Biosynthesis of gallic acid in Rhus typhina: discrimination between alternative pathways from natural oxygen isotope abundance.
暂无分享,去创建一个
[1] N. Ishikura. Incorporation rate of shikimic acid-14C and phenylalanine-14C into gallic acid inRhus andAcer leaves , 1975, Experientia.
[2] R. Dahlgren,et al. Tannins in nutrient dynamics of forest ecosystems - a review , 2003, Plant and Soil.
[3] C. Gerhäuser,et al. Isolation and potential cancer chemopreventive activities of phenolic compounds of beer , 2002, Phytochemistry Reviews.
[4] J. Andrade,et al. Anticancer activity of phenolic acids of natural or synthetic origin: a structure-activity study. , 2003, Journal of medicinal chemistry.
[5] William T. Anderson,et al. Separating soil and leaf water 18O isotopic signals in plant stem cellulose , 2003 .
[6] R. Werner. The Online 18O/ 16O Analysis: Development and application , 2003, Isotopes in environmental and health studies.
[7] R. Werner. THE ONLINE 18 O= 16 O ANALYSIS: DEVELOPMENT AND APPLICATION , 2003 .
[8] V. Ossipov,et al. Gallic acid and hydrolysable tannins are formed in birch leaves from an intermediate compound of the shikimate pathway , 2003 .
[9] H. Schmidt,et al. The $$ \delta{}^{18}{\rm O}$$ -value of the p-OH group of L-tyrosine permits the assignment of its origin to plant or animal sources , 2002 .
[10] H. Schmidt,et al. 18O pattern and biosynthesis of natural plant products. , 2001, Phytochemistry.
[11] J. W. Frost,et al. Aromatic inhibitors of dehydroquinate synthase: synthesis, evaluation and implications for gallic acid biosynthesis. , 2001, Bioorganic & medicinal chemistry letters.
[12] W. Brand,et al. Referencing strategies and techniques in stable isotope ratio analysis. , 2001, Rapid communications in mass spectrometry : RCM.
[13] S. N. Rai,et al. Role of tannins in plant-animal relationship - a review. , 2000 .
[14] M. Gehre,et al. On‐line δ18O measurement of organic and inorganic substances , 1999 .
[15] W. Brand,et al. ConFlo III – an interface for high precision δ13C and δ15N analysis with an extended dynamic range , 1999 .
[16] Gehre,et al. Standardization for oxygen isotope ratio measurement - still an unsolved problem. , 1999, Rapid communications in mass spectrometry : RCM.
[17] W. Eisenreich,et al. Retrobiosynthetic NMR Studies with 13C-Labeled Glucose , 1997, The Journal of Biological Chemistry.
[18] J. Koziet,et al. Determination of the oxygen-18 and deuterium content of fruit and vegetable juice water. An European inter-laboratory comparison study , 1995 .
[19] K. Lee,et al. Antitumor agents, 129. Tannins and related compounds as selective cytotoxic agents. , 1992, Journal of natural products.
[20] T. Coplen. Normalization of oxygen and hydrogen isotope data , 1988 .
[21] J. Hayes,et al. Pyrolytic decarboxylation of aromatic acids as a means of isotopic analysis , 1985 .
[22] R. Saijō. Pathway of Gallic Acid Biosynthesis and Its Esterification with Catechins in Young Tea Shoots , 1983 .
[23] P. Dewick,et al. Phenol biosynthesis in higher plants. Gallic acid. , 1969, The Biochemical journal.
[24] P. Dewick,et al. Observations on the biosynthesis of gallic acid and caffeic acid , 1968 .
[25] S. Yoshida,et al. Biosynthesis of Gallic Acid by a Homogenate of the Leaves of Pelargonium inquinans , 1968 .