Identifying the ecological processes that underlie the distribution and abundance of species in microbial communities is a central issue in microbial ecology and evolution. Classical trade-off based niche theories of resource competition predict that co-occurrence in microbial communities is more likely when the residing species show trait divergence and complementary resource use. We tested the prediction that niche differentiation explained the co-occurrence of two yeast species (Metschnikowia reukaufii and M. gruessii) in floral nectar. Assessment of the phenotypic landscape showed that both species displayed a significantly different physiological profile. Comparison of utilization profiles in single vs mixed cultures indicated that the...
The order of species arrival can influence how species interact with one another and, consequently, ...
Background and Aims:Flowers can be highly variable in nectar volume and chemical composition, even w...
Understanding the relationship between population genetic structure and phenotypic diversity is a fu...
Identifying the ecological processes that underlie the distribution and abundance of species in micr...
Floral nectars become easily colonized by microbes, most often species of the ascomycetous yeast gen...
BACKGROUND: Microbial communities in floral nectar have been shown to be characterized by low levels...
Genetic diversity and genotypic diversity of wild populations of the floricolous yeast Metschnikowia...
BACKGROUND: Microbial communities in floral nectar have been shown to be characterized by low levels...
Both dispersal limitation and environmental sorting can affect genetic variation in populations, but...
The recent upsurge of interest in the role of floral nectar as a habitat for microorganisms has led ...
Floral nectar of insect-pollinated plants often contains dense yeast populations, yet little quantit...
1. Floral nectar harbours a diverse microbiome of yeasts and bacteria that depend predominantly on ...
Floral nectar of insect-pollinated plants often contains dense yeast populations, yet little quantit...
Beyond its role as a reward for pollinators, floral nectar also provides a habitat for specialized a...
BACKGROUND: Microbes are common inhabitants of floral nectar and are capable of influencing plant-po...
The order of species arrival can influence how species interact with one another and, consequently, ...
Background and Aims:Flowers can be highly variable in nectar volume and chemical composition, even w...
Understanding the relationship between population genetic structure and phenotypic diversity is a fu...
Identifying the ecological processes that underlie the distribution and abundance of species in micr...
Floral nectars become easily colonized by microbes, most often species of the ascomycetous yeast gen...
BACKGROUND: Microbial communities in floral nectar have been shown to be characterized by low levels...
Genetic diversity and genotypic diversity of wild populations of the floricolous yeast Metschnikowia...
BACKGROUND: Microbial communities in floral nectar have been shown to be characterized by low levels...
Both dispersal limitation and environmental sorting can affect genetic variation in populations, but...
The recent upsurge of interest in the role of floral nectar as a habitat for microorganisms has led ...
Floral nectar of insect-pollinated plants often contains dense yeast populations, yet little quantit...
1. Floral nectar harbours a diverse microbiome of yeasts and bacteria that depend predominantly on ...
Floral nectar of insect-pollinated plants often contains dense yeast populations, yet little quantit...
Beyond its role as a reward for pollinators, floral nectar also provides a habitat for specialized a...
BACKGROUND: Microbes are common inhabitants of floral nectar and are capable of influencing plant-po...
The order of species arrival can influence how species interact with one another and, consequently, ...
Background and Aims:Flowers can be highly variable in nectar volume and chemical composition, even w...
Understanding the relationship between population genetic structure and phenotypic diversity is a fu...