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QTL analysis of fruit length using rRAMP, WRKY, and AFLP markers in chili pepper
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  • 作者:Heung-Ryul Lee (1)
    Ki-Taek Kim (2)
    Hyoun-Joung Kim (1)
    Jung-Heon Han (3)
    Jeong-Ho Kim (2)
    Seon-In Yeom (1)
    Hyun Jung Kim (1)
    Won-Hee Kang (1)
    Jinxia-Shi (1)
    Soung-Woo Park (1)
    Ik-Hyun Bae (1)
    Semin Lee (4)
    Juok Cho (4)
    Donghoon Oh (4)
    Byung-Dong Kim (1) (3) (5)
  • 关键词:Capsicum ; genetic marker ; map ; assisted breeding ; SSR
  • 刊名:Horticulture, Environment, and Biotechnology
  • 出版年:2011
  • 出版时间:December 2011
  • 年:2011
  • 卷:52
  • 期:6
  • 页码:602-613
  • 全文大小:660KB
  • 参考文献:1. Barchi, L., J. Bonnet, C. Boudet, P. Signoret, I. Nagy, S. Lanteri, A. Palloix, and V. Lefebvre. 2007. A high-resolution, intraspecific linkage map of pepper ( / Capsicum annuum L.) and selection of reduced recombinant inbred line subsets for fast mapping. Genome 50:51-0. CrossRef
    2. Barchi, L., V. Lefebvre, A.-M. Sage-Palloix, S. Lanteri, and A. Palloix. 2009. QTL analysis of plant development and fruit traits in pepper performance of selective phenotyping. Theor. Appl. Genet. 118: 1157-171. CrossRef
    3. Baudracco-Arnas, S. and M. Pitrat. 1996. A genetic map of melon ( / Cucumis melo L) with RFLP, RAPD, isozyme, disease resistance and morphological markers. Theor. Appl. Genet. 93:57-4. CrossRef
    4. Becker, J., P. Vos, M. Kuiper, F. Salamini, and M. Heun. 1995. Combined mapping of AFLP and RFLP markers in barley. Mol. Gen. Genet. 249:65-3. CrossRef
    5. Ben-Chaim, A., I. Paran, R. Grube, M. Jahn, R. van Wijk, and J. Peleman. 2001. QTL mapping of fruit related traits in pepper ( / Capsicum annuum). Theor. Appl. Genet. 102:1016-028. CrossRef
    6. Ben-Chaim, A., E. Borovsk, G.-U. Rao, B. Tanyolac, and I. Paran. 2003. Fs3.1: A major fruit shape QTL conserved in Capsicum. Genome 46:1-. CrossRef
    7. Bruce, B., D.G. Eric, K. Sue, M.M. Richard, and R. Jane. 1997. Genome Analysis: A laboratory manual series 1. Cold Spring Harbor Laboratory Press, NY.
    8. Cho, Y.G., S.R. McCouch, M. Kuiper, M.R. Kang, J. Pot, J.T.M. Groenen, and M.Y. Eun. 1998. Integrated map of AFLP, SSLP, and RFLP markers using a recombinant inbred population of rice ( / Oryza sativa L). Theor. Appl. Genet. 97:370-80. CrossRef
    9. Doligez, A., A.F. Adam-Blondon, G. Cipriani, G. Di Gaspero, V. Laucou, D. Merdinoglu, C.P. Meredith, S. Riaz, C. Roux, and P. This. 2006. An integrated SSR map of grapevine based on five mapping populations. Theor. Appl. Genet. 113:369-82. CrossRef
    10. Givry, S.D., M. Bouchez, P. Chabrier, D. Milan, and T. Schiex. 2005. CARTHAGENE: Multi-population integrated genetic and radiation hybrid mapping. Bioinformatics 21:1703-704. CrossRef
    11. Kang, B.C., S.H. Nahm, J.H. Huh, H.S. Yoo, J.W. Yu, M.H. Lee, and B.D. Kim. 2001. An interspecific ( / Capsicum annuum × / C. chinese) F22 linkage map in pepper using RFLP and AFLP markers. Theor. Appl. Genet. 102:531-39. CrossRef
    12. Keim, P., J. Schupp, S. Travis, K. Clayton, T. Zhu, L. Shi, A. Ferreira, and D. Webb. 1997. A high-density soybean genetic map based on AFLP markers. Crop Sci. 37:537-43. CrossRef
    13. Kim, B.D. 2000. Linkage Map construction and molecular genetic approach in / Capsicum spp. Kor. J. Plant Tissue Culture 5:367-73.
