Identification of Anther-specific Gene Expression from T-DNA Tagging Rice

Gothandam K. Muthukalianan
;이상현;염현식;구수진;권민중;강홍규;안진흥;정용윤

  • Published : 20030000

Abstract

Keywords

References

  1. Trends Genet. v.13 T-DNA insertion mutagenisis in Arabidopsis: going back and forth Azpiroz-Leehan, R.;Feldmann, K. A. https://doi.org/10.1016/S0168-9525(97)01094-9
  2. Curr. Biol. v.8 Positional information in root epidermis is defined during embryogenesis and acts in domains with strict boundaries Berger, F.;Haseloff, J.;Schiefelbein, J.;Dolan, L. https://doi.org/10.1016/S0960-9822(98)70176-9
  3. Dev. Biol. v.194 Stomata patterning on the hypocotyls of Arabidopsis thaliana is controlled by genes involved in the control of root epidermis patterning Berger, F.;Linstead, P.;Dolan, L.;Haseloff, J. https://doi.org/10.1006/dbio.1997.8836
  4. Plant Mol. Biol. v.15 Nucleotide sequence of two anther specific cDNAs from sunflower (Healianths annuus L.) Domon, C.;Evrard, J.-L.;Herdenberger, F.;Pillay, D. T. N.;Steinmetz, A. https://doi.org/10.1007/BF00017838
  5. Plant Mol. Biol. v.30 Isolation and characterization of two cDNA clones for mRNAs that are abundantly expressed in immature anthers of rice (Oryza sativa L.) Hihara, Y.;Hara, C.;Uchimiya, H. https://doi.org/10.1007/BF00019551
  6. Advances in Hybrid Rice Technology Molecular strategies for hybrid rice: male sterility and apomixes Jefferson, R. A.;Nugroho, S.;Viramani, S. S.(ed.);Siddiq, E. A.(ed.);Muralidharan, K.(ed.)
  7. EMBO J. v.6 GUS fusions: β-glucuronidase as a sensitive and versatile gene fusion marker in higher plants Jefferson, R. A.;Kavanagh, T. A.;Bevan, M. W.
  8. Plant. Mol. Biol. v.39 Isolation and characterization of an anther-specific gene, RA8, from rice (Oryza sativa L.) Jeon, J. S.;Chung, Y.-Y.;Lee, S.;Yi, G. H.;Oh, B. G.;An, G. https://doi.org/10.1023/A:1006157603096
  9. Plant J. v.22 T-DNA insertional mutagenesis for functional genomics in rice Jeon, J.-S.;Lee, S.;Jung, K.-H.;Jun, S.-H.;Jeong, D.-H.;Lee, J.;Kim, C.;Jang, S.;Lee, S.;Yang, K.;Nam, J.;An, K.;Han, M.-J.;Sung, R.-J.;Choi, H.-S.;Yu, J.-H.;Choi, J.-H.;Cho, S.-Y.;Cha, S.-S.;Kim, S.-I.;An, G. https://doi.org/10.1046/j.1365-313x.2000.00767.x
  10. Plant Physiol. T-DNA insertional mutagenesis for activation-tagging in rice Jeong, D.-H.;An, S.;Kang, H.-G.;Moon, S.;Han, J.-J.;Park, S.;Lee, H. S.;An, K.;An, G.
  11. Plant Cell v.2 Different temporal and spatial gene expression patterns occur during anther development Koltunow, A. M.;Truettner, J.;Cox, K. H.;Wallroth, M.;Goldberg, R. B. https://doi.org/10.1105/tpc.2.12.1201
  12. Plant Cell v.11 T-DNA as an insertional mutagen in Arabidopsis Krysan, P. J.;Young, J. C.;Sussman, M. R. https://doi.org/10.1105/tpc.11.12.2283
  13. Nature v.404 SHATTERPROOF MADSbox genes control seed dispersal in Arabidopsis Liljegren, S. J.;Ditta, G. S.;Eshed, Y.;Savidge, B.;Bowman, J. L.;Yanofsky, M. F. https://doi.org/10.1038/35008089
  14. Transgenic Res. v.2 Tagging genomic sequences that direct transgene expression by activation of a promoter trap in plants Lindsey, K.;Wei, W.;Clarke, M. C.;McArdle, H. F.;Rooke, L. M.;Toppoing, J. F. https://doi.org/10.1007/BF01977679
  15. Development v.124 Organization and cell differentiation in lateral roots of Arabidopsis thaliana Malamy, J. E.;Benfey, P. N.
  16. Mol. Cells v.14 BAN103, a pollen-preferential gene, from Chinese cabbage and its promoter activity Park, B. S.;Park, Y. D.;Kim, H. U.;Jin, Y. M.;Kim, H. I.
