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1.
Extremophiles ; 22(3): 381-393, 2018 May.
Article in English | MEDLINE | ID: mdl-29332141

ABSTRACT

Molecular biology techniques were used to identify 218 fungi from soil samples collected from four islands of Antarctica. These consisted of 22 taxa of 15 different genera belonging to the Zygomycota, Ascomycota, and Basidiomycota. Mortierella, Antarctomyces, Pseudogymnoascus, and Penicillium were the most frequently isolated genera and Penicillium tardochrysogenum, Penicillium verrucosus, Goffeauzyma gilvescens, and Mortierella sp. 2 the most abundant taxa. All fungal isolates were cultivated using solid-state fermentation to obtain their crude extracts. Pseudogymnoascus destructans, Mortierella parvispora, and Penicillium chrysogenum displayed antiparasitic activities, whilst extracts of P. destructans, Mortierella amoeboidea, Mortierella sp. 3, and P. tardochrysogenum showed herbicidal activities. Reported as pathogenic for bats, different isolates of P. destructans exhibited trypanocidal activities and herbicidal activity, and may be a source of bioactive molecules to be considered for chemotherapy against neglected tropical diseases. The abundant presence of P. destructans in soils of the four islands gives evidence supporting that soils in the Antarctic Peninsula constitute a natural source of strains of this genus, including some P. destructans strains that are phylogenetically close to those that infect bats in North America and Europe/Palearctic Asia.


Subject(s)
Antiprotozoal Agents/pharmacology , Fungi/genetics , Herbicides/pharmacology , Microbiota , Phylogeny , Soil Microbiology , Allium/drug effects , Antarctic Regions , Antiviral Agents/pharmacology , Dengue Virus/drug effects , Fungi/classification , Fungi/isolation & purification , Fungi/metabolism , Lactuca/drug effects , Trypanosoma cruzi/drug effects , Zika Virus/drug effects
2.
Extremophiles ; 21(6): 1005-1015, 2017 Nov.
Article in English | MEDLINE | ID: mdl-28856503

ABSTRACT

Thirty-six seawater samples collected at different depths of the Gerlache and Bransfield Straits in the Northern Antarctic Peninsula were analyzed, and the average of the total fungal counts ranged from 0.3 to >300 colony forming units per liter (CFU/L) in density. The fungal were purified and identified as 15 taxa belonged to the genera Acremonium, Aspergillus, Cladosporium, Cystobasidium, Exophiala, Glaciozyma, Graphium, Lecanicillium, Metschnikowia, Penicillium, Purpureocillium and Simplicillium. Penicillium chrysogenum, Cladosporium sphaerospermum, and Graphium rubrum were found at high densities in at least two different sites and depths. Our results show at the first time that in the seawater of Antarctic Ocean occur diverse fungal assemblages despite extreme conditions, which suggests the presence of a complex aquatic fungi food web, including species reported as barophiles, symbionts, weak and strong saprobes, parasites and pathogens, as well as those found in the polluted environments of the world. Additionally, some taxa were found in different sites, suggesting that the underwater current might contribute to fungal (and microbial) dispersal across the Antarctic Ocean, and nearby areas such as South America and Australia.


Subject(s)
Extreme Cold , Mycobiome , Phylogeny , Seawater/microbiology , Acclimatization , Antarctic Regions , Fungi/classification , Fungi/genetics
3.
Extremophiles ; 19(3): 585-96, 2015 May.
Article in English | MEDLINE | ID: mdl-25809294

ABSTRACT

We surveyed the diversity and capability of producing bioactive compounds from a cultivable fungal community isolated from oligotrophic soil of continental Antarctica. A total of 115 fungal isolates were obtained and identified in 11 taxa of Aspergillus, Debaryomyces, Cladosporium, Pseudogymnoascus, Penicillium and Hypocreales. The fungal community showed low diversity and richness, and high dominance indices. The extracts of Aspergillus sydowii, Penicillium allii-sativi, Penicillium brevicompactum, Penicillium chrysogenum and Penicillium rubens possess antiviral, antibacterial, antifungal, antitumoral, herbicidal and antiprotozoal activities. Bioactive extracts were examined using (1)H NMR spectroscopy and detected the presence of secondary metabolites with chemical shifts. Our results show that the fungi present in cold-oligotrophic soil from Antarctica included few dominant species, which may have important implications for understanding eukaryotic survival in cold-arid oligotrophic soils. We hypothesize that detailed further investigations may provide a greater understanding of the evolution of Antarctic fungi and their relationships with other organisms described in that region. Additionally, different wild pristine bioactive fungal isolates found in continental Antarctic soil may represent a unique source to discover prototype molecules for use in drug and biopesticide discovery studies.


Subject(s)
Bioprospecting , Extreme Cold , Fungi/isolation & purification , Microbiota , Soil Microbiology , Aedes/drug effects , Animals , Antarctic Regions , Anti-Infective Agents/isolation & purification , Anti-Infective Agents/toxicity , Biological Products/isolation & purification , Biological Products/toxicity , Cytotoxins/isolation & purification , Cytotoxins/toxicity , Fungi/chemistry , Fungi/classification , Humans , Insecticides/isolation & purification , Insecticides/toxicity , Lactuca/drug effects , MCF-7 Cells
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