Environmental DNA provides higher resolution assessment of riverine biodiversity and ecosystem function via spatio-temporal nestedness and turnover partitioning

被引:0
|
作者
Mathew Seymour
François K. Edwards
Bernard J. Cosby
Iliana Bista
Peter M. Scarlett
Francesca L. Brailsford
Helen C. Glanville
Mark de Bruyn
Gary R. Carvalho
Simon Creer
机构
[1] Swedish University of Agricultural Sciences,Department of Ecology
[2] Centre for Ecology & Hydrology,Department of Genetics
[3] Centre for Ecology & Hydrology,undefined
[4] Environment Centre Wales,undefined
[5] University of Cambridge,undefined
[6] Wellcome Sanger Institute,undefined
[7] School of Natural Sciences,undefined
[8] Bangor University,undefined
[9] The University of Sydney,undefined
[10] School of Life and Environmental Sciences,undefined
来源
Communications Biology | / 4卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Rapidly assessing biodiversity is essential for environmental monitoring; however, traditional approaches are limited in the scope needed for most ecological systems. Environmental DNA (eDNA) based assessment offers enhanced scope for assessing biodiversity, while also increasing sampling efficiency and reducing processing time, compared to traditional methods. Here we investigated the effects of landuse and seasonality on headwater community richness and functional diversity, via spatio-temporal dynamics, using both eDNA and traditional sampling. We found that eDNA provided greater resolution in assessing biodiversity dynamics in time and space, compared to traditional sampling. Community richness was seasonally linked, peaking in spring and summer, with temporal turnover having a greater effect on community composition compared to localized nestedness. Overall, our assessment of ecosystem function shows that community formation is driven by regional resource availability, implying regional management requirements should be considered. Our findings show that eDNA based ecological assessment is a powerful, rapid and effective assessment strategy that enables complex spatio-temporal studies of community diversity and ecosystem function, previously infeasible using traditional methods.
引用
收藏
相关论文
共 9 条
  • [1] Environmental DNA provides higher resolution assessment of riverine biodiversity and ecosystem function via spatio-temporal nestedness and turnover partitioning
    Seymour, Mathew
    Edwards, Francois K.
    Cosby, Bernard J.
    Bista, Iliana
    Scarlett, Peter M.
    Brailsford, Francesca L.
    Glanville, Helen C.
    de Bruyn, Mark
    Carvalho, Gary R.
    Creer, Simon
    COMMUNICATIONS BIOLOGY, 2021, 4 (01)
  • [2] An integrated spatio-temporal view of riverine biodiversity using environmental DNA metabarcoding
    Perry, William Bernard
    Seymour, Mathew
    Orsini, Luisa
    Jams, Ifan Bryn
    Milner, Nigel
    Edwards, Francois
    Harvey, Rachel
    de Bruyn, Mark
    Bista, Iliana
    Walsh, Kerry
    Emmett, Bridget
    Blackman, Rosetta
    Altermatt, Florian
    Handley, Lori Lawson
    Maechler, Elvira
    Deiner, Kristy
    Bik, Holly M.
    Carvalho, Gary
    Colbourne, John
    Cosby, Bernard Jack
    Durance, Isabelle
    Creer, Simon
    NATURE COMMUNICATIONS, 2024, 15 (01)
  • [3] Modelling environmental DNA transport in rivers reveals highly resolved spatio-temporal biodiversity patterns
    Luca Carraro
    Rosetta C. Blackman
    Florian Altermatt
    Scientific Reports, 13
  • [4] Modelling environmental DNA transport in rivers reveals highly resolved spatio-temporal biodiversity patterns
    Carraro, Luca
    Blackman, Rosetta C.
    Altermatt, Florian
    SCIENTIFIC REPORTS, 2023, 13 (01)
  • [5] Fresh insights into Mediterranean biodiversity: environmental DNA reveals spatio-temporal patterns of stream invertebrate communities on Sicily
    Hupalo, Kamil
    Schmidt, Saskia
    Macher, Till-Hendrik
    Weiss, Martina
    Leese, Florian
    HYDROBIOLOGIA, 2022, 849 (01) : 155 - 173
  • [6] Fresh insights into Mediterranean biodiversity: environmental DNA reveals spatio-temporal patterns of stream invertebrate communities on Sicily
    Kamil Hupało
    Saskia Schmidt
    Till-Hendrik Macher
    Martina Weiss
    Florian Leese
    Hydrobiologia, 2022, 849 : 155 - 173
  • [7] Spatio-temporal patterns of multi-trophic biodiversity and food-web characteristics uncovered across a river catchment using environmental DNA
    Rosetta C. Blackman
    Hsi-Cheng Ho
    Jean-Claude Walser
    Florian Altermatt
    Communications Biology, 5
  • [8] Spatio-temporal patterns of multi-trophic biodiversity and food-web characteristics uncovered across a river catchment using environmental DNA
    Blackman, Rosetta C.
    Ho, Hsi-Cheng
    Walser, Jean-Claude
    Altermatt, Florian
    COMMUNICATIONS BIOLOGY, 2022, 5 (01)
  • [9] 1118 Real-time assessment of right and left ventricular volumes and function in patients with congenital heart disease using high spatio-temporal resolution radial k-t SENSE
    Vivek Muthurangu
    Philip Lurz
    Andrew Taylor
    Michael Hansen
    Journal of Cardiovascular Magnetic Resonance, 10 (Suppl 1)