Biotechnology Bulletin ›› 2013, Vol. 0 ›› Issue (7): 66-70.
• Study Report • Previous Articles Next Articles
Zhang Yunting, Yu Dingqun, Cheng Yi, Tang Haoru, Wang Qingming, Zhang Yong
Received:
2013-03-12
Revised:
2013-07-19
Online:
2013-07-19
Published:
2013-09-02
Zhang Yunting, Yu Dingqun, Cheng Yi, Tang Haoru, Wang Qingming, Zhang Yong. Cloning and Expression Analysis of Chalcone Synthase Gene from Rosa hybrida[J]. Biotechnology Bulletin, 2013, 0(7): 66-70.
[1] Grotewold E. The genetics and biochemistry of floral pigments[J]. Plant Biology, 2006, 57:761-780. [2] Tanaka Y, Tsuda S, et al. Metabolic engineering to modify flower color[J]. Plant Cell Physiology, 1998, 39(11):1119-1126. [3] Koes R, Verweij W, Quattocchio F. Flavonoids:a colorful model for the regulation and evolution of biochemical pathway[J]. Trends in Plant Science, 2005, 10(5):236-242. [4] Heller W, Hahlbrock K. Highly purified“flavanone synthase”from parsley catalyzes the formation of naringenin chalcon[J]. Arch Biochem Biophysiol, 1980, 200(2):617-619. [5] Holton TA, Cornish EC. Genetics and biochemistry of anthocyanin biosynthesis[J]. Plant Cell, 1995, 7(7):1071-1083. [6] Koes RE, Francesca Q, Joseph NM. The flavonoid biosynthetic path way in plants:function and evolution[J]. Bioessays, 1994, 16(2):123-132. [7] Martin CR. Structure, function, and regulation of the chalcone synthase[C]//Internation Review of Cytology, 1993, 147:233-284. [8] Kreuzaler F, Raggh H, Fautz E, et al. UV-induction of chalcone sy-nthase mRNA in cell suspension culture of Petroselinum hortense[J]. Proc Natl Acad Sci USA, 1983, 80(9):2591-2593. [9] Lamb CJ, Lawton MA, Dron M, Dixon RA. Signal and construction mechanisms for activation of plant defenses against microbialatt-ack[J]. Cell, 1989, 56(2):215-224. [10] Johzuka-Hisatomi Y, Hino A, Mori T, et al. Characterization of the chalcone synthase genes expressed in flowers of the Common and Japanese morning glories[J]. Genes Genet Syst, 1999, 74(4):141-147. [11] Elomaa P, Honkanen J, et al. Agrobacterium-mediated transfer of antisense chalcone synthase cDNA to Gerbera hybrida inhibits flower pigmentation[J]. Biotechnology, 1993, 11:508-511. [12] Stafford HA. Flavonoid evolution:an enzymic approach[J]. Plant Physiol, 1991, 96:680-685. [13] Kubitzki K. Phenylpropanoid metabolism in relation to land plant origin and diversification[J]. Plant Physiol, 1987, 131:17-24. [14] Markham KR. Distribution of flavonoids in the lower plants and its evolutionary significance. in the Flavonoids(Harborne JB, ed)[M]. London:Chapman and Hall, 1988:427-468. [15] Markham KR. Bryophyte flavonoids, their struc-tures, distribution, and evolutionary significance[M]//Brophytes their chemistry and chemical taxonomy(Zinsmeister HD, Mues R, eds.). Oxford: Clarendon Press, 1990:143-161. [16] 杨丽, 刘雅莉, 王跃进, 等. 百合查尔酮合成酶(CHS)基因的克隆与分析[J].