Growth and fruition of a pathology research community: the Dothistroma story
Author:
Affiliation:
1. Bio-Protection Research Centre; Institute of Fundamental Sciences; Massey University; Palmerston North New Zealand
Publisher
Wiley
Subject
Ecology,Forestry
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/efp.12259/fullpdf
Reference27 articles.
1. Biological control of Dothistroma needle blight on pine with Aneurinibacillus migulanus;Alenezi;Forest Pathol.,2016
2. Multigene phylogenies reveal that red band needle bight of Pinus is caused by two distinct species of Dothistroma, D. septosporum and D. pini;Barnes;Stud. Mycol.,2004
3. Neotypification of Dothistroma septosporum and epitypification of D. pini, causal agents of Dothistroma needle blight of pine;Barnes;Forest Pathol.,2016
4. The distribution of Dothistroma septosporum and its mating types in Poland;Boron;Forest Pathol.,2016
5. Genome-wide gene expression dynamics of the fungal pathogen Dothistroma septosporum throughout its infection cycle of the gymnosperm host Pinus radiata;Bradshaw;Mol. Plant Pathol.,2015
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1. Beyond the genomes of Fulvia fulva (syn. Cladosporium fulvum) and Dothistroma septosporum: New insights into how these fungal pathogens interact with their host plants;Molecular Plant Pathology;2023-02-15
2. Dothistroma needle blight;Forest Microbiology;2022
3. Advances in understanding and managing fungal and other diseases of forest trees;Achieving sustainable management of boreal and temperate forests;2019-11-26
4. Global population genomics of the forest pathogen Dothistroma septosporum reveal chromosome duplications in high dothistromin‐producing strains;Molecular Plant Pathology;2019-04
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