Page last updated: 2024-08-21

fusarium and lignin

fusarium has been researched along with lignin in 54 studies

Research

Studies (54)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's1 (1.85)18.2507
2000's13 (24.07)29.6817
2010's26 (48.15)24.3611
2020's14 (25.93)2.80

Authors

AuthorsStudies
Angers, P; Arul, J; Bhaskara Reddy, MV; Couture, L1
Durrant, LR; Pavarina, EC1
Amsellem, Z; Cohen, BA; Gressel, J; Lev-Yadun, S1
de Ascensao, AR; Dubery, IA1
Alba, J; Pineda, R; Ponce-Noyola, T; Thalasso, F1
Czechowski, F; Golonka, I; Jezierski, A1
Anderson, AJ; Carnicero, A; Falcón, MA; Kwon, SI1
Addi, M; Baltora-Rosset, S; Bensaddek, L; Chabbert, B; Crônier, D; Doussot, J; Hano, C; Hawkins, S; Lainé, E; Lamblin, F; Maury, S; Mesnard, F1
Gmerek, J; Morkunas, I1
Arias, ME; Carnicero, A; Falcón, MA; González Arzola, K; González-Vila, FJ; Perestelo, F; Polvillo, O1
Adholeya, A; Pant, D1
Oszmiański, J; Starzycki, M; Szopa, J; Wróbel-Kwiatkowska, M; Zebrowski, J1
Kulma, A; Musialak, M; Starzycka, E; Szopa, J; Wróbel-Kwiatkowska, M1
Li, L; Li, XZ; Qu, YB; Tang, WZ; Zhao, J1
Funnell-Harris, DL; Pedersen, JF; Sattler, SE1
Luo, ZH; Vrijmoed, LL; Wu, YR1
Anasontzis, GE; Diallinas, G; Haralampidis, K; Hatzinikolaou, DG; Karagouni, AD; Stathopoulou, PM; Zerva, A1
Berrin, JG; Chevret, D; Favel, A; Grisel, S; Herpoël-Gimbert, I; Ravalason, H; Sigoillot, JC1
Haronikova, A; Lichnova, A; Marova, I; Matouskova, P; Obruca, S1
Carlson, J; Geib, SM; Hoover, K; Scully, ED; Tien, M1
Ali, SS; Doohan, FM; Mullins, E; Nugent, B1
Dymińska, L; Hanuza, J; Kulma, A; Szopa, J; Wojtasik, W; Żebrowski, J1
Guo, Y; Wang, C; Xu, M; Ye, J; Zhang, D; Zhang, N1
Bořutová, R; Grešaková, L; Košiková, B; Leng, L; Levkut, M; Levkutová, M; Revajová, V1
Castillo, JM; Nogales, R; Romero, E1
Doohan, F; Hennessy, RC; Mullins, E1
da Silva, WL; Fortunato, AA; Rodrigues, FÁ1
Debeire, P; Delalande, F; Habrylo, O; Jeltsch, JM; Phalip, V; Van Dorsselaer, A1
Anasontzis, GE; Christakopoulos, P1
Dai, B; Hu, L; Wang, X; Wu, B; Wu, Z; Xia, J; Xu, J; Xu, N1
Busk, PK; Huang, Y; Lange, L1
Chavan, SG; Dewangan, V; Dholakia, BB; Giri, AP; Gupta, VS; Kadoo, NY; Kumar, Y; Kunjir, SM; Li, N; Panigrahi, P; Rajmohanan, PR; Tang, H; Wu, X; Zhang, L1
Czemplik, M; Dymińska, L; Hanuza, J; Kulma, A; Szopa, J; Wojtasik, W1
Aitken, EA; Dann, EK; Whan, JA1
Boutrot, F; Breda, AS; Engelsdorf, T; Hamann, T; Hardtke, CS; Höfte, H; Koevoets, I; McKenna, JF; Miedes, E; Molina, A; Mouille, G; Rep, M; Rhodes, J; Roux, M; Segonzac, C; Testerink, C; Tintor, N; Van der Does, D; Veerabagu, M; Vernhettes, S; Zipfel, C1
Dixon, RA; Gallego-Giraldo, L; Gill, US; Ishiga, Y; Mysore, KS; Uppalapati, SR1
Bellincampi, D; De Angelis, E; Fabri, E; Gadaleta, A; Giancaspro, A; Giove, SL; Lionetti, V; Monaci, L; Reem, N; Zabotina, OA; Zito, D1
Kumar, G; Meshram, S; Patel, JS; Sarma, BK; Singh, DP; Singh, HB; Yadav, SK1
Chang, C; Li, W; Li, X; Ma, L; Nasir, F; Tian, C; Tian, L; Tran, LP1
Clemente, TE; Funnell-Harris, DL; Gries, T; O'Neill, PM; Sattler, SE; Tetreault, HM1
Li, X; Zhang, D; Zhao, J1
Rajput, RS; Ray, S; Singh, HB; Singh, J; Singh, P; Singh, RK; Vaishnav, A1
Dong, H; Guo, Y; Li, H; Ye, Y1
Altartouri, B; Duggavathi, R; Hegde, N; Kushalappa, AC; Nazarian-Firouzabadi, F; Soni, N1
Chakraborty, N1
Coll, NS; Dora, S; Gasperini, D; Kashyap, A; Meena, MK; Menna, A; Sánchez-Rodríguez, C; Sancho-Andrés, G; Sklodowski, K1
Bernhardson, LF; Funnell-Harris, DL; Khasin, M; O'Neill, PM; Palmer, NA; Sattler, SE; Scully, ED1
Liang, Z; Tian, Y; Wang, Y; Xiao, J; Yang, K; Zhang, Y1
Hussain, K; Jaweed, TH; Kamble, AC1
Allen, KS; Ma, LJ; Martínez-Soto, D; Yu, H1
Dong, Y; Guo, Y; Li, Y; Yang, W; Zhao, Q1
Guan, F; Shi, B; Wan, X; Zhang, J1
Ai, S; Li, C; Li, X; Liu, C; Liu, Q; Liu, Y; Ma, F; Zhang, Z1
Chen, G; Chen, Y; Deng, M; Guan, F; Jiang, Q; Jiang, Y; Kang, H; Li, H; Li, W; Liu, D; Long, L; Ma, J; Pu, Z; Qi, P; Wang, J; Wang, Y; Wei, Y; Xu, Q; Yuan, Z; Zhang, L; Zhang, Y; Zheng, Y1

