Page last updated: 2024-08-17

ethylene and Diathesis

ethylene has been researched along with Diathesis in 15 studies

Research

Studies (15)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's1 (6.67)18.2507
2000's5 (33.33)29.6817
2010's7 (46.67)24.3611
2020's2 (13.33)2.80

Authors

AuthorsStudies
Afsharifar, A; Chaiprom, U; E Hudson, M; Karegar, A; M Drnevich, J; Miraeiz, E1
Chung, H; Harris, W; Kim, S; Lee, YH; Park, JY; Park, SY; Völz, R1
Di, X; Gomila, J; Takken, FLW1
Azevedo, TM; Campos, MA; Dalio, RJD; Felizatti, HL; Machado, MA; Máximo, HJ; Oliveira, TS1
Kim, JG; Mudgett, MB; Stork, W1
Díaz, J; Gago-Fuentes, R; García, T; Gutiérrez, J; Veloso, J1
Blake, SN; Fisher, BJ; Foo, E; Reid, JB; Smith, JA1
Barriuso Maicas, J; Domenech, J; Gutiérrez Mañero, FJ; Pereyra de la Iglesia, MT; Ramos Solano, B1
Bennett, AB; Blanco-Ulate, B; Cantu, D; Labavitch, JM; Powell, AL; Yang, L1
Fujii, T; Ishihama, N; Kodama, M; Mase, K; Mizuno, T; Mori, H; Yoshioka, H1
MacIntosh, GC; Studham, ME1
Hauck, P; He, SY; Thilmony, R1
Avni, A; Ron, M1
Engelberth, J; Feussner, I; Gao, X; Göbel, C; Kolomiets, M; Starr, J; Tumlinson, J1
Broekaert, WF; Eggermont, K; Nelissen, I; Thomma, BP1

Other Studies

15 other study(ies) available for ethylene and Diathesis

ArticleYear
Early transcriptional responses to soybean cyst nematode HG Type 0 show genetic differences among resistant and susceptible soybeans.
    TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik, 2020, Volume: 133, Issue:1

    Topics: Animals; Biosynthetic Pathways; Chromosome Mapping; Disease Resistance; Disease Susceptibility; Ethylenes; Gene Expression Profiling; Gene Expression Regulation, Plant; Gene Ontology; Genes, Plant; Glycine max; Phylogeny; Plant Diseases; Propanols; Sequence Analysis, RNA; Signal Transduction; Transcription Factors; Transcription, Genetic; Tylenchoidea

2020
The rice/maize pathogen Cochliobolus spp. infect and reproduce on Arabidopsis revealing differences in defensive phytohormone function between monocots and dicots.
    The Plant journal : for cell and molecular biology, 2020, Volume: 103, Issue:1

    Topics: Arabidopsis; Ascomycota; Cyclopentanes; Disease Resistance; Disease Susceptibility; Ethylenes; Oryza; Oxylipins; Plant Diseases; Plant Growth Regulators; Salicylic Acid; Zea mays

2020
Involvement of salicylic acid, ethylene and jasmonic acid signalling pathways in the susceptibility of tomato to Fusarium oxysporum.
    Molecular plant pathology, 2017, Volume: 18, Issue:7

    Topics: Cyclopentanes; Disease Susceptibility; Ethylenes; Fusarium; Oxylipins; Plant Diseases; Salicylic Acid; Signal Transduction; Solanum lycopersicum; Time Factors; Transcription, Genetic

2017
Molecular Basis of Citrus sunki Susceptibility and Poncirus trifoliata Resistance Upon Phytophthora parasitica Attack.
    Molecular plant-microbe interactions : MPMI, 2018, Volume: 31, Issue:3

    Topics: Citrus; Cluster Analysis; Cyclopentanes; Disease Resistance; Disease Susceptibility; Ethylenes; Gene Expression Regulation, Plant; Gene Regulatory Networks; Genes, Plant; Hydrogen Peroxide; Linear Models; Models, Biological; Oxylipins; Phytophthora; Plant Diseases; Poncirus; Salicylic Acid

2018
Xanthomonas type III effector XopD desumoylates tomato transcription factor SlERF4 to suppress ethylene responses and promote pathogen growth.
    Cell host & microbe, 2013, Feb-13, Volume: 13, Issue:2

    Topics: Bacterial Proteins; Bacterial Secretion Systems; Disease Susceptibility; Ethylenes; Genes, Plant; Host-Pathogen Interactions; Lyases; Plant Diseases; Plant Leaves; Plant Proteins; Proteasome Endopeptidase Complex; Protein Interaction Mapping; Protein Stability; RNA, Messenger; Solanum lycopersicum; Sumoylation; Transcription Factors; Transcription, Genetic; Xanthomonas

2013
Wounding induces local resistance but systemic susceptibility to Botrytis cinerea in pepper plants.
    Journal of plant physiology, 2015, Mar-15, Volume: 176

    Topics: Botrytis; Capsicum; Chitinases; Cotyledon; Cyclopentanes; Cyclopropanes; Disease Resistance; Disease Susceptibility; Ethylenes; Gene Expression Regulation, Plant; Hydrogen Peroxide; Ibuprofen; Lignin; Oxylipins; Peroxidase; Phenols; Plant Diseases; Solubility

