References

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Krull CR, Waipara NW, Choquenot D, Burns BR, Gormley AM, Stanley MC. Absence of evidence is not evidence of absence: Feral pigs as vectors of soil-borne pathogens. Austral Ecology [Internet]. 2013 ;38(5):534 - 542. Available from: http://doi.wiley.com/10.1111/aec.2013.38.issue-5http://doi.wiley.com/10.1111/j.1442-9993.2012.02444.xhttp://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1111%2Fj.1442-9993.2012.02444.x
Silva PV, Vélez ML, Otaño DH, Nuñez C, Greslebin AG. Action of fosetyl-al and metalaxyl against Phytophthora austrocedri Osswald W. Forest Pathology [Internet]. 2015 ;46:54–66. Available from: http://doi.wiley.com/10.1111/efp.12216
Durán A, Gryzenhout M, Drenth AÈ, Slippers B, Ahumada R, Wingfield BD, Wingfield MJ. AFLP analysis reveals a clonal population of Phytophthora pinifolia in Chile. Fungal Biology [Internet]. 2010 ;114:746 - 752. Available from: http://www.sciencedirect.com/science/article/B9879-50GMMRW-1/2/c0c76996906d7b589f9430c65d0b2880
Sims L, Goheen E, Kanaskie A, Hansen E. Alder Canopy Dieback and Damage in Western Oregon Riparian Ecosystems. Northwest Science [Internet]. 2015 ;89(1):34 - 46. Available from: http://www.bioone.org/doi/10.3955/046.089.0103
Vélez ML, Silva PV, Troncoso OA, Greslebin AG. Alteration of physiological parameters of Austrocedrus chilensis by the pathogen Phytophthora austrocedrae. Plant Pathology [Internet]. 2012 ;61:877–888. Available from: http://dx.doi.org/10.1111/j.1365-3059.2011.02585.x
Mammella MA, Martin FN, Cacciola SO, Coffey M, Faedda R, Schena L. Analyses of the population structure in a global collection of Phytophthora nicotianae isolates inferred from mitochondrial and nuclear DNA sequences. Phytopathology. 2013 ;Early release.
Smith, I. W., Cunnington J, Pascoe I. Another new? species of Phytophthora on alder ‘down under’ (Australia). Brasier C, Jung T, Osswald W. Third International Meeting on Phytophthoras in Forest and Wildland Ecosystems. 2006 ;7:Poster 30.
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Jung T, Pérez-Sierra A, Durán A, M. Jung H, Balci Y, Scanu B. Canker and decline diseases caused by soil- and airborne Phytophthora species in forests and woodlands. Persoonia - Molecular Phylogeny and Evolution of Fungi [Internet]. 2018 ;40(08):182-220. Available from: http://www.ingentaconnect.com/content/nhn/pimj/10.3767/persoonia.2018.40.08
Alves TCA, Santos AF dos, Tessmann DJ, Vida JB, Harakava R. Caracterização morfofisiológica e análise de PCR-SSCP de isolados de Phytophthora da acácia-negra na região Sul do Brasil. Summa Phytopathologica [Internet]. 2011 ;37(3):92 - 97. Available from: http://www.scielo.br/pdf/sp/v37n3/a02v37n3.pdf
Purse BV, Graeser P, Searle K, Edwards C, Harris C. Challenges in predicting invasive reservoir hosts of emerging pathogens: mapping Rhododendron ponticum as a foliar host for Phytophthora ramorum and Phytophthora kernoviae in the UK. Biological Invasions [Internet]. 2013 ;15(3):529 - 545. Available from: http://link.springer.com/article/10.1007/s10530-012-0305-y#
Nagel JH, Gryzenhout M, Slippers B, Wingfield MJ, Hardy GESt.J, Stukely MJC, Burgess TI. Characterization of Phytophthora hybrids from ITS clade 6 associated with riparian ecosystems in South Africa and Australia. Fungal Biology [Internet]. 2013 ;117(5):329 - 347. Available from: https://doi.org/10.1016/j.funbio.2013.03.004
Nagel JH, Gryzenhout M, Slippers B, Wingfield MJ, Hardy GESt.J, Stukely MJC, Burgess TI. Characterization of Phytophthora hybrids from ITS clade 6 associated with riparian ecosystems in South Africa and Australia. Fungal Biology [Internet]. 2013 ;117(5):329 - 347. Available from: https://doi.org/10.1016/j.funbio.2013.03.004
Seal JL. Coconut bud rot in Florida. [Internet]. 1928 ;Technical Bulletin 199:87 pp. Available from: http://ufdc.ufl.edu/UF00027165/00001
Nechwatal J, Schlenzig A, Jung T, Cooke DEL, Duncan JM, Oßwald W. A combination of baiting and PCR techniques for the detection of Phytophthora quercina and P. citricola in soil samples from oak stands. Forest Pathology. 2001 ;31(2):85-97.