Other Studies

54 other study(ies) available for fusarium and lignin

ArticleYear
Chitosan treatment of wheat seeds induces resistance to Fusarium graminearum and improves seed quality.
    Journal of agricultural and food chemistry, 1999, Volume: 47, Issue:3

    Topics: Benomyl; Chitin; Chitosan; Fungicides, Industrial; Fusarium; Lignin; Phenols; Plant Leaves; Seeds; Triticum

1999
Growth of lignocellulosic-fermenting fungi on different substrates under low oxygenation conditions.
    Applied biochemistry and biotechnology, 2002,Spring, Volume: 98-100

    Topics: Biomass; Cellulose; Culture Media; Fermentation; Fungi; Fusarium; Geotrichum; Glycoside Hydrolases; Kinetics; Lignin; Oxygen Consumption; Substrate Specificity

2002
Infection of tubercles of the parasitic weed Orobanche aegyptiaca by mycoherbicidal Fusarium species.
    Annals of botany, 2002, Volume: 90, Issue:5

    Topics: Fusarium; Green Fluorescent Proteins; Lignin; Luminescent Proteins; Membrane Lipids; Mycoses; Orobanche; Plant Diseases; Plant Roots; Solanum lycopersicum; Time Factors

2002
Soluble and wall-bound phenolics and phenolic polymers in Musa acuminata roots exposed to elicitors from Fusarium oxysporum f.sp. cubense.
    Phytochemistry, 2003, Volume: 63, Issue:6

    Topics: Biopolymers; Cell Wall; Chromatography, High Pressure Liquid; Fungal Proteins; Fusarium; Lignin; Musa; Phenols; Plant Roots; Solubility

2003
Microbial characterization of organic carrier colonization during a model biofiltration experiment.
    Letters in applied microbiology, 2004, Volume: 38, Issue:6

