Scientia Agricultura Sinica ›› 2019, Vol. 52 ›› Issue (15): 2678-2685.doi: 10.3864/j.issn.0578-1752.2019.15.011
• HORTICULTURE • Previous Articles Next Articles
XU YunMei1,LI YuMei1,3,JIA YuXin2,ZHANG ChunZhi2,LI CanHui1,HUANG SanWen2,ZHU GuangTao1(
)
| [1] | 李颖, 李广存, 李灿辉, 屈冬玉, 黄三文 . 二倍体杂种优势马铃薯育种的展望. 中国马铃薯, 2013,27(2):96-99. |
| LI Y, LI G C, LI C H, QU D Y, HUANG S W . Prospects of diploid hybrid breeding in potato. Chinese Potato Journal, 2013,27(2):96-99. (in Chinese) | |
| [2] | LIU Y, TIKUNOV Y, SCHOUTEN R E, MARCELIS L F M, VISSER R G F, BOVY A . Anthocyanin biosynthesis and degradation mechanisms in Solanaceous vegetables: A review. Frontiers in Chemistry, 2018,6:52. |
| [3] | LACHMAN J, HAMOUZ K . Red and purple coloured potatoes as a significant antioxidant source in human nutrition - A review. Plant Soil and Environment, 2005,51(11):477-482. |
| [4] | ZHANG Y F, CHENG S P, DE JONG D, GRIFFITHS H, HALITSCHKE R, DE JONG W . The potato R locus codes for dihydroflavonol 4-reductase. Theoretical and Applied Genetics, 2009,119(5):931-937. |
| [5] | JUNG C S, GRIFFITHS H M, DE JONG D M, CHENG S P, BODIS M, DE JONG W S . The potato P locus codes for flavonoid 3',5'- hydroxylase. Theoretical and Applied Genetics, 2005,110(2):269-275. |
| [6] | DE JONG W S, DE JONG D M, DE JONG H, KALAZICH J, BODIS M . An allele of dihydroflavonol 4-reductase associated with the ability to produce red anthocyanin pigments in potato (Solanum tuberosum L.). Theoretical and Applied Genetics, 2003,107(8):1375-1383. |
| [7] | JIANG P, RAUSHER M . Two genetic changes in cis-regulatory elements caused evolution of petal spot position in Clarkia. Nature Plants, 2018,4(1):14-22. |
| [8] | HUANG D, WANG X, TANG Z Z, YUAN Y, XU Y T, HE J X, JIANG X L, PENG S A, LI L, BUTELLI E, DENG X X, XU Q . Subfunctionalization of the Ruby2-Ruby1 gene cluster during the domestication of citrus. Nature Plants, 2018,4(11):930-941. |
| [9] | DODDS K S, LONG D H . The inheritance of colour in diploid potatoes. I. Types of anthocyanidins and their genetic loci. Journal of Genetics, 1955,53(1):136-149. |
| [10] | DODDS K S, LONG D H . The inheritance of colour in diploid potatoes. II. A three-factor linkage group. Journal of Genetics, 1956,54(1):27-41. |
| [11] | JUNG C S, GRIFFITHS H M, DE JONG D M, CHENG S P, BODIS M, KIM T S, DE JONG W S . The potato developer (D) locus encodes an R2R3 MYB transcription factor that regulates expression of multiple anthocyanin structural genes in tuber skin. Theoretical and Applied Genetics, 2009,120(1):45-57. |
| [12] | DE JONG H . Inheritance of pigmented tuber flesh in cultivated diploid potatoes. American Potato Journal, 1987,64(7):337-343. |
| [13] | ZHANG Y F, JUNG C S, DE JONG W S . Genetic analysis of pigmented tuber flesh in potato. Theoretical and Applied Genetics, 2009,119(1):143-150. |
| [14] | ZHANG H L, YANG B, LIU J, GUO D L, HOU J, CHEN S C, SONG B T, XIE C H . Analysis of structural genes and key transcription factors related to anthocyanin biosynthesis in potato tubers. Scientia Horticulturae, 2017,225:310-316. |
