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Peerj|August 23, 2016
Competition-function tradeoffs in ectomycorrhizal fungiHolly V Moeller, Kabir G PeayFEMS Microbiology Ecology|December 3, 2013
Ectomycorrhizal fungal traits reflect environmental conditions along a coastal California edaphic gradientHolly V Moeller, Kabir G Peay, Tadashi FukamiMolecular Ecology|November 11, 2024
Field Reduction of Ectomycorrhizal Fungi Has Cascading Effects on Soil Microbial Communities and Reduces the Abundance of Ectomycorrhizal Symbiotic BacteriaLouis Berrios, Kabir G PeayTrends in Plant Science|November 26, 2015
Does Microbial Diversity Confound General Predictions?Marie Duhamel, Kabir G PeayThe American Naturalist|September 24, 2021
Optimal Allocation Ratios: A Square Root Relationship between the Ratios of Symbiotic Costs and BenefitsBrian S Steidinger, Kabir G PeayPlos One|March 4, 2014
Sequence depth, not PCR replication, improves ecological inference from next generation DNA sequencingDylan P Smith, Kabir G PeayThe New Phytologist|July 1, 2014
Spore dispersal of basidiomycete fungi at the landscape scale is driven by stochastic and deterministic processes and generates variability in plant-fungal interactionsKabir G Peay, Thomas D BrunsEcology Letters|April 24, 2021
Multiple distinct, scale-dependent links between fungi and decompositionGabriel Reuben Smith, Kabir G PeayProceedings. Biological Sciences|July 22, 2011
Phylogenetic relatedness predicts priority effects in nectar yeast communitiesKabir G Peay, Melinda Belisle, Tadashi FukamiMicrobial Ecology|November 15, 2011
Flowers as islands: spatial distribution of nectar-inhabiting microfungi among plants of Mimulus aurantiacus, a hummingbird-pollinated shrubMelinda Belisle, Kabir G Peay, Tadashi FukamiPageof 12