    Topics: Air Pollutants; Air Pollution; Arachis; Bacteria; Biodegradation, Environmental; Biofilms; Carbon Dioxide; Cellulase; Cellulose; Colony Count, Microbial; Endo-1,4-beta Xylanases; Filtration; Fungi; Fusarium; Kinetics; Lignin; Methanol; Oxygen Consumption; Penicillium; Pseudomonas; Rhizopus; Sphingomonas

2004
Organic matter transformation in the environment investigated by quantitative electron paramagnetic resonance (EPR) spectroscopy: studies on lignins.
    Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy, 2004, Volume: 60, Issue:6

    Topics: Bacillus subtilis; Biodegradation, Environmental; Biotransformation; Botrytis; Chromatography, Gas; Coal; Copper; Cycadopsida; Electron Spin Resonance Spectroscopy; Environment; Free Radicals; Fusarium; Humic Substances; Lead; Lignin; Magnoliopsida; Mass Spectrometry; Organic Chemicals; Penicillium; Plant Bark; Pseudomonas putida; Soil; Streptomyces

2004
Two isolates of Fusarium proliferatum from different habitats and global locations have similar abilities to degrade lignin.
    FEMS microbiology letters, 2005, Aug-01, Volume: 249, Issue:1

    Topics: Alcohol Oxidoreductases; Environment; Fusarium; Laccase; Lignin; Plant Diseases; Soil Microbiology; Spain; Trees; Triticum; Utah

2005
Differential accumulation of monolignol-derived compounds in elicited flax (Linum usitatissimum) cell suspension cultures.
    Planta, 2006, Volume: 223, Issue:5

    Topics: Ascomycota; Biological Factors; Botrytis; Butylene Glycols; Cell Wall; Cells, Cultured; Coumaric Acids; Flax; Fusarium; Glucosides; Lignans; Lignin; Mycelium; Phenols; Spectroscopy, Fourier Transform Infrared

2006
The possible involvement of peroxidase in defense of yellow lupine embryo axes against Fusarium oxysporum.
    Journal of plant physiology, 2007, Volume: 164, Issue:2

    Topics: Ascorbate Peroxidases; Fusarium; Hydrogen Peroxide; Lignin; Lupinus; Peroxidase; Peroxidases; Phenols; Plant Diseases; Seeds; Sucrose

2007
Early attack and subsequent changes produced in an industrial lignin by a fungal laccase and a laccase-mediator system: an analytical approach.
    Applied microbiology and biotechnology, 2006, Volume: 73, Issue:1

    Topics: Benzothiazoles; Chromatography, High Pressure Liquid; Fusarium; Gas Chromatography-Mass Spectrometry; Laccase; Lignin; Spectrum Analysis; Sulfonic Acids; Time Factors

2006
Enhanced production of ligninolytic enzymes and decolorization of molasses distillery wastewater by fungi under solid state fermentation.
    Biodegradation, 2007, Volume: 18, Issue:5

    Topics: Aspergillus niger; Biodegradation, Environmental; Biomass; Ergosterol; Fermentation; Fusarium; Glucose; Industrial Waste; Lignin; Peroxidases; Pleurotus; Solanum tuberosum; Sterols; Water; Water Purification

2007
Lignin deficiency in transgenic flax resulted in plants with improved mechanical properties.
    Journal of biotechnology, 2007, Mar-10, Volume: 128, Issue:4

    Topics: Alcohol Oxidoreductases; Carbohydrates; Cellulose; Cinnamates; Epitopes; Flax; Fusarium; Lignin; Pectins; Plant Stems; Plants, Genetically Modified; Polysaccharides; Tensile Strength

2007
Improving retting of fibre through genetic modification of flax to express pectinases.
    Transgenic research, 2008, Volume: 17, Issue:1

    Topics: Aspergillus; Base Sequence; Cellulose; DNA Primers; Flax; Fusarium; Gene Expression; Genes, Fungal; Hydroxybenzoates; Lignin; Pectins; Plants, Genetically Modified; Polygalacturonase; Textiles

2008
Screening of a fungus capable of powerful and selective delignification on wheat straw.
    Letters in applied microbiology, 2008, Volume: 47, Issue:5

    Topics: DNA, Fungal; DNA, Ribosomal; Enzymes; Fungal Proteins; Fusarium; Genes, rRNA; Lignin; Molecular Sequence Data; Phylogeny; RNA, Fungal; RNA, Ribosomal, 18S; Sequence Analysis, DNA; Triticum

