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1.
Janevska, S.* et al.: Elucidation of the two H3K36me3 histone methyltransferases Set2 and Ash1 in Fusarium fujikuroi unravels their different chromosomal targets and a major impact of Ash1 on genome stability. Genetics 208, 153-171 (2018)
2.
Sipos, G.* et al.: Author Correction: Genome expansion and lineage-specific genetic innovations in the forest pathogenic fungi Armillaria. Nat. Ecol. Evol. 2:577 (2018)
3.
Stam, R.* et al.: A new reference genome shows the one-speed genome structure of the barley pathogen Ramularia collo-cygni. Genome Biol. Evol. 10, 3243-3249 (2018)
4.
Heinzelmann, R.* et al.: High-density genetic mapping identifies the genetic basis of a natural colony morphology mutant in the root rot pathogen Armillaria ostoyae. Fungal Genet. Biol. 108, 44-54 (2017)
5.
Niehaus, E.M.* et al.: The GATA-type transcription factor Csm1 regulates conidiation and secondary metabolism in Fusarium fujikuroi. Front. Microbiol. 8:1175 (2017)
6.
Niehaus, E.M.* et al.: Analysis of the global regulator Lae1 uncovers a connection between Lae1 and the histone acetyltransferase HAT1 in Fusarium fujikuroi. Appl. Microbiol. Biotechnol. 102, 279–295 (2017)
7.
Pfannmüller, A.* et al.: Comparative transcriptome and proteome analysis reveals a global impact of the nitrogen regulators AreA and AreB on secondary metabolism in Fusarium fujikuroi. PLoS ONE 12:e0176194 (2017)
8.
Sipos, G.* et al.: Genome expansion and lineage-specific genetic innovations in the forest pathogenic fungi Armillaria. Nat. Ecol. Evol. 1, 1931–1941 (2017)