Maresca B, Kobayashi GS. Molecular biology of pathogenic fungi: a laboratory manual. New York: Telos Press, 1994.
McGinnis MR. Wangiella, a new genus to accommodate Hormiscium dermatitidis. Mycotaxon 5: 353-363, 1977.
Oujezdsky KB, et al. Morphologica and structural changes during the yeast-to mold conversion of Phialophora dermatitidis. J. Bacteriol. 113: 468-477, 1973. PubMed: 4120203
Grove SN, et al. Budding in the dimorphic fungus Phialophora dermatitidis. J. Bacteriol. 115: 323-329, 1973. PubMed: 4717521
Oujezdsky KB, Szaniszlo PJ. Conidial ontogeny in Phialophora dermatitidis. Mycologia 66: 537-542, 1974. PubMed: 4601644
Szaniszlo PJ, et al. Induction and ultrastructure of the multicellular (sclerotic) morphology in Phialophora dermatitidis. Mycologia 68: 117-130, 1976. PubMed: 6907
Oujezdsky KB, Szaniszlo PJ. Conjugation in the dimorphic chromomycosis fungus Phialophora dermatitidis. J. Bacteriol. 114: 1356-1358, 1973. PubMed: 4712572
Haase G. Analysis of genes coding for small-subunit rRNA sequences in studying phylogenetics of dematiaceous fungal pathogens [letter; comment]. J. Clin. Microbiol. 34: 2049-2050, 1996. PubMed: 8818914
Schnitzler N, et al. Effect of melanin and carotenoids of Exophiala (Wangiella) dermatitidis on phagocytosis, oxidative burst, and killing by human neutrophils. Infect. Immun. 67: 94-101, 1999. PubMed: 9864201
Wang Z, Szaniszlo PJ. WdCHS3, a gene that encodes a class III chitin synthase in Wangiella (Exophiala) dermatitidis, is expressed differentially under stress conditions. J. Bacteriol. 182: 874-881, 2000. PubMed: 10648509
Zheng L, et al. WdChs1p, a class II chitin synthase, is more responsible than WdChs2p (Class I) for normal yeast reproductive growth in the polymorphic, pathogenic fungus Wangiella (Exophiala) dermatitidis. Arch Microbiol 185: 316-329, 2006. PubMed: 16544168
Feng B, et al. Molecular cloning and characterization of WdPKS1, a gene involved in dihydroxynaphthalene melanin biosynthesis and virulence in Wangiella (Exophiala) dermatitidis. Infect Immun 69: 1781-1794, 2001. PubMed: 11179356
Ye X, Szaniszlo PJ. Expression of a constitutively active Cdc42 homologue promotes development of sclerotic bodies but represses hyphal growth in the zoopathogenic fungus Wangiella (Exophiala) dermatitidis. J Bacteriol 182: 4941-4950, 2000. PubMed: 10940039
Teixeira MM, et al. Exploring the genomic diversity of black yeasts and relatives (Chaetothyriales, Ascomycota). Stud Mycol 86: 1-28, 2017. PubMed: 28348446
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