FUNGuild: An open annotation tool for parsing fungal community datasets by ecological guild
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Summary
Fungi typically live in highly diverse communities composed of multiple ecological guilds, and FUNGuild is a tool that can be used to taxonomically parse fungal OTUs by ecological guild independent of sequencing platform or analysis pipeline.
- Type
- article
- Published
- 2016-04-01
- Cited by
- 3,928
- References
- 73
- OpenAlex
- https://openalex.org/W1005007408
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13535376
Keywords
Guild, Decomposer, Biology, Ecology, Habitat
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- Experimental Evidence of Functional Group-Dependent Effects of Tree Diversity on Soil Fungi in Subtropical Forests
- Mycobiome Diversity in Traditionally Prepared Starters for Alcoholic Beverages in India by High-Throughput Sequencing Method
- Effects of frequency and amount of stover mulching on soil nitrogen and the microbial functional guilds of the endosphere and rhizosphere
- The Faces of Fungi database: fungal names linked with morphology, phylogeny and human impacts
- Revisiting the 'Gadgil effect': do interguild fungal interactions control carbon cycling in forest soils?
- Historical and current climate drive spatial and temporal patterns in fungal endophyte diversity
- Experimental warming alters potential function of the fungal community in boreal forest
- Fire severity influences the response of soil microbes to a boreal forest fire
- Variation in soil microbial communities associated with critically endangered Wollemi pine affects fungal, but not bacterial, assembly within seedling roots
- Mycorrhizas across scales: a journey between genomics, global patterns of biodiversity and biogeochemistry.
- Selection of fungi by candidate cover crops
- Ectomycorrhizal fungal richness declines towards the host species’ range edge
- Tree species, spatial heterogeneity, and seasonality drive soil fungal abundance, richness, and composition in Neotropical rainforests.
- The legacy effect of cover crops on soil fungal populations in a cereal rotation
- Millions of reads, thousands of taxa: microbial community structure and associations analyzed via marker genes.
- Richness and community structure of High Arctic fungi through space and time explored using high-throughput sequencing
- Compositional and functional shifts in arctic fungal communities in response to experimentally increased snow depth
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