西北植物学报, 2006, 26(5):933-936. [17] Coen ES, Carpenter R, Martin C. Transposable elements generate novel spatial patterns of gene expression in Antirrhinum majus[J]. Cell, 1986, 47(2):285. [18] Van der Krol AR, Mur LA, de Lange P, et al. Antisense chalcone synthase genes in petuhia:Visualization of variable transgene expression[J]. Mol Gen Genet, 1990, 220:204-212. [19] Elomaa P, Honkanen J, Puska R, et al. Agrobacterium-mediated tra-nsfer of Antisense chalcone synthase cDNA to gerbera hybrida inh-ibits flower pigmentatim[J]. Biotechnology, 1993, 11:508-511. [20] Gutterson NC, Napoli C, Lemieux C, et al. Modification of flower color in florist’s chrysanthemum:Production of a white-genetics[J]. BioTechnology, 1994, 12:268-271. [21] Suzuki K, Xue HM, Tanaka Y, et al. Flower color modifi-cations of Torenia hybrida by cosuppression of anthocyanin biosynthesis genes[J]. Molecular Breeding, 2000, 6(3):239-246. [22] Koseki M, Goto K, Masuta C, Kanazawa A. The star-type color pattern in Petunia hybrida red star flowers is induced bysequence-specific degradation of chalcone synthase RNA[J]. Plant & Cell Physiology, 2005, 46(11):1879-1883. [23] 祝钦拢. 叶色形成相关的花色素苷生物合成途径的分子调控研究[D].重庆:西南大学, 2006. [24] Yu DQ, Tang HR, Zhang Y, et al. Comparison and improvement of different methods of RNA isolation from strawberry(Fragria × ananassa)[J]. Journal of Agricultural Science, 2012, 4(7):51-56. [25] Gasic K, Hernandez A, Korban SS. RNA extraction from different apple tissues rich in polyphenols and polysaccharides for cDNA library construction[J]. Plant Molecular Biology Reporter, 2004, 22(4):437-438. [26] Djami-Tchatchoua AT, Straker CJ. The isolation of high quality RNA from the fruit of avocado(Persea americana Mill.)[J]. South Afri-can Journal of Botany, 2011, 78:44-46. [27] Wang LM, Stegemann JP. Extraction of high quality RNA from polysaccharide matrice using cetlytrimethylammonium bromide[J]. Biomaterials, 2010, 31(7):1612. [28] Wang XH, Xiao HL, Chen GX, et al. Isolation of high-quality RNA from Reaumuria soongorica, a desert plant rich in secondary metabolites[J]. Mol Biotechnol, 2011, 48:165-172. [29] Zhang J, Wang X, Yu O, et al. Metabolic profiling of strawberry(Fragaria × ananassa Duch.)during fruit development and maturation[J]. Journal of Experimental Botany, 2011, 62(3):1103-1118. [30] Hartmann U, Valentine WJ, Christie JM, et al. Identification of UV/blue light response elements in the Arabidopsis thaliana chalcone synthase promoter using a homologous protoplast transient expression system[J]. Plant Molecular Biology, 1998, 36(5):741-754. [31] Koes E, Spelt CE, van den Elzen PJ, Mol JN. Cloning and molecular characterization of the chalcone synthase multigene family of Petunia×hybrida[J]. Gene, 1989, 81(2):245-257. [32] Knogge W, Schmelzer E, et al. The role of chalcone synthase in the regulation of flavonoiel biosynthesis in developing out primary leaves[J]. Arch Biochem Biophys, 1986, 250:364-372. [33] Kose RE, Spelt CE, Reiy HJ, et al. Floral tissue of petunia hybrida expresses only one member of the chalcone synthase multigene family[J]. Nucleic AcidsRes, 1986, 14:5229-5239. [34] Mahnug S, Courdavault V, Thiersault M, et al. Epidermis is a pivotal site of least four secondary metabolic pathways in Catharanthus roseus aerial organs[J]. Planta, 2006, 223(6):1191-1200. [35] 宋婷婷, 沈红香, 姚允聪, 等. 苹果属观赏海棠 McCHS 基因的克隆及实时定量[J].园艺学报, 2010, 37(2):269-276. |
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