    14. Kim, H.J., H.R. Lee, J.H. Han, S.I. Yeom, C.H. Harn, and B.D. Kim. 2008. Marker production by PCR amplification with primer pairs from conserved sequences of WRKY genes in the chili pepper. Mol. Cells 25:196-04.
    15. Lee, J.M., S.H. Nahm, Y.M. Kim, and B.D. Kim. 2004. Characterization and molecular genetic mapping of microsatellite loci in pepper. Theor. Appl. Genet. 108:619-27. CrossRef
    16. Lee, H.R., I.H. Bae, S.W. Park, H.J. Kim, W.K. Min, J.H. Han, K.T. Kim, and B.D. Kim. 2009. Construction of an integrated pepper map using RFLP, SSR, CAPS, AFLP, WRKY, and BAC end sequences. Mol. Cells 27:21-7. CrossRef
    17. Livingstone, K.D., V.K. Lackney, J.R. Blauth, R. van Wijk, and M.K. Jahn. 1999. Genome mapping in capsicum and the evolution of genome structure in the Solanaceae. Genetics 152:1183-202.
    18. Maheswarn, M., P. Subudhi, S. Nandi, J. Xu, A. Parco, D. Yang, and N. Huang. 1997. Polymorphism, distribution, and segregation of AFLP markers in a double haploid rice population. Theor. Appl. Genet. 94:39-5. CrossRef
    19. Marques, C.M., J.A. Araujo, J.G. Ferreira, R. Whetten, D.M. O’Malley, B.H. Liu, and R. Sederoff. 1998. AFLP genetic maps of Eucalyptus globulus and E. tereticornis. Theor. Appl. Genet. 96:727-37. CrossRef
    20. Min, W.K., J.H. Han, W.H. Kang, H.R. Lee, and B.D. Kim. 2008. Reverse random amplified microsatellite polymorphism reveals enhanced polymorphisms in the 3-end of simple sequence repeats in the pepper genome. Mol. Cells 26:250-57.
    21. Minamiyama, Y., M. Tsuro, and M. Hirai. 2006. An SSR-based linkage map of / Capsicum annuum. Mol. Breed. 18:157-69. CrossRef
    22. Rao, G.U., A. Ben Chaim, Y. Borovsky, and I. Paran. 2003. Mapping of yield-related QTLs in pper in an interspecific cross of / Capsicum annuum and / C. frutescens. Theor. Appl. Genet. 106:1457-466.
    23. Richardson, T., S. Cato, J. Ramser, G. Kahl, and K. Weising. 1995. Hybridization of microsatellites to RAPD: A new source of polymorphic markers. Nucleic Acids Res. 23:3798-799. CrossRef
    24. Rouppe van der Voort, J.N., P. van Zandvoort, H.J. van Eck, R.T. Folkertsma, R.C. Hutten, J. Draaistra, F.J. Gommers, E. Jacobsen, J. Helder, and J. Bakker. 1997. Use of allele specificity of comigrating AFLP markers used to align genetic maps form different potato genotypes. Mol. Gen. Genet. 255:438-47. CrossRef
    25. Saliba-Colombani, V., C. Mathilde, G. Laurent., and P. Jacqueline. 2000. Efficiency of RFLP, RAPD, and AFLP markers for the construction of an intraspecific map of the tomato genome. Genome 43:29-0. CrossRef
    26. Saliba, V., P. Duffe, L. Gervais, and M. Causse. 1998. Efficiency of AFLP markers to saturate a tomato intraspecific map. Rpt. Tomato Genet. Coop. 48:44-5.