  17. Plant Cell v.9 TOUSLED participates in apical tissue formation during gynoecium development in Arabidopsis Roe, J. L.;Nemhauser, J. L.;Zambryski, P. C. https://doi.org/10.1105/tpc.9.3.335
  18. Plant Mol. Biol. v.17 Patterns of gene expression in developing anthers of Brassica napus Scott, R.;Dagless, E.;Hodge, R.;Paul, W.;Soufleri, I.;Draper, J. https://doi.org/10.1007/BF00039494
  19. Mol. Gen. Genet. v.234 Brassica anther-specific genes: characterization and in situ localization of expression Shen, J. B.;Hsu, F. C. https://doi.org/10.1007/BF00538697
  20. Plant Cell v.7 LRP1, a gene expressed in lateral and adventitious root primordial of Arabidopsis Smith, D. L.;Fedoroff, N. V. https://doi.org/10.1105/tpc.7.6.735
  21. Mol. Gen. Genet. v.222 Identification and characterization of stamen and tapetum-specific genes from tomato Smith, A. G.;Gasser, C. S.;Budelier, K. A.;Fraley, R. T.
  22. Plant Cell v.12 Gene traps: tools for plant development and genomics Springer, P. S. https://doi.org/10.1105/tpc.12.7.1007
  23. Plant Cell v.9 Promoter trap markers differentiate structural and positional components of polar development in Arabidopsis Topping, J. F.;Lindsey, K. https://doi.org/10.1105/tpc.9.10.1713
  24. Plant J. v.5 Identification of molecular markers of embryogenesis in Arabidopsis thaliana by promoter trapping Topping, J. F.;Agyeman, F.;Henricot, B.;Lindsey, K. https://doi.org/10.1046/j.1365-313X.1994.5060895.x
  25. Plant Mol. Biol. v.26 Molecular characterization of rice genes specially expressed in the anther tapetum Tsuchiya, T.;Toriyama, K.;Ejiri, S.;Hinata, K. https://doi.org/10.1007/BF00019488
  26. Mol. Gen. Genet. v.256 Genetic analyses of the formation of the serrated margin of leaf blades in Arabidopsis: combination of a mutational analysis of leaf morphogenesis with the characterization of a specific marker gene expressed in hydathodes and stipules Tsukaya, H.;Uchimiya, H. https://doi.org/10.1007/s004380050565
  27. Plant Physiol. v.122 Activation tagging in Arabidopsis Weigel, D.;Ahn, J. H.;Blazquez, M. A.;Borevitz, J. O.;Christensen, S. K.;Fankhauser, C.;Ferrandiz, C.;Kardailsky, I.;Malancharuvil, E. J.;Neff, M. M.;Nguyen, J. T.;Sato, S.;Wang, Z. Y.;Xia, Y.;Dixon, R. A.;Harrison, M. J.;Lamb, C. J.;Yanofsky, M. F.;Chory, J. https://doi.org/10.1104/pp.122.4.1003
  28. Development v.125 The HOBBIT gene is required for formation of the root meristem in the Arabidopsis embryo Willemsen, V.;Wolkenfelt, H.;de Vrieze, G.;Weisbeek, P.;Scheres, B.
  29. Science v.5 A draft sequence of the rice genome (Oryza sativa L. ssp. indica) Yu, J.;Hu, S.;Wang, J.;Li, S.;Wong, G. K.-S.;Liu, B.;Deng, Y.;Dai, L.;Zhou, Y.;Zhang, X.;Cao, M.;Liu, J.;Sun, J.;Tang, J.;Chen, Y.;Huang, X.;Lin, W.;Ye, C.;Tong, W.;Cong, L.;Geng, J.;Han, Y.;Li, L.;Li, W.;Hu, G.;Huang, X.;Li, W.;Li, J.;Liu, Z.;Li, L.;Liu, J.;Qi, Q.;Liu, J.;Li, L.;Li, T.;Wang, X.;Lu, H.;Wu, T.;Zhu, M.;Ni, P.;Han, H.;Dong, W.;Ren, X.;Feng, X.;Cui, P.;Li, X.;Wang, H.;Xu, X.;Zhai, W.;Xu, Z.;Zhang, J.;He, S.;Zhang, J.;Xu, J.;Zhang, K.;Zheng, X.;Dong, J.;Zeng, W.;Tao, Z.;Ye, J.;Tan, J.;Ren, X.;Chen, X.;He, J.;Liu, D.;Tian, W.;Tian, C.;Xia, H.;Bao, Q.;Li, G.;Gao, H.;Cao, T.;Wang, J.;Zhao, W.;Li, P.;Chen, W.;Wang, X.;Zhang, Y.;Hu, J.;Wang, J.;Liu, S.;Yang, J.;Zhang, G.;Xiong, Y.;Li, Z.;Mao, L.;Zhou, C.;Zhu, Z.;Chen, R.;Hao, B.;Zheng, W.;Chen, S.;Guo, W.;Li, G.;Liu, S.;Tao, M.;Wang, J.;Zhu, L.;Yuan, L.;Yang, H. https://doi.org/10.1126/science.ns-5.103.79