References

Site will be retired 9/1/2026

This site is no longer being developed and will be retired on September 1, 2026. Please contact us if you have any questions or would like to provide support to continue the project.

Export 603 results:
[ Author(Asc)] Title Type Year
Filters: Phytophthora-ramorum-and-phytophthora-kernoviae-england-and-wales%E2%80%94public-consultation-and is   [Clear All Filters]
W
Woodward S, Vannini A, Werres S, Oßwald W, Bonants P, Jung T. COST action FP0801 - established and emerging phytophthora: Increasing threats to woodland and forest ecosystems in Europe. New Zealand Journal of Forestry Science [Internet]. 2011 ;41S:7–13. Available from: http://researchrepository.murdoch.edu.au/4375/
Winton LM, Hansen EM. Molecular diagnosis of Phytophthora lateralis in trees, water, and foliage baits using multiplex polymerase chain reaction. Forest Pathology. 2001 ;31:275 - 283.
Wing AB. Field validation of laboratory tests used in screening Port-Orford-cedar for resistance to Phytophthora lateralis. 2005 .
Widmer TL. Survival of Phytophthora kernoviae oospores, sporangia, and mycelium. New Zealand Journal of Forestry Science [Internet]. 2011 ;41S:15-23. Available from: http://www.ars.usda.gov/research/publications/publications.htm?seq_no_115=259635
Widmer TL. Phytophthora kernoviae oospore maturity, germination, and infection. Fungal Biology [Internet]. 2010 ;114:661 - 668. Available from: http://www.sciencedirect.com/science/article/B9879-508K88P-1/2/e35155432b3146cdabc05226a599fa75
Widmer TL, Shishkoff N, Dodge SC. Infectivity and inoculum production of Phytophthora ramorum on roots of eastern United States oak species. Plant Disease [Internet]. 2012 ;96:1675-1682. Available from: http://dx.doi.org/10.1094/PDIS-12-11-1024-RE
Widmer TL, Dodge SC. Bioassay Conditions for Infection of Pinus radiata Seedlings with Phytophthora pinifolia Zoospores. Plant Disease [Internet]. 2015 ;99(9):1204 - 1209. Available from: http://apsjournals.apsnet.org/doi/10.1094/PDIS-12-14-1306-RE
White TJ, Bruns T, Lee S, Taylor J. PCR Protocols amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. Elsevier; 1990 pp. 315 - 322. Available from: https://linkinghub.elsevier.com/retrieve/pii/B9780123721808500421
Weste G. Impact of Phytophthora species on native vegetation of Australia and Papua New Guinea. Australasian Plant Pathology. 1994 ;23:190-209.
Weste G, Marks CG. The biology of Phytophthora cinnamomi in Australian forests. Annual Review of Phytopathology [Internet]. 1987 ;25:207-229. Available from: http://www.annualreviews.org/doi/abs/10.1146/annurev.py.25.090187.001231
Werres S, Marwitz R, Man_In’t_veld WA, De Cock AWAM, Bonants PJM, De Weerdt M, Themann K, Ilieva E, Baayen RP. Phytophthora ramorum sp. nov., a new pathogen on Rhododendron and Viburnum. Mycological Research [Internet]. 2001 ;105:1155 - 1165. Available from: http://www.sciencedirect.com/science/article/B7XMR-4RS3YCS-4/2/9f9142119aa3952d3dbc8811be4860bb
Wen-Hsiung KO, Wang SY, Ann PJ. The possible origin and relation of Phytophthora katsurae and P. heveae, discovered in a protected natural forest in Taiwan. Botanical Studies [Internet]. 2006 ;47:273-277. Available from: http://ejournal.sinica.edu.tw/bbas/content/2006/3/Bot473-07/
Weir BS, Paderes EP, Anand N, Uchida JY, Pennycook SR, Bellgard SE, Beever RE. A taxonomic revision of Phytophthora Clade 5 including two new species, Phytophthora agathidicida and P. cocois. Phytotaxa [Internet]. 2015 ;205(1):21. Available from: http://biotaxa.org/Phytotaxa/article/view/phytotaxa.205.1.2
Webber JF, Vettraino AM, Chang TT, Bellgard SE, Brasier CM, Vannini A. Isolation of Phytophthora lateralis from Chamaecyparis foliage in Taiwan. Forest Pathology [Internet]. 2011 :no–no. Available from: http://dx.doi.org/10.1111/j.1439-0329.2011.00729.x
Webber J. Management of P. kernoviae and P. ramorum in southwest England. Goheen EM, Frankel SJ. Phytophthoras in Forests and Natural Ecosystems. 2009 ;General Technical Report PSW-GTR-221:177-183.

Pages