[1] 张洁夫,浦惠明,戚存扣,等.甘蓝型油菜花色性状的遗传研究[J].中国油料作物学报,2000,22( 3) :1-4.
[2] Noda N, Aida R, Kishimoto S, et a1. Genetic engineering of novel bluer-colored chrysanthemums produced by accumulation of delphinidin-based anthocyanins [J]. Plant Cell Physiol ,2013,54:1684-1695.
[3] Chalhoub B, Denoeud F, Liu S Y, et al. Early allopolyploid evolution in the post-Neolithic Brassica napus oilseed genome[J]. Science,2014, 345-950.
[4] Brown B A, Clegg M T. In?uence of ?ower color polymorphism on genetic transmission in a natural population of the common morning glory, Ipomoea purpurea [J]. Evolution ,1984,38:796-803.
[5] Grant V. Effects of hybridization and selection on ?oral isolation [J]. Proc Natl Acad Sci USA ,1993),90:990-993.
[6] Jones K N, Reithel J S. Pollinator-mediated selection on a ?ower color polymorphism in experimental populations of Antirrhinum (Scrophulariaceae) [J]. Am J Bot ,2001, 88:447-454.
[7] Fenster C B, Armbruster W S, Wilson P, et a1. Pollination syndromes and ?oral specialization [J]. Annu Rev Ecol Evol Syst ,2004,35:375-403.
[8] Maass D, Arango J, Wust F, et al. Carotenoid Crystal Formation in Arabidopsis and Carrot Roots Caused by Increased Phytoene Synthase Protein Levels[J]. PLoS ONE, 2009, 4 (7):e6373.
[9] Wessinger. A genetic route to yellow flowers[J]. New Phytol,2015,206(4):1193-1195.
[10] Christian Dubos1, Ralf Stracke, Erich Grotewold, et al. MYB transcription factors in Arabidopsis[J]. Trends Plant Sci,2010, 10:573-581.
[11] Imene Hichri, Francxois Barrieu, Jochen Bogs, et al. Recent advances in the transcriptional regulation of the flavonoid biosynthetic pathway[J]. J Exp Bot,2011,8, pp. 2465–2483.
[12] Casimiro Soriguer I, Narbona E, Buide M L, et a1. Transcriptome and biochemical analysis of a flower color polymorphism in Silene littorea (Caryophyllaeeae) [J].Front Plant Sci,2016,7:204.
[13] 曾德志.不同颜色油菜花瓣中主要类胡萝卜素的含量及相关基因的表达分析[D].成都:四川农业大学,2013.
[14] Li H B, Zhu L X, Yuan G G, et al. Fine mapping and candidate gene analysis of an anthocyanin-rich gene, BnaA.PL1, conferring purple leaves in Brassica napus L[J]. Mol Genetics Genomics, 2016,291:1523-1534.
[15] Wang J, Xian X H, Xu X F, et al. Genome-wide association mapping of seed coat color in Brassica napus[J]. Journal of Agricultural and Food Chemistry, 2017,65:5229-5237.
[16] Sylven N, Cross-breeding study in rapeseed (Brassica napus oleifera ) I. Flower colours[J]. Hereditas,1927,9:380-390.
[17] Hartman L, 后面请作者自己改J C Hawke, Isobel M. Morice, et al. Component fatty acids of sporidesmium-bakeri lipids[J]. Biochemical J,1960,75:274-278.
[18] Heyn F W. Analysis of unreduced gametes in brassiceae by crosses between species and ploidy levels[J]. J plant breeding, 1977,78(1):13-30.
[19] Quazi M H. Interspecific hybrids between Brassica-napus L and Brassica-oleracea L developed by embryo culture[J]. Theor Appl Genet,1988,75(2):309-318.
[20] Arshad M A, Gill K S, Turkington T K, et al. Canola root rot and yield response to liming and tillage[J].Agronomy J,1997,89(1):17-22.
[21] Rahman, M H. Production of yellow-seeded Brassica napus through interspecific crosses[J]. Plant Breeding,2001,120(6):463-472.
[22] Liu H L,. Studies on the breeding of yellow seeded B.napus. Proc. 6th Int. Rapeseed Conf., Paris, France, Vol. 1983, 1, 637—641.
[23] Chen B Y, Heneen W K, Jonsson R. Resynthesis of Brassica napus L. through between B. alboglabra Bailey and B. ca with special emphasis on seed colour[J]. Plant Breeding,1988,101:52-59.
[24] 于澄宇,胡胜武,张春红,等.一种花色突变雄性不育油菜的发现[J].遗传,2004,26(3):330-332.
[25] 李 莓,陈卫江,易冬莲.甘蓝型油菜CMS橘红花色恢复系R18遗传研究[J].中国农业科学,1999,32(增刊1):27—30.
[26] 张雪梅,董振生,郭永华.甘蓝型油菜隐性上位互作核不育材料的选育[J].西北农业学报,2009,18(2):103—107.
[27] Yao Y M ,Li K X, Liu H D, et al. Whole-genome re-sequencing and fine mapping of an orange petal color gene (Bnpc1) in spring Brassica napus L. to a 151-kb region[J]. Euphytica,2017,213:165.
[28] 黄华磊,李文博,李艳花,等.油菜花色研究进展及育种应用前景[J].江苏农业科学,2017,45(11):1-4.
