Bos, Jorunn 照片

Bos, Jorunn

Dr

所属大学: University of Dundee

所属学院: School of Life Sciences

邮箱:
j.bos@dundee.ac.uk

个人主页:
http://www.lifesci.dundee.ac.uk/people/jorunn-bos

近期论文

Rodriguez, P.R., Escudero-Martinez, C.M., Bos, J.I.B*. 2017. An Aphid effector targets trafficking protein VPS52 in a host-specific manner to promote virulence. Plant Physiology, pp.01458.2016 Thorpe, P, Cock, PA, Bos, J.* 2016. Comparative transcriptomics and proteomics of three different aphid species identifies core and diverse effector sets, BMC Genomics, 17:172 Jaouannet, M., Morris, J. A., Hedley, P.E., Bos, J.I.B.* 2015. Characterization of Arabidopsis transcriptional responses to different aphid species reveals genes that contribute to host susceptibility and non-host resistance. PLoS Pathogens, DOI: 10.1371/journal.ppat.1004918 Rodriguez, P.A., Stam, R., Warbroek, T., Bos, J.I.B. 2014. Mp10 and Mp42 from the aphid species Myzus persicae trigger plant defenses in Nicotiana benthamiana through different activities. Molecular Plant-Microbe Interactions 27:30-39. Rodriguez, P.A. and Bos, J.I.B. 2013. Towards understanding the role of aphid effectors in plant infestation. Molecular Plant-Microbe Interactions 26:25-30. Hogenhout, S.A., Bos, J.I.B. 2011. Effector proteins that modulate plant–insect interactions. Curr Opin Plant Biol, 14: 422-428. Bos, J.I.B., Prince, D., Pitino, M., Maffei, M.E., Win, J., and Hogenhout, S.A. 2010. A functional genomics approach identifies candidate effectors from the aphid species Myzus persicae (green peach aphid). PloS Genetics 6: e1001216. Bos, J.I.B., Armstrong, M.R., Gilroy, E.M., Boevink, P.C., Hein, I., Taylor, R.M., Zhendong, T., Vetukuri, R.R., Harrower, B., Bryan, G., Whisson, S.C., Sadanandom, A., Kamoun, S., Birch, P.R.J. 2010. Essential Phytophthora infestans effector AVR3a manipulates plant immunity by stabilizing hostU-box protein CMPG1. PNAS, 7:9909-14. Oh, S-K., Young, C., Lee, M., Oliva, R., Bozkurt, T., Cano, L.M., Win, J., Bos, J.I.B, et al.,. 2009. In planta expression screens of Phytophthora infestans RXLR effectors reveal diverse phenotypes including activation of the disease resistance protein Rpi-blb2. Plant Cell, 21:2028-2947 Haas B. J., Kamoun S., Zody M.C., Jiang R.H.Y., Handsaker, R. E., Cano L. M., Grabherr M., Kodira C.D., Raffaele S., Torto-Alalibo T., Bozkurt T.O., Ah-Fong A.M.V., Alvarado L., Anderson V.L., Armstrong M.R., Avrova A., Baxter L., Beynon J., Boevink P.C., Bollmann S.Y., Bos J.I.B., et al.,. (2009). Genome sequence and comparative analysis of the Irish potato famine pathogen Phytophthora infestans. Nature. 61:393-398. Bos, J.I.B., Chaparro-Garcia, A,. Quesada-Ocampo, L.M., McSpadden Gardener, B.B., and Kamoun, S. 2009. Distinct Amino Acids of the Phytophthora infestans Effector AVR3a Condition Activation of R3a Hypersensitivity and Suppression of Cell Death. Molecular Plant-Microbe Interactions, 22:269-281. Schornack, S., Huitema, E., Cano, L.M., Bozkurt, T.O., Oliva, R., van Damme, M., Schwizer, S., Raffaele, S., Chaparro-Garcia, A., Farrer, R., Segretin, M.E., Bos, J., Haas, B.J., Zody, M.C., Nusbaum, C., Win, J., Thines, M., and Kamoun S. 2009. Ten things to know about oomycete effectors. Mol Plant Pathol, 10:795-803. Birch, P.R.J., Armstrong, M., Bos, J., et al.,. 2009. Towards understanding the virulence functions of RXLR effectors of the oomycete plant pathogen Phytophthora infestans. J Exp Botany. doi:10.1093/jxb/ern353 Win, J, Morgan, W., Bos, J., Krasileva, K.V., Cano, L.M., Chaparro-Garcia, A., Ammar, R., Staskawicz, B.J., and Kamoun, S. 2007. Adaptive evolution has targeted the C-terminal domain of the RXLR effectors of plant pathogenic oomycetes. Plant Cell, 19:2349-2369. G. Alfano, M.L., Lewis Ivey, C. Cakir, J.IB. Bos, S.A. Miller, L.V. Madden, S. Kamoun, and H.A.J., Hoitink. 2007. Systemic Modulation of Gene Expression in Tomato by Trichoderma hamatum 382. Phytopathology, 97: 429-437. Bos, J.I.B., Kanneganti, T.D., Young, C., Cakir, C., Huitema, E., Win, J., Armstrong, M.R., Birch, P.R., Kamoun, S. 2006. The C-terminal half of Phytophthora infestans RXLR effector AVR3a is sufficient to trigger R3a-mediated hypersensitivity and suppress INF1-induced cell death, Plant J, 48: 165-176. Armstrong, M.R., Whisson, S.C., Pritchard, L., Bos, J.I.B., et al.,. 2005. An ancestral oomycete locus contains late blight avirulence gene Avr3a, encoding a protein that is recognized in the host cytoplasm. PNAS, 102:7766-7771. Liu, Z., Bos, J.I.B., Armstrong, M., Whisson, S.C., da Cunha, L., Torto-Alalibo, T., Win, J., Avrova, A.O., Wright, F., Birch P.R.J., and Kamoun, S. 2004. Patterns of diversifying selection in the phytotoxin-like scr74 gene family of Phytophthora infestans. Mol Biol Evol, 22:659-672. Huitema, E., Bos, J.I.B., Tian, M., Win, J., Waugh, M.E., and Kamoun, S. 2004. Linking sequence to phenotype in Phytophthora-plant interactions. Trends Microbiol, 12:193-200. Bos, J.I.B., Armstrong, M., Whisson, S. C., Torto, T., Ochwo, M., Birch, P. R. J., and Kamoun, S. 2003. Intraspecific comparative genomics to identify avirulence genes from Phytophthora. New Phytologist, 159:63-72.