methyl salicylate has been researched along with lignin in 52 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 10 (19.23) | 29.6817 |
2010's | 31 (59.62) | 24.3611 |
2020's | 11 (21.15) | 2.80 |
Authors | Studies |
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Callaghan, TV; Press, MC; Quested, HM | 1 |
Aronen, T; Chen, X; Häggman, H; Piispanen, R; Saranpää, P | 1 |
Daniel, G; Hildén, L; Johansson, G | 1 |
Fagerstedt, KV; Lehtonen, M; Lundell, T; Marjamaa, K; Saranpää, P; Toikka, M | 1 |
Fagerstedt, KV; Gustafsson, M; Karhunen, P; Kilpeläinen, I; Koutaniemi, S; Kukkola, EM; Lundell, TK; Pöllänen, E; Saranpää, P; Teeri, TH | 1 |
Aronen, T; Chiang, V; Häggman, H; Laakso, T; Roininen, H; Saranpää, P; Tiimonen, H; Ylioja, T | 1 |
Fagerstedt, KV; Karhunen, P; Kukkola, E; Lundell, T; Marjamaa, K; Saranpää, P | 1 |
Hänninen, TA; Isogai, A; Kontturi, E; Vuorinen, T | 1 |
Gellerstedt, G; Li, J; Toven, K | 1 |
Chiang, VL; Edesi, J; Häggman, H; Julkunen-Tiitto, R; Koskimäki, J; Laakso, T; Mäkelä, R; Niemi, K; Saranpää, P; Suorsa, M; Sutela, S; Tiimonen, H; Vuosku, J | 1 |
Baldrian, P; Gabriel, J; Snajdr, J; Větrovský, T; Voříšková, J | 1 |
Balakshin, M; Capanema, E; Chang, HM; Gracz, H; Jameel, H | 1 |
Albertsson, AC; Edlund, U; Zhu Ryberg, YZ | 1 |
Tang, M; Viikari, L; Zhang, J | 1 |
Sun, RC; Sun, SL; Wen, JL; Xue, BL | 1 |
Fatehi, P; Hamdan, FC; Ni, Y | 1 |
Albertsson, AC; Dahlman, O; Danielsson, S; Edlund, U; Karlström, K; Saadatmand, S | 1 |
Cui, Z; Gao, C; Sun, D; Wang, C; Wang, Y; Yang, C; Zhang, N | 1 |
Anugwom, I; Eta, V; Hedenström, M; Hummel, M; Mäki-Arvela, P; Mikkola, JP; Sixta, H; Virtanen, P | 1 |
Balan, V; Bhalla, A; Bischoff, KM; Sani, RK; Uppugundla, N | 1 |
Fardim, P; Gabov, K; Gosselink, RJ; Smeds, AI | 1 |
Chen, S; Huang, H; Jiang, J; Li, H; Liu, G; Wang, S; Wei, H; Wei, R; Yang, G; Zhang, W | 1 |
Helmerius, J; Hodge, DB; Kudahettige-Nilsson, RL; Nilsson, RT; Rova, U; Sjöblom, M | 1 |
Courtin, CM; Koelewijn, SF; Renders, T; Schutyser, W; Sels, BF; Van den Bosch, S | 1 |
Hagiwara, Y; Hirose, D; Hobara, S; Matsuoka, S; Mori, AS; Osono, T | 1 |
Chu, H; Gilbert, JA; Ni, Y; Shi, Y; Sun, R; Weisenhorn, P; Yang, T | 1 |
Albers, E; Koppram, R; Mapelli, V; Olsson, L | 1 |
Christakopoulos, P; Karnaouri, A; Rova, U | 1 |
Akiyama, T; Li, Y; Matsumoto, Y; Yokoyama, T | 1 |
Guo, H; Hu, P; Jia, Y; Wang, C; Wang, L; Wang, Y; Yang, C; Zhang, C; Zhang, Y | 1 |
Arnling Bååth, J; Giummarella, N; Klaubauf, S; Lawoko, M; Olsson, L | 1 |
Couture, JJ; Lindroth, RL; Meehan, TD; Rubert-Nason, KF | 1 |