Santos AF dos. Comportamento diferenciado da gomose de Phytophthora em diferentes alturas ao longo de troncos de acácia-negra (Acacia mearnsii) em Piratini, RS. Boletim de Pesquisa Florestal [Internet]. 2001 ;43:145-149. Available from: http://ainfo.cnptia.embrapa.br/digital/bitstream/CNPF-2009-09/30242/1/santos.pdf
Mackesy D, Sullivan M. CPHST Pest Datasheet for Phytophthora kernoviae. [Internet]. 2015 . Available from: http://download.ceris.purdue.edu/file/2780
Burgess TI, Scott JK, McDougall KL, Stukely MJC, Crane C, Dunstan WA, Brigg F, Andjic V, White D, Rudman T, et al. Current and projected global distribution of Phytophthora cinnamomi, one of the world's worst plant pathogens. Global Change Biology [Internet]. 2016 . Available from: http://dx.doi.org/10.1111/gcb.13492
Burgess TI, Scott JK, McDougall KL, Stukely MJC, Crane C, Dunstan WA, Brigg F, Andjic V, White D, Rudman T, et al. Current and projected global distribution of Phytophthora cinnamomi, one of the world's worst plant pathogens. Global Change Biology [Internet]. 2016 . Available from: http://dx.doi.org/10.1111/gcb.13492
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Hood IA, Williams NM, Dick MA, Arhipova N, Kimberley MO, Scott PM, Gardner JF. Decline in vitality of propagules of Phytophthora pluvialis and Phytophthora kernoviae and their inability to contaminate or colonise bark and sapwood in Pinus radiata export log simulation studies. New Zealand Journal of Forestry Science [Internet]. 2014 ;44(7):13 pp. Available from: http://www.nzjforestryscience.com/content/44/1/7
Green S, Brasier CM, Schlenzig A, McCracken A, MacAskill GA, Wilson M, Webber JF. The destructive invasive pathogen Phytophthora lateralis found on Chamaecyparis lawsoniana across the UK. Forest Pathology [Internet]. 2012 ;43(1):19–28. Available from: http://dx.doi.org/10.1111/j.1439-0329.2012.00788.x
Scattolin L, Dal Maso E, Mutto Accordi S, Sella L, Montecchio L. Detecting asymptomatic ink-diseased chestnut trees by the composition of the ectomycorrhizal community. Forest Pathology [Internet]. 2012 :n/a–n/a. Available from: http://dx.doi.org/10.1111/j.1439-0329.2012.00784.x
Scattolin L, Dal Maso E, Mutto Accordi S, Sella L, Montecchio L. Detecting asymptomatic ink-diseased chestnut trees by the composition of the ectomycorrhizal community. Forest Pathology [Internet]. 2012 :n/a–n/a. Available from: http://dx.doi.org/10.1111/j.1439-0329.2012.00784.x
Kanaskie A, Hansen EM, Goheen EM, Osterbauer N, McWilliams M, Laine J, Thompson M, Savona S, Timeus H, Woosley B, et al. Detection and eradication of Phytophthora ramorum from Oregon forests, 2001–2008 Frankel SJ, Kliejunas T, Palmieri KM. Sudden oak death fourth science symposium [Internet]. 2010 ;Gen. Tech. Rep. PSW-GTR-229:3-5. Available from: http://www.fs.fed.us/psw/publications/documents/psw_gtr229/
Kanaskie A, Hansen EM, Goheen EM, Osterbauer N, McWilliams M, Laine J, Thompson M, Savona S, Timeus H, Woosley B, et al. Detection and eradication of Phytophthora ramorum from Oregon forests, 2001–2008 Frankel SJ, Kliejunas T, Palmieri KM. Sudden oak death fourth science symposium [Internet]. 2010 ;Gen. Tech. Rep. PSW-GTR-229:3-5. Available from: http://www.fs.fed.us/psw/publications/documents/psw_gtr229/
Kanaskie A, Hansen EM, Goheen EM, Osterbauer N, McWilliams M, Laine J, Thompson M, Savona S, Timeus H, Woosley B, et al. Detection and eradication of Phytophthora ramorum from Oregon forests, 2001–2008 Frankel SJ, Kliejunas T, Palmieri KM. Sudden oak death fourth science symposium [Internet]. 2010 ;Gen. Tech. Rep. PSW-GTR-229:3-5. Available from: http://www.fs.fed.us/psw/publications/documents/psw_gtr229/

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