期刊文献+

玉米自交系遗传关系的SSR标记分析 被引量:12

Application of SSR Markers in Maize Inbred Lines for Studying Their Genetic Relationship
下载PDF
导出
摘要 选用系谱明确的和系谱来源复杂的38个玉米自交系为材料,在玉米基因组上均匀选取62个SSR引物进行遗传关系分析:(ⅰ)分析SSR引物在这些自交系中的差异程度;(ⅱ)进行自交系的类群划分;(ⅲ)明确SSR标记在不同来源类型玉米自交系的类群划分和遗传关系分析上的应用价值。62对SSR引物共检测到238个等位基因变异,平均每个位点的等位基因数4.08个,平均多态性信息量(PIC)0.612,平均标记索引系数(MI)2.58,三个指标对标记多态性的分析不完全一致。UPGMA聚类分析将38个玉米自交系分为瑞德、旅大红骨、塘四平头、兰卡斯特、P1、P2和热带素湾7个类群,划群结果与系谱基本吻合,同时对系谱来源复杂的自交系进行分析,明确了它们的归属。 A set of 38 elite maize (Zea mays L.) inbred lines, representative of various types of inbred lines with and without clear pedigree, were assayed with 62 pairs of SSR primers. Our main objectives were to (ⅰ) investigate the variation of the SSR primers in these materials, (ⅱ) assigning inbred lines to heteotic groups, (ⅲ) examine the usefulness of SSR markers in assaying genetic relationship of maize inbred lines. 238 alleles were found with average alleles 4.08,average polymorphism information content (PIC) 0.612, average marker indice (MI) 2.58 per locus. the UPGMA cluster analysis separated the 38 inbred lines into 7 major groups based on their SSR genotypic similarities, including six major temperate groups( Reid, Luda Red Cob, Tangsipingtou, LSC, P1,P2) and one tropic Suwan group,and the genetic relationship of inbred lines with complex genetic were determined by SSR markers.
出处 《中国农学通报》 CSCD 2005年第2期10-14,共5页 Chinese Agricultural Science Bulletin
基金 农业部及北京市重点科技项目"华北农作物核心种质资源研究"项目资助(H030730010690)。
  • 相关文献

参考文献10

  • 1郭景伦,赵久然,尉德铭,郭强,王斌,张超良,金德敏,李荣旗,张开春.玉米单粒种子DNA提取新方法[J].北京农业科学,1997,15(2):1-2. 被引量:87
  • 2Messmer M M, Melchinger A E, Herrmann R G, Boppenmaier J. Relationship among early European maize inbreds: Comparison of pedigree and RFLP data. Crop science, 1993,33:944~950
  • 3Smith J S C, Chin E C L, Shu H, et al. an evaluation of the utility of SSR loci as molecular markers in maize(zea mays L.):Comparison with data from RFLPs and pedigree. Theor. Appl. Genet., 1997,95:163~173
  • 4Senior M L, MurPhy J P, Goodman M M, et al. Utility of SSRs for determining genetic similarities and relationships in maize using an agarose gel system. Crop Science, 1998,38:1088~ 1098
  • 5Rolf J F.NTSYS-pc: Numerical taxonomy and multivariate analysis system.Version 2.0 Applied Biostatistics Inc.New York. 1998.
  • 6Bryan G J, Collins A J, Stephenson P, Orry A, Smith J B, Gale M D.Isolation and characterization of microsatellites from hexaploid bread wheat. Theor Appl Genet, 1997,94:557~563
  • 7Stachel M, Lelley T, Grausgruber H, Vollmann J. Application of microsatellites in wheat(Triticum aestivum L.) for studying genetic differentiation caused by selection for adaptation and use. Theor Appl Genet.2000,100:242~248Hallauer A R.Methods used for developing maize inbreds. Maydica,1990,35:1~16
  • 8BernardoR,Romero-Sev ersonJ,ZiegleJ,HauserJ,JoeL,HoolstraG,DoergeRW.Parental contribution and coefficient of eoancestry among maize inbreds: pedigree, RFLP, and SSR data. Theor Appl Genet,2000,100:552~556
  • 9Bernardo R, Murigneux A, Maisonneuve J P, Johnsson, Karaman Z.RFLP-based estimates of parental comtribution to F2- and BC 1-derived maize inbreds. Theor Appl Genet, 1997,94:652~656
  • 10Bernardo R, Kanler A L. North American study on essential derivation in maize:inbreds developed without and with selection from F2 popul ations. Theor Appl Genet,2001,102:986~992

二级参考文献3

共引文献86

同被引文献168

引证文献12

二级引证文献103

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部