2008
Alteration in lignin biosynthesis restricts growth of Fusarium spp. in brown midrib sorghum.
    Phytopathology, 2010, Volume: 100, Issue:7

    Topics: Alternaria; Fusarium; Genotype; Host-Pathogen Interactions; Lignin; Methyltransferases; Sorghum

2010
Biodegradation of anthracene and benz[a]anthracene by two Fusarium solani strains isolated from mangrove sediments.
    Bioresource technology, 2010, Volume: 101, Issue:24

    Topics: Anthracenes; Benz(a)Anthracenes; Biodegradation, Environmental; Extracellular Space; Fusarium; Geologic Sediments; Lignin; Metabolic Networks and Pathways; Phylogeny; Polycyclic Aromatic Hydrocarbons; Rhizophoraceae; RNA, Ribosomal, 18S

2010
Homologous overexpression of xylanase in Fusarium oxysporum increases ethanol productivity during consolidated bioprocessing (CBP) of lignocellulosics.
    Journal of biotechnology, 2011, Mar-10, Volume: 152, Issue:1-2

    Topics: Agrobacterium tumefaciens; Electrophoresis, Polyacrylamide Gel; Endo-1,4-beta Xylanases; Ethanol; Fusarium; Lignin

2011
Fusarium verticillioides secretome as a source of auxiliary enzymes to enhance saccharification of wheat straw.
    Bioresource technology, 2012, Volume: 114

    Topics: Carbohydrates; Fusarium; Glycoside Hydrolases; Lignin; Metabolome; Plant Components, Aerial; Polygalacturonase; Species Specificity; Triticum

2012
Production of lignocellulose-degrading enzymes employing Fusarium solani F-552.
    Folia microbiologica, 2012, Volume: 57, Issue:3

    Topics: Culture Media; Enzymes; Fusarium; Gene Expression Regulation, Enzymologic; Gene Expression Regulation, Fungal; Hydrogen Peroxide; Lignin; Zea mays

2012
Proteomic analysis of Fusarium solani isolated from the Asian longhorned beetle, Anoplophora glabripennis.
    PloS one, 2012, Volume: 7, Issue:4

    Topics: Animals; Cell Wall; Cells, Cultured; Coleoptera; Electrophoresis, Gel, Two-Dimensional; Fungal Proteins; Fusariosis; Fusarium; Gastrointestinal Tract; Larva; Lignin; Plant Cells; Polysaccharides; Proteomics; Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization; Wood

2012
Insights from the fungus Fusarium oxysporum point to high affinity glucose transporters as targets for enhancing ethanol production from lignocellulose.
    PloS one, 2013, Volume: 8, Issue:1

    Topics: Biofuels; Carbohydrate Metabolism; Cloning, Molecular; Cluster Analysis; Ethanol; Fermentation; Fusarium; Gene Expression Regulation, Fungal; Glucose; Glucose Transport Proteins, Facilitative; Kinetics; Lignin; Transcription, Genetic; Xylose

2013
Fibres from flax overproducing β-1,3-glucanase show increased accumulation of pectin and phenolics and thus higher antioxidant capacity.
    BMC biotechnology, 2013, Feb-09, Volume: 13

    Topics: Antioxidants; Cell Wall; Cellulose; Dextranase; Flax; Fusarium; Glucans; Lignin; Monosaccharides; Pectins; Phenols; Plants, Genetically Modified; Polysaccharides; Uronic Acids

2013
Cytological and molecular characterization of quantitative trait locus qRfg1, which confers resistance to gibberella stalk rot in maize.
    Molecular plant-microbe interactions : MPMI, 2013, Volume: 26, Issue:12

    Topics: Alleles; Biomass; Chromosome Mapping; Chromosomes, Plant; Cluster Analysis; Colony Count, Microbial; Disease Resistance; Fusarium; Genes, Reporter; Hydroxybenzoates; Hyphae; Lignin; Mitochondria; Phenotype; Plant Diseases; Plant Roots; Quantitative Trait Loci; Sequence Analysis, RNA; Transcriptome; Zea mays

2013
Effect of lignin supplementation of a diet contaminated with Fusarium mycotoxins on blood and intestinal lymphocyte subpopulations in chickens.
    Acta veterinaria Hungarica, 2013, Volume: 61, Issue:3

