正在加载图片...
期 孙群等:种子活力机理及遗传控制的研究进展 53 19%36285-2 and YY.Cao GI 305.321 d w201,296536 140 yD and genolype on E D.Mackill D 孙彩霞沈秀碳 容铁实 抗早性的关系。种子.20 32 SunC X,Shen X Y.GuT5.Rela ship between Seed germi [51 照,郑先武,亮足,朱立煌苗期水根郁性软的 nce of shoot-s edling in different genotype Q定位.遗传学报2001,28:433438 0l,532-35.(in XuJC.Li.ZhengX W.LH.QTL mapping of th raits in rice scedling.Acra Genetica Sinica,2001,28:433-43 1980.15:771-77 43]Cui K H,Peng S B,Xing Y Z,Xu C G Yu B,Zhang Q.Molecula Sas K.Fukuta Y.Sato T.Mapping of quantitative trait loc ng-vigor u pnysiological traits in rice. longevity of rice(Oryea satra L)after varou 105:745-753 ng.2005.124:36-36 44 Miura K.Lin S Y. Mapping quantitative trai 57 鲸.水低温发穿性Q的分子标记定包 武汉植物学研究 33216-220 Jiang X, T.Mapping of QTL controlling 45 Zhang Z H.Yu S B.Yu T. ative trait loci(OTLs)fo L0% y in Rice.JJournal of Wuhan Bolanca 2005.1 (in Chinese) L.)Field Cr .2005.91:161-170 [58 Kryoyu sa N,Makoto K,Hiroyuki S 1461 Emile J M,Hetty B V.,Gerda J R,Steven PC G Maarten K.Geneti Ikuo A.M nination of seed an of various frabidopsis mutants. oreeding of improved rice varieties Physiologia,2004.121:448-461. suitable for direct seeding culture.Jargapon Agricurural Research [47 Bettey M.Finch-Savage W E.King G J.Lynn J R.Quantitative 0e,2004.38:1-5 genetic analysis of seed vigor and preemergence seedling growth [59 陈利华,万杉.不同温度条件下水稻种子活力Q的定位分析 traits in Brassica oleracea.New Phytologist,2000,148:227-286. 武汉植物学所究.2005,23:125-130. 48]Foolad M R.Lin G Y.Chen F Q.Comparison of QTLs for seed Chen L H.Wan S.Mapping of OTL controlling seed vitality in ric germination under non-stress,cold stress and salt stress in tomato under different temperature conditions.Jownal of Wic Botonical ant Breed,1999,1182y167-173 Research,2005,23:125-130.(in Chinese) [49]Mano Y.Takeda K.Mapping quantitative trait loci for salt tolerance 【60曹立勇,朱军,任立飞,赵松薄,颜启传。水稻幼苗活力相关性 at germination and the seedling stage in barley (Hondewmt vulgare L.). 状的011s定位和上位性分析.作物学报.2002.28:809815. Ehc21997.94:263-272. Cao L Y.Zhu J.Ren L F.Zhoo S T.Yan Q C.Mapping QTLs and [50]Natoli A.Gorni C.Chegdani F.Aimone M P.Colobi C.Lorenzoni C. epistatsis for seedling vigor in RicelOnea sathva 1)Acta Marocco A.Identification of OTLs associated with sweet sorghum Agroomica Sinica,2002,28:809-815.(in Chinese) quality.AMndica,2002,47:311-322. [61]Greggains V,Finch-Sav WE.Quick WP Aherton N M.Putative [511 Huane Z.Yu T.SuL.Yu S B.Zhane Z H.Zhu Y G Identification of des tion tolerance mechanisms in orthodox and recalcitrant seeds chromosome regions a ciated with seodling vigor in rice.Acta of the gerus Acer.Seed Science Research.2000.10:317-327. genetic0Swem.2004.359%6-603 [521 Redona E D.Mackill D J.Genetic variation for seedling vigor traits (责任编辑白存霞) 1 期 孙 群等:种子活力机理及遗传控制的研究进展 53 Ma S C, Zhang G S, Wang J W, Lu B X, Li H R. Genetic difference and interrelationship among seed vigor traits in wheat. Acta Bot. Boreal.-Occident Sinaca, 2004, 24: 1674-1679. (in Chinese) [39] Soltani A, Zeinali E, Galeshi S. Genetic variation for and interrelationships among seed vigor traits in wheat from the Caspian Sea coast of Iran. Seed Science and Technology, 2001, 29: 653-662. [40] TeKrony D M, Hunter J L. Effect of seed maturation and genotype on seed vigor in maize. Crop science, 1995, 3(53): 857-862. [41] 孙彩霞, 沈秀瑛, 谷铁实. 不同基因型玉米种子萌发特性与芽、苗 期抗旱性的关系. 