Culturable Fungi Recovered from Deep-Sea Sediments: Diversity, Phylogenetic Placement, and In Vitro Antagonistic Activity Against Phytopathogenic Fungi
Jul 2026· Journal of Fungi· Vol 12, pp. 544· 0 citations· 60 references
Medicine
TL;DR
This study establishes an ITS-organized living fungal collection and provides a phenotype-based framework for targeted taxonomic, chemical, and biocontrol-oriented follow-up of deep-sea sediment-derived fungal isolates.
Abstract
Deep-sea sediment-derived fungal isolates remain underrepresented in organized living collections for phenotype-based screening. We applied 12 complementary isolation protocols—dilution plating, ethylenediaminetetraacetic acid (EDTA) pretreatment, and plate stamping—to four deep-sea sediment materials (2595–6000 m) representing three sampling units from the Mariana Trench slope region and the South China Sea. After morphotype-based purification, isolates were characterized by internal transcribed spacer (ITS) closest-match analysis and phylogenetic placement; selected representatives were further screened against five phytopathogenic strains using dual-culture, culture filtrate, and volatile organic compound (VOC) assays. In total, 159 isolates were placed within Ascomycota, Basidiomycota, and Mucoromycota, representing 35 closest-match genus-level groups and 22 low-similarity ITS phylotypes (<95% similarity) preserved as living cultures. Cladosporium, Penicillium, and Aspergillus were most frequent. Recovered diversity profiles varied among sediment materials and protocols, with plate stamping capturing a large, compositionally distinct subset of the collection. In dual culture, all 23 tested isolates inhibited at least one pathogen, with maximum mycelial growth inhibition reaching 98.74%. Culture filtrate and VOC assays produced partially discordant activity profiles, highlighting assay-format-dependent effects. This study establishes an ITS-organized living fungal collection and provides a phenotype-based framework for targeted taxonomic, chemical, and biocontrol-oriented follow-up.
Marine sediments support diverse bacterial assemblages, but culture-dependent surveys recover only the subset able to grow under defined laboratory conditions. Here, we characterized culturable bacteria from nine shallow sediment stations (4–7 m) in Qantab Bay, Sea of Oman, using Actinomycete Isolation Agar (AIA), Star...
Nasser Al-Siyabi, Aliya Al-Ansari, Antoine Leduc et al.· Hydrobiology· 0 citations
The results indicate that indigenous bacteria from chronically hydrocarbon-contaminated soils can show differing relative activities under the screening conditions, with K2 displaying the strongest response among the isolates tested.
D. Kiran, M. Bhavani, M. Vedhashree et al.· Journal of Advances in Micro...· 0 citations
The research examined culturable filamentous fungi from Cyperus polystachyos (many spiked flat sedge) plant rhizosphere soil for their potential as biosurfactant. Soil samples were collected from a crude oil contaminated site. Parameters investigated include: pH, electrical conductivity, nutrients and heavy metals conc...
O. Akomah-Abadaike, S. Adeyemi· Journal of Life and Bio Scie...· 0 citations
Coral-associated fungi are an integral yet understudied component of the coral holobiont. To elucidate their diversity, drivers, and potential functions, we conducted a comprehensive survey of 104 coral samples representing eight genera across three environmentally distinct reef regions in the South China Sea. Utilizin...
High-altitude ecosystems in the Andes present diverse extreme environmental conditions, yet the fungal biodiversity associated with crustose lichens remains largely unexplored. This study investigated the culturable fraction of the Endolichenic Fungi (ELF) community associated with the lichen Acarospora schleicheri (Ac...
Guillermo Fernández-Bunster, Natalia Quiñones-Sobarzo, Javier Tognarelli· Scientific Reports· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.