Rosa Lozano-Durán Shanghai Center for Plant Stress Biology/CAS Center for Excellence in Molecular Plant Science, Chinese Academy of Sciences, China, China,
1 protocol

Eduardo Bejarano Instituto de Hortofruticultura Subtropical y Mediterránea “La Mayora”, Universidad de Málaga-Consejo Superior de Investigaciones Científicas (IHSM-UMA-CSIC), Dept. Biología Celular, Genética y Fisiología, Universidad de Málaga, Campus Teatinos, Spain, Spain,
1 protocol

Pepe Cana-Quijada Biología Celular, Genética y Fisiología, Universidad de Málaga, Campus Teatinos, 29071, Instituto de Hortofruticultura Subtropical y Mediterránea “La Mayora”, Universidad de Málaga-Consejo Superior de Investigaciones Científicas (IHSM-UMA-CSIC), Spain, Spain,
1 protocol

Tabata Rosas-Díaz
  • Shanghai Center for Plant Stress Biology/CAS Center for Excellence in Molecular Plant Science, Chinese Academy of Sciences, China, China,
  • 1 Author merit

Education

PhD, Malaga University, Spain

Current position

Postdoctoral fellow, Shanghai Center for plant stress Biology, Shanghai Center for plant stress Biology Chinese Academy of Sciences, China

Publications

  1. Rosas-Díaz, T., Zhang, D., Fan, P., Wang, L., Ding, X., Jiang, Y., Jimenez-Gongora, T., Medina-Puche, L., Zhao, X., Feng, Z., Zhang, G., Liu, X., Bejarano, E. R., Tan, L., Zhang, H., Zhu, J. K., Xing, W., Faulkner, C., Nagawa, S. and Lozano-Durán, R. (2018). A virus-targeted plant receptor-like kinase promotes cell-to-cell spread of RNAi. Proc Natl Acad Sci U S A 115(6): 1388-1393.
  2. Rosas-Díaz, T., Cana-Quijada, P., Amorim-Silva, V., Botella, M. A., Lozano-Durán, R. and Bejarano, E. R. (2017). Arabidopsis NahG Plants as a Suitable and Efficient System for Transient Expression using Agrobacterium tumefaciens. Mol Plant 10(2): 353-356.
  3. Rosas-Díaz, T., Zhang, D. and Lozano-Durán, R. (2017). No evidence of seed transmissibility of Tomato yellow leaf curl virus in Nicotiana benthamiana. J Zhejiang Univ Sci B 18(5): 437-440.
  4. Rosas-Díaz, T., Macho, A. P., Beuzón, C. R., Lozano-Durán, R. and Bejarano, E. R. (2016). The C2 Protein from the Geminivirus Tomato Yellow Leaf Curl Sardinia Virus Decreases Sensitivity to Jasmonates and Suppresses Jasmonate-Mediated Defences. Plants (Basel) 5(1).
  5. Cañizares, M. C., Rosas-Díaz, T., Rodríguez-Negrete, E., Hogenhout, S. A., Bedford, I. D., Bejarano, E. R., Navas-Castillo, J. and Moriones, E. (2015). Arabidopsis thaliana, an experimental host for tomato yellow leaf curl disease‐associated begomoviruses by agroinoculation and whitefly transmission. Plant Pathol 64(2): 265-271.
  6. Czosnek, H., Eybishtz, A., Sade, D., Gorovits, R., Sobol, I., Bejarano, E., Rosas-Díaz, T. and Lozano-Durán, R. (2013). Discovering host genes involved in the infection by the Tomato Yellow Leaf Curl Virus complex and in the establishment of resistance to the virus using Tobacco Rattle Virus-based post transcriptional gene silencing. Viruses 5(3): 998-1022.
  7. García, I., Rosas, T., Bejarano, E. R., Gotor, C. and Romero, L. C. (2013). Transient transcriptional regulation of the CYS-C1 gene and cyanide accumulation upon pathogen infection in the plant immune response. Plant Physiol 162(4): 2015-2027.
  8. Lozano-Durán, R., Rosas-Díaz, T., Gusmaroli, G., Luna, A. P., Taconnat, L., Deng, X. W. and Bejarano, E. R. (2011). Geminiviruses subvert ubiquitination by altering CSN-mediated derubylation of SCF E3 ligase complexes and inhibit jasmonate signaling in Arabidopsis thaliana. Plant Cell 23(3): 1014-1032.
  9. Lozano-Durán, R., Rosas-Díaz, T., Luna, A. P. and Bejarano, E. R. (2011). Identification of host genes involved in geminivirus infection using a reverse genetics approach. PLoS One 6(7): e22383.
1 Protocol published
Transient Expression Assay in NahG Arabidopsis Plants Using Agrobacterium tumefaciens
Authors:  Pepe Cana-Quijada, Eduardo R. Bejarano, Rosa Lozano-Durán and Tábata Rosas-Díaz, date: 06/20/2018, view: 1181, Q&A: 0
Agrobacterium-mediated transient expression has greatly contributed to research in molecular plant biology but has low efficiency and inconsistency in Arabidopsis thaliana (Arabidopsis). Here, we describe a simple, ...
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