    Topics: Animal Feed; Animals; Chickens; Diet; Food Contamination; Fusarium; Lignin; Lymphocyte Subsets; Mycotoxins

2013
Dynamics of microbial communities related to biochemical parameters during vermicomposting and maturation of agroindustrial lignocellulose wastes.
    Bioresource technology, 2013, Volume: 146

    Topics: Animals; Arthrobacter; beta-Glucosidase; Biodegradation, Environmental; Biomarkers; Biomass; Burkholderia; Denaturing Gradient Gel Electrophoresis; Fungi; Fusarium; Lignin; Oligochaeta; Polymerase Chain Reaction; Pseudomonas putida; Refuse Disposal; RNA, Ribosomal, 16S; Sinorhizobium meliloti; Soil; Soil Microbiology

2013
Generating phenotypic diversity in a fungal biocatalyst to investigate alcohol stress tolerance encountered during microbial cellulosic biofuel production.
    PloS one, 2013, Volume: 8, Issue:10

    Topics: Adaptation, Biological; Alcohols; Biocatalysis; Biofuels; Biomass; Chromosome Mapping; Fusarium; Gene Library; Lignin; Monosaccharide Transport Proteins; Phenotype; Stress, Physiological; Transformation, Genetic

2013
Phenylpropanoid pathway is potentiated by silicon in the roots of banana plants during the infection process of Fusarium oxysporum f. sp. cubense.
    Phytopathology, 2014, Volume: 104, Issue:6

    Topics: Disease Resistance; Dopamine; Flavonoids; Fusarium; Lignin; Musa; Plant Diseases; Plant Roots; Plant Shoots; Propanols; Silicon

2014
Enzymatic cocktails produced by Fusarium graminearum under submerged fermentation using different lignocellulosic biomasses.
    FEMS microbiology letters, 2014, Volume: 355, Issue:2

    Topics: Biomass; Fermentation; Fusarium; Glucose; Lignin; Polysaccharides; Proteome; Substrate Specificity

2014
Challenges in ethanol production with Fusarium oxysporum through consolidated bioprocessing.
    Bioengineered, 2014, Volume: 5, Issue:6

    Topics: Biomass; Ethanol; Fermentation; Fusarium; Lignin

2014
A novel ionic liquid-tolerant Fusarium oxysporum BN secreting ionic liquid-stable cellulase: consolidated bioprocessing of pretreated lignocellulose containing residual ionic liquid.
    Bioresource technology, 2015, Volume: 181

    Topics: Adaptation, Physiological; Bioreactors; Biotechnology; Cellulase; Enzyme Stability; Ethanol; Fusarium; Imidazoles; Ionic Liquids; Lignin; Oryza; Temperature; Time Factors; Waste Products

2015
Cellulose and hemicellulose-degrading enzymes in Fusarium commune transcriptome and functional characterization of three identified xylanases.
    Enzyme and microbial technology, 2015, Volume: 73-74

    Topics: Cellulose; Endo-1,4-beta Xylanases; Fungal Proteins; Fungi; Fusarium; Genes, Fungal; Glycoside Hydrolases; Lignin; Mixed Function Oxygenases; Models, Molecular; Multigene Family; Pichia; Polysaccharides; Protein Conformation; Recombinant Fusion Proteins; Species Specificity; Substrate Specificity; Transcriptome

2015
Fusarium oxysporum mediates systems metabolic reprogramming of chickpea roots as revealed by a combination of proteomics and metabolomics.
    Plant biotechnology journal, 2016, Volume: 14, Issue:7

    Topics: Cicer; Disease Resistance; Fusarium; Host-Pathogen Interactions; Lignin; Metabolic Networks and Pathways; Metabolomics; Nuclear Magnetic Resonance, Biomolecular; Phytoalexins; Plant Roots; Proteomics; Reactive Oxygen Species; Sesquiterpenes

2016
Evaluation of the significance of cell wall polymers in flax infected with a pathogenic strain of Fusarium oxysporum.
    BMC plant biology, 2016, Mar-22, Volume: 16

    Topics: Biopolymers; Cell Wall; Cellulose; Flax; Fusarium; Lignin; Pectins; Plant Diseases; Polysaccharides

