[1] Stein M, Nothnagel T. Some Remarks on Carrot Breeding (Daucus Carota Satious Hoffm)[J]. Plant Breeding,1995,114: 1-11.
[2] Dickson M H, et al. A cold unit system to evaluate bolting resistance in carrots[J]. Proc Am Soc Hortic Sci., 1961,77: 401-405.
[3] Simon P W. Genetic improvement of vegetable carotene content[M]//Bills D D,Kung S.Biotechnology and Nutrition. Boston: Butterworth-Heinemann, 1992: 291-300.
[4] Simon P W. Plant pigments for color and nutrition[J]. Hortic Sci, 1997, 32:12-13.
[5] 陈一高. 高蛋白水果型萝卜新品种[J]. 农业知识:瓜果菜, 2005(4): 43-43.
[6] 班新河,等. 水果型胡萝卜新品种天中翠无公害高效栽培技术[J]. 中国农村小康科技, 2008(4): 41-42.
[7] 庄飞云,等. “微型”胡萝卜(Baby carrot)概念来源及市场发展前景[J]. 中国蔬菜, 2007(3): 43-44.
[8] Rubatzky V E, et al. Carrots and related vegetable umbelliferate[M]. New York: CABI Publishing, 1999.
[9] Zenkteler M. Microsporogenesis and tapetal development in normal and male-sterile carrots(Daucus carota)[J]. Amer J Bot., 1962,49(4): 341-348.
[10] Struckmeyer E,Simon P. Anatomy of fertile and male-sterile carrot flowers from different genetic sources[J]. J Amer Soc Hort Sci., 1986(1): 965-968.
[11] Thompson D J. Studies on the inheritance of male sterility in carrot (Daucus carota L. var. sativa)[J]. Proc Amer Soc Hort Sci., 1961,78: 332-338.
[12] Eisa H M, et al. Morphological and anatomical aspects of petaloidy in the carrot(Daucus carota L.)[J]. J Amer Soc Hort Sci., 1969,94: 545-548.
[13] Erickson E H, et al. Structure of cytoplasmic male-sterile and fertile carrot flowers[J]. J Amer Soc Hort Sci., 1982,107(4): 698-706.
[14] Bujdoso G, et al. Hybrid carrot breeding[J]. Zoldsegtermeaztesi Kutato Intezet-Bulletinje,1990,23:39-46.
[15] Bunin M S, et al. Heterosis breeding in carrot in USSR and Japan, Japan[J]. Journal of Breeding, 1989,39(2):235-241.
[16] Bonnet A. Studies on carrot[J]. Rapport d’ activite, Station d’Amelioration des Plantes Maraicheres, 1987(1): 29-33.
[17] Park Y. Breeding of brown anther type male sterile lines with high phenotypic stability in carrots[J]. Journal of the Korean Society for Horticultural Science, 1995,36(1): 1-9.
[18] Zhidkova N I, et al. Collaboration in carrot breeding[J]. Mezhdunarodnyi Sel’ Skokhozyaistvennyi Zhumal, 1986,4: 68-69.
[19] Gauchene O Y. Breeding carrot hybrids in the Lithuanian SSR,Nauch-Tekh. Byull, Vsesoyuznogo Ord.[J] Lenina no, 1989,192: 24-25.
[20] Suenaga T, et al. Transfer of the CMS trait in Daucus carrot L. by donor-recipient protoplast fusion[J]. Theo Appl Genet, 1988,76: 855-860.
[21] Nothnagel T. Results in the development of alloplasmic carrots (Daucus carrot sativus Hoffm.)[J]. Plant Breeding, 1992,109: 67-74.
[22] 吴光远,等. 胡萝卜雄性不育研究初报[J]. 园艺学报, 1964,3(2): 153-157.
[23] 梁毅. 红芯系列一代杂种胡萝卜的选育与栽培[J]. 北京农业科学, 2000(1): 20-21.
[24] 王勇. 胡萝卜新品种金红1号、金红2号的选育[J]. 中国蔬菜, 1998(1): 19-21.
[25] 胡喜来,等. 胡萝卜新品种“红参”[J]. 园艺学报, 2006,33(6): 1 412.
[26] 司家钢. 利用原生质体非对称融合转移胡萝卜瓣化型胞质不育性的研究[D]. 北京:中国农业科学研究院研究生院博士学位论文, 2001.
[27] 于春霞,等. 瓣化型胡萝卜胞质雄性不育相关片段的分离及系列分析[J]. 中国农学通报, 2006(1): 16-20.
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