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Potato Homologs of <i>Arabidopsis thaliana</i> Genes Functional in Defense Signaling—Identification, Genetic Mapping, and Molecular Cloning

https://doi.org/10.1094/mpmi-18-1107
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The 77 checked references that resolve
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EDS5, an Essential Component of Salicylic Acid–Dependent Signaling for Disease Resistance in Arabidopsis, Is a Member of the MATE Transporter Family
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A genetic analysis of quantitative resistance to late blight in potato: towards marker-assisted selection
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Defense response genes co-localize with quantitative disease resistance loci in pepper
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Candidate Defense Genes from Rice, Barley, and Maize and Their Association with Qualitative and Quantitative Resistance in Rice
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Comparative Analyses of Potato Expressed Sequence Tag Libraries
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A QTL for broad-spectrum resistance to cyst nematode species (Globodera spp.) maps to a resistance gene cluster in potato
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Two additive QTLs conferring broad-spectrum resistance in potato to Globodera pallida are localized on resistance gene clusters
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Disruption of Individual Members of Arabidopsis Syntaxin Gene Families Indicates Each Has Essential Functions
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Analysis of quantitative trait loci (QTLs) and quantitative trait alleles (QTAs) for potato tuber yield and starch content
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A Novel Class of Eukaryotic Zinc-Binding Proteins Is Required for Disease Resistance Signaling in Barley and Development in C. elegans
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Complex formation, promiscuity and multi-functionality: protein interactions in disease-resistance pathways
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Expression of Allene Oxide Synthase Determines Defense Gene Activation in Tomato
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Jasmonate Response Locus <i>JAR1</i> and Several Related Arabidopsis Genes Encode Enzymes of the Firefly Luciferase Superfamily That Show Activity on Jasmonic, Salicylic, and Indole-3-Acetic Acids in an Assay for Adenylation
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Duplicate Loci as QTL
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The Role of the Jasmonate Response in Plant Susceptibility to Diverse Pathogens with a Range of Lifestyles  
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Different micro-organisms differentially induce Arabidopsis disease response pathways
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Plant Defense Genes Associated with Quantitative Resistance to Potato Late Blight in <i>Solanum phureja</i> × Dihaploid <i>S. tuberosum</i> Hybrids
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Deductions about the Number, Organization, and Evolution of Genes in the Tomato Genome Based on Analysis of a Large Expressed Sequence Tag Collection and Selective Genomic Sequencing
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<i>NHL25</i> and <i>NHL3</i>, Two <i>NDR1/HIN1-Like</i> Genes in <i>Arabidopsis thaliana</i> with Potential Role(s) in Plant Defense
resolves10.1073/pnas.95.12.7209
A role for jasmonate in pathogen defense of <i>Arabidopsis</i>
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<i>COI1</i> : An <i>Arabidopsis</i> Gene Required for Jasmonate-Regulated Defense and Fertility
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QTL Analysis of New Sources of Resistance to <i>Erwinia carotovora</i> ssp. <i>atroseptica</i> in Potato Done by AFLP, RFLP, and Resistance‐Gene‐Like Markers
The 2 references without a DOI — listed, not checked
no DOI — not checkedp_30
no DOI — not checkedWastie, R. L. 1991. Breeding for resistance. Page 193-223 in: Phytophthora infestans, the Cause of Late Blight of Potato. Advances in Plant Pathology 7. D. S. Ingram and P. H. Williams, eds. Academic Press, London.
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