Abstract
SummaryAdaptive radiation inOphrysorchids leads to complex floral phenotypes that vary in scent, color and shape.Using a novel pipeline to quantify these phenotypes, we investigated trait divergence at early stages of speciation in six populations ofOphrys aveyronensisexperiencing recent allopatry. By integrating different genetic/genomic techniques, we investigated: (i) variation and integration of floral components (scent, color and shape), (ii) phenotypes and genomic regions under divergent selection, and (iii) the genomic bases of trait variation.We identified a large genomic island of divergence, associated with phenotypic variation in particular in floral odor. We detected potential divergent selection on macular color, while convergent selection was suspected on floral morphology and for several volatile olfactive compounds. We also identify candidate genes involved in anthocyanin and in steroid biosynthesis pathways associated with standing genetic variation in color and odor.This study sheds light on early differentiation inOphrys, revealing patterns that often become invisible over time, i.e., the geographic mosaic of traits under selection and the early appearance of strong genomic divergence. It also supports a crucial genomic region for future investigation and highlights the value of a multifaceted approach in unraveling speciation within taxa with large genomes.
Publisher
Cold Spring Harbor Laboratory
Cited by
1 articles.
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