Phylogenomics of Perityleae(Compositae)provides new insights into morphological and chromosomal evolution of the rock daisies  被引量:1

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作  者:Isaac H.Lichter-Marck William A.Freyman Carolina M.Siniscalchi Jennifer R.Mandel Arturo Castro-Castro Gabriel Johnson Bruce G.Baldwin 

机构地区:[1]Department of Integrative Biology and Jepson Herbarium,University of California,Berkeley,CA 94720,USA [2]Department of Biological Sciences,Mississippi State University,Mississippi State,MS 39762,USA [3]Department of Biological Sciences,Center for Biodiversity Research,University of Memphis,Memphis,TN 38152,USA [4]Centro Interdisciplinario de Investigacion para el Desarollo Integral Regional Unidad Durango,Durango,Durango,Mexico [5]Department of Botany,MRC-166,National Museum of Natural History,Smithsonian Institution,PO Box 37012 Washington,DC 20013-7012,USA

出  处:《Journal of Systematics and Evolution》2020年第6期853-880,共28页植物分类学报(英文版)

基  金:Funding for this research was generously provided by the Philomathia Foundation for the Environmental Studies,the Smithsonian Institution Fellowship Program,the Lawrence R.Heckard Fund of the Jepson Herbarium,the UC Botanical Garden,the Department of Integrative Biology at UC Berkeley,the American Society of Plant Taxonomists,the Society for Systematic Biologists,the Califomia Native Plant Society,the Bristlecone Chapter of the California Native Plant Society,the East Bay Chapter of the Califomia Native Plant Society,the Southern California Botanists,the California Botanical Society,and the Undergraduate Research Apprenticeship Program of UC Berkeley.

摘  要:Rock daisies(Perityleae;Compositae)are a diverse clade of seven genera and ca.84 minimum-rank taxa that mostly occur as narrow endemics on sheer rock cliffs throughout the southwest United States and northern Mexico.Taxonomy of Perityleae has traditionally been based on morphology and cytogenetics.To test taxonomic hypotheses and utility of characters emphasized in past treatments,we present the first densely sampled molecular phylogenies of Perityleae and reconstruct trait and chromosome evolution.We inferred phylogenetic trees from whole chloroplast genomes,nuclear ribosomal cistrons,and hundreds of low-copy nuclear genes using genome skimming and target capture.Discordance between sources of molecular data suggests an underappreciated history of hybridization in Perityleae.Phylogenies support the monophyly of subtribe Peritylinae,a distinctive group possessing a four-lobed disc corolla;however,all of the phylogenetic trees generated in this study reject the monophyly of the most species-rich genus,Perityle,as well as its sections:Perityle sect.Perityle,Perityle sect.Laphamia,and Perityle sect.Pappothrix.Using reversible jump MCMC,our results suggest that morphological characters traditionally used to classify members of Perityleae have evolved multiple times within the group.A base chromosome number x=9 gave rise to higher base numbers in subtribe Peritylinae(x=12,13,16,17,18,and 19)through polyploidization,followed by ascending or descending dysploidy.Most taxa constitute a monophyletic lineage with a base chromosome number of x=17,with multiple neo-polyploidization events.These results demonstrate the advantages and obstacles of next-generation sequencing approaches in synantherology while laying the foundation for taxonomic revision and comparative study of the evolutionary ecology of Perityleae.

关 键 词:chromosome evolution COMPOSITAE genome skimming Heliantheae Hyb-Seq molecular systematics morphological evolution Perityleae PHYLOGENOMICS 

分 类 号:Q94[生物学—植物学]

 

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