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EFSA Panel on Plant Health (PLH). Scientific opinion on the pest risk analysis on Phytophthora ramorum prepared by the FP6 project RAPRA. EFSA Journal [Internet]. 2011  ;9(6):107 pp. Available from: http://www.efsa.europa.eu/en/efsajournal/pub/2186.htm\par \par Eggers JE, Balci Y, MacDonald WL. Variation among Phytophthora cinnamomi isolates from oak forest soils in the eastern United States. Plant Disease [Internet]. 2012  ;96:1608-1614. Available from: http://dx.doi.org/10.1094/PDIS-02-12-0140-RE\par \par Elegbede CF, Pierrat J-C, Aguayo J, Husson C, Halkett F, c\}ais B\{\\^?t M\{\\c. A statistical model to detect asymptomatic infectious individuals with an application in the Phytophthora alni-Induced alder decline. Phytopathology [Internet]. 2010  ;100:1262-1269. Available from: http://dx.doi.org/10.1094/PHYTO-05-10-0140\par \par Elliot M, Schlenzig A, Harris CM, Meagher TR, Green S. An improved method for qPCR detection of three Phytophthora spp. in forest and woodland soils in northern Britain Belbahri L. Forest Pathology [Internet]. 2015  ;45(6):537?539. Available from: http://doi.wiley.com/10.1111/efp.12224http://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1111%2Fefp.12224\par \par Elliott M, Sumampong G, Varga A, Shamoun SF, James D, Masri S, Gr\'fcnwald NJ. Phenotypic differences among three clonal lineages of Phytophthora ramorum. Forest Pathology [Internet]. 2011  ;41:7?14. Available from: http://dx.doi.org/10.1111/j.1439-0329.2009.00627.x\par \par Elliott M, Sumampong G, Varga A, Shamoun SF, James D, Masri S, Bri\'e8re SC, Gr\'fcnwald NJ. PCR-RFLP markers identify three lineages of the North American and European populations of Phytophthora ramorum. Forest Pathology [Internet]. 2009  ;39:266?278. Available from: http://dx.doi.org/10.1111/j.1439-0329.2008.00586.x\par \par Engelbrecht J, Duong TA, van den Berg N. Development of a Nested Quantitative Real-Time PCR for Detecting Phytophthora cinnamomi in Persea americana Rootstocks. Plant Disease [Internet]. 2013  ;97(8):1012 - 1017. Available from: http://dx.doi.org/10.1094/PDIS-11-12-1007-RE \par \par Englander L, Roth LF. Interaction of light and sterol on sporangium and chlamydospore production by Phytophthora lateralis. Phytopathology. 1980  ;70:650-654.\par \par Englander L, Browning M, Tooley PW. Growth and sporulation of Phytophthora ramorum in vitro in response to temperature and light. Mycologia [Internet]. 2006  ;98:365-373. Available from: http://www.mycologia.org/cgi/content/abstract/98/3/365\par \par \'c9rsek T, Nagy Z. Species hybrids in the genus Phytophthora with emphasis on the alder pathogen Phytophthora alni: a review. European Journal of Plant Pathology [Internet]. 2008  ;122:31-39. Available from: http://dx.doi.org/10.1007/s10658-008-9296-z\par \par Erwin DC, Ribeiro OK. Phytophthora diseases worldwide. St. Paul, MN: APS Press, American Phytopathological Society; 1996 p. 562 pp.\par \par Eshraghi L, Anderson J, Aryamanesh N, Shearer B, McComb J, Hardy SJGE, O?Brien PA. Phosphite primed defence responses and enhanced expression of defence genes in Arabidopsis thaliana infected with Phytophthora cinnamomi. Plant Pathology [Internet]. 2011  ;60:1086?1095. Available from: http://dx.doi.org/10.1111/j.1365-3059.2011.02471.x\par \par Eyre CA, Garbelotto M. Detection, Diversity, and Population Dynamics of Waterborne Phytophthora ramorum Populations. Phytopathology [Internet]. 2015  ;105(1):57 - 68. Available from: http://apsjournals.apsnet.org/doi/abs/10.1094/PHYTO-07-13-0196-R\par \par Eyre CA, Hayden KJ, Kozanitas M, Gr\'fcnwald NJ, Garbelotto M. Lineage, Temperature, and Host Species have Interacting Effects on Lesion Development in Phytophthora ramorum. Plant Disease [Internet]. 2014  ;98(12):1717 - 1727. Available from: http://apsjournals.apsnet.org/doi/abs/10.1094/PDIS-02-14-0151-RE\par \par }