bioRxiv Science⌕ Search

Biology subjects

Sanchez Sevilla, J. F.

Publications and source records attributed to Sanchez Sevilla, J. F..

2 recordsLinked to original sources

Variation in phenotypic plasticity of metabolic and performance traits along a latitudinal gradient in Woodland Strawberry

Phenotypic plasticity and local adaptation jointly determine plant responses to environmental variation, yet their relative contributions and evolutionary interactions remain poorly understood. We grew fifteen woodland strawberry (Fragaria vesca) genotypes from a European latitudinal gradient in four common gardens for two years, quantifying primary metabolites and biomass, reproduction and herbivore damage-related traits. Considering all measured traits combined, environment explained the largest variance (30%), followed by genotype-by-environment interactions (18%) and genotype effects (9%), indicating substantial heritable plasticity. However, plasticity was not uniform: northern genotypes showed greater plasticity in stress metabolites like succinic acid but more canalized growth traits, whereas southern genotypes maintained constitutively high protective metabolite levels. Latitude explained 4.4% of plasticity profile variation. Phenotypic variation was consistently better explained by long-term temperature than precipitation at the site of origin across all trait groups under study. Our results indicate that plasticity itself is an evolved, trait-specific characteristic shaped by climatic gradients, challenging simple hierarchies of trait lability. Significance StatementWe studied wild strawberries from across Europe and discovered that populations from different regions have evolved distinct adaptive strategies to cope with their local cli-mates. These differences highlight the remarkable diversity of plant solutions to environmental challenges. Understanding these natural adaptations could help us breed strawberries or other plant organisms better suited to future climate conditions.

ecology↗

Differential expression ofCCD4(4B) drives natural variation in fruit carotenoidcontent in strawberry ( Fragaria spp.)

Pigments, mainly anthocyanins and carotenoids, are important contributors to fruits visual appearance and nutritional properties. In strawberry (Fragaria spp.), the genetic and molecular mechanisms regulating fruit carotenoid biosynthesis and its natural variation remain largely unexplored. In this study, we sought to identify genomic loci contributing to variation in yellow flesh pigmentation. A major QTL, qYellow Flesh-4B, accounting for 82% of the total phenotypic variation was identified on F. x ananassa chromosome 4B. Following a candidate gene approach, we determined that CCD4(4B), a carotenoid cleavage dioxygenase (CCD), was the underlying gene. Specific polymorphisms on CCD4(4B) promoter region were associated with the yellow flesh phenotype and with differential regulation of CCD4(4B) expression during fruit ripening. Furthermore, CCD4(4B) expression levels were negatively correlated with violaxanthin, lutein, zeaxanthin, {beta}-carotene and total carotenoid content. The role of CCD4(4B) in carotenoid turnover was confirmed by transient overexpression in F. x ananassa fruits, which led to a decrease in carotenoid accumulation. Notably, a -35 C>T SNP identified in CCD4(4B) promoter was found to be predictive for CCD4(4B) expression, and carotenoid content in fruits of a diverse germplasm collection, which included different octoploid Fragaria species. Taken together, these results provide important genetic insights into the natural variation of carotenoid content in strawberry. The High-Resolution Melting (HRM) DNA test here developed offers a fast and reliable method to predict high fruit carotenoid content, representing a useful tool for breeding projects aiming to enhance the nutritional value of this crop.

plant biology↗