• This record comes from PubMed

Diversity and novel lineages of black yeasts in Chaetothyriales from freshwater sediments in Spain

. 2023 Jun ; 51 () : 194-228. [epub] 20231108

Status PubMed-not-MEDLINE Language English Country Netherlands Media print-electronic

Document type Journal Article

Black yeasts comprise a group of Ascomycota of the order Chaetothyriales with highly variable morphology, a great diversity of ecological niches and life cycles. Despite the ubiquity of these fungi, their diversity in freshwater sediments is still poorly understood. During a survey of culturable Ascomycota from river and stream sediments in various sampling sites in Spain, we obtained 47 isolates of black yeasts by using potato dextrose agar supplemented with cycloheximide. A preliminary morphological study and sequence analyses of the internal transcribed spacer region (ITS) and the large subunit (LSU) of the nuclear rDNA revealed that most of the isolates belonged to the family Herpotrichiellaceae. We have confidently identified 30 isolates representing the following species: Capronia pulcherrima, Cladophialophora emmonsii, Exophiala equina, Exophiala pisciphila, Exophiala radicis, and Phialophora americana. However, we encountered difficulty in assigning 17 cultures to any known species within Chaetothyriales. Combining phenotypic and multi-locus phylogenetic analyses based on the ITS, LSU, β-tubulin (tub2) and translation elongation factor 1-α (tef1-α) gene markers, we propose the new genus Aciculomyces in the Herpotrichiellaceae to accommodate the novel species Aciculomyces restrictus. Other novel species in this family include Cladophialophora denticulata, Cladophialophora heterospora, Cladophialophora irregularis, Exophiala candelabrata, Exophiala dehoogii, Exophiala ramosa, Exophiala verticillata and Phialophora submersa. The new species Cyphellophora spiralis, closely related to Cyphellophora suttonii, is described, and the phylogeny of the genus Anthopsis in the family Cyphellophoraceae is discussed. By utilizing these four markers, we were able to strengthen the phylogenetic resolution and provide more robust taxonomic assessments within the studied group. Our findings indicate that freshwater sediments may serve as a reservoir for intriguing black yeasts, which warrant further investigation to address gaps in phylogenetic relationships, particularly within Herpotrichiellaceae. Citation: Torres-Garcia D, García D, Réblová M, et al. 2023. Diversity and novel lineages of black yeasts in Chaetothyriales from freshwater sediments in Spain. Persoonia 51: 194-228. doi: 10.3767/persoonia.2023.51.05.

See more in PubMed

Ahmed SA, Bonifaz A, González GM, et al. 2021. Chromoblastomycosis caused by Phialophora – proven cases from Mexico. Journal of Fungi 7: 95. PubMed PMC

Arzanlou M, Groenewald JZ, Gams W, et al. 2007. Phylogenetic and morphotaxonomic revision of Ramichloridium and allied genera. Studies in Mycology 64: 17–47. PubMed PMC

Badali H, Carvalho VO, Vicente V, et al. 2009. Cladophialophora saturnica sp. nov., a new opportunistic species of Chaetothyriales revealed using molecular data. Medical Mycology 47: 51–66. PubMed

Badali H, Gueidan C, Najafzadeh MJ, et al. 2008. Biodiversity of the genus Cladophialophora. Studies in Mycology 61: 175–191. PubMed PMC

Badali H, Prenafeta-Boldú FX, Guarro J, et al. 2011. Cladophialophora psammophila, a novel species of Chaetothyriales with a potential use in the bioremediation of volatile aromatic hydrocarbons. Fungal Biology 115: 1019–1029. PubMed

Batista AC, Ciferri R. 1962. The Chaetothyriales. Beihefte Sydowia 3: 1–129.

Borrás P, Messina F, Abrantes R, et al. 2022. First report of phaeohyphomycosis caused by Phialophora americana in a domestic cat from Argentina. Journal of Feline Medicine and Surgery Open Reports 8: 1–7. PubMed PMC

Carbone I, Kohn LM. 1999. A method for designing primer sets for speciation studies in filamentous ascomycetes. Mycologia 91: 553–556.

