Microbial effects on plant phenology and fitness
- PMID: 34655479
- DOI: 10.1002/ajb2.1743
Microbial effects on plant phenology and fitness
Abstract
Plant development and the timing of developmental events (phenology) are tightly coupled with plant fitness. A variety of internal and external factors determine the timing and fitness consequences of these life-history transitions. Microbes interact with plants throughout their life history and impact host phenology. This review summarizes current mechanistic and theoretical knowledge surrounding microbe-driven changes in plant phenology. Overall, there are examples of microbes impacting every phenological transition. While most studies have focused on flowering time, microbial effects remain important for host survival and fitness across all phenological phases. Microbe-mediated changes in nutrient acquisition and phytohormone signaling can release plants from stressful conditions and alter plant stress responses inducing shifts in developmental events. The frequency and direction of phenological effects appear to be partly determined by the lifestyle and the underlying nature of a plant-microbe interaction (i.e., mutualistic or pathogenic), in addition to the taxonomic group of the microbe (fungi vs. bacteria). Finally, we highlight biases, gaps in knowledge, and future directions. This biotic source of plasticity for plant adaptation will serve an important role in sustaining plant biodiversity and managing agriculture under the pressures of climate change.
Keywords: flowering; life history; microbiome; phenology; phyllosphere; plant development; plant growth promoting bacteria; plant-microbe interactions; reproduction; rhizosphere.
© 2021 Botanical Society of America.
References
REFERENCES
-
- Akiyama, R., and J. Ågren. 2014. Conflicting selection on the timing of germination in a natural population of Arabidopsis thaliana. Journal of Evolutionary Biology 27: 193-199.
-
- Andrade, A. de F., T. Zoz, A. Zoz, C. E. da S. Oliveira, and T. W. Witt. 2019. Azospirillum brasilense inoculation methods in corn and sorghum. Pesquisa Agropecuaria Tropical 49.
-
- Babalola, O. O., A. I. Sanni, G. D. Odhiambo, and B. Torto. 2007. Plant growth-promoting rhizobacteria do not pose any deleterious effect on cowpea and detectable amounts of ethylene are produced. World Journal of Microbiology and Biotechnology 23(6): 747-752. http://doi.org/10.1007/s11274-006-9290-6
-
- Balshor, B. J., M. S. Garrambone, P. Austin, K. R. Balazs, C. Weihe, J. B. H. Martiny, T. E. Huxman, et al. 2017. The effect of soil inoculants on seed germination of native and invasive species. Botany 95: 469-480.
-
- Beckstead, J., S. E. Meyer, C. J. Molder, and C. Smith. 2007. A race for survival: can Bromus tectorum seeds escape Pyrenophora semeniperda-caused mortality by germinating quickly? Annals of Botany 99: 907-914.
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