Ahola, J; Goldmann, WM; Mikola, M; Tanskanen, J | 1 |
Fu, YJ; Gai, QY; Guo, N; Jiao, J; Niu, LL; Wang, QF; Zang, YP | 1 |
Braham, EJ; Flick, RM; Goacher, RE; Master, ER; Michienzi, CL; Yakunin, AF | 1 |
Anikeenko, EA; Gorbova, NS; Khoroshev, OY; Kosyakov, DS; Shavrina, IS; Ul'yanovskii, NV | 1 |
Baker, SE; Bruijnincx, PCA; Daly, P; de Vries, RP; Dilworth, D; Dohnalkova, A; Grigoriev, IV; Hildén, KS; Kim, YM; Lancefield, CS; Lipzen, A; López, SC; Mäkelä, MR; Ng, V; Orr, G; Peng, M; Purvine, SO; Robinson, E; Singan, VR; Wang, M; Zink, EM | 1 |
Belyy, VA; Kaneva, MV; Karmanov, AP; Kocheva, LS; Lobov, AN; Nekrasova, PS; Spirikhin, LV | 1 |
Agger, JW; Holck, J; Meyer, A; Mosbech, C | 1 |
Li, X; Shi, J; Xu, W | 1 |
Holmbom, T; Kilpeläinen, P; Koivula, H; Korpinen, RI; Mikkonen, KS; Nurmi, M; Saloranta, P; Saranpää, PT; Sarjala, T; Willför, S | 1 |
Khakalo, A; Korpela, A; Orelma, H; Tanaka, A | 1 |
Bouxin, FP; Budarin, VL; Clark, JH; Fan, J; Hu, C; Liu, X | 1 |
Belesov, AV; Chukhchin, DG; Falev, DI; Faleva, AV; Kozhevnikov, AY; Novozhilov, EV | 1 |
Arnling Bååth, J; Larsbrink, J; Master, ER; Olsson, L; Raji, O; Vuong, TV | 1 |
Kim, H; Lee, J; Lee, S; Won, W | 1 |
Christakopoulos, P; Karnaouri, A; Liu, B; Mathew, AP; Matsakas, L; Muraleedharan, MN; Piatkova, M; Rova, U; Ruiz-Caldas, MX | 1 |
Belyy, V; Bogdanovich, N; Istomina, E; Karmanov, A; Kuzivanov, I; Mikhaylov, V; Tropnikov, E | 1 |
Liu, P; Lu, X; Wang, M; Zhang, J; Zhao, Z | 1 |
Fetisova, OY; Kazachenko, AS; Kondrasenko, AA; Kuznetsov, BN; Levdansky, AV; Levdansky, VA; Malyar, YN; Vasilyeva, NY | 1 |
Agarwal, UP; Gleisner, R; Kitin, P; Zhang, X; Zhu, JY | 1 |
Jian, C; Kynkäänniemi, E; Lahtinen, MH; Mikkonen, KS; Pajari, AM; Salonen, A | 1 |
52 other study(ies) available for methyl salicylate and lignin
Article | Year |
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Litter of the hemiparasite Bartsia alpina enhances plant growth: evidence for a functional role in nutrient cycling.
Topics: Analysis of Variance; Animals; Betula; Biomass; Carbon; Ecosystem; Lignin; Nitrogen; Orobanchaceae; Phosphorus; Plant Leaves; Poa; Soil; Sweden; Temperature | 2003 |
Silver birch (Betula pendula) plants with aux and rol genes show consistent changes in morphology, xylem structure and chemistry.
Topics: Base Sequence; Betula; Genes, Plant; Lignin; Molecular Sequence Data; Plants, Genetically Modified; Rhizobium; Trees | 2003 |
Use of a fluorescence labelled, carbohydrate-binding module from Phanerochaete chrysosporium Cel7D for studying wood cell wall ultrastructure.