Chang R, Wang Y, Liu Y, et al. 2023. Nine new species of black lichenicolous fungi from the genus Cladophialophora (Chaetothyriales) from two different climatic zones of China. Frontiers in Microbiology 14: 1191818. PubMed PMC

Chomnunti P, Bhat DJ, Gareth Jones EB, et al. 2012. Trichomeriaceae, a new sooty mould family of Chaetothyriales. Fungal Diversity 56: 63–76.

Chupp C. 1940. Further notes on double cover-glass mounts. Mycologia 32: 269–270.

Costa FdF, Da Silva NM, Voidaleski MF, et al. 2020. Environmental prospecting of black yeast-like agents of human disease using culture-independent methodology. Scientific Reports 10: 14229. PubMed PMC

Crous PW, Akulov A, Balashov S, et al. 2023. New and interesting fungi. 6. Fungal Systematics and Evolution 11: 109–156. PubMed PMC

Crous PW, Braun U, Schubert K, et al. 2007. Opportunistic, human-pathogenic species in the Herpotrichiellaceae are phenotipically similar to saprobic or phytopathogenic species in the Venturiaceae. Studies in Mycology 58: 185–217. PubMed PMC

Crous PW, Cowan DA, Maggs-Kölling G, et al. 2020. Fungal Planet description sheets: 1112-1181. Persoonia 45: 251–409. PubMed PMC

Crous PW, Schroers HJ, Groenewald JZ, et al. 2006. Metulocladosporiella gen. nov. for the causal organism of Cladosporium speckle disease of banana. Mycological Research 110: 264–275. PubMed

Crous PW, Schumacher RK, Akulov A, et al. 2019. New and interesting fungi 2. Fungal Systematics and Evolution 3: 57–134. PubMed PMC

Crous PW, Wingfield MJ, Guarro J, et al. 2013. Fungal Planet description sheets: 154-213. Persoonia 31: 188–296. PubMed PMC

Darriba D, Taboada GL, Doallo R, et al. 2012. jModelTest 2: more models, new heuristics and parallel computing. Nature Methods 9: 772–772. PubMed PMC

De Hoog GS, Al-Hatmi AMS, Samerpitak K. 2022. Diseases of Osteichtyes: Actinopterygii (ray fishes). Atlas of Clinical Fungi 4th edn. https://atlasclinicalfungi.org [accessed April 2023].

De Hoog GS, Guarro J, Gené J, et al. 2020. Atlas of clinical fungi: the ultimate benchtool for diagnostics. Part a: Introductions, lower fungi, basidiomycetes, yeasts, filamentous ascomycetes (A–B) / Part β: Filamentous ascomycetes (C–Z). 4th ed. Foundation Atlas of Clinical Fungi, Hilversum, The Netherlands.

De Hoog GS, Guého E, Masclaux F, et al. 1995. Nutritional physiology and taxonomy of human-pathogenic Cladosporium-Xylohypha species. Journal of Medical and Veterinary Mycology 33: 339–347. PubMed

De Hoog GS, Nishikaku AS, Fernández-Zeppenfeldt G, et al. 2007. Molecular analysis and pathogenicity of the Cladophialophora carrionii complex, with the description of a novel species. Studies in Mycology 58: 219–234. PubMed PMC

De Hoog GS, Rahman MA, Boekhout T. 1983. Ramichloridium, Veronaea and Stenella: generic delimitation, new combinations and two new species. Transactions of the British Mycological Society 81: 485–490.

De Hoog GS, Vicente VA, Najafzadeh MJ, et al. 2011. Waterborne Exophiala species causing disease in cold-blooded animals. Persoonia 27: 46–72. PubMed PMC

Decock C, Delgado-Rodríguez G, Buchet S, et al. 2003. A new species and three new combinations in Cyphellophora, with a note on the taxonomic affinities of the genus, and its relation to Kumbhamaya and Pseudomicrodochium.Antonie van Leeuwenhoek 84: 209–216. PubMed

Edgar RC. 2004. MUSCLE: multiple sequence alignment with high accuracy and high throughput. Nucleic Acids Research 32: 1792–1797. PubMed PMC

Farris JS, Kallersjo M, Kluge AG, et al. 1994. Testing significance of incongruence. Cladistics 10: 315–319.

