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Understanding the ecological versatility of Tetracladium species in temperate forest soils. | LitMetric

AI Article Synopsis

  • Tetracladium species, previously noted for their role in aquatic environments, are being found in soil, raising questions about their adaptability in different ecosystems.
  • A study conducted in temperate forests across the eastern U.S. identified 29 unique Tetracladium variants and revealed significant variations in their abundance and community composition based on location.
  • Factors such as soil pH, temperature, and sulfur content positively influenced Tetracladium richness, while negative interactions with other fungal groups like mycorrhizal fungi were observed, underscoring their ecological importance in soil environments.

Article Abstract

Although Tetracladium species have traditionally been studied as aquatic saprotrophs, the growing number of metagenomic and metabarcoding reports detecting them in soil environments raises important questions about their ecological adaptability and versatility. We investigated the factors associated with the relative abundance, diversity and ecological dynamics of Tetracladium in temperate forest soils. Through amplicon sequencing of soil samples collected from 54 stands in six forest sites across the eastern United States, we identified 29 distinct Amplicon Sequence Variants (ASVs) representing Tetracladium, with large differences in relative abundance and small changes in ASV community composition among sites. Tetracladium richness was positively related to soil pH, soil temperature, total sulphur and silt content, and negatively related to plant litter quality, such as the lignin-to-nitrogen ratio and the lignocellulose index. Co-occurrence network analysis indicated negative relationships between Tetracladium and other abundant fungal groups, including ectomycorrhizal and arbuscular mycorrhizal fungi. Collectively, our findings highlight the ecological significance of Tetracladium in temperate forest soils and emphasize the importance of site-specific factors and microbial interactions in shaping their distribution patterns and ecological dynamics.

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Source
http://dx.doi.org/10.1111/1462-2920.70001DOI Listing

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