[1] 周潇,王巧,陈刚. 扁穗雀麦研究进展[J]. 草业与畜牧,2014(4):54-56
[2] 韩学俊,雷发有. "野生"扁穗雀麦简介[J]. 中国草原与牧草,1984(1):55-56
[3] 田宏,张鹤山,蔡化,等. 扁穗雀麦对白三叶和红三叶的化感作用研究[J]. 江西农业大学学报,2012(3):470-473
[4] 莫本田,赵明坤,唐成斌,等. 贵州主要野生禾本科牧草品比试验[J]. 四川草原,1996(3):13-18
[5] 易杨杰,张新全,尚以顺,等. 7个禾草品种(系)在川西南的适应性研究[J]. 安徽农业科学,2007(9):2627-2628
[6] 郝峰,徐柱,闫伟红,等. 扁穗雀麦种质资源形态变异分析[J]. 草地学报,2011,19(4):668-673
[7] 欧阳克蕙,王堃. 中国南方草地开发现状及发展战略[J]. 草业科学,2006,23(4):17-22
[8] 罗天琼,莫本田,龙忠富. 优良冬季青绿禾草扁穗雀麦在人工草地中的建植及利用研究[J]. 四川草原,2000(2):18-23
[9] 罗天琼,莫本田,赵明坤,等. 黔西北地区水保型禾草的栽培驯化[J]. 草业科学,2003,20(7):32-38
[10] 谢彩云,范国华,莫志萍,等. 牧草新品种黔南扁穗雀麦的选育[J]. 贵州农业科学,2014,42(5):30-33
[11] 刘洋. 牧草新品种"江夏扁穗雀麦"通过国家审定[J]. 农村百事通,2012(19):12
[12] 曹清国,张幽静,区力松. 云南地区扁穗雀麦繁殖对策研究[J]. 种子,2008(3):101-103
[13] 鄢家俊,白史且,马啸,等. 川西北高原野生老芒麦居群穗部形态多样性研究[J]. 草业学报,2008,16(6):99-106
[14] 梁小玉,张新全,白史且,等. 菊苣主要表型性状的多元统计分析[J]. 草业学报,2013,22(6):257-267
[15] 聂刚,张新全,黄琳凯,等. 中国西南区野生芒居群表型变异研究[J]. 草业学报,2013,22(5):52-61
[16] Souza E, Sorrells M E. Relationships among 70 North American oat germplasms:I. Cluster analysis using quantitative characters[J]. Crop Science,1991,31(3):599-605
[17] Perry M C, Mcintosh M S. Geographical patterns of variation in the USDA soybean germplasm collection:I. Morphological traits[J]. Crop Science,1991,31(5):1350-1355
[18] Aulicino M B, Arturi M J. Phenotypic diversity in Argentinian populations of Bromus catharticus(Poaceae). Genetic and environmental components of quantitative traits[J]. New Zealand Journal of Botany,2002,40(2):223-234
[19] Tang Q Y, Zhang C X. Data Processing System(DPS) software with experimental design, statistical analysis and data mining developed for use in entomological research[J]. Insect Science,2013,20(2):254-260
[20] Rolf J F. NTSYS-pc:Numerical Taxonomy and Multivariate Analysis System, Version 2.1[CP]. New York:Exeter Software, Setaukel,2000
[21] Sneath P H, Sokal R R. Numerical Taxonomy:The Principles and Practice of Numerical Classification[M]. San Francisco:Freeman,1973:188-308
[22] Martinez-Calvo J, Gisbert A D, Alamar M C, et al. Study of a germplasm collection of loquat(Eriobotrya japonica Lindl.) by multivariate analysis[J]. Genetic Resources and Crop Evolution,2008,55(5):695-703
[23] Kefyalew T, Tefera H, Assefa K, et al. Phenotypic diversity for qualitative and phenologic characters in germplasm collections of tef(Eragrostistef)[J]. Genetic Resources and Crop Evolution,2000,47(1):73-80
[24] 严学兵,王堃,王成章,等. 不同披碱草属植物的形态分化和分类功能的构建[J]. 草地学报,2009,17(3):274-281
[25] Düzyaman E. Phenotypic Diversity within a Collection of Distinct Okra(Abelmoschus esculentus) Cultivars Derived from Turkish Land Races[J]. Genetic Resources and Crop Evolution,2005,52(8):1019-1030
[26] Aulicino M B, Arturi M J. Regional variation in Argentinean populations of Bromus catharticus(Poaceae) as measured by morphological[C]//Anales del Jardín Botánico de Madrid,2008,65(1):135-147 |