[29] 周永明,谭亚玲,刘 蒙,等.甘蓝型油菜辐射诱变研究[J].中国油料作物学报,1998,20(4):1-5.
[30] 彭家成. 油菜乳白花突变体的获得及后代遗传表现[J].安徽农业科学,2008, 36(5):1788-1799.
[31] 孙加焱,涂进东.范叔味,等.甘蓝型油菜理化诱变和突变体库的构建[J].遗传,2007,29(4):475—482.
[32] 石从广,孟华兵,姜宇晓,等.甘蓝型油菜EMS诱变二代农艺与籽粒品质性状的变异与TILLING库的构建[J].核农学报,2010,24(6):1132—1140.
[33] 赵福永,郑 娇,何 芳,等. EMS与NaN3对甘蓝型油菜和芥菜型油菜诱变的效果[J].江西农业学报,2010,22(9):6-9.
[34] 邓昌蓉,赵志刚,余青兰.人工合成甘蓝型油菜花色变异后代的遗传研究[J].北方园艺,2014(18):14-17.
[35] Semyk J.White flower color in rape (Brassica napus) associated with a radish (Raphanus sativus) chromosome[J].Genome,2011,24(6):729-734.
[36] 刘英春.甘蓝型油菜与萝卜远缘杂交的研究[D].重庆:西南大学,2014.
[37] Li Z Y, Heneen W K. Production and cytogenetics of intergeneric hybrids between the three cultivated Brassica diploids and Orychophragmus violaceus[J]. 1999,99:694-704.
[38] 张传利,杨志新,桂雪梅,等.甘蓝型油菜与芝麻菜的体细胞杂交[J].生物工程学报,2008,24(5):793-802.
[39] Zhao Z G, Hu T T, Ge X H, et a1. Production and characterization of intergeneric somatic hybrids between Brassica napus and Orychophragms violaceus and their backcrossing progenies. Plant Cell Rep ,2008,27:1611-1621.
[40] Ding L, Zhao Z G, Ge X H, et a1. Intergeneric addition and substitution of Brassica napus with different chromosomes from Orychophragmus violaceus: phenotype and cytology. Sci Hortic,2013,164: 303–309.
[41] Chen B Y and .Heneen W K. Independent inheritance of flower colour and male-fertility restorer characters in Brassica napus L[J]. Plant Breeding,1990,104:81-84.
[42] Zhang B, Liu C, Wang Y, et a1. Disruption of a CAROTENOID CLEAVAGE DIOXYGENASE 4 gene converts flower colour from white to yellow in Brassica species [J].New Phytol,2015,206(4):1513-1526.
[43] 戚存扣,傅寿仲.甘蓝型油菜白花性状的遗传[J].中国油料,1992(03).
[44] 柳 丽.甘蓝型油菜遗传连锁图谱的构建及花色基因的QTL初步定位[D].成都:四川农业大学,2009.
[45] 张大为.人工合成属间杂种及异源四倍体的转录组研究[D].武汉:华中农业大学,2016.
[46] Pandey B P. Brief description of a new type of flower color mutation in brown seed Sarson (Brassica campestris L. var. dichotoma Watt.) [J]. Indian J Agri Sci ,1971,41(12):1115-1116.
[47] Getinet A, Rakow G, Downey R. Inheritance of a cream petal mutant in Ethiopian mustard[J]. Canadian J Plant Sci,1993,73(4):1075- 1076.
[48] Xu B B, Li J N, Zhang X K, et a1. Cloning and molecular characterization of a functional flavonoid 3’hydroxylase gene from Brassica napus[J].J Plant Physiol,2007,164(3):350—363.
[49] 文雁成,张书芬,王建平,等.甘蓝型油菜白花性状的遗传学研究和白花胞质雄性不育系的选育[J].中国农学通报,2010,26(1):95-97.
[50] 程 辉,王友华,刘祥臣,等.甘蓝型油菜“白花 +隐性核不育”两型系2512AB的选育研究[J].河南农业科学,2009,(10):73-76.
[51] Fu W Q , Chen D Z, Pan Q, et al. Production of red-flowered oilseed rape via the ectopic expression of Orychophragmus violaceus OvPAP2[J].Plant Biotech J,2017,pp,1-14.
[52] Chittka L and Waser N M. Why red flowers are not invisible to bees[J]. Israel J. Plant Sci,1997, 45, 169–183
[53] Yuan Y W, Alexandra B , Janelle M S, et al. Competition between anthocyanin and flavonol biosynthesis produces spatial pattern variation of floral pigments between Mimulus species[J]. Proc Natl Acad Sci USA,2016,113(9): 2448-2453.
相关知识
中国农科院发布我国油料作物育种领域六大进展
分子标记技术在蔬菜遗传育种中的应用
荷花的遗传育种
花卉育种 彩斑遗传.pptx
分子标记技术在植物遗传育种中的运用
2022北京林业大学703《园林植物遗传育种》考试大纲
油菜花色突变体研究及花色遗传改良探讨
十字花科蔬菜根肿病抗性遗传及抗病育种研究进展
园林植物遗传育种
《园林植物遗传育种学》课件
网址: 彩花油菜的创建及遗传育种进展 https://m.huajiangbk.com/newsview497434.html
上一篇: 烟草的遗传特点与育种的关系 |
下一篇: 园林植物遗传育种学(第2版) |