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冀豆12遗传图谱初步构建

DOI: 10.7668/hbnxb.2009.02.013, PP. 60-63

Keywords: 大豆,冀豆12,遗传图谱,SSR

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Abstract:

以优良大豆品种冀豆12与野生大豆ZYD02738杂交建立基础群体,利用F2为作图群体,研究SSR标记位点在该群体中的多态性、偏分离并构建遗传图谱.结果表明,两亲本间SSR位点多态性比例79.9%,偏分离位点比例9.7%,构建的遗传图谱包含25个连锁群,总长度837.1cM,标记间平均距离11.2cM,标记间排列顺序与公共连锁图一致性较强.该研究为国内学者研究冀豆12遗传网络和重要农艺性状的基因、QTL定位等研究奠定了初步基础.

References

[1]  李文才,李涛,赵逢涛.小麦D基因组产量性状QTL定位[J].华北农学报,2005,20(1):23-26.
[2]  Apuya N R,Frazie B L,Keim P,et al.Restriction fragment length polymorphisms as genetic marker in soybean,Glycine max (L.) Merrill[J].Theor Appl Genet,1988,75:889-901.
[3]  Keim P,Diers B W,Olson T C,et al.RFLP mapping in soybean association between marker loci and variation in quantitative traits[J].Genetics,1990,126:735-742.
[4]  Shoemaker R C,Olson T C.Molecular linkage map of soybean (Glyxine max L.Merr.)[M] //O''Brien S,J Genetic Maps:Locus maps of complex genomes.New York:Cold Spring Harbor Laboratory Press,New York,1993:6131-6138.
[5]  Lark K G,Weisomann J M,Matthews B F,et al.A genetic map of soybean(Clycine max L.)using intra specific cross of two cultivars:"Minsoy" and "Noirl"[J].Theor Appl Genet,1993,86:901-908.
[6]  Cregan P B,Jarivk T,Bush A L,et al.An integrated genetic linkage map of the soybean genome[J].Crop Sci,1999,39 (5):1464-1490.
[7]  Song Q J,Marek L F,Shoemaker R C.A new integrated genetic linkage map of the soybean[J].Theor Appl Genet,2004,109:122-128.
[8]  张德水,董伟,惠东威,等.用栽培大豆与半野生大豆间的杂种F2群体构建基因组分子标记连锁框架图[J].科学通报,1997,42(12):1326-1330.
[9]  Hyten D L,Pantalone V R,Sams C E,et al.Seed quality QTL in a prominent soybean population[J].Theoretical and Applied Genetics,2004,109(3):552-561.
[10]  Naoki Yamanaka,Satoshi Watanabe,Kyoko Toda.Fine mapping of the FT1 locus for soybean flowering time using a residual heterozygous line derived from a recombinant inbred line[J].Theoretical and Applied Genetics,2005,110:634-639.
[11]  Kassem M A,Shultz J K,Meksem Y Cho,et al.Lighffoot.An updated Essex'' by Forrest'' linkage map and first composite interval map of QTL underlying six soybean traits[J].Theor Appl Genet,2006,113:1015-1026.
[12]  Shawn M J,Winter Barry J,ShelpTerry R,et al.QTL associated with horizontal resistance to soybean cyst nematode in Glycine soja PI464925B[J].Theor Appl Genet,2007,114:461-472.
[13]  李卫东,张孟臣.黄淮海夏大豆及品种参数[M].北京:中国农业科学技术出版社,2006.
[14]  Li Zhi-Kang,Fu Bin-Ying,Gao Yong-Ming,et al.Genomewide introgression lines and their use in genetic and molecular dissection of complex phenotypes in rice (Oryza sativa L.)[J].Plant Molecular Biology,2005,59:33-52.
[15]  陈庆山,张忠臣,刘春燕,等.应用Charleston×东农594重组自交系群体构建SSR大豆遗传图谱[J].中国农业科学,2005,38(7):1312-1316.
[16]  Banhui Liu,Toshiro Fujita,Zehong Yan,et al.QTL mapping of domestication-related traits in soybean(Glycine max)[J].Annals of Botany,2007,100:1027-1038.
[17]  Naoki Yamanaka,Soishi Ninomiya,Masako Hoshi,et al.An informative linkage map of soybean reveals QTLs for flowering time,leaflet morphology and regions of segregation distortion[J].DNA Research,2001,8:61-72.
[18]  逯晓萍,云锦风,肖宇红.高丹草(高粱×苏丹草)产量及其构成因素的QTL定位与分析[J].华北农学报,2007,22(4):80-85.
[19]  姜丽丽,樊明寿,郭九峰.干旱和灌溉两种处理条件下玉米株高、产量的QTL分析[J].华北农学报,2007,22(4):86-90.
[20]  李玉玲,李学慧,董永彬.利用相同来源F2∶3和BC2S1群体定位玉米生育期QTL[J].华北农学报,2007,22(6):38-43.
[21]  吴晓雷,王永军,贺超英,等.大豆重要农艺性状的QTL分析[J].遗传学报,2001,28(10):947-954.

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