张和臣等
, 2011,
植物花朵呈色的分子机制
,
分子植物育种
(online) Vol.9 No.112 pp.1818-1823 (doi: 10.5376/mpb. cn.2011.09.0112)
1823
Petroni K., Cominelli E., Consonni G., Gusmaroli G., Gavazzi
G., and Tonelli C., 2000, The developmental expression of
the maize regulatory gene Hopi determines germination-
dependent anthocyanin accumulation, Genetics, 155(1):
323-336
Quattrocchio F., Wing J.F., van der Woude K., Mol J.N., and
Koes R., 1998, Analysis of bHLH and MYB domain
proteins: Species specific regulatory differences are
caused by divergent evolution of target anthocyanin genes,
Plant J., 13(4): 475-488
Reimold U., Kröger M., Kreuzaler F., and Hahlbrock K., 1983,
Coding and 3' non-coding nucleotide sequence of
chalcone synthase mRNA and assignment of amino acid
sequence of the enzyme, EMBO J., 2(10): 1801-1805
Rowan D.D., Cao M.S., Lin-Wang K., Cooney J.M., Jensen
D.J., Austin P.T., Hunt M.B., Norling C., Hellens R.P.,
Schaffer R.J., and Allan A.C., 2009, Environmental
regulation of leaf color in red 35S:PAP1
Arabidopsis
thaliana
, New Physiol., 182(1): 102-115
Schoenbohm1 C., Martens S., Eder C., Forkmann G., and
Weisshaar B., 2000, Identification of the Arabidopsis
thaliana flavonoid 3’-Hydroxylase gene and functional
expression of the encoded P450 Enzyme, Biol. Chem.,
381(8): 749-753
Solfanelli C., Poggi A., Loreti E., Alpi A., and Perata P., 2006,
Sucrose-specific induction of the anthocyanin biosynthetic
pathway in Arabidopsis, Plant Physiol., 140(2): 637-646
Spelt C., Quattrocchio F., Mol J.N., and Koes R., 2000,
Anthocyanin1 of petunia encodes a basic2helix loop helix
p rotein that directly activates structural anthocyanin genes,
Plant Cell, 12(9): 1619-1632
Springob K., Nakajima J., Yamazaki M., and Saito K., 2003,
Recent advances in the biosynthesis and accumulation of
anthocyanins, Nat. Prod. Rep., 20(3): 288-303
Stiles E.A., Cech N.B., Dee S.M., and Lacey E.P., 2007,
Temperature- sensitive anthocyanin production in flowers
of Plantago lanceolata, Plant Physiol., 129(4): 756-765
Tanaka Y., Brugliera F., Kalc G., Senior M., Dyson B.,
Nakamura,N., Katsumoyo Y., and Chandler S., 2010,
Flower color modification by engineering of the flavonoid
biosynthetic pathway: practical perspectives bioscience,
Biosci. Biotechnol. Biochem., 74(9): 1760-1769
Tanaka Y., Sasaki N., and Ohmiya A., 2008, Biosynthesis of
plant pigments: anthocyanins, betalains and carotenoids,
Plant J., 54(4): 733-749
Teng S., Keurentjes J., Bentsink L., Koornneef M., and
Smeekens S., 2005, Sucrose-specific induction of
anthocyanin biosynthesis in Arabidopsis requires the
MYB75/PAP1 gene, Plant Physiol., 139(4): 1840-1852
Van Tunen A.J., Koes R.E., Spelt C.E., van der Krol A.R.,
Stuitje A.R., Mol J.N., 1988, Cloning of the two chalcone
flavanone isomerase genes from Petunia hybrida:
coordinate, light-regulated and differential expression of
flavonoid genes, EMBO J., 7(5): 1257-1263
Weiss D., 2000, Regulation of flower pigmentation and growth:
multiple signaling pathways control anthocyanin synthesis
in expanding petals, Physiologia plantarum, 110(2):
152-157Zhao Y.P., Chen F.D., and Guo W.M., 2003,
Advances in genetic engineering of flower color of
ornamental plants, Zhiwuxue Tongbao(Chinese Bulletin of
Botany), 20(1): 51-58 (
赵云鹏
,
陈发棣
,
郭维明
, 2003,
观赏植物花色基因工程研究进展
,
植物学通报,
20(1)
:
51-58)
Weiss M.R., 1995, Floral color change: A widespread
functional convergence, Am. J. Bot., 82(2), 167-185
Winkel-Shirley B., 2001, Flavonoid biosynthesis. A colorful
model for genetics biochemistry cell biology and
biotechnology, Plant Physiol., 126(2): 485-493