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研究领域

RESEARCH THEMES •Plant virus ecology • Discovering and describing new viruses •Aetiology •Vector transmission of soil-borne, aphid-borne and contact-transmitted viruses •Seed transmission •Epidemiology •Identifying virus resistance sources and characterising virus resistances •Resistance-breaking strains •Developing, cultural and chemical control measures and integrated virus disease management approaches •Researching viruses of potatoes, Andean root and tuber crops, grain and pasture legumes, oilseeds, cereals and vegetables •Improving virus detection procedures and conducting large-scale surveys Quantifying yield losses through large-scale field experimentation

近期论文

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*Vincent. S.J., Coutts, B.A. and Jones, R.A.C. (2014) Effects of introduced and indigenous viruses on native plants: exploring their disease causing potential at the agro-ecological interface. PLoS ONE PONE-D-13-51662R1 (in press) (accepted 11/2/14) (Impact Factor = 3.73; Half life = 2.4 years; Citations 0) (Google Scholar Citations = 0) *Jones, R.A.C. (2014). Plant virus ecology and epidemiology: historical perspectives, recent progress and future prospects. Annals of Applied Biology (in press) (accepted 14/2/14). (Impact Factor = 2.15; Half life = 10 years; Citations 0) (Google Scholar Citations = 0) (Invited centennial review) doi:10.1111/aab.12123 *Jones, R.A.C. (2014). Trends in plant virus epidemiology: opportunities from new or improved technologies. Virus Research (in press). (accepted 2/11/13) (Impact Factor = 2.75; Half life = 8.5 years; Citations 0) (Google Scholar Citations = 0) http://dx.doi.org/10.1016/j.virusres.2013.11.003 (Invited review) *Kehoe, M.A., Coutts, B.A., Buirchell B., and Jones, RAC (2014) Hardenbergia mosaic virus: crossing the barrier between native and introduced plant species" Virus Research (in press). (accepted 18/2/14) (Impact Factor = 2.75; Half life = 8.5 years; Citations 0) (Google Scholar Citations = 0) http://dx.doi.org/10.1016/j.virusres.2014.02.012. Coutts, B.A., Cox, B.A., Thomas, G.J. and Jones, R.A.C (2014) First report of Wheat mosaic virus infecting wheat in Western Australia. Plant Disease 98, 285. (Impact Factor = 2.46; Half life = >10 years; Citations 0). (Google Scholar Citations = O) Kehoe, M.A., Buirchell B., Coutts, B.A., and Jones, RAC (2014) Black pod syndrome of Lupinus angustifolius is caused by late infection with Bean yellow mosaic virus. Plant Disease (in press). (accepted 12/1/14) (Impact Factor = 2.46; Half life = >10 years; Citations 0). (Google Scholar Citations = 0) http://dx.doi.org/10.1094/PDIS-11-13-1144-RE. Coutts, B.A., Kehoe, M.A. and Jones, R.A.C. (2013) Zucchini yellow mosaic virus: contact transmission, stability on surfaces, and inactivation with disinfectants. Plant Disease 97, 765–771. (Impact Factor = 2.46; Half life = >10 years; Citations 0). (Google Scholar Citations = 1) Jones, R.A.C. (2013). Virus diseases of perennial pasture legumes: incidences, losses, epidemiology and management. Crop and Pasture Science 64, 199-215. (Impact Factor = 1.13; Half life = >10 years; Citations 0). (Google Scholar Citations = 2) Jones, R.A.C. (2013). Virus diseases of pasture grasses: incidences, losses, epidemiology and management. Crop and Pasture Science 64, 216-233. (Impact Factor = 1.13; Half life = >10 years; Citations 0). (Google Scholar Citations = 0) Jones, R.A.C. (2012). Virus diseases of annual pasture legumes: incidences, losses, epidemiology and management. Crop and