用户名: 密码: 验证码:
The effectiveness of molecular markers for the identification of Lr28, Lr35, and Lr47 genes in common wheat
详细信息    查看全文
  • 作者:E. I. Gultyaeva (1)
    A. S. Orina (1)
    Ph. B. Gannibal (1)
    O. P. Mitrofanova (2)
    I. G. Odintsova (2)
    L. I. Laikova (3)
  • 刊名:Russian Journal of Genetics
  • 出版年:2014
  • 出版时间:February 2014
  • 年:2014
  • 卷:50
  • 期:2
  • 页码:131-139
  • 全文大小:184 KB
  • 参考文献:1. McIntosh, R.A., Yamazaki, Y., Dubcovsky, J., et al., Catalogue of gene symbols for wheat, Wheat Genetic Resources Database KOMUGI, 2008. http://www.shigen.nig.ac.jp/wheat/komugi/genes/download.jsp.
    2. McIntosh, R.A., Dubcovsky, J., Rogers, J., et al., Catalogue of gene symbols for wheat: 2011 supplement, Wheat Genetic Resources Database KOMUGI, 2011. http://www.shigen.nig.ac.jp/wheat/komugi/genes/download.jsp.
    3. McIntosh, R.A., Wellings, C.R., and Park, R.F., / Wheat Rusts: an Atlas of Resistance Genes, Australia: CSIRO Publ., 1995. CrossRef
    4. Cherukuri, D.P., Gupta, S.K., Charpe, A., et al., Molecular mapping of / Aegilops speltoides derived leaf rust resistance gene / Lr28 in wheat, / Euphytica, 2005, vol. 143, pp. 19-6. CrossRef
    5. Helguera, M., Khan, I.A., and Dubcovsky, J., Development of PCR markers for wheat leaf rust resistance gene / Lr47, / Theor. Appl. Genet., 2000, vol. 101, pp. 625-31. CrossRef
    6. Mago, R., Zhang, P., Bariana, H.S., et al., Development of wheat lines carrying stem rust resistance gene / Sr39 with reduced / Aegilops speltoides chromatin and simple PCR markers for marker-assisted selection, / Theor. Appl. Genet., 2009, vol. 124, pp. 65-0.
    7. Mago, R. and Dundas, I., Disease resistance. / Sr39. http://maswheat.ucdavis.edu/protocols/Sr39/index.htm
    8. Kumar, A.A. and Raghavaiah, P., Effect of the leaf rust resistance gene / Lr28 on grain yield and bread-making quality of wheat, / Plant Breed., 2004, vol. 123, pp. 35-8. CrossRef
    9. Dubcovsky, J., Lukaszewski, A.J., Echaide, M., et al., Molecular characterization of two / Triticum speltoides interstitial translocations carrying leaf rust and greenbug resistance genes, / Crop Sci., 1998, vol. 38, pp. 1655-660. CrossRef
    10. Helguera, M., Vanzetti, L., Soria, M., et al., PCR markers for / Triticum speltoides leaf rust resistance gene / Lr51 and their use to develop isogenic hard red spring wheat lines, / Crop Sci., 2005, vol. 45, pp. 728-34. CrossRef
    11. Marais, G.F., Bekker, T.A., Eksteen, A., et al., Attempts to remove gametocidal genes co-transferred to common wheat with rust resistance from / Aegilops speltoides, / Euphytica, 2010, vol. 171, pp. 71-5. CrossRef
    12. Odintsova, I.G., Agafonova, N.A., and Boguslavskii, R.L., Introgression lines of common wheat with resistance to leaf rust, transmitted from / Aegilops speltoides, in / Iskhodnyi material i problemy selektsii pshenitsy i triticale (Starting Material and the Problems of Wheat and Triticale Breeding), vol. 142 of / Sbornik nauchnykh trudov po prikladnoi botanike, genetike i selektsii (Collection of Scientific Papers on Applied Botany, Genetics, and Plant Breeding), Leningrad: Vsesoyuznii Institut Rastenievodstva, 1991, pp. 106-10.
