Crops ›› 2021, Vol. 37 ›› Issue (4): 196-201.doi: 10.16035/j.issn.1001-7283.2021.04.030
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Lou Shubao1(), Li Fengyun1, Tian Guokui1, Wang Haiyan1, Tian Zhendong2, Wang Lichun1, Liu Xicai1, Wang Hui1
[1] | 金黎平, 屈冬玉, 谢开云, 等. 我国马铃薯种质资源和育种技术研究进展. 种子, 2003(5):98-100. |
[2] | Vossen J H, van Arkel G, Bergervoet M, et al. The Solanum demissum R8 late blight resistance gene is an Sw-5 homologue that has been deployed worldwide in late blight resistant varieties. Theoretical and Applied Genetics, 2016,129(9):1785-1796. |
[3] | Witek K, Jupe F, Witek A I, et al. Accelerated cloning of a potato late blight-resistance gene using Ren Seq and SMRT sequencing. Nature Biotechnology, 2016,34(6):656-660. |
[4] | Hein I, Birch P R, Danan S, et al. Progress in mapping and cloning qualitative and quantitative resistance against Phytophthora infestans in potato and its wild relatives. Potato Research, 2009,52(3):215-227. |
[5] | Rietman H, Bijsterbosch G, Cano L M, et al. Qualitative and quantitative late blight resistance in the potato cultivar Sarpo Mira is determined by the perception of five distinct RXLR effectors. Molecular Plant-Microbe Interactions, 2012,25(7):910-919. |
[6] | Poland J A, Balint-Kurti P J, Wisser R J, et al. Shades of gray: the world of quantitative disease resistance. Trends in Plant Science, 2009,14(1):21-29. |
[7] | Li Z K, Luo L J, Mei H W, et al. A “defeated” rice resistance gene acts as a QTL against a virulent strain of Xanthomonas oryzae pv. oryzae. Molecular and General Genetics, 1999,261(1):58-63. |
[8] | Solomon-Blackburn R M, Stewart H E, Bradshaw J E. Distinguishing major-gene from field resistance to late blight (Phytophthora infestans) of potato (Solanum tuberosum) and selecting for high levels of field resistance. Theoretical and Applied Genetics, 2007,115(1):141-149. |
[9] | Lindqvist-Kreuze H, Gastelo M, Perez W, et al. Phenotypic stability and genome-wide association study of late blight resistance in potato genotypes adapted to the tropical highlands. Phytopathology, 2014,104(6):624-633. |
[10] | 蒋锐. 马铃薯晚疫病广谱抗性QTL_dPI09c的精细定位及抗性基因克隆. 武汉:华中农业大学, 2017. |
[11] | 李文娟, Forbes Gregory A, 谢开云. 马铃薯晚疫病发病程度田间观察记录标准的探讨. 中国马铃薯, 2012,26(4):238-246. |
[12] | 刘龙超, 周云, 贺苗苗, 等. 四倍体马铃薯SSR遗传图谱的构建及晚疫病抗性QTL初步定位. 植物病理学报, 2016,46(1):84-90. |
[13] | 王金萍, 刘永伟, 孙果忠, 等. 抗茎腐病分子标记在159份玉米自交系中的验证及实用性评价. 植物遗传资源学报, 2017,18(4):754-762. |
[14] | 向小姣, 张建, 郑天清, 等. 应用分子标记技术改良京作1号的稻瘟病抗性. 植物遗传资源学报, 2016,17(4):773-780. |
[15] | Zhu S, Li Y, Vossen J H, et al. Functional stacking of three resistance genes against Phytophthora infestans in potato. Transgenic Research, 2012,21(1):89-99. |
[16] | 刘勋, 郑克邪, 张娇, 等. 马铃薯晚疫病抗性基因分子标记检测及抗性评价. 植物遗传资源学报, 2019,20(3):538-549. |
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