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Ecology Letters|December 18, 2013
Historical contingency in species interactions: towards niche-based predictionsRachel L Vannette, Tadashi FukamiEcology Letters|June 10, 2017
Dispersal enhances beta diversity in nectar microbesRachel L Vannette, Tadashi FukamiThe New Phytologist|March 19, 2025
Nectar peroxide: assessing variation among plant species, microbial tolerance, and effects on microbial community assemblyLeta Landucci, Rachel L VannetteAnnals of Botany|March 22, 2018
Contrasting effects of yeasts and bacteria on floral nectar traitsRachel L Vannette, Tadashi FukamiEcology|July 28, 2016
Nectar microbes can reduce secondary metabolites in nectar and alter effects on nectar consumption by pollinatorsRachel L Vannette, Tadashi FukamiJournal of Agricultural and Food Chemistry|January 12, 2017
Harnessing Insect-Microbe Chemical Communications To Control Insect Pests of Agricultural SystemsJohn J Beck, Rachel L VannetteEnvironmental Microbiology|March 18, 2024
Nontarget impacts of neonicotinoids on nectar-inhabiting microbesJacob M Cecala, Rachel L VannetteFEMS Microbiology Ecology|July 8, 2023
Bees just wanna have fungi: a review of bee associations with nonpathogenic fungiDanielle Rutkowski, Makena Weston, Rachel L VannetteFrontiers in Plant Science|September 26, 2013
Arbuscular mycorrhizal fungi alter above- and below-ground chemical defense expression differentially among Asclepias speciesRachel L Vannette, Mark D Hunter, Sergio RasmannCurrent Biology : CB|July 29, 2021
Nectar bacteria stimulate pollen germination and bursting to enhance microbial fitnessShawn M Christensen, Ivan Munkres, Rachel L VannettePageof 5