Multiple pre- and postzygotic components of reproductive isolation between two co-occurring Lysimachia species.

Francisco Javier Jiménez-López, Montserrat Arista, María Talavera, Leonor Patrícia Cerdeira Morellato, John R Pannell, Juan Viruel, Pedro L Ortiz Ballesteros

Journal: The New phytologist 2023;238(2):874-887

PMID: 36683441

Abstract

Genetic divergence between species depends on reproductive isolation (RI) due to traits that reduce interspecific mating (prezygotic isolation) or are due to reduced hybrid fitness (postzygotic isolation). Previous research found that prezygotic barriers tend to be stronger than postzygotic barriers, but most studies are based on the evaluation of F hybrid fitness in early life cycle stages. We combined field and experimental data to determine the strength of 17 prezygotic and postzygotic reproductive barriers between two Lysimachia species that often co-occur and share pollinators. We assessed postzygotic barriers up to F hybrids and backcrosses. The two species showed near complete RI due to the cumulative effect of multiple barriers, with an uneven and asymmetric contribution to isolation. In allopatry, prezygotic barriers contributed more to reduce gene flow than postzygotic barriers, but their contributions were more similar in sympatry. The strength of postzygotic RI was up to three times lower for F progeny than for F or backcrossed progenies, and RI was only complete when late F stages and either F or backcrosses were accounted for. Our results thus suggest that the relative strength of postzygotic RI may be underestimated when its effects on late stages of the life cycle are disregarded.

© 2023 The Authors. New Phytologist © 2023 New Phytologist Foundation.

Address: Department of Plant Biology and Ecology, Faculty of Biology, University of Seville, Apdo. 1095, 41080, Seville, Spain.; Phenology Lab, Department of Biodiversity, Biosciences Institute, UNESP - São Paulo State University, São Paulo, Brazil.; Department of Ecology and Evolution, University of Lausanne, Lausanne, CH-1015, Switzerland.; Royal Botanic Gardens, Kew, TW9 3DS, Richmond, UK.
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