种子, 2001, 5: 32-35. Sun C X, Shen X Y, Gu T S. Relationship between Seed germination and its drought resistance of shoot-seedling in different genotype maize. Seed, 2001, 5: 32-35. (in Chinese) [42] Dickson M H. Genetic aspects of seed quality. Horticulture Science, 1980, 15: 771-774. [43] Cui K H, Peng S B, Xing Y Z, Xu C G, Yu S B, Zhang Q. Molecular dissecting of seedling-vigor and associated physiological traits in rice. Theoretical and Applied Genetics, 2002, 105: 745-753. [44] Miura K, Lin S Y, Yano M, Nagamine T. Mapping quantitative trait loci controlling seed longevity in rice(Oryza sativa L.). Theoretical and Applied Genetics, 2002, 104: 981-986. [45] Zhang Z H, Yu S B, Yu T. Mapping quantitative trait loci(QTLs) for seedling-vigor using recombinant inbred lines of rice(Oryza sativa L.). Field Crops Research, 2005, 91: 161-170. [46] Emile J M, Hetty B V, Gerda J R, Steven P C G, Maarten K. Genetic differences in seed longevity of various Arabidopsis mutants. Physiologia Plantarum, 2004, 121: 448-461. [47] Bettey M, Finch-Savage W E, King G J, Lynn J R. Quantitative genetic analysis of seed vigor and preemergence seedling growth traits in Brassica oleracea. New Phytologist, 2000, 148: 227-286. [48] Foolad M R, Lin G Y, Chen F Q. Comparison of QTLs for seed germination under non-stress, cold stress and salt stress in tomato. Plant Breeding, 1999, 118(2): 167-173. [49] Mano Y, Takeda K. Mapping quantitative trait loci for salt tolerance at germination and the seedling stage in barley (Hordeum vulgare L.). Euphytica, 1997, 94: 263-272. [50] Natoli A, Gorni C, Chegdani F, Ajmone M P, Colobi C, Lorenzoni C, Marocco A. Identification of QTLs associated with sweet sorghum quality. Maydica, 2002, 47: 311-322. [51] Huang Z, Yu T, Su L, Yu S B, Zhang Z H, Zhu Y G. Identification of chromosome regions associated with seedling vigor in rice. Acta Genetica Sinica, 2004, 31: 596-603. [52] Redona E D, Mackill D J. Genetic variation for seedling vigor traits in rice. Crop Science, 1996, 36: 285-290. [53] 乔永利, 韩龙植, 安永平, 张媛媛, 曹桂兰, 高熙宗. 水稻芽期耐 冷性 QTL 的分子定位. 中国农业科学, 2005, 38: 217-221. Qiao Y L, Han L Z, An Y P, Zhang Y Y, Cao G L, Gao X Z. Molecular mapping of QTLs for cold tolerance at the bud bursting period in Rice. Scientia Agricultura Sinica, 2005, 38: 217-221. (in Chinese) [54] Redona E D, Mackill D J. Mapping quantitative trait loci for seedling-vigor in rice using RFLPs. Theoretical and Applied Genetics, 1996, 92: 395-402. [55] 徐吉臣, 李晶昭, 郑先武, 邹亮星, 朱立煌. 苗期水稻根部性状的 QTL 定位. 遗传学报, 2001, 28: 433-438. Xu J C, Li J Z, Zheng X W, Zou L X, Zhu L H. QTL mapping of the root traits in rice seedling. Acta Genetica Sinica, 2001, 28: 433-438. (in Chinese) [56] Sasaki K, Fukuta Y, Sato T. Mapping of quantitative trait loci controlling seed longevity of rice(Oryza sativa L.) after various periods of seed storage. Plant breeding, 2005, 124: 361-366. [57] 姜 旋, 李辰昱, 毛 婷. 水稻低温发芽性 QTL 的分子标记定位. 武汉植物学研究, 2005, 23(3): 216-220. Jiang X, Li C Y, Mao T. Mapping of QTL controlling Low-temperature germinability in Rice. Journal of Wuhan Botanical Research, 2005, 23: 216-220. (in Chinese) [58] Kiyoyuki M, Shao Y L, Hitoshi A, Tsukasa N, Makoto K, Hiroyuki S, Ikuo A. Masahiro. Genetical studies on germination of seed and seedling establishment for breeding of improved rice varieties suitable for direct seeding culture. Jarq-Japan Agricultural Research Quarterly, 2004, 38: 1-5. [59] 陈利华, 万 杉. 不同温度条件下水稻种子活力 QTL 的定位分析. 武汉植物学研究, 2005, 23: 125-130. Chen L H, Wan S. Mapping of QTL controlling seed vitality in rice under different temperature conditions. Journal of Wuhan Botanical Research, 2005, 23: 125-130. (in Chinese) [60] 曹立勇, 朱 军, 任立飞, 赵松涛, 颜启传. 水稻幼苗活力相关性 状的 QTLs 定位和上位性分析. 作物学报, 2002, 28: 809-815. Cao L Y, Zhu J, Ren L F, Zhao S T, Yan Q C. Mapping QTLs and epistatsis for seedling vigor in Rice(Oryza sativa L.). Acta Agronomica Sinica, 2002, 28: 809-815. (in Chinese) [61] Greggains V, Finch-Savage W E, Quick W P, Aherton N M. Putative desiccation tolerance mechanisms in orthodox and recalcitrant seeds of the genus Acer. Seed Science Research, 2000, 10: 317-327. (责任编辑 白春霞)
<<向上翻页
©2008-现在 cucdc.com 高等教育资讯网 版权所有