The Production of Methanol by Flowering Plants and the Global Cycle of Methanol
暂无分享,去创建一个
[1] R. Bourbonnais,et al. Demethylation and delignification of kraft pulp by Trametes versicolor laccase in the presence of 2,2′-azinobis-(3-ethylbenzthiazoline-6-sulphonate) , 1992, Applied Microbiology and Biotechnology.
[2] W. Laetsch,et al. Pectate distribution and esterification in Dubautia leaves and soybean nodules, studied with a fluorescent hybridization probe , 1989, Planta.
[3] K. Eriksson,et al. Methanol formation during lignin degradation by Phanerochaete chrysosporium , 2004, Applied Microbiology and Biotechnology.
[4] M. Andreae,et al. Emission of trace gases and aerosols from biomass burning , 2001 .
[5] James Lee,et al. OH and HO2 measurements in a forested region of north-western Greece , 2001 .
[6] R. A. Cox,et al. Atmospheric chemistry of small organic peroxy radicals , 2001 .
[7] J. Orlando,et al. The Atmospheric Chemistry of Glycolaldehyde , 2001 .
[8] D. M. Cunnold,et al. Evidence for Substantial Variations of Atmospheric Hydroxyl Radicals in the Past Two Decades , 2001, Science.
[9] A. Guenther,et al. Canopy level fluxes of 2-methyl-3-buten-2-ol, acetone, and methanol by a portable relaxed eddy accumulation system. , 2001, Environmental science & technology.
[10] A. Goldstein,et al. Fluxes of oxygenated volatile organic compounds from a ponderosa pine plantation , 2001 .
[11] Stephen C. Fry,et al. The Growing Plant Cell Wall: Chemical and Metabolic Analysis , 2001 .
[12] P. Crutzen,et al. The Impact of Precipitation Scavenging on the Transport of Trace Gases: A 3-Dimensional Model Sensitivity Study , 2000 .
[13] P. Crutzen,et al. Emissions of volatile organic compounds from Quercus ilex L. measured by Proton Transfer Reaction Mass Spectrometry under different environmental conditions , 2000 .
[14] P. Nowacki,et al. CAPRAM2.3: A Chemical Aqueous Phase Radical Mechanism for Tropospheric Chemistry , 2000 .
[15] F. Rébeillé,et al. Metabolism of methanol in plant cells. Carbon-13 nuclear magnetic resonance studies. , 2000, Plant physiology.
[16] Michael B. McElroy,et al. Three-dimensional climatological distribution of tropospheric OH: Update and evaluation , 2000 .
[17] D. Shallcross,et al. A Lagrangian Study of the Three-Dimensional Transport of Boundary-Layer Tracers in an Idealised Baroclinic-Wave Life-Cycle , 2000 .
[18] D. Jacob,et al. Distribution and fate of selected oxygenated organic species in the troposphere and lower stratosphere over the Atlantic , 2000 .
[19] J. Lelieveld,et al. High spatial and temporal resolution measurements of primary organics and their oxidation products over the tropical forests of Surinam. , 2000 .
[20] W. Hao,et al. Emissions of formaldehyde, acetic acid, methanol, and other trace gases from biomass fires in North Carolina measured by airborne Fourier transform infrared spectroscopy , 1999 .
[21] Anne Monod,et al. Impact of clouds on the tropospheric ozone budget: Direct effect of multiphase photochemistry of soluble organic compounds , 1999 .
[22] A. Goldstein,et al. In situ measurements of C2‐C10 volatile organic compounds above a Sierra Nevada ponderosa pine plantation , 1999 .
[23] Houghton,et al. The U.S. Carbon budget: contributions from land-Use change , 1999, Science.
[24] P. Crutzen,et al. Biomass burning as a source of formaldehyde, acetaldehyde, methanol, acetone, acetonitrile, and hydrogen cyanide , 1999 .
[25] P. Crutzen,et al. Acetone, methanol, and other partially oxidized volatile organic emissions from dead plant matter by abiological processes: Significance for atmospheric HOx chemistry , 1999 .
[26] R. Steinbrecher,et al. Biosynthesis of Organic Compounds Emitted by Plants , 1999 .
[27] Peter J. Milne,et al. Observations of nonmethane hydrocarbons and oxygenated volatile organic compounds at a rural site in the southeastern United States , 1998 .
[28] D. Ehhalt,et al. Highly Time Resolved Measurements of OH during POPCORN Using Laser-Induced Fluorescence Spectroscopy , 1998 .
[29] In-situ Measurements of Tropospheric Hydroxyl Radicals by Folded Long-Path Laser Absorption During the Field Campaign POPCORN , 1998 .
[30] J. Randerson,et al. Primary production of the biosphere: integrating terrestrial and oceanic components , 1998, Science.
[31] P. Doskey,et al. Air‐surface exchange of nonmethane organic compounds at a grassland site: Seasonal variations and stressed emissions , 1998 .
[32] Ronald G. Prinn,et al. Atmospheric trend and lifetime of chlorodifluoromethane (HCFC‐22) and the global tropospheric OH concentration , 1998 .