Topics: Betula; Binding Sites; Cell Wall; Cellulase; Cellulose; Fluorescein-5-isothiocyanate; Fluorescent Dyes; Lignin; Mannans; Phanerochaete; Protein Binding; Protein Structure, Tertiary; Substrate Specificity; Trees; Wood; Xylans | 2003 |
Developmental lignification and seasonal variation in beta-glucosidase and peroxidase activities in xylem of Scots pine, Norway spruce and silver birch.
Topics: beta-Glucosidase; Betula; Isoenzymes; Lignin; Peroxidase; Picea; Pinus; Plant Stems; Seasons; Trees | 2003 |
The dibenzodioxocin lignin substructure is abundant in the inner part of the secondary wall in Norway spruce and silver birch xylem.
Topics: Betula; Cell Wall; Lignin; Microscopy, Confocal; Picea; Plant Stems | 2004 |
Does lignin modification affect feeding preference or growth performance of insect herbivores in transgenic silver birch (Betula pendula Roth)?
Topics: Animals; Betula; Coleoptera; Feeding Behavior; Genes, Plant; Insecta; Lepidoptera; Lignin; Plant Leaves; Plants, Genetically Modified | 2005 |
Monolignol oxidation by xylem peroxidase isoforms of Norway spruce (Picea abies) and silver birch (Betula pendula).
Topics: Betula; Biopolymers; Isoenzymes; Lignans; Lignin; Molecular Structure; Oxidation-Reduction; Peroxidases; Phenols; Phenylpropionates; Picea; Xylem | 2006 |
Differences in residual lignin properties between Betula verrucosa and Eucalyptus urograndis kraft pulps.
Topics: Betula; Carbohydrates; Chromatography, Gel; Eucalyptus; Lignin; Molecular Weight; Wood | 2008 |
Steam explosion lignins; their extraction, structure and potential as feedstock for biodiesel and chemicals.
Topics: Betula; Bioelectric Energy Sources; Biotechnology; Lignin; Picea; Pinus; Populus; Steam; Wood | 2009 |
Phenolic compounds in ectomycorrhizal interaction of lignin modified silver birch.
Topics: Betula; Gene Expression Regulation, Plant; Lignin; Methyltransferases; Mycorrhizae; Phenols; Plant Roots; Plants, Genetically Modified; Populus; RNA, Plant; Sequence Analysis, DNA; Symbiosis; Tannins | 2009 |
Ecology of coarse wood decomposition by the saprotrophic fungus Fomes fomentarius.
Topics: Bacteria; beta-Glucosidase; Betula; Biodegradation, Environmental; Cellulose 1,4-beta-Cellobiosidase; Chitinases; Coriolaceae; Czech Republic; DNA, Bacterial; DNA, Fungal; Ecology; Fagus; Laccase; Lignin; Microbial Consortia; Peroxidases; Trees; Wood; Xylans; Xylosidases | 2011 |
Quantification of lignin-carbohydrate linkages with high-resolution NMR spectroscopy.
Topics: Betula; Carbohydrate Conformation; Carbohydrate Metabolism; Carbohydrates; Lignin; Molecular Structure; Nuclear Magnetic Resonance, Biomolecular; Pinus taeda; Wood | 2011 |
Retrostructural model to predict biomass formulations for barrier performance.
Topics: Algorithms; Betula; Biomass; Carbohydrate Conformation; Carbohydrate Sequence; Hydrolysis; Lignin; Manufactured Materials; Models, Chemical; Molecular Sequence Data; Oxygen; Permeability; Plant Extracts; Polyethylene Terephthalates; Polysaccharides; Solubility; Wood | 2012 |
Xylans inhibit enzymatic hydrolysis of lignocellulosic materials by cellulases.
Topics: Betula; Cellulases; Cellulose; Chromatography, Ion Exchange; Hydrolysis; Lignin; Thermoascus; Trichoderma; Triticum; Xylans | 2012 |
Quantitative structures and thermal properties of birch lignins after ionic liquid pretreatment.
