Thirty years of resistance: Zig-zag through the plant immune system
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Title
Thirty years of resistance: Zig-zag through the plant immune system
Authors
Keywords
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Journal
PLANT CELL
Volume 34, Issue 5, Pages 1447-1478
Publisher
Oxford University Press (OUP)
Online
2022-02-11
DOI
10.1093/plcell/koac041
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- Arabidopsis RECEPTOR-LIKE PROTEIN30 and Receptor-Like Kinase SUPPRESSOR OF BIR1-1/EVERSHED Mediate Innate Immunity to Necrotrophic Fungi
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- The CALMODULIN-BINDING PROTEIN60 Family Includes Both Negative and Positive Regulators of Plant Immunity
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- Fungal Endopolygalacturonases Are Recognized as Microbe-Associated Molecular Patterns by the Arabidopsis Receptor-Like Protein RESPONSIVENESS TO BOTRYTIS POLYGALACTURONASES1
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- TheArabidopsisLeucine-Rich Repeat Receptor–Like Kinases BAK1/SERK3 and BKK1/SERK4 Are Required for Innate Immunity to Hemibiotrophic and Biotrophic Pathogens
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- Receptor-like Cytoplasmic Kinases Integrate Signaling from Multiple Plant Immune Receptors and Are Targeted by a Pseudomonas syringae Effector
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- Genetic Basis for the Hierarchical Interaction Between Tobamovirus spp. and L Resistance Gene Alleles from Different Pepper Species
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- Balanced Nuclear and Cytoplasmic Activities of EDS1 Are Required for a Complete Plant Innate Immune Response
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- Rpi-vnt1.1, aTm-22Homolog fromSolanum venturii, Confers Resistance to Potato Late Blight
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- Identification and characterization ofBph14, a gene conferring resistance to brown planthopper in rice
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- Bacterial Effectors Target the Common Signaling Partner BAK1 to Disrupt Multiple MAMP Receptor-Signaling Complexes and Impede Plant Immunity
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- Pseudomonas syringae Effector AvrPto Blocks Innate Immunity by Targeting Receptor Kinases
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- Two Adjacent Nucleotide-Binding Site-Leucine-Rich Repeat Class Genes Are Required to Confer Pikm-Specific Rice Blast Resistance
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- Pathogen corruption and site-directed recombination at a plant disease resistance gene cluster
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- A LysM Receptor-Like Kinase Plays a Critical Role in Chitin Signaling and Fungal Resistance in Arabidopsis
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- ThePseudomonas syringaetype III effector AvrRpm1 induces significant defenses by activating the Arabidopsis nucleotide-binding leucine-rich repeat protein RPS2
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- Arabidopsis TAO1 is a TIR-NB-LRR protein that contributes to disease resistance induced by the Pseudomonas syringae effector AvrB
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- Recognition of the Hyaloperonospora parasitica effector ATR13 triggers resistance against oomycete, bacterial, and viral pathogens
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- Characterization of Natural and Induced Variation in theLOV1Gene, a CC-NB-LRR Gene Conferring Victorin Sensitivity and Disease Susceptibility inArabidopsis
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