| [15] | 刘秀丽, 吕红, 范小峰 . 两种茄科植物基因组提取方法的比较. 陇东学院学报, 2017,28(1):53-56. |
| LIU X L, LÜ H, FAN X F . A Comparison on the methods for genome extraction on two plant species of solanaceae. Journal of Longdong University, 2017,28(1):53-56. (in Chinese) | |
| [16] | The Potato Genome Sequencing Consortium. Genome sequence and analysis of the tuber crop potato. Nature, 2011,475(7355):189-195. |
| [17] | HUANG W J, KHALDUN A B M, LÜ H Y, DU L W, ZHANG C J, WANG Y . Isolation and functional characterization of a R2R3-MYB regulator of the anthocyanin biosynthetic pathway from Epimedium sagittatum. Plant Cell Reports, 2016,35(4):883-894. |
| [18] | PEREZ-DIAZ J R, PEREZ-DIAZ J, MADRID-ESPINOZA J, GONZALEZ-VILLANUEVA E, MORENO Y, RUIZ-LARA S . New member of the R2R3-MYB transcription factors family in grapevine suppresses the anthocyanin accumulation in the flowers of transgenic tobacco. Plant Molecular Biology, 2016,90(1/2):63-76. |
| [19] | LIU F, YANG Y J, GAO J W, MA C L, BI Y P . A comparative transcriptome analysis of a wild purple potato and its red mutant provides insight into the mechanism of anthocyanin transformation. PLoS ONE, 2018,13(1):e0191406. |
| [20] | LIU Y H, LIN-WANG K, DENG C, WARRAN B, WANG L, YU B, YANG H Y, WANG J, ESPLEY R V, ZHANG J L, WANG D, ALLAN A C . Comparative transcriptome analysis of white and purple potato to identify genes involved in anthocyanin biosynthesis. PLoS ONE, 2015,10(6):e0129148. |
| [21] | HUANG W J, KHALDUN A B M, CHEN J J, ZHANG C J, LÜ H Y, YUAN L, WANG Y . A R2R3-MYB transcription factor regulates the flavonol biosynthetic pathway in a traditional Chinese medicinal plant, Epimedium sagittatum. Frontiers in Plant Science, 2016,7:1089. |
| [22] | KOES R E, QUATTROCCHIO F, MOL J N M . The flavonoid biosynthetic pathway in plants: function and evolution. Bioessays, 1994,16(2):123-132. |
| [23] | HOLTON T A, BRUGLIERA F, LESTER D R, TANAKA Y, HYLAND C D HYLAND C D HYLAND C D HYLAND C D HYLAND C D, MENTING J G T, LU C Y, FARCY E, STEVENSON T W . Cloning and expression of cytochrome P450 genes controlling flower colour. Nature, 1993,366(6452):276-279. |
| [24] | HOLTON T A, CORNISH E C . Genetics and biochemistry of anthocyanin biosynthesis. Plant Cell, 1995,7(7):1071-1083. |
| [25] | BOSS P K, DAVIES C, ROBINSON S P . Expression of anthocyanin biosynthesis pathway genes in red and white grapes. Plant Molecular Biology, 1996,32(3):565-569. |
| [26] | LISTER C E, LANCASTER J E, WALKER J R L . Developmental changes in enzymes of flavonoid biosynthesis in the skins of red and green apple cultivars. Journal of the Science of Food & Agriculture, 1996,71(3):313-320. |
| [27] | DE JONG H . Inheritance of anthocyanin pigmentation in the cultivated potato: A critical review. American Potato Journal, 1991,68(9):585-593. |
| [28] | ENDELMAN J B, JANSKY S H . Genetic mapping with an inbred line-derived F2 population in potato. Theoretical and Applied Genetics, 2016,129(5):935-943. |
| [29] | SALAMAN R N . The inheritance of colour and other characters in the potato. Journal of Genetics, 1911,5(1):192-193. |
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