Topics: Betula; Ethers; Ionic Liquids; Lignin; Magnetic Resonance Spectroscopy; Molecular Structure; Molecular Weight; Spectroscopy, Fourier Transform Infrared; Thermogravimetry; Wood | 2013 |
Adsorption of lignocelluloses of pre-hydrolysis liquor on calcium carbonate to induce functional filler.
Topics: Acer; Acrylic Resins; Adsorption; Betula; Calcium Carbonate; Hydrogen-Ion Concentration; Hydrolysis; Kinetics; Lignin; Populus; Temperature; Wood | 2013 |
Turning hardwood dissolving pulp polysaccharide residual material into barrier packaging.
Topics: Betula; Hydrolysis; Lignin; Materials Testing; Oxygen; Permeability; Plant Preparations; Tensile Strength; Wood; Xylans | 2013 |
Comprehensive transcriptome analysis of developing xylem responding to artificial bending and gravitational stimuli in Betula platyphylla.
Topics: Base Sequence; Betula; Biomechanical Phenomena; Cellulose; China; Gene Expression Profiling; Gene Library; Gravitation; Lignin; Molecular Sequence Data; Sequence Analysis, RNA; Stress, Mechanical; Transcriptome; Xylem | 2014 |
Switchable ionic liquids as delignification solvents for lignocellulosic materials.
Topics: Betula; Carbon Dioxide; Ethanolamine; Ionic Liquids; Lignin; Sulfur Dioxide; Wood | 2014 |
Novel thermostable endo-xylanase cloned and expressed from bacterium Geobacillus sp. WSUCF1.
Topics: Avena; Base Sequence; Betula; Cloning, Molecular; Electrophoresis, Polyacrylamide Gel; Endo-1,4-beta Xylanases; Enzyme Stability; Fungi; Geobacillus; Hydrolysis; Lignin; Phylogeny; Recombinant Proteins; Temperature; Xylans | 2014 |
Characterization of lignin extracted from birch wood by a modified hydrotropic process.
Topics: Betula; Biotechnology; Lignin; Plant Extracts; Wood | 2014 |
Functional characterization of CCR in birch (Betula platyphylla × Betula pendula) through overexpression and suppression analysis.
Topics: Aldehyde Oxidoreductases; Base Sequence; Betula; Biomass; Cell Wall; Gene Expression; Gene Expression Regulation, Plant; Lignin; Meristem; Molecular Sequence Data; Organ Specificity; Phylogeny; Plant Leaves; Plant Proteins; Plant Roots; Plant Stems; Plants, Genetically Modified; Sequence Analysis, DNA; Wood; Xylem | 2015 |
Biobutanol production by Clostridium acetobutylicum using xylose recovered from birch Kraft black liquor.
Topics: Betula; Biosynthetic Pathways; Biotechnology; Butanols; Carbon; Chemical Fractionation; Clostridium acetobutylicum; Fermentation; Hydrolysis; Lignin; Xylose | 2015 |
Tuning the lignin oil OH-content with Ru and Pd catalysts during lignin hydrogenolysis on birch wood.
Topics: Betula; Catalysis; Hydroxides; Lignin; Palladium; Ruthenium; Wood | 2015 |
Bleaching of leaf litter and associated microfungi in subboreal and subalpine forests.
Topics: Ascomycota; Base Sequence; Basidiomycota; Betula; Cold Climate; Forests; Japan; Lignin; Molecular Sequence Data; Phylogeny; Picea; Plant Leaves; Quercus; Sequence Analysis, DNA | 2015 |
Carbon constrains fungal endophyte assemblages along the timberline.
Topics: Betula; Carbon; Carbon Cycle; China; Chytridiomycota; Ecosystem; Endophytes; Forests; Glomeromycota; Lignin; Nitrogen; Plant Leaves; Trees | 2016 |
The Presence of Pretreated Lignocellulosic Solids from Birch during Saccharomyces cerevisiae Fermentations Leads to Increased Tolerance to Inhibitors--A Proteomic Study of the Effects.
