coronatine has been researched along with abscisic acid in 17 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 5 (29.41) | 29.6817 |
2010's | 9 (52.94) | 24.3611 |
2020's | 3 (17.65) | 2.80 |
Authors | Studies |
---|---|
Alborn, HT; Engelberth, J; O'Donnell, P; Sammons, M; Schmelz, EA; Toshima, H; Tumlinson, JH | 1 |
He, SY; Koczan, J; Melotto, M; Nomura, K; Underwood, W | 1 |
Dong, X; Spoel, SH | 1 |
Bergougnoux, V; Fellner, M; Hlavácková, V; Novák, O; Plotzová, R | 1 |
Bennett, MH; de Torres Zabala, M; Grant, MR; Truman, WH | 1 |
He, SY; Zeng, W | 1 |
Duan, L; Eneji, AE; Li, J; Li, X; Li, Z; Shen, X; Tian, X | 1 |
Al-Rasheid, KA; Escalante-Pérez, M; Geiger, D; Hause, B; Hedrich, R; Krol, E; Neher, E; Stange, A | 1 |
Brutus, A; Gao, X; He, SY; Jones, AD; Kremer, JM; Withers, JC; Zeng, W | 1 |
Bais, HP; Caplan, JL; Czymmek, KJ; Kumar, AS; Lakshmanan, V; Levia, DF; Powell, D | 1 |
Camañes, G; Fernandez-Crespo, E; García-Agustín, P; González-Bosch, C; Lapeña, L; Scalschi, L; Vicedo, B | 1 |
Du, M; Duan, L; Li, Y; Li, Z; Tan, W; Tian, X; Xu, D; Zhang, M | 1 |
Deng, L; Du, M; Huang, T; Huang, Z; Jiang, H; Kang, L; Li, C; Li, CB; Li, H; Li, J; Li, S; Wang, B; Wei, J; Yan, L; Zhai, Q | 1 |
Baldwin, IT; Gaquerel, E; Hartl, M; Stitz, M | 1 |
Guzman, AR; Kim, JG; Lanver, D; Mudgett, MB; Taylor, KW | 1 |
Chen, Y; Guo, Q; Howe, GA; Hu, Y; Pan, J; Wang, H; Yu, D | 1 |
Achary, RK; Gautam, S; Ghosh, S; Hazra, A; Kamble, NU; Majee, M; Rao, V; Varshney, V | 1 |
1 review(s) available for coronatine and abscisic acid
Article | Year |
---|---|
Making sense of hormone crosstalk during plant immune responses.
Topics: Abscisic Acid; Amino Acids; Arabidopsis; Cyclopentanes; Hormones; Host-Pathogen Interactions; Indenes; Indoleacetic Acids; Oxylipins; Plant Diseases; Pseudomonas syringae; Signal Transduction; Virulence | 2008 |
16 other study(ies) available for coronatine and abscisic acid
Article | Year |
---|---|
Simultaneous analysis of phytohormones, phytotoxins, and volatile organic compounds in plants.
Topics: Abscisic Acid; Amino Acids; Arabidopsis; Cyclopentanes; Ethylenes; Gas Chromatography-Mass Spectrometry; Indenes; Indoleacetic Acids; Oils, Volatile; Oxylipins; Plant Growth Regulators; Plants; Reproducibility of Results; Salicylic Acid; Signal Transduction; Spectrometry, Mass, Electrospray Ionization; Toxins, Biological; Volatilization | 2003 |
Plant stomata function in innate immunity against bacterial invasion.
Topics: Abscisic Acid; Amino Acids; Arabidopsis; Arabidopsis Proteins; Escherichia coli O157; Flagellin; Immunity, Innate; Indenes; Lipopolysaccharides; Plant Diseases; Plant Leaves; Plants, Genetically Modified; Protein Kinases; Pseudomonas syringae; Salicylic Acid; Signal Transduction; Virulence; Virulence Factors | 2006 |
The 7B-1 mutation in tomato (Solanum lycopersicum L.) confers a blue light-specific lower sensitivity to coronatine, a toxin produced by Pseudomonas syringae pv. tomato.
Topics: Abscisic Acid; Amino Acids; Anthocyanins; Bacterial Toxins; Cyclopentanes; Gene Expression Regulation, Plant; Indenes; Light; Models, Biological; Mutation; Oxylipins; Plant Diseases; Plant Leaves; Plant Proteins; Pseudomonas syringae; Reverse Transcriptase Polymerase Chain Reaction; Solanum lycopersicum | 2009 |
Antagonism between salicylic and abscisic acid reflects early host-pathogen conflict and moulds plant defence responses.
Topics: Abscisic Acid; Amino Acids; Arabidopsis; Cyclopentanes; Host-Pathogen Interactions; Immunity, Innate; Indenes; Oxylipins; Plant Diseases; Plant Growth Regulators; Pseudomonas syringae; RNA, Plant; Salicylic Acid | 2009 |
A prominent role of the flagellin receptor FLAGELLIN-SENSING2 in mediating stomatal response to Pseudomonas syringae pv tomato DC3000 in Arabidopsis.
Topics: Abscisic Acid; Amino Acids; Arabidopsis; Arabidopsis Proteins; Flagellin; GTP-Binding Protein alpha Subunits; Immunity, Innate; Indenes; Microscopy, Confocal; Mutation; Plant Diseases; Plant Roots; Plant Stomata; Protein Kinases; Pseudomonas syringae; Salicylic Acid; Signal Transduction; Virulence | 2010 |
Coronatine alleviates water deficiency stress on winter wheat seedlings.