Feng PY, De Hoog GS, Najafzadeh MJ, et al. 2014a. Cladophialophora abundans, a novel species of Chaetothyriales isolated from the natural environment. Mycological Progress 13: 381–391.

Feng PY, Lu Q, Najafzadeh MJ, et al. 2014b. Cyphellophora and its relatives in Phialophora: biodiversity and possible role in human infection. Fungal Diversity 65: 17–45.

Fijan N. 1969. Systemic mycosis in channel catfish. Bulletin of the Wildlife Disease Association 5: 109–110. PubMed

Friebes G. 2012. A key to the non-lichenicolous species of the genus Capronia (Herpotrichiellaceae). Ascomycete.org 4: 55–64.

Gallo MC, Robledo G, Romero AI, et al. 2014. New records of Ascomycota in the northwestern Argentinean Yungas. Check List 10: 621–631.

Glass NL, Donaldson G. 1995. Development of primer sets designed for use with PCR to amplify conserved genes from filamentous ascomycetes. Applied and Environmental Microbiology 61: 1323–1330. PubMed PMC

Gonzalez MS, Alfonso B, Seckinger D, et al. 1984. Subcutaneous phaeohyphomycosis caused by Cladosporium devriesii, sp. nov. Sabouraudia 22: 427–432. PubMed

Gostincar C, Muggia L, Grube M. 2012. Polyextremotolerant black fungi: oligotrophism, adaptive potential, and a link to lichen symbioses. Frontiers in Microbiology 3: 390. PubMed PMC

Gostincar C, Zajc J, Lenassi M, et al. 2018. Fungi between extremotolerance and opportunistic pathogenicity on humans. Fungal Diversity 93: 195–213.

Gueidan C, Aptroot A, Da Silva Cáceres ME, et al. 2014. A reappraisal of orders and families within the subclass Chaetothyriomycetidae (Eurotiomycetes, Ascomycota). Mycological Progress 13: 1027–1039.

Guindon S, Gascuel O. 2003. A simple, fast and accurate method to estimate large phylogenies by maximum-likelihood. Systematic Biology 52: 696–704. PubMed

Hespanhol L, Vallio CS, Costa LM, et al. 2019. Understanding and interpreting confidence and credible intervals around effect estimates. Brazilian Journal of Physical Therapy 23: 290–301. PubMed PMC

Hillis DM, Bull JJ. 1993. An empirical test of bootstrapping as a method for assessing confidence in phylogenetic analysis. Systematic Biology 42: 182–192.

Honbo S, Padhye AA, Ajello L. 1984. The relationship of Cladosporium carrionii to Cladophialophora ajelloi. Sabouraudia 22: 209–218. PubMed

Huang C, Zhang Y, Song Y, et al. 2019. Phaeohyphomycosis caused by Phialophora americana with CARD9 mutation and 20-year literature review in China. Mycoses 62: 908–919. PubMed

Iwatsu T. 1984. A new species of Cladosporium from Japan. Mycotaxon 20: 521–533.

Iwatsu T, Udagawa SI, Takase T. 1991. A new species of Exophiala recovered from drinking water. Mycotaxon 41: 321–328.

Kantarcioglu AS, Guarro J, De Hoog S, et al. 2017. An updated comprehensive systematic review of Cladophialophora bantiana and analysis of epidemiology, clinical characteristics, and outcome of cerebral cases. Medical Mycology 55: 579–604. PubMed

Kavehei A, Gore DB, Chariton AA, et al. 2021. Impact assessment of ephemeral discharge of contamination downstream of two legacy base metal mines using environmental DNA. Journal of Hazardous Materials 419: 126483. PubMed

Kornerup A, Wanscher JH. 1978. Methuen handbook of colour, 3rd edn. Eyre Methuen, London, UK.

