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Homoplastic versus xenoplastic evolution: exploring the emergence of key intrinsic and extrinsic traits in the montane genus Soldanella (Primulaceae)

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Author
Rurik, Ivan
Melichárková, Andrea
Gbúrová Štubová, Eliška
Kučera, Jaromír
Kochjarová, Judita
Paun, Ovidiu
Vďačný, Peter
Slovák, MarekORCiD Profile - 0000-0001-9917-3099WoS Profile - T-7304-2017Scopus Profile - 7005622780

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Publication date
2024
Published in
Plant Journal
Volume / Issue
118 (3)
ISBN / ISSN
ISSN: 0960-7412
ISBN / ISSN
eISSN: 1365-313X
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This publication has a published version with DOI 10.1111/tpj.16630

Abstract
Specific ecological conditions in the high mountain environment exert a selective pressure that often leads to convergent trait evolution. Reticulations induced by incomplete lineage sorting and introgression can lead to discordant trait patterns among gene and species trees (hemiplasy/xenoplasy), providing a false illusion that the traits under study are homoplastic. Using phylogenetic species networks, we explored the effect of gene exchange on trait evolution in Soldanella, a genus profoundly influenced by historical introgression. At least three features evolved independently multiple times: the single-flowered dwarf phenotype, dysploid cytotype, and ecological generalism. The present analyses also indicated that the recurring occurrence of stoloniferous growth might have been prompted by an introgression event between an ancestral lineage and a still extant species, although its emergence via convergent evolution cannot be completely ruled out. Phylogenetic regression suggested that the independent evolution of larger genomes in snowbells is most likely a result of the interplay between hybridization events of dysploid and euploid taxa and hostile environments at the range margins of the genus. The emergence of key intrinsic and extrinsic traits in snowbells has been significantly impacted not only by convergent evolution but also by historical and recent introgression events.
Keywords
phylogenetic networks, trait reconstruction, convergent evolution, phylogenetic regression, genome size, Soldanella, European alpine system
Permanent link
https://hdl.handle.net/20.500.14178/2825
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WOS:001142659100001
SCOPUS:2-s2.0-85182499706
PUBMED:38217489
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