Phylogeny of Rubus (Rosaceae): Integrating molecular and morphological evidence into an infrageneric revision

Author:

Huang Ti‐Ran123ORCID,Chen Jian‐Hui1ORCID,Hummer Kim E.4ORCID,Alice Lawrence A.5ORCID,Wang Wen‐He2ORCID,He Yi6ORCID,Yu Sheng‐Xiang7ORCID,Yang Ming‐Feng23ORCID,Chai Tuan‐Yao1ORCID,Zhu Xiang‐Yun7ORCID,Ma Lan‐Qing23ORCID,Wang Hong1ORCID

Affiliation:

1. College of Life Sciences University of Chinese Academy of Sciences Beijing 100049 P.R. China

2. Beijing Advanced Innovation Center for Tree Breeding by Molecular Design Beijing University of Agriculture Beijing 102206 P.R. China

3. Key Laboratory for Northern Urban Agriculture of Ministry of Agriculture and Rural Affairs Beijing University of Agriculture Beijing 102206 P.R. China

4. USDA‐ARS, National Clonal Germplasm Repository Corvallis Oregon 97333‐2521 U.S.A.

5. Department of Biology Western Kentucky University Bowling Green Kentucky U.S.A.

6. Key Laboratory for Biodiversity Science and Ecological Engineering, College of Life Sciences Beijing Normal University Beijing 100875 P.R. China

7. State Key Laboratory of Systematic and Evolutionary Botany Institute of Botany, Chinese Academy of Sciences Beijing 100093 P.R. China

Abstract

AbstractRubus (Rosaceae), one of the most complicated angiosperm genera, contains about 863 species, and is notorious for its taxonomic difficulty. The most recent (1910–1914) global taxonomic treatment of the genus was conducted by Focke, who defined 12 subgenera. Phylogenetic results over the past 25 years suggest that Focke's subdivisions of Rubus are not monophyletic, and large‐scale taxonomic revisions are necessary. Our objective was to provide a comprehensive phylogenetic analysis of the genus based on an integrative evidence approach. Morphological characters, obtained from our own investigation of living plants and examination of herbarium specimens are combined with chloroplast genomic data. Our dataset comprised 196 accessions representing 145 Rubus species (including cultivars and hybrids) and all of Focke's subgenera, including 60 endemic Chinese species. Maximum likelihood analyses inferred phylogenetic relationships. Our analyses concur with previous molecular studies, but with modifications. Our data strongly support the reclassification of several subgenera within Rubus. Our molecular analyses agree with others that only R. subg. Anoplobatus forms a monophyletic group. Other subgenera are para‐ or polyphyletic. We suggest a revised subgeneric framework to accommodate monophyletic groups. Character evolution is reconstructed, and diagnostic morphological characters for different clades are identified and discussed. Based on morphological and molecular evidence, we propose a new classification system with 10 subgenera: R. subg. Anoplobatus, R. subg. Batothamnus, R. subg. Chamaerubus, R. subg. Cylactis, R. subg. Dalibarda, R. subg. Idaeobatus, R. subg. Lineati, R. subg. Malachobatus, R. subg. Melanobatus, and R. subg. Rubus. The revised infrageneric nomenclature inferred from our analyses is provided along with synonymy and type citations. Our new taxonomic backbone is the first systematic and complete global revision of Rubus since Focke's treatment. It offers new insights into deep phylogenetic relationships of Rubus and has important theoretical and practical significance for the development and utilization of these important agronomic crops.

Publisher

Wiley

Subject

Plant Science,Ecology, Evolution, Behavior and Systematics

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