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Microhabitat heterogeneity across leaves and flower organs promotes bacterial diversity

, and . FEMS Microbiology Ecology, 91 (1): fiv09 (2015)

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Inter- and intraspecific phytochemical variation correlate with epiphytic flower and leaf bacterial communities, , , , , , and . Environmental Microbiology, (April 2023)Covariation and phenotypic integration in chemical communication displays: biosynthetic constraints and eco-evolutionary implications, , , , , , , , , and 30 other author(s). New Phytologist, 220 (3): 739--749 (March 2017)Covariation and phenotypic integration in chemical communication displays: biosynthetic constraints and eco-evolutionary implications, , , , , , , , , and 30 other author(s). New Phytologist, 220 (3): 739--749 (November 2018)The Bacterium <i>Pantoea ananatis</i> Modifies Behavioral Responses to Sugar Solutions in Honeybees, , , , and . Insects, 11 (10): 692 (2020)Composition of epiphytic bacterial communities differs on petals and leaves, , , , , and . Plant Biology, 13 (6): 918--924 (2011)Hawaiian ant-flower networks: nectar-thieving ants prefer undefended native over introduced plants with floral defenses, , , , and . Ecological Monographs, 81 (2): 295--311 (2011)Functional and phylogenetic diversities of plant communities differently affect the structure of flower-visitor interactions and reveal convergences in floral traits, , and . Evolutionary Ecology, (2015)Density-dependent responses by bumblebees to flower dwelling bacteria, , , and . Apidologie, (2014)Changes amid constancy: flower and leaf microbiomes along land use gradients and between bioregions, , and . Basic and Applied Ecology, (2021)Microhabitat heterogeneity across leaves and flower organs promotes bacterial diversity, and . FEMS Microbiology Ecology, 91 (1): fiv09 (2015)