Contrasting effects of nectar yeasts on the reproduction of Mediterranean plant species
- PMID: 35315515
- DOI: 10.1002/ajb2.1834
Contrasting effects of nectar yeasts on the reproduction of Mediterranean plant species
Abstract
Premise: Yeasts are often present in floral nectar and can influence plant fitness directly (independently of pollinators) or indirectly by influencing pollinator visitation and behavior. However, few studies have assessed the effect of nectar yeasts on plant reproductive success or compared effects across different plant species, limiting our understanding of the relative impact of direct vs. indirect effects.
Methods: We inoculated the nectar of six plant species in the field with the cosmopolitan yeast Metschnikowia reukaufii to analyze the direct and indirect effects on female reproductive success over 2 years. The pollinator assemblage for each species was recorded during both flowering years.
Results: Direct yeast effects on female fecundity were statistically nonsignificant for all plant species. There were significant indirect, pollinator-mediated effects on fruit production and seed mass for the two species pollinated almost exclusively by bumblebees or hawkmoths, with the direction of the effects differing for the quantity- and quality-related fitness components. There were no consistent effects of the yeast on maternal fecundity for any of the species with diverse pollinator assemblages.
Conclusions: Effects of M. reukaufii on plant reproduction ranged from negative to neutral or positive depending on the plant species. The among-species variation in the indirect effects of nectar yeasts on plant pollination could reflect variation in the pollinator community, the specific microbes colonizing the nectar, and the order of microbial infection (priority effects), determining potential species interactions. Elucidating the nature of these multitrophic plant-pollinator-microbe interactions is important to understand complex processes underlying plant pollination.
Keywords: Bombus; Macroglossum; Metschnikowia reukaufii; female fitness; fruit production; nectar yeasts; pollination; pollinator diversity; priority effects; seed mass.
© 2022 Botanical Society of America.
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References
REFERENCES
-
- Afkhami, M. E., B. K. Almeida, D. J. Hernandez, K. N. Kiesewetter, and D. P. Revillini. 2020. Tripartite mutualisms as models for understanding plant-microbial interactions. Current Opinion in Plant Biology 56: 28-36.
-
- Álvarez-Pérez, S., and C. M. Herrera. 2013. Composition, richness and nonrandom assembly of culturable bacterial-microfungal communities in floral nectar of Mediterranean plants. FEMS Microbiology Ecology 83: 685-699.
-
- Álvarez-Pérez, S., B. Lievens, and T. Fukami. 2019. Yeast-bacterium interactions: the next frontier in nectar research. Trends in Plant Science 24: 393-401.
-
- Bates, D., M. Maechler, B. Bolker, and S. Walker. 2015. Fitting linear mixed-effects models using lme4. Journal of Statistical Software 67: 1-48.
-
- Bolker, B. M. 2015. Linear and generalized linear mixed models. In G. A. Fox, S. Negrete-Yankelevich, and V. J. Sosa [eds.], Ecological statistics: contemporary theory and application, 309-333. Oxford University Press, Oxford, UK.
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