 1 in P. brassicae Pathogenesis -- 7.2.13 Role of Lipids in P. brassicae Pathogenesis. | |
7.2.14 Relationship of Endogenous Glucosinolate Content to P. brassicae Infection. | |
Titolo autorizzato: | Clubroot disease of crucifers |
ISBN: | 981-16-2133-0 |
Formato: | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione: | Inglese |
Record Nr.: | 9910506381003321 |
Lo trovi qui: | Univ. Federico II |
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