    27. Sinnott, E.W. and S. Kaiser. 1934. Two types of genetic control over the development of shape. Bull. Torrey Bot. Club 61:1-. CrossRef
    28. Vos, P., R. Hogers, M. Bleeker, M. Reijans, T. Van de Lee, M. Hornes, A. Frijters, J. Pot, J. Peleman, M. Kuiper, and M. Zabeau. 1995. AFLP: A new technique for DNA fingerprinting. Nucleic Acids Res. 23:4407-414. CrossRef
    29. Wang S., C.J. Basten, and Z.-B. Zeng. 2010. Windows QTL Cartographer 2.51. Department of Statistics, North Carolina State University, Raleigh, NC. (http://statgen.ncsu.edu/qtlcart/WQTLCart.htm)
    30. Wang, Y.H., C.E. Thomas, and R.A. Dean. 1997. A genetic map of melon ( / Cucumis melo L.) based on amplified fragment length polymorphism (AFLP) markers. Theor. Appl. Genet. 95:791-98. CrossRef
    31. Wu, K.-S., R. Jones, L. Danneberger, and P.A. Scolnik. 1994. Detection of microsatellite polymorphisms without cloning. Nucleic Acids Res. 22:3257-258. CrossRef
    32. Yi, G., J.M. Lee, S. Lee, D. Choi, and B.D. Kim. 2006. Exploitation of pepper EST-SSRs and an SSR-based linkage map. Theor. Appl. Genet. 114:113-30. CrossRef
    33. Zygier, S., A.B. Chaim, A. Efrati, G. Kaluzky, Y. Borovsky, and I. Paran. 2005. QTLs mapping for fruit size and shape in chromosomes 2 and 4 in pepper and a comparison of the pepper QTL map with that of tomato. Theor. Appl. Genet. 111:437-45. CrossRef
  • 作者单位:Heung-Ryul Lee (1)
    Ki-Taek Kim (2)
    Hyoun-Joung Kim (1)
    Jung-Heon Han (3)
    Jeong-Ho Kim (2)
    Seon-In Yeom (1)
    Hyun Jung Kim (1)
    Won-Hee Kang (1)
    Jinxia-Shi (1)
    Soung-Woo Park (1)
    Ik-Hyun Bae (1)
    Semin Lee (4)
    Juok Cho (4)
    Donghoon Oh (4)
    Byung-Dong Kim (1) (3) (5)

    1. Department of Plant Science, Seoul National University, Seoul, 151-921, Korea
    2. National Institute of Horticultural & Herbal Science, Suwon, 440-706, Korea
    3. Center for Plant Molecular Genetics and Breeding Research, Seoul National University, Seoul, 151-921, Korea
    4. Object Interaction Technologies, Inc., Daejeon, 305-333, Korea
    5. Research Institute for Agriculture and Life Sciences, Seoul National University, Seoul, 151-921, Korea
文摘
A pepper genetic map was constructed from F2 mapping population of 93 individuals from a cross between Capsicum annuum ‘F68-and C. chinense ‘Habanero- Surrey was made for the map distribution and polymorphism level of these marker groups; reverse random amplification microsatellite polymorphism (rRAMP), WRKY and amplified fragment length polymorphisms (AFLP). A total of 912 molecular markers [356 rRAMP, 190 WRKY, 305 AFLP, and 61 simple sequence repeats (SSR)] were developed in this study. The rRAMP and WRKY markers were more evenly scattered in the pepper genome than the AFLP and SSR markers, and filled the gaps not populated by the other markers. The interspecific pepper map contained 28 linkage groups with 625 linked markers and covered 3377.2 cM with an average interval of 5.9 cM. On the basis of the map, the fruit length quantitative trait locus (QTL) was analyzed and these QTL regions were detected near rRAMP and WRKY markers on the chromosome 3, 5, 11, and LG3. These marker system, map information, and detected QTLs could be one of basic information for pepper research.

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