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      Phenotypic and genotypic changes in French populations ofPhytophthora infestans: are invasive clones the most aggressive?

      , , , , , , , ,
      Plant Pathology
      Wiley-Blackwell

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          Pathogen population genetics, evolutionary potential, and durable resistance.

          We hypothesize that the evolutionary potential of a pathogen population is reflected in its population genetic structure. Pathogen populations with a high evolutionary potential are more likely to overcome genetic resistance than pathogen populations with a low evolutionary potential. We propose a flexible framework to predict the evolutionary potential of pathogen populations based on analysis of their genetic structure. According to this framework, pathogens that pose the greatest risk of breaking down resistance genes have a mixed reproduction system, a high potential for genotype flow, large effective population sizes, and high mutation rates. The lowest risk pathogens are those with strict asexual reproduction, low potential for gene flow, small effective population sizes, and low mutation rates. We present examples of high-risk and low-risk pathogens. We propose general guidelines for a rational approach to breed durable resistance according to the evolutionary potential of the pathogen.
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            Phytophthora infestans: the plant (and R gene) destroyer.

            Phytophthora infestans remains a problem to production agriculture. Historically there have been many controversies concerning its biology and pathogenicity, some of which remain today. Advances in molecular biology and genomics promise to reveal fascinating insight into its pathogenicity and biology. However, the plasticity of its genome as revealed in population diversity and in the abundance of putative effectors means that this oomycete remains a formidable foe.
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              Severely reduced sexual reproduction in northern populations of a clonal plant, Decodonverticillatus (Lythraceae)

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                Author and article information

                Journal
                Plant Pathology
                Plant Pathol
                Wiley-Blackwell
                00320862
                May 2016
                May 01 2016
                : 65
                : 4
                : 577-586
                Article
                10.1111/ppa.12441
                0ad78023-9c73-4a0b-ae98-8c4af79ade27
                © 2016

                http://doi.wiley.com/10.1002/tdm_license_1.1

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