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Msphere|October 15, 2020
Comparative Genomics Analyses of Lifestyle Transitions at the Origin of an Invasive Fungal Pathogen in the Genus <i>Cryphonectria</i>Lea Stauber, Simone Prospero, Daniel CrollMolecular Ecology|February 5, 2022
Temporal changes in pathogen diversity in a perennial plant-pathogen-hyperparasite systemLea Stauber, Daniel Croll, Simone ProsperoElife|March 5, 2021
Emergence and diversification of a highly invasive chestnut pathogen lineage across southeastern EuropeLea Stauber, Thomas Badet, Alice Feurtey, et al.Molecular Biology and Evolution|February 5, 2025
An Inversion Polymorphism Under Balancing Selection, Involving Giant Mobile Elements, in an Invasive Fungal PathogenFanny E Hartmann, Ricardo C Rodríguez de la Vega, Arthur Demené, et al.Molecular Plant Pathology|February 1, 2017
Cryphonectria parasitica, the causal agent of chestnut blight: invasion history, population biology and disease controlDaniel Rigling, Simone ProsperoMethods in Molecular Biology (Clifton, N.J.)|July 12, 2022
Microsatellite Genotyping in the Chestnut Blight Fungus Cryphonectria parasiticaQuirin Kupper, Simone ProsperoPlant Disease|January 25, 2019
Virulence and Stump Colonization Ability of Armillaria borealis on Norway Spruce Seedlings in Comparison to Sympatric Armillaria SpeciesRenate Heinzelmann, Simone Prospero, Daniel RiglingMycologia|March 2, 2013
A new multilocus approach for a reliable DNA-based identification of Armillaria speciesTetyana Tsykun, Daniel Rigling, Simone ProsperoMycological Research|June 27, 2003
Primary resource capture in two sympatric Armillaria species in managed Norway spruce forestsSimone Prospero, Ottmar Holdenrieder, Daniel RiglingFungal Biology|February 21, 2018
Frequent diploidisation of haploid Armillaria ostoyae strains in an outdoor inoculation experimentRenate Heinzelmann, Simone Prospero, Daniel RiglingPageof 19