[33] A. Femenia,et al. Tissue-related changes in methyl-esterification of pectic polysaccharides in cauliflower (Brassica oleracea L. var. botrytis) stems , 1998, Planta.
[34] I. Galbally,et al. Emissions of volatile organic compounds (primarily oxygenated species) from pasture , 1998 .
[35] D. Tieman,et al. Pectin Methylesterase Regulates Methanol and Ethanol Accumulation in Ripening Tomato (Lycopersicon esculentum) Fruit* , 1998, The Journal of Biological Chemistry.
[36] Mingkui Cao,et al. Net primary and ecosystem production and carbon stocks of terrestrial ecosystems and their responses to climate change , 1998 .
[37] I. Galbally,et al. Biogenesis of methanol and its emission from flowering plants , 1998 .
[38] A. Baron,et al. Release of Methanol and Depolymerization of Highly Methyl Esterified Apple Pectin with an Endopolygalacturonase fromAspergillus nigerand Pectin Methylesterases fromA. nigeror from Orange , 1997 .
[39] E. Leibrock,et al. Method for measurement of volatile oxygenated hydrocarbons in ambient air , 1997 .
[40] Tadashi Ishii,et al. Structure and functions of feruloylated polysaccharides , 1997 .
[41] R. Loiudice,et al. Presence of Residual Pectin Methylesterase Activity in Thermally Stabilized Industrial Fruit Preparations , 1997 .
[42] M. Riederer,et al. Sorption of volatile C1 to C6 alkanols in plant cuticles , 1997 .
[43] F. Fehsenfeld,et al. Nonmethane hydrocarbon measurements during the Tropospheric OH Photochemistry Experiment , 1997 .
[44] M. Haas,et al. A spectrophotometric assay for the enzymatic demethoxylation of pectins and the determination of pectinesterase activity. , 1997, Analytical biochemistry.
[45] D J Cosgrove,et al. Assembly and enlargement of the primary cell wall in plants. , 1997, Annual review of cell and developmental biology.
[46] R. Fall,et al. Leaf methanol — the simplest natural product from plants , 1996 .
[47] N. Carpita. STRUCTURE AND BIOGENESIS OF THE CELL WALLS OF GRASSES. , 1996, Annual review of plant physiology and plant molecular biology.
[48] R. Fall. Cycling of Methanol between Plants, Methylotrophs and the Atmosphere , 1996 .
[49] G. Condemine,et al. Regulation of pectinolysis in Erwinia chrysanthemi. , 1996, Annual review of microbiology.
[50] S. Montzka,et al. Hydrocarbon measurements in the southeastern United States: The Rural Oxidants in the Southern Environment (ROSE) Program 1990 , 1995 .
[51] F. Fehsenfeld,et al. Measurements of hydrocarbons, oxygenated hydrocarbons, carbon monoxide, and nitrogen oxides in an urban basin in Colorado: Implications for emission inventories , 1995 .
[52] P. Crutzen,et al. High concentrations and photochemical fate of oxygenated hydrocarbons in the global troposphere , 1995, Nature.
[53] A. Kumar,et al. Cell-Free Synthesis of Pectin (Identification and Partial Characterization of Polygalacturonate 4-[alpha]-Galacturonosyltransferase and Its Products from Membrane Preparations of Tobacco Cell-Suspension Cultures) , 1995, Plant physiology.
[54] R. Fall,et al. Methanol Emission from Leaves (Enzymatic Detection of Gas-Phase Methanol and Relation of Methanol Fluxes to Stomatal Conductance and Leaf Development) , 1995, Plant physiology.
[55] G. N. Richards,et al. Measurement and modeling of air toxins from smoldering combustion of biomass. , 1995, Environmental science & technology.
[56] C. N. Hewitt,et al. A global model of natural volatile organic compound emissions , 1995 .
[57] F. Rowland,et al. Methyl halide hydrolysis rates in natural waters , 1995 .
[58] N. Carpita,et al. Changes in pectin structure and localization during the growth of unadapted and NaCl-adapted tobacco cells , 1994 .
[59] C. Morvan,et al. Structural features of water-soluble pectins from mung bean hypocotyls , 1994 .
[60] S. Clarke,et al. Characterization of plant L-isoaspartyl methyltransferases that may be involved in seed survival: purification, cloning, and sequence analysis of the wheat germ enzyme. , 1993, Biochemistry.
[61] R. Fall,et al. Detection of substantial emissions of methanol from plants to the atmosphere , 1993 .
[62] N. Carpita,et al. Structural models of primary cell walls in flowering plants: consistency of molecular structure with the physical properties of the walls during growth. , 1993, The Plant journal : for cell and molecular biology.
[63] H. Cyr,et al. Magnitude and patterns of herbivory in aquatic and terrestrial ecosystems , 1993, Nature.
[64] R. Koppmann,et al. Light hydrocarbons in the surface water of the mid-Atlantic , 1992 .
