Page last updated: 2024-08-17

ethylene and pectins

ethylene has been researched along with pectins in 24 studies

Research

Studies (24)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's4 (16.67)29.6817
2010's15 (62.50)24.3611
2020's5 (20.83)2.80

Authors

AuthorsStudies
Prabha, TN; Prasanna, V; Tharanathan, RN1
Agustí, J; Cercós, M; Merelo, P; Tadeo, FR; Talón, M1
Fry, SC; Loake, GJ; McLeod, AR; Messenger, DJ; Reay, DS; Smith, KA; Yun, BW1
Cheng, G; Duan, X; Jia, Y; Jiang, Y; Lu, W; Yang, E1
Anacleria, M; Barone, A; Delledonne, M; Di Matteo, A; Ferrarini, A; Frusciante, L; Pezzotti, M; Sacco, A1
de Medeiros, IU; Holland, N; Lafuente, MT; Nunes, FL1
Deng, J; Li, X; Liu, H; Shi, Z1
Goulas, V; Lafuente, MT; Manganaris, GA; Minas, IS; Vicente, AR1
Crisosto, CH; Dagar, A; Friedman, H; Granell, A; Lurie, S; Marti Ibanez, C; Pons Puig, C; Singh, V1
Geeraerd, A; Gwanpua, SG; Hendrickx, M; Hertog, ML; Nicolai, BM; Verlinden, BE1
Hong, Y; Huang, L; Li, D; Song, F; Zhang, H1
Kronzucker, HJ; Li, GJ; Shi, WM; Yu, FW; Zhu, XF1
Civello, PM; Marina, M; Martínez, GA; Nardi, CF; Villarreal, NM1
Park, MH1
Aguiló-Aguayo, I; Echeverria, G; Giné-Bordonaba, J; Larrigaudière, C; López, ML; Ubach, D1
Ban, Q; Han, S; He, Y; Li, J; Rao, J1
Fang Shen, R; Fang Zhu, X; Sheng Zhao, X; Wu, Q1
Fei, Z; Gao, J; Gao, Y; Jiang, C; Jiang, CZ; Liang, Y; Liu, Y; Lu, J; Ma, C1
Fasseas, C; Kafkaletou, M; Tsantili, E1
Ji, S; Wang, S; Zhang, F; Zhou, Q; Zhou, X1
Bellincampi, D; Del Corpo, D; Fullone, MR; Giardina, T; Grisel, S; Kieffer-Jaquinod, S; Lafond, M; Lionetti, V; Miele, R; Pontiggia, D1
Li, Y; Luo, Y; Lyu, M; Shi, H; Wu, Q; Zhong, S1
Ge, J; Liu, XC; Liu, XF; Wang, WQ; Yin, XR; Zhang, QY1
Jin, QY; Kong, YL; Pan, L; Tian, WH; Wei, Q; Xu, QS; Yu, YJ; Zhang, JH; Zhu, CQ; Zhu, LF1

Reviews

1 review(s) available for ethylene and pectins

ArticleYear
Fruit ripening phenomena--an overview.
    Critical reviews in food science and nutrition, 2007, Volume: 47, Issue:1

    Topics: Carboxylic Ester Hydrolases; Cell Wall; Dietary Carbohydrates; Ethylenes; Fruit; Glycoside Hydrolases; Lyases; Pectins; Polysaccharides

2007

Other Studies

23 other study(ies) available for ethylene and pectins

ArticleYear
Ethylene-induced differential gene expression during abscission of citrus leaves.
    Journal of experimental botany, 2008, Volume: 59, Issue:10

    Topics: Carrier Proteins; Cell Wall; Citrus; Ethylenes; Gene Expression; Hormones; Kinetics; Lignin; Oligonucleotide Array Sequence Analysis; Oxidative Stress; Pectins; Plant Growth Regulators; Plant Leaves; Plant Proteins

2008
Ultraviolet radiation drives methane emissions from terrestrial plant pectins.
    The New phytologist, 2008, Volume: 180, Issue:1

    Topics: Ethane; Ethylenes; Methane; Nicotiana; Pectins; Plant Leaves; Reactive Oxygen Species; Sunlight; Ultraviolet Rays

2008
Effect of nitric oxide on ethylene synthesis and softening of banana fruit slice during ripening.
    Journal of agricultural and food chemistry, 2009, Jul-08, Volume: 57, Issue:13

    Topics: Amino Acid Oxidoreductases; Enzyme Inhibitors; Ethylenes; Fruit; Gene Expression; Lyases; Musa; Nitric Oxide; Pectins; Starch