2015
The role of strigolactones during plant interactions with the pathogenic fungus Fusarium oxysporum.
    Planta, 2016, Volume: 243, Issue:6

    Topics: Biosynthetic Pathways; Disease Susceptibility; Ethylenes; Fusarium; Germination; Lactones; Mutation; Pisum sativum; Plant Growth Regulators; Plant Roots

2016
Systemic disease protection elicited by plant growth promoting rhizobacteria strains: relationship between metabolic responses, systemic disease protection, and biotic elicitors.
    Phytopathology, 2008, Volume: 98, Issue:4

    Topics: Arabidopsis; Arabidopsis Proteins; Bacteria; Disease Susceptibility; Ethylenes; Gene Expression Regulation, Plant; Plant Diseases; Plant Roots; Salicylic Acid; Soil Microbiology

2008
Ripening-regulated susceptibility of tomato fruit to Botrytis cinerea requires NOR but not RIN or ethylene.
    Plant physiology, 2009, Volume: 150, Issue:3

    Topics: Botrytis; Disease Susceptibility; Ethylenes; Fruit; Gene Expression; Mutation; Plant Diseases; Plant Proteins; Solanum lycopersicum; Transcription, Genetic

2009
Ethylene signaling pathway and MAPK cascades are required for AAL toxin-induced programmed cell death.
    Molecular plant-microbe interactions : MPMI, 2012, Volume: 25, Issue:8

    Topics: Alternaria; Cell Death; Disease Susceptibility; Ethylenes; Gene Expression Regulation, Plant; Gene Silencing; MAP Kinase Kinase 2; MAP Kinase Signaling System; Mitogen-Activated Protein Kinases; Nicotiana; Plant Diseases; Plant Leaves; Plant Proteins; Plants, Genetically Modified; Signal Transduction; Sphingosine

2012
Multiple phytohormone signals control the transcriptional response to soybean aphid infestation in susceptible and resistant soybean plants.
    Molecular plant-microbe interactions : MPMI, 2013, Volume: 26, Issue:1

    Topics: Animals; Aphids; Disease Resistance; Disease Susceptibility; Ethylenes; Feeding Behavior; Glycine max; Molecular Sequence Annotation; Oligonucleotide Array Sequence Analysis; Phloem; Plant Diseases; Plant Growth Regulators; Plant Leaves; Plant Proteins; RNA, Plant; Salicylates; Transcriptome

2013
A Pseudomonas syringae type III effector suppresses cell wall-based extracellular defense in susceptible Arabidopsis plants.
    Proceedings of the National Academy of Sciences of the United States of America, 2003, Jul-08, Volume: 100, Issue:14

    Topics: Arabidopsis; Arabidopsis Proteins; Bacterial Outer Membrane Proteins; Bacterial Proteins; Cell Wall; Dexamethasone; Disease Susceptibility; DNA-Binding Proteins; Ethylenes; Gene Expression Profiling; Gene Expression Regulation, Bacterial; Gene Expression Regulation, Plant; Mixed Function Oxygenases; Plant Diseases; Plants, Genetically Modified; Pseudomonas; Receptors, Cell Surface; Salicylic Acid; Transcription Factors

2003
The receptor for the fungal elicitor ethylene-inducing xylanase is a member of a resistance-like gene family in tomato.
    The Plant cell, 2004, Volume: 16, Issue:6

    Topics: Amino Acid Sequence; Animals; Cell Death; COS Cells; Disease Susceptibility; Drug Resistance; Endocytosis; Ethylenes; Fungi; Gene Silencing; Genetic Complementation Test; Glycosylation; Leucine Zippers; Molecular Sequence Data; Multigene Family; Nicotiana; Physical Chromosome Mapping; Plant Diseases; Plant Proteins; Plants, Genetically Modified; Protein Binding; Protein Structure, Tertiary; Solanum lycopersicum; Xylosidases

2004
Maize 9-lipoxygenase ZmLOX3 controls development, root-specific expression of defense genes, and resistance to root-knot nematodes.
    Molecular plant-microbe interactions : MPMI, 2008, Volume: 21, Issue:1

    Topics: Aldehyde-Lyases; Animals; Cyclopentanes; Cytochrome P-450 Enzyme System; Disease Susceptibility; Ethylenes; Fatty Acids, Unsaturated; Gene Expression Regulation, Plant; Genes, Plant; Immunity, Innate; Intramolecular Oxidoreductases; Lipoxygenase; Models, Biological; Mutation; Nematoda; Organ Specificity; Oxylipins; Plant Diseases; Plant Roots; RNA, Messenger; Salicylic Acid; Zea mays

2008
Deficiency in phytoalexin production causes enhanced susceptibility of Arabidopsis thaliana to the fungus Alternaria brassicicola.
    The Plant journal : for cell and molecular biology, 1999, Volume: 19, Issue:2

    Topics: Alternaria; Anti-Infective Agents; Antifungal Agents; Arabidopsis; Botrytis; Cyclopentanes; Defensins; Disease Susceptibility; Ethylenes; Gene Expression Regulation, Plant; Indoles; Mutation; Oxylipins; Phytoalexins; Plant Diseases; Plant Extracts; Plant Growth Regulators; Plant Proteins; Salicylic Acid; Sesquiterpenes; Terpenes; Thiazoles

1999