David B. Collinge

David B. Collinge

Professor

Member of:


    1. 1996
    2. Published

      Estudios sobre la transmisión mecánica del virus del rayado fino del maíz (MRFV) mediante la técnica de la punción vascular (PV)

      Madriz Ordenana, K., Montero, R., Fonseca, R. & Collinge, David B., 1996, Universidad de Costa Rica : Centro de Investigacion en Biologia Celular y Molecular : [årsberetning 1996]. Universidad de Costa Rica, p. 30 1 p.

      Research output: Chapter in Book/Report/Conference proceedingBook chapterCommunication

    3. Published

      Ethanol increases sensitivity of oxalate oxidase assays and facilitates direct activity staining in SDS gels

      Zhang, Z., Yang, J., Collinge, David B. & Thordal-Christensen, Hans, 1996, In: Plant Molecular Biology Reporter. 14, 3, p. 266-272 7 p.

      Research output: Contribution to journalJournal articleResearch

    4. Published

      Induction of 14-3-3 accumulation and fusicoccin binding activity in barley by the powdery mildew fungus Erysiphe graminis

      Andersen, C. H., Bentsen Christensen, A., Brandt, J., Thordal-Christensen, Hans & Collinge, David B., 1996.

      Research output: Contribution to conferencePosterResearch

    5. Published

      Transformación genética de maiz: expresion del gene de la cubierta proteica viral (pMRFVcp-Bar) en plantas transgénicas como estrategia para la obtención de resistencia al virus del rayado fino

      Madriz Ordenana, K., Garita, H., Valdéz, M., Thordal-Christensen, Hans, Collinge, David B., Hammond, R. & Fonseca, R., 1996, Universidad de Costa Rica : Centro de Investigacion en Biologia Celular y Molecular : [årsberetning 1996]. Universidad de Costa Rica, p. 30-31 2 p.

      Research output: Chapter in Book/Report/Conference proceedingBook chapterCommunication

    6. Published

      Transformación genética de maiz: expresion del gene de la cubierta proteica viral (pMRFVcp-Bar) en plantas transgénicas como estrategia para la obtención de resistencia al virus del rayado fino

      Madriz Ordenana, Kenneth, Garita, H., Valdéz, M., Thordal-Christensen, Hans, Collinge, David B., Hammond, R. & Ramirez Fonseca, P., 1996, Universidad de Costa Rica : Centro de Investigacion en Biologia Celular y Molecular : [årsberetning 1996]. Universidad de Costa Rica, p. 30-31 2 p.

      Research output: Chapter in Book/Report/Conference proceedingBook chapterCommunication

    7. 1995
    8. Published

      A simple model based on known plant defence reactions is sufficient to explain most aspects of nodulation

      Mellor, R. B. & Collinge, David B., 1 Jan 1995, In: Journal of Experimental Botany. 46, 1, p. 1-18 18 p.

      Research output: Contribution to journalJournal articleResearchpeer-review

    9. Published

      Germin‐like oxalate oxidase, a H2O2‐producing enzyme, accumulates in barley attacked by the powdery mildew fungus

      Zhang, Z., Collinge, David B. & Thordal-Christensen, Hans, 1 Jan 1995, In: The Plant Journal. 8, 1, p. 139-145 7 p.

      Research output: Contribution to journalJournal articleResearchpeer-review

    10. Published

      The nature of induced defences in plants

      Collinge, David B., Andersen, C. H., Bryngelsson, T., Bentsen Christensen, A., Gregersen, P. L., Madriz Ordenana, Kenneth, Smedegaard-Petersen, V., Zhang, Z. & Thordal-Christensen, Hans, 1995, In: Aktuelt fra Skogforsk. 6, p. 4-5 2 p.

      Research output: Contribution to journalJournal articleCommunication

    11. Published

      The ¤nature of induced defences in plants

      Collinge, David B., Andersen, C. H., Bryngelsson, T., Bentsen Christensen, A., Gregersen, P. L., Madriz-Ordenana, K., Smedegaard-Petersen, V., Zhang, Z. & Thordal-Christensen, Hans, 1995, In: Aktuelt fra Skogforsk. 6, p. 4-5 2 p.

      Research output: Contribution to journalJournal articleCommunication

    12. 1994
    13. Published

      A putative O-methyltransferase from barley is induced by fungal pathogens and UV light

      Gregersen, P. L., Christensen, Anders, Sommer-Knudsen, J. & Collinge, David B., 1 Dec 1994, In: Plant Molecular Biology. 26, 6, p. 1797-1806 10 p.

      Research output: Contribution to journalJournal articleResearchpeer-review

    ID: 4229799