[1] Gatschet Mark J, Taliaferro Charles M, Anderson Jeffrey A, et al. Cold acclimation and alterations in protein synthesis in bermudagrass crowns[J]. Journal of the American Society for Horticultural Science,1994,119(3):477-480 [2] Harlan Jack R, de Wet J M J. Sources of variation in Cynodon dactylon (L.)Pers[J]. Crop Science,1969,9(6):774-778 [3] Zabeau M, Vos P. Selective restriction fragment amplification: a general method for DNA fingerprinting[J]. European Patent Application,1993,31(3):1-47 [4] Aitken K S, Li J C, Jackson P, et al. AFLP analysis of genetic diversity within Saccharum officinarum and comparison with sugarcane cultivars[J]. Australian Journal of Agricultural Research,2006,57(11):1167-1184 [5] Selvi A, Nair N V, Noyer J L, et al. AFLP analysis of the phenetic organization and genetic diversity in the sugarcane complex, Saccharum and Erianthus[J]. Genetic Resources and Crop Evolution,2006,53(4):831-842 [6] 田松杰,石云素,宋燕春,等. 利用AFLP技术研究玉米及其野生近缘种的遗传关系[J]. 作物学报,2004,30(4):354-359 [7] 刘欢,慕平,赵桂琴. 基于AFLP 的燕麦遗传多样性研究[J]. 草业学报,2008,17(6):121-127 [8] 白史且,高荣,沈翼,等. 假俭草遗传多样性的AFLP指纹分析[J]. 高技术通讯,2002(10):45-49 [9] Puecher D I, Robredo C G, Rios R D, et al. Genetic variability measures among Bromus catharticus Vahl populations and cultivars with RAPD and AFLP markers[J]. Euphytica,2001,121(3):229-236 [10] Ferdinandez Y S N, Coulman B E. Evaluating genetic variation and relationships among two bromegrass species and their hybrid using RAPD and AFLP markers[J]. Euphytica,2002,125(2):281-291 [11] 于卓,马艳红,李小雷,等. 加拿大披碱草与披碱草、圆柱披碱草2个种间杂种F1及其亲本的AFLP分析[J]. 草地学报,2008,16(5):431-436 [12] Zhang L H, Ozias Akins P, Kochert G, et al. Differentiation of bermudagrass (Cynodon spp) genotypes by AFLP analyses[J]. Theoretical and Applied Genetics,1999,98(6/7):895-902 [13] Wu Y Q, Taliaferro C M, Bai G H, et al. AFLP analysis of Cynodon dactylon (L.) Pers. var. dactylon genetic variation[J]. Genome,2004,47(4):689- 696 [14] Wu Y Q, Tiaferro C M, Bai G H, et al. Genetic analyses of Chinese Cynodon accessions by flow cytometry and AFLP markers[J]. Crop Science,2006,46(2):917-926 [15] Kang S Y, Lee G J, Lim K B, et al. Genetic diversity among Korean bermudagrass (Cynodon spp.) ecotypes characterized by morphological cytological and molecular approaches[J]. Molecules and Cells,2008,25(2):163-171 [16] 齐晓芳,张新全,凌瑶,等. 野生狗牙根种质资源的AFLP 遗传多样性分析[J]. 草业学报,2010,19(3):155-161 [17] 李红斌,王世恒,王宏. AFLP标记技术在青菜品种油冬儿鉴定上的应用[J]. 安徽农业科学,2008,36(1):72-73 [18] 尹佟明,孙哗,易能君,等. 美洲黑杨无性系AFLP指纹分析[J]. 植物学报,1998,40(8):778-780 [19] 朱红霞. 牡丹芍药品种DNA指纹图谱绘制的初步研究. 北京:北京林业大学,2004:25-26 [20] 刘淑君,杨悦俭,叶青静,等. AFLP技术在番茄品种鉴定中的应用[J]. 浙江农业科学,2011(4):749-753 [21] Roldan Ruiz I, Calsyn E, Gilliland T J, et al. Estimating genetic conformity between related ryegrass (Lolium) varieties 2 AFLP characterization[J]. Molecular Breeding,2000,6(6):593-602 [22] 贺小霞,刘一明,王兆龙. 海滨雀稗栽培品种的形态特征与AFLP分子标记分析[J]. 草地学报,2011,19(1):164-170 [23] 王斐,林盛华,方成泉,等. 梨新品种及其亲本的AFLP分析[J]. 园艺学报,2007,34(4):847- 852 [24] Nei M, Li W H. Mathematical model for studying genetic variation in terms of restriction endonucleases[J]. Proceedings of the National Academy of Sciences,1979,76(10):5269-5273 [25] 周少云,黄春琼,刘国道. 广东地区野生狗牙根遗传多样性的ISSR分析[J]. 热带作物学报,2010,31(5):797-803 [26] 刘君,赵琴,杨志民. SRAP分子标记对九个狗牙根品种的鉴定分析[J]. 中国草地学报,2012,34(4):21-25 |