2009
The ascorbic acid content of tomato fruits is associated with the expression of genes involved in pectin degradation.
    BMC plant biology, 2010, Aug-06, Volume: 10

    Topics: Ascorbic Acid; Carbohydrate Metabolism; Ethylenes; Fruit; Gene Expression Profiling; Gene Expression Regulation, Plant; Genes, Plant; Glutathione; Humans; Pectins; Solanum lycopersicum

2010
High-temperature conditioning induces chilling tolerance in mandarin fruit: a cell wall approach.
    Journal of the science of food and agriculture, 2012, Volume: 92, Issue:15

    Topics: Cell Wall; Cellulose; Citrus; Cold Temperature; Esterification; Ethylenes; Food Preservation; Food Storage; Fruit; Hot Temperature; Humidity; Pectins; Solubility; Uronic Acids

2012
Effects of cold storage and 1-methylcyclopropene treatments on ripening and cell wall degrading in rabbiteye blueberry (Vaccinium ashei) fruit.
    Food science and technology international = Ciencia y tecnologia de los alimentos internacional, 2014, Volume: 20, Issue:4

    Topics: Analysis of Variance; Blueberry Plants; Carboxylic Ester Hydrolases; Cell Wall; Cold Temperature; Cyclopropanes; Ethylenes; Food Quality; Food Storage; Hydrolases; Pectins; Polygalacturonase; Polysaccharides; Time Factors

2014
Cell wall modifications and ethylene-induced tolerance to non-chilling peel pitting in citrus fruit.
    Plant science : an international journal of experimental plant biology, 2013, Volume: 210

    Topics: Carbohydrate Metabolism; Carbohydrates; Cell Wall; Cellulose; Citrus sinensis; Cold Temperature; Ethylenes; Fruit; Pectins; Polysaccharides; Solubility; Uronic Acids

2013
Pre-symptomatic transcriptome changes during cold storage of chilling sensitive and resistant peach cultivars to elucidate chilling injury mechanisms.
    BMC genomics, 2015, Mar-26, Volume: 16

    Topics: Acetaldehyde; Cell Wall; Cold Temperature; Ethylenes; Indoleacetic Acids; Pectins; Prunus persica; Reactive Oxygen Species; Transcriptome

2015
Slow softening of Kanzi apples (Malus×domestica L.) is associated with preservation of pectin integrity in middle lamella.
    Food chemistry, 2016, Nov-15, Volume: 211

    Topics: Cell Wall; Ethylenes; Fruit; Malus; Pectins; Plant Extracts

2016
Arabidopsis AtERF014 acts as a dual regulator that differentially modulates immunity against Pseudomonas syringae pv. tomato and Botrytis cinerea.
    Scientific reports, 2016, 07-22, Volume: 6

    Topics: Arabidopsis; Arabidopsis Proteins; Botrytis; Cyclopentanes; Defensins; Disease Resistance; DNA-Binding Proteins; Ethylenes; Gene Expression Regulation, Plant; Oxylipins; Pectins; Plant Diseases; Plant Immunity; Pseudomonas syringae; Salicylic Acid; Transcription Factors

2016
The Chloroplast Protease AMOS1/EGY1 Affects Phosphate Homeostasis under Phosphate Stress.
    Plant physiology, 2016, Volume: 172, Issue:2

    Topics: Abscisic Acid; Arabidopsis; Arabidopsis Proteins; Cell Wall; Chloroplasts; Ethylenes; Gene Expression Regulation, Developmental; Gene Expression Regulation, Plant; Homeostasis; Metalloproteases; Mutation; Pectins; Phosphates; Plant Growth Regulators; Plant Roots; Plant Shoots; Reverse Transcriptase Polymerase Chain Reaction; Stress, Physiological

2016
Novel insights of ethylene role in strawberry cell wall metabolism.
    Plant science : an international journal of experimental plant biology, 2016, Volume: 252

    Topics: Carbohydrate Metabolism; Cell Wall; Cellulose; Ethylenes; Fragaria; Fruit; Host-Pathogen Interactions; Pectins; Plant Growth Regulators; Polysaccharides; RNA, Messenger

2016
Sucrose delays senescence and preserves functional compounds in Asparagus officinalis L.
    Biochemical and biophysical research communications, 2016, 11-11, Volume: 480, Issue:2

    Topics: Anthocyanins; Asparagus Plant; Carbohydrates; Cell Wall; Ethylenes; Food Quality; Gene Expression Regulation, Plant; Glycosyltransferases; Pectins; Peroxidase; Plant Proteins; Rutin; Sucrose

