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Comparative genomics of beetle-vectored fungal pathogens reveals a reduction in genome size and independent evolution of pathogenicity of two tree pathogens
View ORCID ProfileTaruna A Schuelke, Anthony Westbrook, View ORCID ProfileKeith Woeste, View ORCID ProfileDavid C. Plachetzki, Kirk Broders, View ORCID ProfileMatthew D. MacManes
doi: https://doi.org/10.1101/093856
Taruna A Schuelke
1Department of Molecular, Cellular, & Biomedical Sciences, University of New Hampshire, 105 Main Street, Durham, NH 03824;
Anthony Westbrook
2Department of Computer Science, University of New Hampshire, 105 Main Street, Durham, NH 03824;
Keith Woeste
3USDA Forest Service Hardwood Tree Improvement and Regeneration Center, Department of Forestry and Natural Resources, Purdue University, West Lafayette, IN 47907;
David C. Plachetzki
1Department of Molecular, Cellular, & Biomedical Sciences, University of New Hampshire, 105 Main Street, Durham, NH 03824;
Kirk Broders
4Department of Bioagricultural Sciences and Pest Management, Colorado State University, Fort Collins, CO 80523
Matthew D. MacManes
1Department of Molecular, Cellular, & Biomedical Sciences, University of New Hampshire, 105 Main Street, Durham, NH 03824;
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Posted December 13, 2016.
Comparative genomics of beetle-vectored fungal pathogens reveals a reduction in genome size and independent evolution of pathogenicity of two tree pathogens
Taruna A Schuelke, Anthony Westbrook, Keith Woeste, David C. Plachetzki, Kirk Broders, Matthew D. MacManes
bioRxiv 093856; doi: https://doi.org/10.1101/093856
Comparative genomics of beetle-vectored fungal pathogens reveals a reduction in genome size and independent evolution of pathogenicity of two tree pathogens
Taruna A Schuelke, Anthony Westbrook, Keith Woeste, David C. Plachetzki, Kirk Broders, Matthew D. MacManes
bioRxiv 093856; doi: https://doi.org/10.1101/093856
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