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      Scientific Opinion on the Pest Risk Analysis onPhytophthora ramorumprepared by the FP6 project RAPRA : Evaluation of Pest Risk Analysis on Phytophthora ramorum

      EFSA Panel on Plant Health (PLH)
      EFSA Journal
      Wiley

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          Phytophthora genome sequences uncover evolutionary origins and mechanisms of pathogenesis.

          Draft genome sequences have been determined for the soybean pathogen Phytophthora sojae and the sudden oak death pathogen Phytophthora ramorum. Oömycetes such as these Phytophthora species share the kingdom Stramenopila with photosynthetic algae such as diatoms, and the presence of many Phytophthora genes of probable phototroph origin supports a photosynthetic ancestry for the stramenopiles. Comparison of the two species' genomes reveals a rapid expansion and diversification of many protein families associated with plant infection such as hydrolases, ABC transporters, protein toxins, proteinase inhibitors, and, in particular, a superfamily of 700 proteins with similarity to known oömycete avirulence genes.
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            Phytophthora ramorumas the Cause of Extensive Mortality ofQuercusspp. andLithocarpus densiflorusin California

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              Phytophthora ramorum: integrative research and management of an emerging pathogen in California and Oregon forests.

              Phytophthora ramorum, causal agent of sudden oak death, is an emerging plant pathogen first observed in North America associated with mortality of tanoak (Lithocarpus densiflorus) and coast live oak (Quercus agrifolia) in coastal forests of California during the mid-1990s. The pathogen is now known to occur in North America and Europe and have a host range of over 40 plant genera. Sudden oak death has become an example of unintended linkages between the horticultural industry and potential impacts on forest ecosystems. This paper examines the biology and ecology of P. ramorum in California and Oregon forests as well discussing research on the pathogen in a broader management context.
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                Author and article information

                Journal
                EFSA Journal
                EFSA Journal
                Wiley
                18314732
                June 2011
                June 2011
                June 28 2011
                : 9
                : 6
                : 2186
                Article
                10.2903/j.efsa.2011.2186
                45c50982-e0e5-409a-a19f-f0705238d92d
                © 2011

                http://doi.wiley.com/10.1002/tdm_license_1

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