2016
Effects of silicon treatment and inoculation with Fusarium oxysporum f. sp. vasinfectum on cellular defences in root tissues of two cotton cultivars.
    Annals of botany, 2016, Volume: 118, Issue:2

    Topics: Disease Resistance; Fusarium; Gossypium; Lignin; Microscopy, Electron, Transmission; Plant Diseases; Plant Roots; Silicon

2016
The Arabidopsis leucine-rich repeat receptor kinase MIK2/LRR-KISS connects cell wall integrity sensing, root growth and response to abiotic and biotic stresses.
    PLoS genetics, 2017, Volume: 13, Issue:6

    Topics: Arabidopsis; Arabidopsis Proteins; Cell Wall; Cellulose; Cyclopentanes; Disease Resistance; Fusarium; Gene Expression Regulation, Plant; Lignin; Oxylipins; Plant Diseases; Plant Roots; Protein Kinases; Receptors, Cell Surface; Sodium Chloride; Stress, Physiological

2017
Metabolic flux towards the (iso)flavonoid pathway in lignin modified alfalfa lines induces resistance against Fusarium oxysporum f. sp. medicaginis.
    Plant, cell & environment, 2018, Volume: 41, Issue:9

    Topics: Ascomycota; Disease Resistance; Flavonoids; Fusarium; Gene Expression Regulation, Plant; Lignin; Medicago sativa; Methyltransferases; Plant Diseases; Plant Roots; Plants, Genetically Modified; Pterocarpans; Salicylic Acid

2018
Cell wall features transferred from common into durum wheat to improve Fusarium Head Blight resistance.
    Plant science : an international journal of experimental plant biology, 2018, Volume: 274

    Topics: Cell Wall; Disease Resistance; Fusarium; Lignin; Monosaccharides; Plant Diseases; Real-Time Polymerase Chain Reaction; Triticum

2018
Trichoderma mediate early and enhanced lignifications in chickpea during Fusarium oxysporum f. sp. ciceris infection.
    Journal of basic microbiology, 2019, Volume: 59, Issue:1

    Topics: Antibiosis; Cicer; DNA, Plant; Fusarium; Gene Expression Regulation, Plant; Genes, Plant; Host-Pathogen Interactions; Lignin; Plant Diseases; Plant Immunity; Plant Roots; Seeds; Trichoderma

2019
Differential responses of molecular mechanisms and physiochemical characters in wild and cultivated soybeans against invasion by the pathogenic Fusarium oxysporum Schltdl.
    Physiologia plantarum, 2019, Volume: 166, Issue:4

    Topics: Fabaceae; Fusarium; Genotype; Glycine max; Lignin; Sequence Analysis, RNA

2019
Response of Sorghum Enhanced in Monolignol Biosynthesis to Stalk Rot Pathogens.
    Plant disease, 2019, Volume: 103, Issue:9

    Topics: Ascomycota; Fusarium; Gene Expression Regulation, Plant; Genes, Plant; Lignin; Sorghum

2019
    BioMed research international, 2020, Volume: 2020

    Topics: Cellulose; Fusarium; Light; Lignin; Ultraviolet Rays; Wood; Xylosidases

2020
Seed biopriming with antagonistic microbes and ascorbic acid induce resistance in tomato against Fusarium wilt.
    Microbiological research, 2020, Volume: 237

    Topics: Antibiosis; Ascorbic Acid; Biological Control Agents; Catechol Oxidase; Chitinases; Disease Resistance; Fusariosis; Fusarium; Gene Expression; Genes, Plant; Hydrogen Peroxide; Hypocreales; Lignin; Ochrobactrum; Phenol; Phenylammonium Compounds; Plant Diseases; Seeds; Solanum lycopersicum

2020
Comparative transcriptome analysis revealed resistance differences of Cavendish bananas to Fusarium oxysporum f.sp. cubense race1 and race4.
    BMC genetics, 2020, 11-11, Volume: 21, Issue:1

    Topics: Disease Resistance; Fusarium; Gene Expression Regulation, Plant; Lignin; Musa; Plant Diseases; Plant Roots; Secondary Metabolism; Transcriptome

2020
TaNAC032 transcription factor regulates lignin-biosynthetic genes to combat Fusarium head blight in wheat.
    Plant science : an international journal of experimental plant biology, 2021, Volume: 304

