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Results: 104
Number of items: 104
  • Díaz-Riquelme, J., Zhurov, V., Rioja, C., Pérez-Moreno, I., Torres-Pérez, R., Grimplet, J., Carbonell-Bejerano, P., Bajda, S., Van Leeuwen, T., Martínez-Zapater, J. M., Grbic, M., & Grbic, V. (2016). Additional file 4: of Comparative genome-wide transcriptome analysis of Vitis vinifera responses to adapted and non-adapted strains of two-spotted spider mite, Tetranyhus urticae [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.c.3629579_d4.v1
  • Díaz-Riquelme, J., Zhurov, V., Rioja, C., Pérez-Moreno, I., Torres-Pérez, R., Grimplet, J., Carbonell-Bejerano, P., Bajda, S., Van Leeuwen, T., Martínez-Zapater, J. M., Grbic, M., & Grbic, V. (2016). Additional file 6: of Comparative genome-wide transcriptome analysis of Vitis vinifera responses to adapted and non-adapted strains of two-spotted spider mite, Tetranyhus urticae [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.c.3629579_d5.v1
  • Díaz-Riquelme, J., Zhurov, V., Rioja, C., Pérez-Moreno, I., Torres-Pérez, R., Grimplet, J., Carbonell-Bejerano, P., Bajda, S., Van Leeuwen, T., Martínez-Zapater, J. M., Grbic, M., & Grbic, V. (2016). Additional file 7: of Comparative genome-wide transcriptome analysis of Vitis vinifera responses to adapted and non-adapted strains of two-spotted spider mite, Tetranyhus urticae [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.c.3629579_d6.v1
  • Díaz-Riquelme, J., Zhurov, V., Rioja, C., Pérez-Moreno, I., Torres-Pérez, R., Grimplet, J., Carbonell-Bejerano, P., Bajda, S., Van Leeuwen, T., Martínez-Zapater, J. M., Grbic, M., & Grbic, V. (2016). Additional file 5: of Comparative genome-wide transcriptome analysis of Vitis vinifera responses to adapted and non-adapted strains of two-spotted spider mite, Tetranyhus urticae [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.c.3629579_d7.v1
  • Díaz-Riquelme, J., Zhurov, V., Rioja, C., Pérez-Moreno, I., Torres-Pérez, R., Grimplet, J., Carbonell-Bejerano, P., Bajda, S., Van Leeuwen, T., Martínez-Zapater, J. M., Grbic, M., & Grbic, V. (2016). Additional file 2: of Comparative genome-wide transcriptome analysis of Vitis vinifera responses to adapted and non-adapted strains of two-spotted spider mite, Tetranyhus urticae [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.c.3629579_d9.v1
  • Open Access
    Díaz-Riquelme, J., Zhurov, V., Rioja, C., Pérez-Moreno, I., Torres-Pérez, R., Grimplet, J., Carbonell-Bejerano, P., Bajda, S., Van Leeuwen, T., Martínez-Zapater, J. M., Grbic, M., & Grbic, V. (2016). Comparative genome-wide transcriptome analysis of Vitis vinifera responses to adapted and non-adapted strains of two-spotted spider mite, Tetranyhus urticae. BMC Genomics, 17, Article 74. https://doi.org/10.1186/s12864-016-2401-3
  • Open Access
    Ngoc, P. C. T., Greenhalgh, R., Dermauw, W., Rombauts, S., Bajda, S., Zhurov, V., Grbić, M., Van de Peer, Y., Van Leeuwen, T., Rouzé, P., & Clark, R. M. (2016). Complex evolutionary dynamics of massively expanded chemosensory receptor families in an extreme generalist chelicerate herbivore. Genome Biology and Evolution, 8(11), 3323-3339. https://doi.org/10.1093/gbe/evw249
  • Open Access
    Villarroel, C. A., Jonckheere, W., Alba Cano, J. M., Glas, J. J., Dermauw, W., Haring, M. A., Van Leeuwen, T., Schuurink, R. C., & Kant, M. R. (2016). Salivary proteins of spider mites suppress defenses in Nicotiana benthamiana and promote mite reproduction. Plant Journal, 86(2), 119–131. https://doi.org/10.1111/tpj.13152
  • Open Access
    Wybouw, N., Pauchet, Y., Heckel, D. G., & Van Leeuwen, T. (2016). Horizontal Gene Transfer Contributes to the Evolution of Arthropod Herbivory. Genome Biology and Evolution, 8(6), 1785-801. https://doi.org/10.1093/gbe/evw119
  • Open Access
    Jonckheere, W., Dermauw, W., Zhurov, V., Wybouw, N., Van den Bulcke, J., Villarroel, C. A., Greenhalgh, R., Grbić, M., Schuurink, R. C., Tirry, L., Baggerman, G., Clark, R. M., Kant, M. R., Vanholme, B., Menschaert, G., & Van Leeuwen, T. (2016). The Salivary Protein Repertoire of the Polyphagous Spider Mite Tetranychus urticae: A Quest for Effectors. Molecular & Cellular Proteomics, 15(12), 3594-3613. https://doi.org/10.1074/mcp.M116.058081
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