Pasture Science 63, 399-418. (Impact Factor = 1.13; Half life = >10 years; Citations 4). (Google Scholar Citations = 4) Nyalugwe E.P., Wilson C.R., Coutts, B.A., and Jones RAC. (2012) Biological properties of Potato virus X in potato: effects of mixed infection with Potato virus S and resistance phenotypes in cultivars from three continents. Plant Disease 96, 43-54. (Impact Factor = 2.46; Half life = >10 years; Citations 6). (Google Scholar Citations = 6) Cox, B.A. and Jones R.A.C. (2012). Effects of tissue sampling position, primary and secondary infection, cultivar, and storage temperature and duration on the detection, concentration and distribution of three viruses within infected potato tubers conditions. Australasian Plant Pathology 41, 197–210. (Impact Factor = 1.02; Half life = 6.4 years; Citations 1). (Google Scholar Citations = 1) *Jones RAC and Barbetti MJ (2012). Influence of climate change on plant disease infections and epidemics caused by viruses and bacteria. CAB Reviews 7, No. 22, 1-32. (on-line publication) http://www.cabi.org/cabreviews. (Impact Factor = new Journal, none yet; Half life = none yet; Citations 1). (Google Scholar Citations = 8) Invited review. Jones, R.A.C., Real, D., Vincent, S.J., Gajda, B.E. and Coutts, B.A. (2012). First Report of Alfalfa mosaic virus infecting tedera (Bituminaria bituminosa (L.) C.H. Stirton vars albomarginata and crassiuscula) in Australia. Plant Disease 96, 1384. (Impact Factor = 2.46; Half life = >10 years; Citations 0) (Google Scholar Citations = 1) *Kashif, M., Pietilä, S, Artola, K., Jones, R.A.C., Tugume, A.K., Mäkinen, V., and Valkonen, J.P.T. (2012) Detection of five viruses in sweetpotatoes from Honduras and Guatemala augmented by deep-sequencing of small-RNAs. Plant Disease 96, 1430-1437. (Impact Factor = 2.46; Half life = >10 years; Citations 2). (Google Scholar Citations = 8) Coutts, B.A., Kehoe, M.A. and Jones, R.A.C. (2011) Minimising losses caused by Zucchini yellow mosaic virus in vegetable cucurbit crops in tropical, sub-tropical and Mediterranean environments through cultural methods and host resistance. Virus Research 159, 141-160. (Impact Factor = 2.75; Half life = 8.5 years; Citations 4). (Google Scholar Citations = 7) Invited paper Coutts, B.A., Kehoe, M.A., Webster, G.C., Wylie, S.J., and Jones, R.A.C. (2011) Zucchini yellow mosaic virus: biological properties, detection procedures and comparison of coat protein gene sequences. Archives of Virology 156, 2119-2131. (Impact Factor = 2.03; Half life = 8.5 years; Citations 5). (Google Scholar Citations = 8) *Coutts, B.A., Kehoe, M.A., Webster, G.C., Wylie, S.J., and Jones, R.A.C. (2011) Indigenous and introduced potyviruses of legumes and Passiflora spp. from Australia: biological properties and phylogenetic placement. Archives of Virology 156, 1757-1774. (Impact Factor = 2.03; Half life = 8.5 years; Citations 5). (Google Scholar Citations = 5) Kehoe, M.A. and Jones R.A.C. (2011). A proposal to help resolve the disagreement between naming of potato virus Y strain groups defined by resistance phenotypes and those defined by sequencing. Archives of Virology 156, 2273-1278 (Impact Factor = 2.03; Half life = 8.5 years; Citations 5). (Google Scholar Citations = 6) *Luo, H., Wylie, S.J., Coutts, B.A., Jones, R.A.C. and Jones M.G.K. (2011). A virus of an isolated indigenous flora spreads naturally to an introduced crop. Annals of Applied Biology 159, 339-347 (Impact Factor = 2.15; Half life = >10 years; Citations 1) (Google Scholar Citations = 2)

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