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Molecular Ecology Resources|August 8, 2024
Macrobial airborne environmental DNA analysis: A review of progress, challenges, and recommendations for an emerging applicationMark Johnson, Matthew A BarnesThe Science of the Total Environment|March 14, 2025
Comparative study of rates of environmental DNA (eDNA) accumulation and degradation in water and sediment from model plant (Egeria densa) and animal (Daphnia magna) speciesElif Can Yilmaz, Matthew A BarnesPlos One|November 21, 2019
The detection of a non-anemophilous plant species using airborne eDNAMark D Johnson, Robert D Cox, Matthew A BarnesEcohealth|January 19, 2024
Batrachochytrium dendrobatidis in the Arid and Thermally Extreme Sonoran DesertSadie A Roth, Kerry L Griffis-Kyle, Matthew A BarnesBMC Ecology and Evolution|December 7, 2021
Airborne environmental DNA metabarcoding detects more diversity, with less sampling effort, than a traditional plant community surveyMark D Johnson, Mohamed Fokar, Robert D Cox, et al.Journal of Microbiology & Biology Education|February 14, 2025
Challenges for activating undergraduate research: a summary from the 2021 American Society for Microbiology Conference for Undergraduate EducatorsGinger Orton, Matthew A Barnes, Shifath Bin Syed, et al.Ecology and Evolution|March 5, 2016
Confronting species distribution model predictions with species functional traitsMarion E Wittmann, Matthew A Barnes, Christopher L Jerde, et al.Environmental Science & Technology|January 16, 2014
Environmental conditions influence eDNA persistence in aquatic systemsMatthew A Barnes, Cameron R Turner, Christopher L Jerde, et al.Plos One|March 3, 2011
Molecular detection of invasive species in heterogeneous mixtures using a microfluidic carbon nanotube platformAndrew R Mahon, Matthew A Barnes, Satyajyoti Senapati, et al.Ecology and Evolution|November 1, 2014
Geographic selection bias of occurrence data influences transferability of invasive Hydrilla verticillata distribution modelsMatthew A Barnes, Christopher L Jerde, Marion E Wittmann, et al.Pageof 2