    13. Ibraimova, Zh.K., Tankimanova, M.K., and Bersimbaev, R.I., Chromosomal localization of the gametocidic gene in a wheat line, / Cytol. Genet., 2001, vol. 35, no. 5, pp. 15-9.
    14. Chelkowski, J., Golka, L., and Stepien, L., Application of STS markers for leaf rust resistance genes in nearisogenic lines of spring wheat cv. Thatcher, / J. Appl. Genet., 2003, vol. 44, pp. 323-38.
    15. B?aszczyk, L., Chelkowski, J., Korsun, V., et al., Verification of STS markers for leaf rust resistance genes of wheat by seven European laboratories, / Cell. Mol. Biol. Lett., 2004, vol. 9, pp. 805-17. http://www.cmbl.org.pl
    16. B?aszczyk, L., Kr?mer, I., Ordon, F., et al., Validity of selected DNA markers for breeding leaf rust resistant wheat, / Cereal Res. Commun., 2008, vol. 36, no. 2, pp. 201-13. CrossRef
    17. Nocente, F., Gazza, L., and Pasquini, M., Evaluation of leaf rust resistance genes / Lr1, Lr9, Lr24, Lr47 and their introgression into common wheat cultivars by marker-assisted selection, / Euphytica, 2007, vol. 155, pp. 329-36. CrossRef
    18. Serfling, A., Kr?mer, I., Lind, V., et al., Diagnostic value of molecular markers for / Lr genes and characterization of leaf rust resistance of German winter wheat cultivars with regard to the stability of vertical resistance, / Eur. J. Plant Pathol., 2011, vol. 130, no. 4, pp. 559-75. CrossRef
    19. Gold, J., Harder, D., Townley-Smith, F., et al., Development of a molecular marker for rust resistance genes / Sr39 and / Lr35 in wheat breeding lines, / Electron. J. Biotechnol., 1999, vol. 2, no. 1, pp. 35-0.
    20. Seyfarth, R., Feuillet, C., Schachermayr, G., et al., Development of a molecular marker for the adult plant leaf rust resistance gene / Lr35 in wheat, / Theor. Appl. Genet., 1999, vol. 99, pp. 554-60. CrossRef
    21. Naik, S., Gill, K.S., Rao, V.S.P., et al., Identification of a STS marker linked to an / Aegilops speltoides-derived leaf rust resistance gene / Lr28 in wheat, / Theor. Appl. Genet., 1998, vol. 97, pp. 535-40. CrossRef
    22. Disease resistance: / Lr47. http://maswheat.ucdavis.edu/protocols/Lr47/index.htm
    23. Bipinraj, A., Honrao, B., Prashar, M., et al., Validation and identification of molecular markers linked to the leaf rust resistance gene / Lr28 in wheat, / J. Appl. Genet., 2011, vol. 52, pp. 171-75. CrossRef
    24. Niu, Z., Klindworth, D.L., Friesen, T.L., et al., Targeted introgression of a wheat stem rust resistance gene by DNA marker-assisted chromosome engineering, / Genetics, 2011, vol. 187, pp. 1011-021. CrossRef
    25. Golovnina, K.A., Glushkov, S.A., Blinov, A.G., et al., Molecular phylogeny of the genus / Triticum L., / Plant Syst. Evol., 2007, vol. 264, pp. 195-16. doi 10.1007/S00606-006-0476-x CrossRef
    26. Edwards, K., Johnstone, C., and Thompson, C., A simple and rapid method for the preparation of plant genomic DNA for PCR analysis, / Nucleic Acids Res., 1991, vol. 19, no. 6, p. 1349. CrossRef
    27. Dorokhov, D.B. and Kloke, E., Rapid and economical technology of RAPD analysis of plant genomes, / Russ. J. Genet., 1997, vol. 3, no. 4, pp. 443-50.
    28. Thompson, J.D., Gibson, T.J., Plewniak, F., et al., The ClustalX windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools, / Nucleic Acids Res., 1997, vol. 24, pp. 4876-882. CrossRef
    29. Hall, T.A., Bioedit: a user-friendly biological sequence alignment editor and analysis program for Windows 95/98/NT, / Nucleic Acids Symp. Ser., 1999, vol. 41, pp. 95-8.