Lepère C, Domaizon I, Humbert JF, et al. 2019. Diversity, spatial distribution and activity of fungi in freshwater ecosystems. Peer Journal 7: e6247. PubMed PMC

Li Y, Xiao J, De Hoog GS, et al. 2017. Biodiversity and human-pathogenicity of Phialophora verrucosa and relatives in Chaetothyriales. Persoonia 38: 1–19. PubMed PMC

Ma YR, Xia JW, Gao JM, et al. 2015. Atrokylindriopsis, a new genus of hyphomycetes from Hainan, China, with relationship to Chaetothyriales. Mycological Progress 14: 1–5.

Maciá-Vicente JG, Glynou K, Piepenbring M. 2016. A new species of Exophiala associated with roots. Mycological Progress 15: 1–12.

Madrid H, Hernandez-Restrepo M, Gené J, et al. 2016. New and interesting chaetothyrialean fungi from Spain. Mycological Progress 15: 1179–1201.

Marchisio VF, Fontana A, Mosca AML. 1977. Anthopsis deltoidea, a new genus and species of Dematiaceae from soil. Canadian Journal of Botany 55: 115–117.

Martini F, Seehusen F, Krudewig C, et al. 2022. Phaeohyphomycosis caused by Phialophora americana in a dog. Veterinary Dermatology 33: 446–449. PubMed

Miller MA, Pfeiffer W, Schwartz T. 2010. Creating the CIPRES Science Gateway for inference of large phylogenetic trees. In 2010 gateway computing environments workshop (GCE): 1–8.

Moreno LF, Vicente VA, De Hoog S. 2018. Black yeasts in the omics era: Achievements and challenges. Medical Mycology 56(suppl_1): S32–S41. PubMed

Moussa TA, Gerrits van den Ende BH, Al Zahrani HS, et al. 2017. The genus Anthopsis and its phylogenetic position in Chaetothyriales. Mycoses 60: 254–259. PubMed

Müller FM, Werner KE, Kasai M, et al. 1998. Rapid extraction of genomic DNA from medically important yeasts and filamentous fungi by high-speed cell disruption. Journal of Clinical Microbiology 36: 1625–1629. PubMed PMC

Munk A. 1953. The system of pyrenomycetes. Dansk Botansk Arkiv 15: 1–163.

Narisawa K, Hambleton S, Currah RS. 2007. Heteroconium chaetospira, a dark septate root endophyte allied to the Herpotrichiellaceae (Chaetothyriales) obtained from some forest soil samples in Canada using bait plants. Mycoscience 48: 274–281.

Nepel M, Voglmayr H, Schönenberger J, et al. 2014. High diversity and low specificity of chaetothyrialean fungi in carton galleries in a neotropical ant-plant association. PLoS ONE 9: e112756. PubMed PMC

Nunes AT, Cavalcanti MA, De Queiroz-Aciole L. 1999. Occurrence of Pseudomicrodochium suttonii in Brazil. Revista de Microbiologia 30: 52–53.

Padhye AA, McGinnis MR, Ajello L, et al. 1988. Xylohypha emmonsii sp. nov., a new agent of phaeohyphomycosis. Journal of Clinical Microbiology 26: 702–708. PubMed PMC

Phookamsak R, Hyde KD, Jeewon R, et al. 2019. Fungal diversity notes 929–1035: taxonomic and phylogenetic contributions on genera and species of fungi. Fungal Diversity 95: 1–273.

Phukhamsakda C, Nilsson RH, Bhunjun CS, et al. 2022. The numbers of fungi: contributions from traditional taxonomic studies and challenges of metabarcoding. Fungal Diversity 114: 327–386.

Prenafeta-Boldú FX, Kuhn A, Luykx DM, et al. 2001. Isolation and characterization of fungi growing on volatile aromatic hydrocarbons as their sole carbon and energy source. Mycological Research 105: 477–484.

