Caught in the Act: Incipient Speciation at the Southern Limit of Viburnum in the Central Andes

Author:

Maya-Lastra Carlos A12ORCID,Sweeney Patrick W3,Eaton Deren A R4ORCID,Torrez Vania5,Maldonado Carla5,Ore-Rengifo Malu I6,Arakaki Mónica7,Donoghue Michael J1,Edwards Erika J1ORCID

Affiliation:

1. Department of Ecology and Evolutionary Biology, Yale University , P.O. Box 208106, New Haven, CT , USA

2. Department of Biology, Angelo State University , ASU Station #10890, San Angelo, TX, 76909 , USA

3. Division of Botany, Peabody Museum of Natural History, Yale University , 170 Whitney Ave, New Haven, CT, 06520 , USA

4. Department of Ecology, Evolution & Environmental Biology, Columbia University , 10th floor Schermerhorn Ext., 1200 Amsterdan Ave, New York, NY, 10027 , USA

5. Herbario Nacional de Bolivia, Instituto de Ecología, Universidad Mayor de San Andrés , P.O. Box 10077, La Paz , Bolivia

6. Department of Biology, University of Florida , P.O. Box 118525, Gainesville, FL , USA

7. Museo de Historia Natural & Facultad de Ciencias Biológicas, Universidad Nacional Mayor de San Marcos , P.O. Box 15072, Lima , Peru

Abstract

Abstract A fundamental objective of evolutionary biology is to understand the origin of independently evolving species. Phylogenetic studies of species radiations rarely are able to document ongoing speciation; instead, modes of speciation, entailing geographic separation and/or ecological differentiation, are posited retrospectively. The Oreinotinus clade of Viburnum has radiated recently from north to south through the cloud forests of Mexico and Central America to the Central Andes. Our analyses support a hypothesis of incipient speciation in Oreinotinus at the southern edge of its geographic range, from central Peru to northern Argentina. Although several species and infraspecific taxa have been recognized in this area, multiple lines of evidence and analytical approaches (including analyses of phylogenetic relationships, genetic structure, leaf morphology, and climatic envelopes) favor the recognition of just a single species, V. seemenii. We show that what has previously been recognized as V. seemenii f. minor has recently occupied the drier Tucuman-Bolivian forest region from Samaipata in Bolivia to Salta in northern Argentina. Plants in these populations form a well-supported clade with a distinctive genetic signature and they have evolved smaller, narrower leaves. We interpret this as the beginning of a within-species divergence process that has elsewhere in the neotropics resulted repeatedly in Viburnum species with a particular set of leaf ecomorphs. Specifically, the southern populations are in the process of evolving the small, glabrous, and entire leaf ecomorph that has evolved in four other montane areas of endemism. As predicted based on our studies of leaf ecomorphs in Chiapas, Mexico, these southern populations experience generally drier conditions, with large diurnal temperature fluctuations. In a central portion of the range of V. seemenii, characterized by wetter climatic conditions, we also document what may be the initial differentiation of the leaf ecomorph with larger, pubescent, and toothy leaves. The emergence of these ecomorphs thus appears to be driven by adaptation to subtly different climatic conditions in separate geographic regions, as opposed to parapatric differentiation along elevational gradients as suggested by Viburnum species distributions in other parts of the neotropics.

Funder

National Science Foundation

Publisher

Oxford University Press (OUP)

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