[65] I. Reid. Demethylation of the lignin model dimer 1-(3',4'-dimethoxyphenyl)-2-(o-methoxyphenoxy)-propane-1,3-diol by the white-rot fungus Phlebia tremellosa , 1992 .
[66] N. Carpita,et al. Changes in Esterification of the Uronic Acid Groups of Cell Wall Polysaccharides during Elongation of Maize Coleoptiles. , 1992, Plant physiology.
[67] J. Ricard,et al. Pectin methylesterase, metal ions and plant cell-wall extension. Hydrolysis of pectin by plant cell-wall pectin methylesterase. , 1991, The Biochemical journal.
[68] J. Ricard,et al. Pectin methylesterase, metal ions and plant cell-wall extension. The role of metal ions in plant cell-wall extension. , 1991, The Biochemical journal.
[69] Paul J. Crutzen,et al. The role of clouds in tropospheric photochemistry , 1991 .
[70] P. Crutzen,et al. Biomass Burning in the Tropics: Impact on Atmospheric Chemistry and Biogeochemical Cycles , 1990, Science.
[71] K. Mopper,et al. Hydroxyl radical photoproduction in the sea and its potential impact on marine processes. , 1990, Science.
[72] K. Mopper,et al. Determination of photochemically produced hydroxyl radicals in seawater and freshwater , 1990 .
[73] D. Jacob,et al. Least independent variables method for simulation of tropospheric ozone , 1989 .
[74] W. A. Corpe,et al. Ecology of the methylotrophic bacteria on living leaf surfaces , 1989 .
[75] J. Lelieveld,et al. Zonal average cloud characteristics for global atmospheric chemistry modeling , 1989 .
[76] M. Jarvis,et al. A survey of the pectic content of nonlignified monocot cell walls. , 1988, Plant physiology.
[77] D. Minson,et al. Energy and protein values of four forages, including a comparison between tropical and temperate species , 1988 .
[78] J. Preiss. The biochemistry of plants. A comprehensive treatise. Volume 14. Carbohydrates. , 1988 .
[79] Antony Bacic,et al. 8 – Structure and Function of Plant Cell Walls , 1988 .
[80] R. Farrell,et al. Enzymatic "combustion": the microbial degradation of lignin. , 1987, Annual review of microbiology.
[81] Pamela A. Matson,et al. HUMAN APPROPRIATION OF THE PRODUCTS OF PHOTOSYNTHESIS , 1986 .
[82] Roger Atkinson,et al. Kinetics and mechanisms of the gas-phase reactions of the hydroxyl radical with organic compounds under atmospheric conditions , 1986 .
[83] D. Hall,et al. Photosynthesis In Relation To Plant Production In Terrestrial Environments. , 1986 .
[84] A. Chesson,et al. Preparation and composition of mesophyll, epidermis and fibre cell walls from leaves of perennial ryegrass (lolium perenne) and italian ryegrass (lolium multiflorum) , 1985 .
[85] G. A. Dawson,et al. Tropospheric light alcohols, carbonyls, and acetonitrile: Concentrations in the southwestern United States and Henry's Law data , 1985 .
[86] C. D. Wispelaere. Air Pollution Modeling and Its Application IV , 1985 .
[87] Maurice Demarty,et al. Calcium and the cell wall , 1984 .
[88] R. F. Mcfeeters,et al. Measurement of pectin methylation in plant cell walls. , 1984, Analytical biochemistry.
[89] M. Jarvis. Structure and properties of pectin gels in plant cell walls , 1984 .
[90] P. Albersheim,et al. Structure and function of the primary cell walls of plants. , 1984, Annual review of biochemistry.
[91] R. S. Hanson,et al. Methylotrophic Bacteria: Biochemical Diversity and Genetics , 1983, Science.
[92] P. Liss. Gas Transfer: Experiments and Geochemical Implications , 1983 .
[93] E. Ferguson. In Situ Measurements , 1982 .
[94] E. Morris,et al. Characterization of pectin gelation under conditions of low water activity, by circular dichroism, competitive inhibition and mechanical properties , 1980 .
[95] M. Senda,et al. Oriented structure of pectic polysaccharides in pea epidermal cell walls. , 1980 .
[96] I. Galbally,et al. Destruction of ozone at the earth's surface , 1980 .
[97] I. Galbally,et al. Sulphur uptake from the atmosphere by forest and farmland , 1979, Nature.
[98] J. A. Wells,et al. Volatile constituents of southernpea seed [Vigna unguiculata (L.) Walp.] , 1979 .
[99] P. Liss,et al. Flux of Gases across the Air-Sea Interface , 1974, Nature.
[100] E. Morris,et al. Biological interactions between polysaccharides and divalent cations: The egg‐box model , 1973 .
[101] A. Henglein,et al. Pulse radiolytic study of the site of hydroxyl radical attack on aliphatic alcohols in aqueous solution , 1973 .
[102] R. C. Weast. CRC Handbook of Chemistry and Physics , 1973 .
[103] H. Lineweaver,et al. Pectic Enzymes , 1955, Nature.