Topics: Betula; Biomass; Fermentation; Lignin; Proteomics; Saccharomyces cerevisiae; Saccharomyces cerevisiae Proteins | 2016 |
Effect of Different Pretreatment Methods on Birch Outer Bark: New Biorefinery Routes.
Topics: Betula; Biodegradation, Environmental; Lignin; Lipids; Monosaccharides; Plant Bark | 2016 |
NMR Assignment for Diaryl Ether Structures (4-O-5 Structures) in Pine Wood Lignin.
Topics: Betula; Cross-Linking Reagents; Ethers; Lignin; Models, Chemical; Molecular Structure; Nitrobenzenes; Nuclear Magnetic Resonance, Biomolecular; Oxidation-Reduction; Pinus; Solvents; Wood | 2016 |
Expression of the MYB transcription factor gene BplMYB46 affects abiotic stress tolerance and secondary cell wall deposition in Betula platyphylla.
Topics: Arabidopsis; Betula; Cell Death; Cell Nucleus; Cell Wall; Cellulose; Gene Expression Regulation, Plant; Gene Knockdown Techniques; Gene Silencing; Genetic Vectors; Lignin; Onions; Osmotic Pressure; Plant Proteins; Plant Stomata; Plants, Genetically Modified; Polysaccharides; Protein Binding; Reactive Oxygen Species; Salt Tolerance; Sodium Chloride; Stress, Physiological; Transcription Factors; Transcriptional Activation; Water; Xylem | 2017 |
A glucuronoyl esterase from Acremonium alcalophilum cleaves native lignin-carbohydrate ester bonds.
Topics: Acremonium; Betula; Carbohydrates; Esterases; Esters; Glucuronic Acid; Lignin; Picea; Xylans | 2016 |
Effects of Elevated Atmospheric Carbon Dioxide and Tropospheric Ozone on Phytochemical Composition of Trembling Aspen ( Populus tremuloides ) and Paper Birch ( Betula papyrifera ).
Topics: Betula; Carbohydrate Metabolism; Carbon Dioxide; Lignin; Nitrogen; Ozone; Phenols; Phytochemicals; Plant Leaves; Populus; Tannins | 2017 |
Formic acid aided hot water extraction of hemicellulose from European silver birch (Betula pendula) sawdust.
Topics: Betula; Biomass; Cellulose; Formates; Furaldehyde; Hot Temperature; Hydrolysis; Lignin; Polysaccharides; Silver; Water; Wood; Xylose | 2017 |
Degradation of lignin in birch sawdust treated by a novel Myrothecium verrucaria coupled with ultrasound assistance.
Topics: Betula; Cellulose; Fungi; Lignin; Wood | 2017 |
Direct analysis by time-of-flight secondary ion mass spectrometry reveals action of bacterial laccase-mediator systems on both hardwood and softwood samples.
Topics: Bacillus subtilis; Benzothiazoles; Betula; Coumaric Acids; Laccase; Lignin; Picea; Salmonella typhimurium; Spectrometry, Mass, Secondary Ion; Sulfonic Acids; Wood | 2018 |
Ionic liquid matrices for MALDI mass spectrometry of lignin.
Topics: Betula; Ionic Liquids; Lignin; Molecular Structure; Picea; Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization | 2018 |
Dichomitus squalens partially tailors its molecular responses to the composition of solid wood.
Topics: Basidiomycota; Betula; Fungal Proteins; Laccase; Lignin; Mannans; Peroxidases; Picea; Polyporaceae; Wood | 2018 |
Comparative study of chemical and topological structure of macromolecules of lignins of birch (Betula verrucosa) and apple (Malus domestica) wood.
Topics: Algorithms; Betula; Lignin; Macromolecular Substances; Malus; Models, Chemical; Molecular Structure; Spectrum Analysis; Thermodynamics; Wood | 2019 |
Enzyme kinetics of fungal glucuronoyl esterases on natural lignin-carbohydrate complexes.