2016
Biochemical and physiological changes during fruit development and ripening of two sweet cherry varieties with different levels of cracking tolerance.
    Plant physiology and biochemistry : PPB, 2017, Volume: 111

    Topics: Adaptation, Physiological; Biomarkers; Biomass; Cell Respiration; Ethylenes; Fructose; Fruit; Glucose; Hydrogen Peroxide; Malates; Malondialdehyde; Methyltransferases; Oxidative Stress; Pectins; Polygalacturonase; Prunus avium

2017
Role of Brassinosteroids in Persimmon ( Diospyros kaki L.) Fruit Ripening.
    Journal of agricultural and food chemistry, 2018, Mar-21, Volume: 66, Issue:11

    Topics: Brassinosteroids; Cell Wall; Color; Diospyros; Ethylenes; Fruit; Gene Expression Regulation, Enzymologic; Gene Expression Regulation, Plant; Pectins; Plant Proteins

2018
Abscisic acid is involved in root cell wall phosphorus remobilization independent of nitric oxide and ethylene in rice (Oryza sativa).
    Annals of botany, 2018, 06-08, Volume: 121, Issue:7

    Topics: Abscisic Acid; Carboxylic Ester Hydrolases; Cell Wall; Ethylenes; Nitric Oxide; Oryza; Pectins; Phosphorus; Plant Growth Regulators; Plant Roots; Real-Time Polymerase Chain Reaction

2018
Rosa hybrida RhERF1 and RhERF4 mediate ethylene- and auxin-regulated petal abscission by influencing pectin degradation.
    The Plant journal : for cell and molecular biology, 2019, Volume: 99, Issue:6

    Topics: beta-Galactosidase; Cells, Cultured; DNA-Binding Proteins; Ethylenes; Flowers; Gene Expression Regulation, Developmental; Gene Expression Regulation, Plant; Indoleacetic Acids; Pectins; Plant Proteins; Promoter Regions, Genetic; Protein Binding; Rosa

2019
Increased firmness and modified cell wall composition by ethylene were reversed by the ethylene inhibitor 1-methylcyclopropene (1-MCP) in the non-climacteric olives harvested at dark green stage - Possible implementation of ethylene for olive quality.
    Journal of plant physiology, 2019, Volume: 238

    Topics: Cell Wall; Cellulose; Crop Production; Cyclopropanes; Dose-Response Relationship, Drug; Ethylenes; Food Quality; Fruit; Lignin; Olea; Pectins

2019
Ethylene plays an important role in the softening and sucrose metabolism of blueberries postharvest.
    Food chemistry, 2020, Apr-25, Volume: 310

    Topics: Blueberry Plants; Carboxylic Ester Hydrolases; Cell Wall; Ethylenes; Fruit; Gene Expression Regulation, Plant; Glucosyltransferases; Pectins; Plant Proteins; Polygalacturonase; Polysaccharides; Sucrose

2020
AtPME17 is a functional Arabidopsis thaliana pectin methylesterase regulated by its PRO region that triggers PME activity in the resistance to Botrytis cinerea.
    Molecular plant pathology, 2020, Volume: 21, Issue:12

    Topics: Arabidopsis; Arabidopsis Proteins; Botrytis; Carboxylic Ester Hydrolases; Cyclopentanes; Defensins; Escherichia coli; Ethylenes; Gene Expression; Isoenzymes; Oxylipins; Pectins; Plant Diseases; Promoter Regions, Genetic; Recombinant Proteins; Saccharomycetales

2020
Touch-induced seedling morphological changes are determined by ethylene-regulated pectin degradation.
    Science advances, 2020, Volume: 6, Issue:48

    Topics: Arabidopsis; Arabidopsis Proteins; DNA-Binding Proteins; Ethylenes; Gene Expression Regulation, Plant; Nuclear Proteins; Pectins; Seedlings; Soil; Touch

2020
Consensus co-expression network analysis identifies AdZAT5 regulating pectin degradation in ripening kiwifruit.
    Journal of advanced research, 2022, Volume: 40

    Topics: Actinidia; Consensus; Ethylenes; Fruit; Pectins; Transcription Factors

2022
Ammonium improved cell wall and cell membrane P reutilization and external P uptake in a putrescine and ethylene dependent pathway.
    Plant physiology and biochemistry : PPB, 2022, Nov-15, Volume: 191

    Topics: Ammonium Compounds; Cell Membrane; Cell Wall; Esterases; Ethylenes; Lipids; Nitrates; Ornithine Decarboxylase; Oryza; Oxidoreductases; Pectins; Phosphorus; Plant Roots; Putrescine

2022
chemdatabank.com