期刊文献+

甘蔗属不同种及优良甘蔗栽培品种的SSR标记遗传多样性分析 被引量:10

Genetic diversity assessment of Saccharum species and elite cultivars from China using SSR Markers
下载PDF
导出
摘要 应用21对SSR引物与毛细管电泳技术,分析了52个甘蔗属品种的遗传多样性。共检测出327个SSR标记,平均每对引物检测15.6个。选择141个共显性标记构建SSR标记指纹图谱数据库,利用DNAMAN软件与UPGMA统计方法分析参试材料遗传多样性。DNAMAN软件同源分析显示,新台糖16号与台优1号之间的同源性最高(87%),品种之间最小的同源性为55%;利用UPGMA统计方法可把参试材料分成4个遗传相似性较高的类群。结果表明,SSR标记与毛细管技术的结合,可构建甘蔗种质资源SSR标记指纹图谱、分析甘蔗种质资源遗传多样性。聚类分析显示参试甘蔗材料的遗传基础相近,为了提高甘蔗选育种效率,应拓宽甘蔗选育种亲本的遗传基础,提高杂交栽培品种的抗虫、抗病等特性。 Genetic diversity amongst 52 sugarcane clones including Saccharum species and cultivars(used for breeding and commercial production since the beginning of 20th century)had been assessed using 21 Simple Sequence Repeat(SSR)markers and capillary electrophoresis(CE)technique. Use of 21 SSR primers resulted in amplification of 327 distinguishable SSR markers with an average of 15.6 bands per primer. A total of 141 distinctive SSR alleles were scored,which have been used for construction of fingerprinting database and assessment of the genetic diversity using DNAMAN analyzing software and UPGMA algorithm methods. The highest genetic homology was 87%,observed between ROC 16 and TY 1,the lowest genetic homology was 55%. The UPGMA algorithm with SSR markers showed four distinguishable clusters of genetically similar species and varietal clones. The results indicated that using SSR markers in combination with CE is an efficient tool for fingerprinting database construction and assessment of genetic diversity. Occurrence of most cultivated clones in just 4 clusters indicated the exploitation of similar genetic database for the breeding purposes. The breeding programs should be tailored to exploit the wide range of germplasm using Saccharum species to get good varieties especially for disease or insect-pest resistance.
出处 《广西植物》 CAS CSCD 北大核心 2010年第5期594-600,共7页 Guihaia
基金 国家科技支撑计划(2007BAD30B00) 广西基本科研专项(G2009001) 广西区回国基金(桂科回0991011) 广西自然科学基金(桂科基0639009) 广西农业科学院科技发展基金(201002Z)~~
关键词 简单重复序列(SSR) 甘蔗属 指纹图谱 毛细管电泳 遗传多样性 Simple sequence repeat(SSR) Saccharum fingerprinting Capillary Electrophoresis genetic diversity
  • 相关文献

参考文献18

  • 1邓重焘.1990.中国甘蔗品种志[M].广州:广东科技出版社,1-7.
  • 2Aitken KS,Jackson PA,McIntyre.2005.A combination of AFLP and SSR markers provides extensive map coverage and identification of homo(eo)logous linkage groups in a sugarcane cultivar[J].Theor Appl Genet,110:789-801.
  • 3Chandra Punit,Singh RK,Singh IS,et al.2001.Possibility of identification and characterization of sugarcane cultivars on the basis of protein profiles[J].Sugar Tech,3(1):59-62.
  • 4Clark JM.1988.Novel non-templated nuclcotide addition reactions catalyzed by prokaryotic and eukaryotic DNA polymerases[J].Nucleic Acids Res,16:9 677-9 686.
  • 5Cordeiro GM,Taylor GO,Henry RJ.2000.Characterization of microsatellite markers from sugarcane(Saccharum spp.),a highly polyploid species[J].Plant Sci,155:161-168.
  • 6Cordeiro GM,Pan YB,Henry RJ.2003.Sugarcane microsatellites for the assessment of genetic diversity in sugarcane germplasm[J].Plant Sci,165:181-189.
  • 7Glaszmann JC,Fautret A,Niyer JL,et al.1992.Utility of isozymes in sugarcane breeding[J].Sugarcane,3:14-21.
  • 8Hemaprabha G,Govindaraj P,Balasundaram N,et al.2005.Genetic diversity analysis of indian sugarcane breeding pool based on sugarcane specific STMS markers[J].Sugar Tech,7(2):9-14.
  • 9Hoarau JY,Offmann B,DHont A,et al.2001.Genetic dissection of a modern sugarcane cultivar(Saccharum spp.)I.Genome mapping with AFLP markers[J].Theor Appl Genet,103(1):84-97.
  • 10Levinson G,Gutman GA.1987.Slipped-strand mispairing:a major mechanism for DNA sequence evolution[J].Mol Biol Evol,4(3):203-221.

二级参考文献10

  • 1劳方业,符成,陈仲华,陈健文,张垂明,杨业后,邓海华.斑茅杂交后代的分子鉴定[J].甘蔗糖业,2006,35(1):6-11. 被引量:13
  • 2桃联安,经艳芬,刘新龙,安汝东,董立华,杨李和,周清明,段慧芬.云南斑茅F_1代SSR分子标记杂种真实性鉴定初步研究[J].甘蔗糖业,2007,36(2):7-11. 被引量:6
  • 3ABE J,XU D H,SUZUKI Y,et al.Soybean germplasm pools in Asia revealed by nuclear SSRs.Theor Appl Genet, 2003,106:445-453.
  • 4GIOVANNI M, CORDEIRO, ONG-BAO PAN,et al. Sugarcane microsatellites for the assessment of genetic diversity in sugarcane germplasm. Plant Science,2003,165:181 - 189.
  • 5SENIOR M L, MURPHY J P,GOODMAN M M,et al. Utility of SSRs for determining genetic similarities and relationships in maize using an agrose gel system [J]. Crop Science, 1998,38:1088- 1089.
  • 6STRUSS D, PLIESKE J. The use of microsatellite markers for detection of genetic diversity in barley populations [J].Theor Appl Genet, 1998, 97: 308- 315.
  • 7WU K S, TANKSLEY S D. Abundance polyraxphism trod genetic mapping of microsatellites in rice[J]. Mol Gen Genet, 1993,241:225 - 235.
  • 8CORDEIRO G M, CASU R, MCINTYRE C L. Microsatellite markers from sugarcane ( Saccharum spp. ) ESTs cross transferable to erianthus and sorghum[ J ]. Plant Science 2001,160:1115 - 1123.
  • 9PAN Y B, TEW T L, SCHNELL R J, et al. Microsatellite DNA marker - assisted selection of Saccharum cytoplasm - derived germplasm. Proceedings the international symposium on sustainable sugarcane and sugar production techndogy[M]. Naning: GuangXi Press,2004:483-489.
  • 10余爱丽,张木清,陈如凯.ISSR分子标记在甘蔗及其近缘属分类上的应用[J].福建农林大学学报(自然科学版),2002,31(4):484-489. 被引量:35

共引文献9

同被引文献209

引证文献10

二级引证文献78

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