Abstract
AbstractPollinator-driven evolution of floral traits is thought to be a major driver of angiosperm speciation and diversification. Ophrys orchids mimic female insects to lure male pollinators into pseudocopulation. This strategy, called sexual deception, is species-specific, thereby providing strong premating reproductive isolation. Identifying the genomic architecture underlying pollinator adaptation and speciation may shed light on the mechanisms of angiosperm diversification. Here, we report the 5.2 Gb chromosome-scale genome sequence of Ophrys sphegodes. We find evidence for transposable element expansion that preceded the radiation of the O. sphegodes group, and for gene duplication having contributed to the evolution of chemical mimicry. We report a highly differentiated genomic candidate region for pollinator-mediated evolution on chromosome 2. The Ophrys genome will prove useful for investigations into the repeated evolution of sexual deception, pollinator adaptation and the genomic architectures that facilitate evolutionary radiations.
Funder
Universität Zürich
Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
Deutsche Forschungsgemeinschaft
2022 PRIN Program
Publisher
Springer Science and Business Media LLC
Reference120 articles.
1. Waser, N. M. Pollination, angiosperm speciation, and the nature of species boundaries. Oikos 82, 198–201 (1998).
2. Schlüter, P. M. The magic of flowers or: speciation genes and where to find them. Am. J. Bot. 105, 1957–1961 (2018).
3. Armbruster, W. S. Floral specialization and angiosperm diversity: phenotypic divergence, fitness trade-offs and realized pollination accuracy. Ann. Bot. Plants 6, plu003 (2014).
4. Gómez, J. M. & Zamora, R. Generalization vs. specialization in the pollination system of Hormathophylla spinosa (Cruciferae). Ecology 80, 796–805 (1999).
5. Van der Niet, T. & Johnson, S. D. Phylogenetic evidence for pollinator-driven diversification of angiosperms. Trends Ecol. Evol. 27, 353–361 (2012).