Quan Y, Ahmed SA, Da Silva NM, et al. 2021. Novel black yeast-like species in Chaetothyriales with ant-associated life styles. Fungal Biology 125: 276–284. PubMed

Quan Y, Da Silva NM, De Souza Lima BJF, et al. 2022. Black fungi and ants: a genomic comparison of species inhabiting carton nests versus domatia. IMA Fungus 13: 1–13. PubMed PMC

Quan Y, Deng S, Prenafeta-Boldủ FX, et al. 2023. The origin of human pathogenicity and biological interactions in Chaetothyriales. Fungal Diversity. 10.1007/s13225-023-00518-3. DOI

Quan Y, Muggia L, Moreno LF, et al. 2020. A re-evaluation of the Chaetothyriales using criteria of comparative biology. Fungal Diversity 103: 47–85.

Réblová M, Untereiner WA, Réblová K. 2013. Novel evolutionary lineages revealed in the Chaetothyriales (Fungi) based on multigene phylogenetic analyses and comparison of ITS secondary structure. PLoS ONE 8: e63547. PubMed PMC

Rehulka J, Kolarík M, Hubka V. 2017. Disseminated infection due to Exophiala pisciphila in Cardinal tetra, Paracheirodon axelrodi. Journal of Fish Diseases 40: 1015–1024. PubMed

Ronquist F, Teslenko M, Van Der Mark P, et al. 2012. MrBayes 3.2: efficient Bayesian phylogenetic inference and model choice across a large model space. Systematic Biology 61: 539–542. PubMed PMC

Salgado CG, Da Silva JP, Diniz JA, et al. 2004. Isolation of Fonsecaea pedrosoi from thorns of Mimosa pudica, a probable natural source of chromoblastomycosis. Revista do Instituto de Medicina Tropical de Sao Paulo 46: 33–36. PubMed

Samuels GJ, Müller E. 1978. Life-history studies of Brazilian ascomycetes 3. Melanomma radicans sp. nov. and its Aposphaeria anamorph, Trematosphaeria perrumpens sp. nov. and Berlesiella fungicola sp. nov. and its Ramichlorodium anamorph. Sydowia 31: 142–156.

Sánchez RM, Miller AN, Bianchinotti MV. 2019. New species of Capronia (Herpotrichiellaceae, Ascomycota) from Patagonian forests, Argentina. Plant and Fungal Systematics 64: 81–90.

Satow MM, Attili-Angelis D, De Hoog GS, et al. 2008. Selective factors involved in oil flotation isolation of black yeasts from the environment. Studies in Mycology 61: 157–163. PubMed PMC

Sierra-López D. 2006. Contribución al estudio de los ascomicetes bitunicados de Cataluña. Contribution to the study of bitunicate ascomycetes in Catalonia (NE Spain). Acta Botanica Barcinonensia 50: 5–434.

Stamatakis A. 2014. RAxML version 8: a tool for phylogenetic analysis and post-analysis of large phylogenies. Bioinformatics 30: 1312–1313. PubMed PMC

Sudhadham M, Dorrestein GM, Prakitsin S, et al. 2008. The neurotropic black yeast Exophiala dermatitidis has a possible origin in the tropical rainforest. Studies in Mycology 61: 145–155. PubMed PMC

Sun W, Su L, Yang S, et al. 2020. Unveiling the hidden diversity of rock-inhabiting fungi: Chaetothyriales from China. Journal of Fungi 6: 187. PubMed PMC

Tamura K, Stecher G, Peterson D, et al. 2013. MEGA6: Molecular evolutionary genetics analysis version 6.0. Molecular Biology and Evolution 30: 2725–2729. PubMed PMC

Teixeira MDM, Moreno LF, Stielow BJ, et al. 2017. Exploring the genomic diversity of black yeasts and relatives (Chaetothyriales, Ascomycota). Studies in Mycology 86: 1–28. PubMed PMC

Thitla T, Kumla J, Khuna S, et al. 2022. Species diversity, distribution, and phylogeny of Exophiala with the addition of four new species from Thailand. Journal of Fungi 8: 766. PubMed PMC

Thompson JD, Higgins DG, Gibson TJ. 1994. CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucleic Acids Research 22: 4673–4680. PubMed PMC

Tian Q, Chomnunti P, Lumyong S, et al. 2021. Phylogenetic relationships and morphological reappraisal of Chaetothyriales. Mycosphere 12: 1157–1261.

