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eDNA metabarcoding (vides DNS metabarkodēšana)×Funkcionālā daudzveidība×
NozareEkoloģijaEkoloģija
SaimeProcess / pipelineProcess / pipeline
Izcelsmes gads20122008
AutorsPierre TaberletOlivier Mouillot
Tipsspecies detection and community assessmenttrait-based diversity analysis
PirmavotsTaberlet, P., Coissac, E., Hajibabaei, M., & Rieseberg, L. H. (2012). Environmental DNA. Molecular Ecology, 21(8), 1789-1793. DOI ↗Villéger, S., Mason, N. W., & Mouillot, D. (2008). New multidimensional functional diversity indices for a multifaceted framework in functional ecology. Ecology, 89(8), 2290-2301. DOI ↗
Citi nosaukumieDNA, metabarcoding, DNA metabarcoding, genetic monitoringfunctional traits, trait diversity, ecological niche, functional space
Saistītās44
KopsavilkumsEnvironmental DNA (eDNA) metabarcoding detects and identifies species present in environmental samples (water, soil, air) by sequencing short DNA fragments released by organisms. Developed by Taberlet and colleagues (2012), this approach has revolutionized biodiversity monitoring: species can be surveyed without capture, observation, or complex sampling designs. Metabarcoding sequences millions of DNA fragments, identifies reads taxonomically, and assigns them to species. The method is non-invasive, rapid, and cost-effective, enabling large-scale biodiversity surveys and early detection of cryptic or rare species.Functional diversity quantifies the range and abundance distribution of functional traits (morphology, physiology, behavior) among species in a community. Developed by Mouillot and colleagues (2008), functional diversity indices measure how different species are in their ecological roles and resource use strategies. Unlike species richness (number of species), functional diversity captures the breadth of ecological strategies, predicting ecosystem function and stability.
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ScholarGateSalīdzināt metodes: eDNA Metabarcoding · Functional Diversity. Izgūts 2026-06-17 no https://scholargate.app/lv/compare