Topics: Basidiomycota; Betula; Carbohydrate Metabolism; Chromatography, Liquid; Esterases; Kinetics; Lignin; Mass Spectrometry; Sordariales | 2019 |
Catalytic depolymerization of lignin over cesium exchanged and transition-metal substituted heterogeneous polyoxometalates.
Topics: Betula; Catalysis; Cesium; Lignin; Molecular Structure; Oxidation-Reduction; Polymerization; Spectrum Analysis; Temperature; Tungsten Compounds | 2019 |
The Hydrophobicity of Lignocellulosic Fiber Network Can Be Enhanced with Suberin Fatty Acids.
Topics: Betula; Fatty Acids; Hydrophobic and Hydrophilic Interactions; Lignin; Lipids; Mass Spectrometry; Microscopy, Electron, Scanning; Plant Bark | 2019 |
Delignification and Ionic Liquid Treatment of Wood toward Multifunctional High-Performance Structural Materials.
Topics: Betula; Chlorides; Ionic Liquids; Lignin; Pliability; Porosity; Tensile Strength; Wood | 2020 |
Microwave-assisted catalytic depolymerization of lignin from birch sawdust to produce phenolic monomers utilizing a hydrogen-free strategy.
Topics: Betula; Catalysis; Hydrogen; Lignin; Microwaves | 2021 |
Analysis of the functional group composition of the spruce and birch phloem lignin.
Topics: Betula; Lignin; Magnetic Resonance Spectroscopy; Phloem; Pinaceae | 2021 |
The coordinated action of glucuronoyl esterase and α-glucuronidase promotes the disassembly of lignin-carbohydrate complexes.
Topics: Bacillaceae; Bacterial Proteins; Betula; Biomass; Enzyme Assays; Esterases; Gammaproteobacteria; Gene Expression; Glucuronic Acid; Glycoside Hydrolases; Hydrolysis; Kinetics; Lignin; Polysaccharides; Recombinant Proteins; Wood; Xylans | 2021 |
Simultaneous production of 1,6-hexanediol, furfural, and high-purity lignin from white birch: Process integration and techno-economic evaluation.
Topics: Betula; Biomass; Furaldehyde; Glycols; Lignin | 2021 |
Isolation and modification of nano-scale cellulose from organosolv-treated birch through the synergistic activity of LPMO and endoglucanases.
Topics: Betula; Biomass; Cellulase; Cellulose; Hydrolysis; Laccase; Lignin; Mixed Function Oxygenases; Nanofibers; Phanerochaete; Saccharomycetales; Sordariales; Substrate Specificity; Xylosidases | 2021 |
Water stable colloidal lignin-PVP particles prepared by electrospray.
Topics: Betula; Calorimetry, Differential Scanning; Colloids; Electricity; Electrochemistry; Elements; Lignin; Particle Size; Povidone; Solutions; Spectroscopy, Fourier Transform Infrared; Surface Properties; Thermogravimetry; Water | 2021 |
Effect of alkali-treated birch sawdust on the lignocellulase secretion and exo-polysaccharide production by Inonotus obliquus under submerged fermentation and its lignocellulose degradation patterns.
Topics: Alkalies; Betula; Fermentation; Inonotus; Lignin; Polysaccharides | 2022 |
An Efficient Method of Birch Ethanol Lignin Sulfation with a Sulfaic Acid-Urea Mixture.
Topics: Betula; Ethanol; Lignin; Molecular Weight; Sulfates; Sulfur; Urea | 2022 |
Characterizing lignin-containing microfibrillated cellulose based on water interactions, fibril properties, and imaging.
Topics: Betula; Cellulose; Lignin; Microscopy, Electron, Scanning; Water | 2023 |
Metabolic Fate of Lignin in Birch Glucuronoxylan Extracts as Dietary Fiber Studied in a Rat Model.
Topics: Animals; Betula; Dietary Fiber; Lignin; Rats; Xylans | 2023 |