Author:
Paina Cristiana,Fois Mattia,Asp Torben,Jensen Just,Hansen Pernille Bjarup,Rohde Palle Duun
Abstract
AbstractGenotype by environment interactions (G × E) are frequently observed in herbage production. Understanding the underlying biological mechanisms is important for achieving stable and predictive outputs across production environments. The microbiome is gaining increasing attention as a significant contributing factor to G × E. Here, we focused on the soil microbiome of perennial ryegrass (Lolium perenne L.) grown under field conditions and investigated the soil microbiome variation across different ryegrass varieties to assess whether environmental factors, such as seasonality and nitrogen levels, affect the microbial community. We identified bacteria, archaea, and fungi operational taxonomic units (OTUs) and showed that seasonality and ryegrass variety were the two factors explaining the largest fraction of the soil microbiome diversity. The strong and significant variety-by-treatment-by-seasonal cut interaction for ryegrass dry matter was associated with the number of unique OTUs within each sample. We identified seven OTUs associated with ryegrass dry matter variation. An OTU belonging to the Solirubrobacterales (Thermoleophilales) order was associated with increased plant biomass, supporting the possibility of developing engineered microbiomes for increased plant yield. Our results indicate the importance of incorporating different layers of biological data, such as genomic and soil microbiome data to improve the prediction accuracy of plant phenotypes grown across heterogeneous environments.
Funder
Strategiske Forskningsråd
Publisher
Springer Science and Business Media LLC
Reference86 articles.
1. Humphreys, M. O., Feuerstein, U. & Vandewalle, M. Ryegrasses. In Fodder Crops and Amenity Grasses (eds Boller, B. et al.) 211–260 (Springer, 2010).
2. Talbot, M. Yield variability of crop varieties in the U.K. J. Agric. Sci. 102, 315–321 (1984).
3. Ravel, C. & Charmet, G. A comprehensive multisite recurrent selection strategy in perennial ryegrass. Euphytica 88, 215–226 (1996).
4. Jafari, A., Connolly, V. & Walsh, E. Genetic analysis of yield and quality in full-sib families of perennial ryegrass (Lolium perenne L.) under two cutting managements. Irish J. Agric. Food Res. 42, 275–292 (2003).
5. Conaghan, P., Casler, M., McGilloway, D., O’Kiely, P. & Dowley, L. Genotype x environment interactions for herbage yield of perennial ryegrass sward plots in Ireland. Grass Forage Sci. 63, 107–120. https://doi.org/10.1111/j.1365-2494.2007.00618.x (2008).