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大麦中AFLP和RFLP标记的联合图谱构建

Combined mapping of AFLP and RFLP markers in barley.

作者信息

Becker J, Vos P, Kuiper M, Salamini F, Heun M

机构信息

Max-Planck-Institut für Züchtungsforschung, Köln, Germany.

出版信息

Mol Gen Genet. 1995 Nov 1;249(1):65-73. doi: 10.1007/BF00290237.

Abstract

AFLP marker technology allows efficient DNA fingerprinting and the analysis of large numbers of polymorphic restriction fragments on polyacrylamide gels. Using the doubled haploids from the F1 of the cross Proctor x Nudinka, 118 AFLP markers were mapped onto a barley (Hordeum vulgare L.) RFLP map, also including five microsatellite and four protein marker loci. The AFLP markers mapped to all parts of the barley chromosomes and filled in the gaps on barley chromosomes 2L, 4L and 6 in which no RFLP loci had been mapped. Interestingly, the AFLP markers seldom interrupted RFLP clusters, but grouped next to them. The combined map covers 1873 cM, with a total of 282 markers. The merging of AFLP and RFLP markers increased the total map length; 402 cM were added to the map at the tips of chromosomes or in regions corresponding to earlier gaps. Another 375 cM resulted from mapping AFLP markers near to RFLP clusters or in between non-clustered RFLP markers.

摘要

扩增片段长度多态性(AFLP)标记技术可实现高效的DNA指纹分析,并能在聚丙烯酰胺凝胶上对大量多态性限制性片段进行分析。利用Proctor与Nudinka杂交F1代的双单倍体,将118个AFLP标记定位到一张大麦(Hordeum vulgare L.)的限制性片段长度多态性(RFLP)图谱上,该图谱还包括5个微卫星标记位点和4个蛋白质标记位点。AFLP标记分布于大麦染色体的各个部位,填补了大麦2L、4L和6号染色体上尚未定位RFLP位点的空白区域。有趣的是,AFLP标记很少打断RFLP簇,而是聚集在其附近。整合后的图谱覆盖1873厘摩(cM),共有282个标记。AFLP标记与RFLP标记的整合增加了图谱的总长度:在染色体末端或对应于先前空白区域增加了402 cM。另外375 cM是通过将AFLP标记定位在RFLP簇附近或非簇状RFLP标记之间获得的。

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