    30. Saitou, N. and Nei, M., The neighbour-joining method: a new method for reconstructing phylogenetic trees, / Mol. Biol. Evol., 1987, vol. 4, pp. 406-25.
    31. Van de Peer, Y. and De Wachter, R., Treecon for windows: a software package for the construction and drawing of evolutionary trees for the Microsoft Windows environment, / Comput. Appl. Biosci., 1994, vol. 10, pp. 569-70.
    32. Mikhailova, L.A. and Kvitko, K.V., Laboratory methods of brown rust pathogen growth, / Mikol. Fitopatol., 1970, vol. 4, no. 3, pp. 269-73.
    33. Mesterházy, á., Barto, P., Goyeau, G., et al., European virulence survey for leaf rust in wheat, / Agronomie, 2000, vol. 20, pp. 793-04. CrossRef
    34. L. I. Laikova, I. A. Belan, E. D. Badaeva, L. P. Rosseeva, S. S. Shepelev, V. K. Shumny, and L. A. Pershina, Development and study of spring bread wheat variety Pamyati Maystrenko with introgression of genetic material from synthetic hexaploid / Triticum timopheevii Zhuk. × / Aegilops tauschii Coss., / Russ. J. Genet., 2013, vol. 49, no. 1, pp. 89-7. CrossRef
    35. E. R. Davoyan, R. O. Davoyan, I. V. Bebyakina, O. R. Davoyan, Yu. S. Zubanova, A. M. Kravchenko, and A. N. Zinchenko, Identification of a leaf-rust resistance gene in species of / Aegilops L., synthetic forms, and introgression lines of common wheat, / Russ. J. Genet.: Appl. Res., 2012, vol. 2, no. 4, pp. 325-29. CrossRef
  • 作者单位:E. I. Gultyaeva (1)
    A. S. Orina (1)
    Ph. B. Gannibal (1)
    O. P. Mitrofanova (2)
    I. G. Odintsova (2)
    L. I. Laikova (3)

    1. All-Russia Scientific Institute of Plant Protection, Russian Academy of Agricultural Sciences, St. Petersburg, 196608, Russia
    2. Vavilov Research Institute of Plant Industry, Russian Academy of Agricultural Sciences, ??, 190000, Russia
    3. The Institute of Cytology and Genetics, Siberian Branch of RAS, Novosibirsk, 630090, Russia
  • ISSN:1608-3369
文摘
The effectiveness of molecular markers for the identification of leaf rust resistance genes Lr28, Lr35 and Lr47 transferred to common wheat from Ae. speltoides was assessed using samples of Triticum spp. and Aegilops spp. The markers Sr39F2/R3, BCD260F1/35R2 of the gene Lr35 and PS10 of the Lr47 gene were characterized by high efficiency and were revealed in the lines of common wheat containing these genes, and samples of Ae. speltoides species, the donor of these genes. The marker SCS421 of the Lr28 gene and the markers Sr39#22r, Sr39#50s, BE500705 of the Lr35/Sr39 genes turned out to be less specific. The marker SCS421 was amplified in the samples of the T. timopheevii species, line KS90WRC010 (Lr41), the cultivar of common wheat Pamyati Maystrenko, obtained using synthetic hexaploid T. timopheevii × Ae. tauschii and introgressive lines obtained using Ae. speltoides. The marker BE500705, which indicates the absence of the Lr35/Sr39 genes, was not revealed in the lines TcLr35 and MqSr39, in Ae. speltoides, Ae. tauschii and T. boeoticum (kk-61034, 61038). Analysis of the nucleotide sequences of amplification products obtained with the markers SCS421 and Sr39#22r indicated their low homology with TcLr28 and TcLr35. Using molecular markers, a different distribution of the Lr28 (77%), Lr35 (100%) and Lr47 (15%) genes in 13 studied samples of Ae. speltoides was shown. In introgressive lines derived from Ae. speltoides, contemporary Russian cultivars of common wheat and triticale the Lr28, Lr35, Lr47 genes were not revealed.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700