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Publications 2009-2004

Group of Reproductive Development and Apomixis

Publications 2009-2004

Group of Reproductive Development and Apomixis

  • Vielle-Calzada J-Ph, Martínez de la Vega O, Hernández-Guzmán G, Ibarra-Laclette E, Alvarez-Mejía C, Vega-Arreguín JC, Jiménez-Moraila B, Fernández-Cortés A, Corona-Armenta G, Herrera-Estrella L, Herrera-Estrella A. 2009. The Palomero genome suggests metal effects on domestication. Science 326 (5956): 1078.
  • Vega-Arreguín JC, Ibarra-Laclette E, Jimenez-Moraila B, Martínez de la Vega O., Vielle-Calzada J-Ph., Herrera-Estrella L. and Herrera-Estrella A. 2009. Deep sampling of the Palomero maize transcriptome by a high throughput strategy of pyrosequencing. BMC Genomics 10: 299.
  • Capron A., Gourgues M., Neiva L., Faure J-E., Berger F., Pagnussat G., Krishnan A., Alvarez-Mejia C., Vielle-Calzada J-Ph., Lee Y, Liu B., Sundaresan V. 2008. Maternal control of male-gamete delivery during double fertilization in Arabidopsis involves a putative GPI-anchored protein encoded by the LORELEI gene. The Plant Cell 20: 3038-3049.
  • Holuigue L, Vielle-Calzada J-Ph., and Gutierrez R. 2008. Crops in all shapes and sizes. Genome Biology 9: 319-320.
  • Alcaraz LD, Olmedo G, Bonilla G, Cerritos R, Hernández G, Cruz A, Ramírez E, Putonti C, Jiménez B, Martínez E, López V, Arvizu JL, Ayala F, Razo F, Caballero J, Siefert J, Eguiarte L, Vielle J-Ph., Martínez O, Souza V, Herrera-Estrella A, Herrera-Estrella L. 2008. The genome of Bacillus coahuilensis reveals adaptations essential for survival in the relic of an ancient marine environment. Proceedings of the National Academy of Sciences USA 105: 5803-5808.
  • Peiffer JA., Kaushik S., Sakai H., Arteaga-Vazquez M., Sanchez-Leon N., Ghazal H., Vielle-Calzada J-Ph., and Meyers BC. 2008. A Spatial Dissection of the Arabidopsis Floral Transcriptome by MPSS. BMC Plant Biology 8:43doi:10.1186/1471-2229-8-43.
  • Arteaga-Vázquez M.. Caballero-Pérez J., and Vielle-Calzada J-Ph. 2006. A family of microRNAs present in plants and animals. The Plant Cell 18, 3355-3369.
  • Dorantes-Acosta A. and Vielle-Calzada J-Ph. 2006. The male gametophytic mutant tepitzin1 indicates that the homeobox gene WOX5 is required for pollen tube growth in Arabidopsis. Sexual Plant Reproduction 19, 163-173.
  • Huanca-Mamani W., García-Aguilar M., León-Martínez G. Grossniklaus U, and Vielle-Calzada J-Ph. 2005. CHR11, a chromatin remodeling factor essential for nuclear proliferation during female gametogenesis in Arabidopsis. Proceedings of the National Academy of Sciences USA 102, 17231-17236.
  • García-Aguilar M, Dorantes-Acosta A., Pérez-España V. and Vielle-Calzada J-Ph. 2005. Whole-mount in situ mRNA localization in developing ovules and seeds of Arabidopsis. Plant Molecular Biology Reporter 23 (5): 279-289.
  • Crossa JJ, Burgueño J., Autran D., Vielle-Calzada J-Ph. , Cornelius A., Garcia B. , Salamanca C, and Arenas D. 2005. Using linear-bilinear models for studying gene expression x treatment interaction in microarray experiments. Journal of Agricultural, Biological and Environmental Statistics 10(3): 1-17.
  • Autran D., Huanca-Mamani W., and Vielle-Calzada J-Ph. 2005. Genomic Imprinting in plants: the epigenetic version of an Oedipus complex. Current Opinion in Plant Biology 8: 19-25.
  • Acosta-García G. and Vielle-Calzada J-Ph. 2004. A classical arabinogalactan protein is essential for female gametogenesis in Arabidopsis. The Plant Cell 16, 2614-2628.
  • Lalanne E, Michaelidis C, Moore JM, Gagliano W, Johnson A, Patel R, Howden R, Vielle-Calzada JP, Grossniklaus U, Twell D. 2004. Analysis of transposon insertion mutants highlights the diversity of mechanisms underlying male progamic development in Arabidopsis. Genetics 4, 1975-1986.

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