    Topics: Fusarium; Gene Expression Regulation, Plant; Gene Silencing; Genes, Plant; Lignin; Plant Diseases; Plant Proteins; Polymorphism, Genetic; Quantitative Trait Loci; Real-Time Polymerase Chain Reaction; Sequence Alignment; Sequence Analysis, DNA; Transcription Factors; Triticum

2021
Salicylic acid and nitric oxide cross-talks to improve innate immunity and plant vigor in tomato against Fusarium oxysporum stress.
    Plant cell reports, 2021, Volume: 40, Issue:8

    Topics: Cell Death; Enzymes; Flavonoids; Fusarium; Gene Expression Regulation, Plant; Host-Pathogen Interactions; Lignin; NG-Nitroarginine Methyl Ester; Nitric Oxide; Phenols; Plant Cells; Plant Diseases; Plant Immunity; Plant Proteins; Salicylic Acid; Seedlings; Solanum lycopersicum

2021
A primary cell wall cellulose-dependent defense mechanism against vascular pathogens revealed by time-resolved dual transcriptomics.
    BMC biology, 2021, 08-17, Volume: 19, Issue:1

    Topics: Arabidopsis; Cell Wall; Cellulose; Defense Mechanisms; Ethylenes; Fusarium; Gene Expression Regulation, Plant; Lignin; Plant Diseases; Transcriptome

2021
Pathogen and drought stress affect cell wall and phytohormone signaling to shape host responses in a sorghum COMT bmr12 mutant.
    BMC plant biology, 2021, Aug-21, Volume: 21, Issue:1

    Topics: Adaptation, Physiological; Ascomycota; Cell Wall; Droughts; Edible Grain; Fusarium; Gene Expression Regulation, Plant; Genes, Plant; Genetic Variation; Genotype; Host-Pathogen Interactions; Lignin; Mutation; Signal Transduction; Sorghum; United States; Water

2021
Transcriptomic and metabonomic insights into the biocontrol mechanism of Trichoderma asperellum M45a against watermelon Fusarium wilt.
    PloS one, 2022, Volume: 17, Issue:8

    Topics: Citrullus; Fusarium; Hypocreales; Lignin; Peroxidases; Plant Diseases; Soil; Transcriptome; Trichoderma

2022
Modulation of phenylpropanoid and lignin biosynthetic pathway is crucial for conferring resistance in pigeon pea against Fusarium wilt.
    Gene, 2023, Jan-30, Volume: 851

    Topics: Biosynthetic Pathways; Cajanus; Fusarium; Lignin; Phenylalanine Ammonia-Lyase; Plant Diseases

2023
Differential Colonization of the Plant Vasculature Between Endophytic Versus Pathogenic
    Molecular plant-microbe interactions : MPMI, 2023, Volume: 36, Issue:1

    Topics: Arabidopsis; Fusarium; Lignin; Plant Diseases; Plant Roots; Solanum lycopersicum

2023
Intercropping alleviated the phytotoxic effects of cinnamic acid on the root cell wall structural resistance of faba bean and reduced the occurrence of Fusarium wilt.
    Physiologia plantarum, 2022, Volume: 174, Issue:6

    Topics: Cell Wall; Fusarium; Lignin; Plant Roots; Triticum; Vicia faba

2022
Transcriptome analysis provides insights into lignin synthesis and MAPK signaling pathway that strengthen the resistance of bitter gourd (Momordica charantia) to Fusarium wilt.
    Genomics, 2023, Volume: 115, Issue:1

    Topics: Fusarium; Gene Expression Profiling; Lignin; Momordica charantia; Signal Transduction

2023
MdERF114 enhances the resistance of apple roots to Fusarium solani by regulating the transcription of MdPRX63.
    Plant physiology, 2023, 07-03, Volume: 192, Issue:3

    Topics: Fusarium; Gene Expression Regulation, Plant; Lignin; Malus; Plant Proteins

2023
Comparative analysis of Fusarium crown rot resistance in synthetic hexaploid wheats and their parental genotypes.
    BMC genomics, 2023, Apr-05, Volume: 24, Issue:1

    Topics: Disease Resistance; Fusarium; Genotype; Lignin; Plant Diseases; Poaceae; Tetraploidy

2023
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