A higher load of deleterious mutations has a detrimental effect on tree growth in maritime pine
Pineiro, R.; Cahn, L.; Budde, K. B.; Hurel, A.; Theraroz, A.; Vendramin, G. G.; Pinosio, S.; Lesur, I.; de Miguel, M.; Plomion, C.; Heuertz, M.; Gonzalez-Martinez, S. C.
Show abstract
A high proportion of deleterious mutations in the genome is predicted to cause a reduction in fitness known as genetic load. In plants, most studies focus on how detrimental mutations increase as a consequence of population bottlenecks, for instance in cultivated species as a negative outcome of domestication or at the margin of species ranges. However, the actual adverse effect of genetic load on individual phenotypes remains little characterised, especially in wild plant species with large populations and long lifespans. We estimated genetic load based on genomic data in populations of the conifer maritime pine (Pinus pinaster, Ait.), and examined its association with phenotypic traits related to growth, phenology, and water-use efficiency measured under common garden conditions. Our results revealed a strong negative correlation between genetic load and tree height on the Mediterranean island of Corsica, thus suggesting a negative cumulative effect of deleterious mutations on tree growth at the regional scale. Our study is one of the first to experimentally demonstrate adverse phenotypic effects (reduced tree growth) of genetic load in a long-lived plant.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genomic and phenotypic divergence unveil microgeographic adaptation in the Amazonian hyperdominant tree Eperua falcata Aubl. (Fabaceae) 97%
- Quantifying adaptive evolution and the effects of natural selection across the Norway spruce genome 96%
- Regional differences in the abiotic environment contribute to genomic divergence within a wild tomato species 96%
Similar papers in this journal
- Divergent selection predating the Last Glacial Maximum mainly acted on macro-phenotypes in Norway spruce 97%
- Identifying and testing marker-trait associations for growth and phenology in three pine species: implications for genomic prediction 96%
- Genomic and common garden approaches yield complementary results for quantifying environmental drivers of local adaptation in rubber rabbitbrush, a foundational Great Basin shrub 95%
Similar papers in this journal
- The genomic signature of wild-to-crop introgression during the domestication of scarlet runner bean (Phaseolus coccineus L.) 94%
- The ecology and quantitative genetics of seed and seedling traits in upland and lowland ecotypes of a perennial grass 94%
- Environmental effects on genetic variance are likely to constrain adaptation in novel environments 94%
Similar papers in this journal
- Genomic basis of adaptation to serpentine soil in two Alyssum species shows convergence with Arabidopsis across 20 million years of divergence 95%
- Crown defoliation decreases reproduction and wood growth in a marginal European beech population. 94%
- Plant kleptomaniacs: geographic genetic patterns in the amphi-apomictic Rubus ser. Glandulosi (Rosaceae) reveal complex reticulate evolution of Eurasian brambles 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.