[1] Hsam S L K,Lapochkina I F,Zeller F J.Chromosomal location of genes for resistance to powdery mildew in common wheat(Triticum aestium L.em.Thell.)gene Pm32 in a wheat-Aegilops speltoides translocation line[J].Euphytica,2003,133(3):367-370.
[2] 邱永春,张书绅.小麦抗白粉病基因及其分子标记研究进展[J].麦类作物学报,2004,24(2):127-132.
[3] Miranda L M,Murphy J P,Marshall D,et al.Pm34:a new powdery mildew resistance gene transferred from Aegilops trauschii Coss,to common wheat(Tritium aestivum L.)[J].Theor Appl Genet,2006,113:1497-1504.
[4] Duan X Y,Sheng B Q,Zhou Y L,et al.Monitoring of the virulence population of Erysiphe graminis f.sp.tritici.[J].Acta Phytophylacica,1998,25:31-36.
[5] 曹乃倩,刘桂茹,杨学举.小麦抗白粉病基因定位及分子标记辅助育种综述[J].中国农学通报,2007(23):482-486.
[6] 桑大军,许为钢,胡琳,等,河南省小麦品种白粉病抗性基因的分子鉴定及分子标记辅助育种[J].华北农学报,2006,20(1):86-91.
[7] R(o)der M S,Plaschke J,K(o)nig S U,et al.Abundance,variability and chromosomal location of microsatellites in wheat[J].Mol Gen Genet,1995,246:327-333.
[8] Wang Z,Weber J L,Zhong G,et al.Survey of plant short tandem DNA repeat[J].Theor Appl Genet,1994,88:1-6.
[9] R(o)der M S,Korzun V,Wendehake K,et al.A microsatellite maps of wheat[J].Genetics,1998,149:2007-2023.
[10] Xie C J,Sun Q X,Ni Z F.Chromosomal location of a Triticum dicoccoides-derived powdery mildew resistance gene in common wheat by using microsatellite markers[J].Theor Appl Genet,2003,106:34l-345.
[11] Liu Z Y,Sun Q X,Ni Z F,et al.Development of SCAR markers linked to the Pm21 gene conferring resistance to powdery mildew in common wheat[J].Plant Breeding,1999,118:215-219.
[12] Ma J X,Zhou R H,Dong Y S,et al.Molecular mapping and detection of the yellow rust resistance gene Yr26 in wheat transferred from Triticum torgidum L.using microsatellite markers[J].Euphytica,2001,120:219-226.
[13] Zhu Zeng,Fu Ti hua,Yuan Tang,et al.Identification and chromosomal locations of novel genes for resistance to powdery mildew and stripe rust in a wheat line 101-3[J].Euphytica,2007,156:89-94.
[14] Zhu Zhen-dong,Zhou Rong-hua,Kong Xiu-ying,et al.Microsatellite markers linked to 2 powdery mildew resistance genes introgressed from Triticum carthlicum accession PS5 into common wheat[J].Genome,2005,48:585-590.
[15] Rogers S O,Bendich A J.Extraction of DNA from milligram amounts of fresh,herbarium and mummified plant tissues[J].Plant Mol Biol,1985,5:69-76.
[16] Kosambi D D.The estimation of map distance from recombination values[J].Ann Eugen,1944,12:172-175.
[17] Tosa Y,Tsujimoto H,Ogura H.Identification of a gene for resistance to wheatgrass powdery mildew fungus in the common wheat cultivar Chinese Spring[J].Genome,1988,30:612-616.
[18] Tosa Y,Sakai K.The genetics of resistance of hexaploid wheat to the wheatgrass powdery mildew fungus in the common wheat cultivar Chinese Spring[J].Genome,1990,30:612-614.
[19] Jia J Z.RFLP-based maps of the homoeologous group-6 chromosomes of wheat and their in the tagging of Pm12,powdery mildew resistance gene transferred from Aegilops speltiodes to wheat[J].Theor Appl Genet,1996,92:559-565.
[20] Friebe B,Heun M,Tuleen N,et al.Cytogenetically monitored transfer of powdery mildew resistance from rye to wheat[J].Crop Sci,1994,34:621-625.
[21] Jarve K,Peusha H O,Tsymbalova J,et al.Chromosomal location of a Triticum timopheevii-derived powdery mildew resistance gene transferred to common wheat[J].Genome,2000,43:377-381.
[22] Qi L L,Cao M S,Chen P D,et al.Identification,mapping and application of polymorphic DNA associated with resistance gene Pm21 of wheat[J].Genome,1995,39:191-197. |