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Plant-virus interactions Host defence responses to virus infection Defence signaling in response to pathogen infection in plants Counter-defence strategy by viruses

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Hafrén, A., Macia, J.-L., Love, A. J., Milner, J. J., Drucker, M., and Hofius, D. (2017) Selective autophagy limits cauliflower mosaic virus infection by NBR1-mediated targeting of viral capsid protein and particles. Proceedings of the National Academy of Sciences of the United States of America, 114(10), E2026-E2035. (doi:10.1073/pnas.1610687114) (PMID:28223514) Grinter, R. et al. (2016) Structure of the bacterial plant-ferredoxin receptor FusA. Nature Communications, 7, 13308. (doi:10.1038/ncomms13308) (PMID:27796364) Bailey, M. et al. (2016) Stability of small ubiquitin-like modifier (SUMO) proteases OVERLY TOLERANT TO SALT1 and -2 modulates salicylic acid signalling and SUMO1/2 conjugation inArabidopsis thaliana. Journal of Experimental Botany, 67(1), pp. 353-363. (doi:10.1093/jxb/erv468) (PMID:26494731) (PMCID:PMC4682439) Grinter, R., Josts, I., Zeth, K., Roszak, A. W., McCaughey, L. C., Cogdell, R. J., Milner, J. J., Kelly, S. M., Byron, O., and Walker, D. (2014) Structure of the atypical bacteriocin pectocin M2 implies a novel mechanism of protein uptake. Molecular Microbiology, 93(2), pp. 234-246. (doi:10.1111/mmi.12655) Mccaughey, L. C. et al. (2014) Lectin-like bacteriocins from Pseudomonas spp. utilise D-rhamnose containing lipopolysaccharide as a cellular receptor. PLoS Pathogens, 10(2), e1003898. (doi:10.1371/journal.ppat.1003898) Laird, J. et al. (2013) Identification of the domains of cauliflower mosaic virus protein P6 responsible for suppression of RNA silencing and salicylic acid signalling. Journal of General Virology, 94(12), pp. 2777-2789. (doi:10.1099/vir.0.057729-0) Grinter, R., Milner, J., and Walker, D. (2013) Beware of proteins bearing gifts: protein antibiotics that use iron as a Trojan horse. FEMS Microbiology Letters, 338(1), pp. 1-9. (doi:10.1111/1574-6968.12011) Grinter, R., Roszak, A.W., Cogdell, R.J., Milner, J.J., and Walker, D. (2012) The crystal structure of the lipid II-degrading bacteriocin syringacin M suggests unexpected evolutionary relationships between colicin M-like bacteriocins. Journal of Biological Chemistry, 287(46), pp. 38876-38888. (doi:10.1074/jbc.M112.400150) Grinter, R., Milner, J., and Walker, D. (2012) Ferredoxin containing bacteriocins suggest a novel mechanism of iron uptake in Pectobacterium spp. PLoS ONE, 7(3), e33033. (doi:10.1371/journal.pone.0033033) Love, A.J., Geri, C., Laird, J., Carr, C., Yun, B.-W., Loake, G.J., Tada, Y., Sadanandom, A., and Milner, J.J. (2012) Cauliflower mosaic virus protein P6 inhibits signaling responses to salicylic acid and regulates innate immunity. PLoS ONE, 7(10), e47535. (doi:10.1371/journal.pone.0047535) Love, A.J., Milner, J.J., and Sadanandom, A. (2009) Response to Cacas and Diamond: is the autophagy machinery an executioner of programmed cell death in plants? Trends in Plant Science, 14(6), pp. 300-301. (doi:10.1016/j.tplants.2009.02.009) Love, A.J., Milner, J.J., and Sadanandom, A. (2008) Timing is everything: regulatory overlap in plant cell death. Trends in Plant Science, 13(11), pp. 589-595. (doi:10.1016/j.tplants.2008.08.006) Love, A.J., Laird, J., Holt, J., Hamilton, A.J., Sadanandom, A., and Milner, J.J. (2007) Cauliflower mosaic virus protein P6 is a suppressor of RNA silencing. Journal of General Virology, 88(12), pp. 3439-3444. (doi:10.1099/vir.0.83090-0) Love, A.J., Laval, V., Geri, C., Laird, J., Tomos, A.D., Hooks, M.A., and Milner, J.J. (2007) Components of Arabidopsis defense- and ethylene-signaling pathways regulate susceptibility to Cauliflower mosaic virus by restricting long-distance movement. Molecular Plant-Microbe Interactions, 20, pp. 659-670. (doi:10.1094/MPMI-20-6-0659) Roberts, K., Love, A., Laval, V., Laird, J., Tomos, A., Hooks, M., and Milner, J. (2007) Long-distance movement of Cauliflower mosaic virus and host defence responses in Arabidopsis follow a predictable pattern that is determined by the leaf orthostichy. New Phytologist, 175, pp. 707-717. (doi:10.1111/j.1469-8137.2007.02136.x) Ermolina, I., Milner, J., and Morgan, H. (2006) Dielectrophoretic investigation of plant virus particles: Cow Pea Mosaic Virus and Tobacco Mosaic Virus. Electrophoresis, 27, pp. 3939-3948. (doi:10.1002/elps.200500928) Love, A., Martin, T., Graham, I., and Milner, J. (2005) Carbohydrate partitioning and sugar signalling in Cauliflower mosaic virus-infected turnip and Arabidopsis. Physiological and Molecular Plant Pathology, 67, pp. 83-91. (doi:10.1016/j.pmpp.2005.09.007) Love, A., Yun, B., Laval, V., Loake, G., and Milner, J. (2005) Cauliflower mosaic virus, a compatible pathogen of Arabidopsis, engages three distinct defense-signaling pathways and activates rapid systemic generation of reactive oxygen species. Plant Physiology, 139, pp. 935-948. (doi:10.1104/pp.105.066803) Geri, C., Love, A., Cecchini, E., Barrett, S., Laird, J., Covey, S., and Milner, J. (2004) Arabidopsis mutants that suppress the phenotype induced by transgene-mediated expression of cauliflower mosaic virus (CaMV) gene VI are less susceptible to CaMV-infection and show reduced ethylene sensitivity. Plant Molecular Biology, 56, pp. 111-124. Laird, J., Armengaud, P., Giuntini, P., Laval, V., and Milner, J.J. (2004) Inappropriate annotation of a key defence marker in Arabidopsis: will the real PR-1 please stand up? Planta, 219, pp. 1089-1092. (doi:10.1007/s00425-004-1355-x) Ermolina, I., Morgan, H., Green, N.G., Milner, J.J., and Feldman, Y. (2003) Dielectric spectroscopy of Tobacco Mosaic Virus. Biochimica et Biophysica Acta: General Subjects, 1622, pp. 57-63. (doi:10.1016/S0304-4165(03)00118-1) Cecchini, E., Geri, C., Love, A., Coupland, G., Covey, S., and Milner, J. (2002) Mutations that delay flowering in Arabidopsis de-couple symptom response from cauliflower mosaic virus accumulation during infection. Molecular Plant Pathology, 3, pp. 81-90. Laval, V., Koroleva, O., Murphy, E., Lu, C., Milner, J., Hooks, M., and Tomos, A. (2002) Distribution of actin gene isoforms in the Arabidopsis leaf measured in microsamples from intact individual cells. Planta, 215, pp. 287-292. (doi:10.1007/s00425-001-0732-y)

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