个人简介
Noni Franklin-Tong was born in London, U.K. She received her BSc in Biological Sciences and PhD in Genetics from the University of Birmingham.Most of her career has been based at Birmingham, though she has worked for brief periods of time inUmeå, Sweden, ICMB, University of Edinburgh and UMass, Amherst, USA. She obtained a BBSRC Advanced Research Fellowship in 1992, was appointed to a lectureship in 1997, and a Chair in Plant Cell Biology (2004-2014). Following breast cancer she is partially retired, working part-time research-only (2014-)
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Lin, Z., Eaves, D.J., Sanchez-Moran, E., Franklin, F.C.H., Franklin-Tong, V.E. (2015). The Papaver rhoeas S-determinants confer self-incompatibility to Arabidopsis thaliana in planta. Science 350 (issue 6261), 684-687. Doi: 10.1126/science.aad2983 Abstract - Reprint - Full text
Katie A. Wilkins, Maurice Bosch, Tamanna Haque, Nianjun Teng, Natalie Poulter and Vernonica E. Franklin-Tong (2015). Self-Incompatibility-induced Programmed Cell Death in Papaver pollen involves dramatic acidification of the incompatible pollen tube cytosol. Plant Physiology January 2015 pp.114.252742 doi: http:/?/?dx.?doi.?org/?10.?1104/?pp.?114.?252742
Wilkins KA, Poulter NS, Franklin-Tong VE (2014) Taking one for the team: self -recognition and cell suicide in pollen.J Exp Bot. 65 : 1331-1342.
Eaves DJ, Flores-Ortiz C, Haque T, Lin Z, Teng N, Franklin-Tong VE. (2014) Self-Incompatibility in Papaver: Advances in integrating the signalling network. Biochermical Transactions 42:370-6. doi: 10.1042/BST20130248
Barend H. J. de Graaf, Sabina Vatovec, Javier Andrés Juárez-Díaz, Lijun Chai, Kreepa Kooblall, Katie A. Wilkins, Huawen Zou, F. Christopher H. Franklin and Vernonica E. Franklin-Tong. The Papaver self-incompatibility pollen S-determinant, PrpS, functions in Arabidopsis thaliana. Current Biology 22 (2), 154-159. doi:10.1016/j.cub.2011.12.006
Katie A. Wilkins, James Bancroft, Maurice Bosch, Jennifer Ings, Nicholas Smirnoff and Vernonica E. Franklin-Tong (2011). ROS and NO mediate actin reorganization and programmed cell death in the Self-Incompatibility response of Papaver. Plant Physiology 156, 404-416. DOI: 10.1104/pp.110.167510.
Smertenko, A. & Franklin-Tong, VE (2011). Organization & Regulation of the cytoskeleton in plant programmed cell death. Cell Death & Differentiation 18, 1263-1270. doi:10.1038/cdd.2011.39
Wouter G. van Doorn, Eric P. Beers, Jeffery L. Dangl, Vernonica E. Franklin-Tong, Hiroo Fukuda, Patrick Gallois, Jean Greenberg, Ikuko Hara-Nishimura, Alan M. Jones, Maki Kawai-Yamada, Eric Lam11, John Mundy12, Luis Mur, Morten Petersen, Andrei Smertenko, Michael Taliansky, Frank van Breusegem16, Thomas Wolpert, Ernst Woltering, Boris Zhivotovsky, Peter V. Bozhkov(2011). Morphological classification of plant cell deaths. Cell Death & Differentiation 18, 8, 1241-1246.doi:10.1038/cdd.2011.36
Noni Franklin-Tong (2011). Self-fertilization: article in: Brenner’s Encyclopedia of Genetics.
V.E. Franklin-Tong (ed.) Self-Incompatibility in Flowering Plants – Evolution, Diversity, and Mechanisms. Publ. Springer-Verlag Berlin Heidelberg 2008. This is the first monograph on this topic for 30 years.
Natalie S. Poulter, Maurice Bosch, &Vernonica E. Franklin-Tong (2011) Proteins implicated in mediating Self-Incompatibility-induced alterations to the actin cytoskeleton of Papaver pollen. Annals of Botany: doi:10.1093/aob/mcr022.
Juyou Wu, Su Wang, Yuchun Gu, Shaoling Zhang, Stephen J Publicover and V. E. Franklin-Tong (2011) Self-incompatibility in Papaver rhoeasactivates non-specific cation conductance(s) permeable to Ca2+and K+. Plant Physiology 155: 963-973.
Maurice Bosch, Natalie S. Poulter, Ruth M. Perry, Katie Wilkins and V. E. Franklin-Tong (2010). Characterization of a legumain/vacuolar processing enzyme and YVADase activity in Papaver pollen. Plant Molecular Biology 74 (4), 381-393. DOI: 10.1007/s11103-010-9681-9.
Natalie S. Poulter, Christopher J. Staiger, Joshua Z. Rappoport, and Vernonica E. Franklin-Tong (2010). Actin-Binding Proteins Implicated in the Formation of the Punctate Actin Foci Stimulated by the Self-Incompatibility Response in Papaver. Plant Physiol. 152: 1274-1283.
Wheeler, M.J., de Graaf, B.H.J., Hadjiosif, N.E., Perry, R.M., Poulter, N.S., Osman, K., Vatovec, S., Harper, A., Franklin, F.C.H & Franklin-Tong, V.E. (2009). Identification of the pollen self-incompatibility determinant in Papaver rhoeas. Nature 459, 992-995.
Poulter, N. S., Vatovec, S. and Franklin-Tong VE. (2008). Microtubules Are a Target for Self-Incompatibility Signaling in Papaver Pollen. Plant Physiol. 146, 1358-1367.
Bosch M. & Franklin-Tong VE. (2007). Temporal and spatial activation of caspase-like enzymes induced by self-incompatibility in Papaver pollen. Proc. Natl. Acad. Sci. USA. 104 (46) 18327-18332.
S. Li, J. Samaj & V. E. Franklin-Tong. (2007). A MAP kinase signals to Programmed Cell Death induced by Self-Incompatibility in Papaver pollen. Plant Physiol 145, 236-245.