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effector-triggered immunity (170) 170
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Journal Article
Journal Article
New Phytologist, ISSN 0028-646X, 03/2018, Volume 217, Issue 4, pp. 1667 - 1680
Pattern recognition receptors ( PRR s) and nucleotide‐binding domain and leucine‐rich repeat ( LRR )‐containing proteins ( NLR s) initiate pattern‐triggered... 
PTI | containing proteins | pattern‐triggered immunity | effector‐triggered immunity | LRR | Arabidopsis thaliana | CAMTA | transcriptional responses | NLR | immediate early genes | cross‐tolerance | ETI | nucleotide‐binding domain and | calmodulin‐binding transcription activator | calmodulin-binding transcription activator (CAMTA) | nucleotide-binding domain and LRR-containing proteins (NLRs) | cross-tolerance | pattern-triggered immunity (PTI) | effector-triggered immunity (ETI) | TRIGGERED IMMUNITY | DEFENSE RESPONSES | GENERAL STRESS-RESPONSE | PSEUDOMONAS-SYRINGAE | LOW-TEMPERATURE | PLANT SCIENCES | PLANT IMMUNITY | SALICYLIC-ACID | RESISTANCE | EXPRESSION | FREEZING TOLERANCE | Cell death | Analysis | Abscisic acid | Genetic aspects | Genetic transcription | Calmodulin | Protein binding | Transcription factors | Transcription | Genes | Gene regulation | Regulatory sequences | Activation | Leucine | Nucleotides | Transgenic plants | Immunity | Cell surface | Convergence | Proteins | Disease resistance | Receptors | Airborne microorganisms | Defence mechanisms | Calcium-binding protein | Transcription activation | Phytohormones | Immune system | Binding | Barley | Pathogens | Mutations | Immune response | Pattern recognition | Gene expression | Signaling | Regulatory mechanisms (biology) | Mildew | Full Paper | effector‐triggered immunity (ETI) | nucleotide‐binding domain and LRR‐containing proteins (NLRs) | Research | pattern‐triggered immunity (PTI) | calmodulin‐binding transcription activator (CAMTA)
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 03/2018, Volume 115, Issue 13, pp. E3055 - E3064
Plant pathogens can cause serious diseases that impact global agriculture. The plant innate immunity, when fully activated, can halt pathogen growth in plants.... 
Plant hormone | Type III effector | Iron response | Plant immunity | Microbiome | plant hormone | ARABIDOPSIS-THALIANA | MULTIDISCIPLINARY SCIENCES | PSEUDOMONAS-SYRINGAE | DISEASE-RESISTANCE | microbiome | iron response | STRESS RESPONSES | SALICYLIC-ACID | type III effector | EFFECTOR-TRIGGERED IMMUNITY | GENE-EXPRESSION | PV. TOMATO DC3000 | plant immunity | III SECRETION SYSTEM | INNATE IMMUNITY | Plant Immunity - genetics | Plants, Genetically Modified - genetics | Pseudomonas syringae - growth & development | Plant Diseases - immunology | Bacterial Proteins - genetics | Transcriptome | Plant Diseases - microbiology | Gene Expression Profiling | Pseudomonas syringae - genetics | Gene Regulatory Networks | Arabidopsis - genetics | Arabidopsis - microbiology | Plants, Genetically Modified - microbiology | Bacterial Proteins - metabolism | Plant Immunity - immunology | Gene Expression Regulation, Bacterial | Host-bacteria relationships | Transcription factors | Genetic aspects | Properties | Bacterial diseases of plants | Bacteria, Pathogenic | Pathogens | Immune response | Landscape | Genes | Sigma factor | Innate immunity | Iron | Ribonucleic acid--RNA | Metabolism | Gene expression | Immunity | Mutants | Gene sequencing | Plant growth | Bacteria | Agriculture | Genotypes | Immune system | Biological Sciences | PNAS Plus
Journal Article
Journal Article
Journal of Experimental Botany, ISSN 0022-0957, 2017, Volume 68, Issue 9, pp. 2077 - 2081
Characterization of mRNA populations associated with the translational machinery (translatome) is shedding light on the molecular mechanisms of plant... 
TARGET | ARABIDOPSIS-THALIANA | LANDSCAPE | SEEDLINGS | Effector-triggered immunity (ETI) | target of rapamycin (TOR) | PLANT SCIENCES | plant defense | NB-LRR proteins | TRANSLATOMES | OXYGEN DEPRIVATION | translation | GENOME-WIDE ANALYSIS | STRESS | Insight
Journal Article