[1] |
HERRMANN K M. The shikimate pathway: early steps in the biosynthesis of aromatic compounds[J]. Plant Cell, 1995(7): 907-919. |
[2] |
MILLAR G, LEWENDON A, HUNTER M G, et al. The cloning and expression of the aroL gene fromEscherichia coli K12[J]. Biochem J, 1986, 237: 427-437. |
[3] |
MINTON N P, WHITEHEAD P J, ATKINSON T, et al. Nucleotide sequence of an Erwinia chrysanthemi gene encoding shikimate kinase[J]. Nucl Acids Res, 1989, 17: 1769. |
[4] |
CHARLES I J, KEYTE J W, BRAMMAR W J, et al. The isolation and nucleotide sequence of the complex AROM locus of Aspergillus nidulans[J]. Nucl Acids Res, 1986, 14: 2201-2213. |
[5] |
DUNCAN K, EDWARDS R M, COGGINS J R. The pentafunctional arom enzyme of Saccharomyces cerevisiae is a mosaic of monofunctional domains[J]. Biochem J, 1987, 246: 375-386. |
[6] |
MOUSDALE D M, COGGINS J R. Subcellular localization of the common shikimate-pathway enzymes in Pisum sativum L[J]. Planta, 1985, 163: 241-249. |
[7] |
PEREIRA J H, OLIVEIRA J S, CANDURI F, et al. Structure of shikimate kinase from Mycobacterium tuberculosis reveals the binding of shikimic acid[J]. Acta Crystallogr Sect D Biol Crystallogr, 2004, 60: 2310-2319. |
[8] |
PELEG H, GACON K, SCHLICH P, et al. Bitterness and astringency of flavan-3-ol monomers, dimmers and trimers[J]. J Sci Food Agric, 1999, 79(8): 1123-1128. |
[9] |
VIDAL S, FRANCIS L, GUYOT S, et al. The mouth-feel properties of grape and apple proanthocyanidinss in wine-like medium[J]. J Sci Food Agric, 2003, 83(6): 564-573. |
[10] |
SKERGET M, KOTNIK P, HADOLIN M, et al. Phenols, proanthocyanidins, flavones and flavonols in some plant materials and antioxidant activities[J]. Food Chem, 2005, 89(2): 191-198. |
[11] |
RASMUSSEN S E, FREDERIKSEN H, KROGHOLM K S. Dietary proanthocyanidins: occurrence dietary intake, bioavailability, and protection against cardiovascular disease[J]. Mol Nutr Food Res, 2005, 49: 159-174. |
[12] |
HE F, FANG X X, HU M, et al. Preparation and biological application of antibodies against leucoanthocyanidin reductase and anthocyanidin reductase from grape berry[J]. Vitis, 2009, 48: 69-75. |
[13] |
BOGS J, DOWNEY M O, HARVEY J S, et al. Proanthocyanidin synthesis and expression of genes encoding leucoanthocya-nidin reductase and anthocyanidin reductase in developing grape berries and grapevine leaves[J]. Plant Physiol, 2005, 139(2): 652-663. |
[14] |
WALKER J E, SARASTE M, RUNSWICK M J, et al. Distantly related sequences in the alpha-and beta-subunits of ATP synthase, myosin, kinases and other ATP-requiring enzymes and acommon nucleotide binding fold[J]. EMBO J, 1982(1): 945-951. |
[15] |
GU Y, RESHETNIKOVA L, LI Y, et al. Crystal structure of shikimate kinase from Mycobacterium tuberculosis reveals the dynamic role of the LID domain in catalysis[J]. J Mol Biol, 2002, 319: 779-789. |
[16] |
ZHANG Z Z, LI X X, ZHU B Q, et al. Molecular characterization and expression analysis on two isogenes encoding 3-deoxyd-arabino-heptulosonate 7-phosphate synthase in grapes[J]. Mol Biol Rep, 2011, 38: 4739– 4747. |
[17] |
张珍珍, 李小溪, 问亚琴, 等. 葡萄5-烯醇式丙酮酰莽草酸-3-磷酸合成酶基因的克隆及表达分析[G] / / 国际智能信息技术应用研究学会. 2010年国际细胞生物学、生物学、生物工程会议论文集. [出版地不详]: 美国IEEE出版社, 2010: 561-566. |
[18] |
|
[19] |
KOJI K, TAKUYA K, MITSURU A, et al. Identification of three shikimate kinase genes in rice: characterization of their differential expression during panicle development and of the enzymatic activities of the encoded proteins[J]. Planta, 2005, 222: 438-447. |