Torres-Garcia D, García D, Cano-Lira JF, et al. 2022a. Two novel genera, Neostemphylium and Scleromyces (Pleosporaceae) from freshwater sediments and their global biogeography. Journal of Fungi 8: 868. PubMed PMC

Torres-Garcia D, Gené J, García D. 2022b. New and interesting species of Penicillium (Eurotiomycetes, Aspergillaceae) in freshwater sediments from Spain. MycoKeys 86: 103–145. PubMed PMC

Ulfig K, Guarro J, Cano J, et al. 1997. General assessment of the occurrence of keratinolytic fungi in river and marine beach sediments of Catalonian waters (Spain). Water, Air, and Soil Pollution 94: 275–287.

Untereiner WA. 1994. A simple method for the in vitro production of pseudothecia in species of Capronia. Mycologia 86: 290–295.

Untereiner WA. 1997. Taxonomy of selected members of the ascomycete genus Capronia with notes on anamorph-teleomorph connections. Mycologia 89: 120–131.

Untereiner WA, Naveau FA. 1999. Molecular systematics of the Herpotrichiellaceae with an assessment of the phylogenetic positions of Exophiala dermatitidis and Phialophora americana. Mycologia 91: 67–83.

Vaidya G, Lohman DJ, Meier R. 2011. SequenceMatrix: concatenation software for the fast assembly of multi-gene datasets with character set and codon information. Cladistics 27: 171–180. PubMed

Veach AM, Dodds WK, Jumpponen A. 2015. Woody plant encroachment, and its removal, impact bacterial and fungal communities across stream and terrestrial habitats in a tallgrass prairie ecosystem. FEMS Microbiology Ecology 91: fiv109. PubMed

Vicente VA, Attili-Angelis D, Pie MR, et al. 2008. Environmental isolation of black yeast-like fungi involved in human infection. Studies in Mycology 61: 137–144. PubMed PMC

Vicente VA, Orélis-Ribeiro R, Najafzadeh MJ, et al. 2012. Black yeast-like fungi associated with Lethargic Crab Disease (LCD) in the mangrove-land crab, Ucides cordatus (Ocypodidae). Veterinary Microbiology 158: 109–122. PubMed

Voglmayr H, Mayer V, Maschwitz U, et al. 2011. The diversity of ant-associated black yeasts: insights into a newly discovered world of symbiotic interactions. Fungal Biology 115: 1077–1091. PubMed

Wang X, Cai W, Gerrits van den Ende AHG, et al. 2018. Indoor wet cells as a habitat for melanized fungi, opportunistic pathogens on humans and other vertebrates. Scientific Reports 8: 7685. PubMed PMC

White TJ, Bruns T, Lee SJWT, et al. 1990. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. In: Innis MA, Gelfand DH, Sninsky JJ, et al. (eds), PCR protocols: A guide to methods and applications, 1st ed: 315–322. Academic Press, San Diego, CA, USA.

Wijayawardene NN, Hyde KD, Al-Ani LKT, et al. 2020. Outline of fungi and fungus-like taxa. Mycosphere 11: 1060–1456.

Xu F, Zhu L, Wang J, et al. 2021. Nonpoint Source Pollution (NPSP) induces structural and functional variation in the fungal community of sediments in the Jialing River, China. Microbial Ecology: 1–15. PubMed

Zhao J, Zeng J, De Hoog GS, et al. 2010. Isolation of black yeasts by enrichment on atmospheres of monoaromatic hydrocarbons. Microbial Ecology 60: 149–156. PubMed PMC

Newest 20 citations...

See more in
Medvik | PubMed

Fungal Planet description sheets: 1697-1780

. 2024 Dec ; 14 () : 325-577. [epub] 20241206

Fungal Planet description sheets: 1550-1613

. 2023 Jun ; 51 () : 280-417. [epub] 20231230

Find record

Citation metrics

Loading data ...

Archiving options

Loading data ...