Topics: Abscisic Acid; Amino Acids; Antioxidants; Ascorbate Peroxidases; Catalase; Dehydration; Glutathione Reductase; Indenes; Malondialdehyde; Peroxidases; Photosynthesis; Plant Leaves; Plant Roots; Plant Transpiration; Seedlings; Triticum | 2010 |
A special pair of phytohormones controls excitability, slow closure, and external stomach formation in the Venus flytrap.
Topics: Abscisic Acid; Action Potentials; Amino Acids; Animals; Cyclopentanes; Droseraceae; Fatty Acids, Unsaturated; Indenes; Insecta; Oxylipins; Plant Growth Regulators; Plant Leaves; Predatory Behavior; Stress, Mechanical; Time Factors | 2011 |
A genetic screen reveals Arabidopsis stomatal and/or apoplastic defenses against Pseudomonas syringae pv. tomato DC3000.
Topics: Abscisic Acid; Amino Acids; Arabidopsis; Cloning, Molecular; Gene Expression Regulation, Plant; Indenes; Mutation; Plant Diseases; Plant Immunity; Plant Stomata; Pseudomonas syringae; Salicylic Acid | 2011 |
Rhizobacteria Bacillus subtilis restricts foliar pathogen entry through stomata.
Topics: Abscisic Acid; Amino Acids; Arabidopsis; Bacillus subtilis; Cryoelectron Microscopy; Indenes; Light; Plant Diseases; Plant Leaves; Plant Roots; Plant Stomata; Pseudomonas syringae; Salicylic Acid; Signal Transduction | 2012 |
Hexanoic acid is a resistance inducer that protects tomato plants against Pseudomonas syringae by priming the jasmonic acid and salicylic acid pathways.
Topics: Abscisic Acid; Amino Acids; Biosynthetic Pathways; Caproates; Cyclopentanes; Disease Resistance; Gene Expression Regulation, Plant; Glucans; Indenes; Oxylipins; Plant Diseases; Plant Growth Regulators; Plant Proteins; Plant Stomata; Pseudomonas syringae; Salicylic Acid; Signal Transduction; Solanum lycopersicum; Water | 2013 |
The phytotoxin coronatine induces abscission-related gene expression and boll ripening during defoliation of cotton.
Topics: Abscisic Acid; Amino Acids; Defoliants, Chemical; Gene Expression Regulation, Plant; Gossypium; Indenes; Plant Proteins; Seeds | 2014 |
Closely related NAC transcription factors of tomato differentially regulate stomatal closure and reopening during pathogen attack.
Topics: Abscisic Acid; Amino Acids; Cyclopentanes; Gene Expression Regulation, Plant; Genes, Reporter; Host-Pathogen Interactions; Indenes; Oxylipins; Plant Diseases; Plant Growth Regulators; Plant Immunity; Plant Leaves; Plant Proteins; Plant Stomata; Pseudomonas syringae; Salicylic Acid; Signal Transduction; Solanum lycopersicum; Transcription Factors | 2014 |
Jasmonoyl-L-isoleucine coordinates metabolic networks required for anthesis and floral attractant emission in wild tobacco (Nicotiana attenuata).
Topics: Abscisic Acid; Acetates; Acetone; Amino Acids; Animals; Arabidopsis Proteins; Cyclopentanes; Esterases; Flowers; Gene Expression Profiling; Gene Expression Regulation, Plant; Indenes; Isoleucine; Manduca; Metabolic Networks and Pathways; Methyltransferases; Models, Biological; Nicotiana; Oligonucleotide Array Sequence Analysis; Oxylipins; Plant Growth Regulators; Plant Nectar; Plant Proteins; Plants, Genetically Modified; Pollination; Reverse Transcriptase Polymerase Chain Reaction; RNA Interference | 2014 |
Tomato Atypical Receptor Kinase1 Is Involved in the Regulation of Preinvasion Defense.
Topics: Abscisic Acid; Amino Acids; Cyclopentanes; Flagellin; Indenes; Isoleucine; Light; Mutation; Phenotype; Plant Stomata; Plants, Genetically Modified; Protein Binding; Protein Kinases; Pseudomonas syringae; Salicylic Acid; Solanum lycopersicum; Xanthomonas | 2020 |
Molecular Mechanism Underlying the Synergetic Effect of Jasmonate on Abscisic Acid Signaling during Seed Germination in Arabidopsis.
Topics: Abscisic Acid; Amino Acids; Arabidopsis; Arabidopsis Proteins; Basic-Leucine Zipper Transcription Factors; Cyclopentanes; Germination; Indenes; Mutation; Oxylipins; Phenotype; Plant Growth Regulators; Plants, Genetically Modified; Seeds; Signal Transduction; Transcription Factors | 2020 |
The Arabidopsis F-box protein SKP1-INTERACTING PARTNER 31 modulates seed maturation and seed vigor by targeting JASMONATE ZIM DOMAIN proteins independently of jasmonic acid-isoleucine.
Topics: Abscisic Acid; Arabidopsis; Arabidopsis Proteins; Cyclopentanes; F-Box Proteins; Gene Expression Regulation, Plant; Isoleucine; Oxylipins; Repressor Proteins; Seeds | 2023 |