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Article

Reference-Based RADseq Unravels the Evolutionary History of Polar Species in ‘the Crux Lichenologorum’ Genus Usnea (Parmeliaceae, Ascomycota)

The Grainger Bioinformatics Center & Negaunee Integrative Research Center, Science & Education, The Field Museum, Chicago, IL 60605, USA
*
Author to whom correspondence should be addressed.
J. Fungi 2023, 9(1), 99; https://doi.org/10.3390/jof9010099
Submission received: 6 December 2022 / Revised: 3 January 2023 / Accepted: 8 January 2023 / Published: 11 January 2023

Abstract

Nearly 90% of fungal diversity, one of the most speciose branches in the tree of life, remains undescribed. Lichenized fungi as symbiotic associations are still a challenge for species delimitation, and current species diversity is vastly underestimated. The ongoing democratization of Next-Generation Sequencing is turning the tables. Particularly, reference-based RADseq allows for metagenomic filtering of the symbiont sequence and yields robust phylogenomic trees of closely related species. We implemented reference-based RADseq to disentangle the evolution of neuropogonoid lichens, which inhabit harsh environments and belong to Usnea (Parmeliaceae, Ascomycota), one of the most taxonomically intriguing genera within lichenized fungi. Full taxon coverage of neuropogonoid lichens was sampled for the first time, coupled with phenotype characterizations. More than 20,000 loci of 126 specimens were analyzed through concatenated and coalescent-based methods, including time calibrations. Our analysis addressed the major taxonomic discussions over recent decades. Subsequently, two species are newly described, namely U. aymondiana and U. fibriloides, and three species names are resurrected. The late Miocene and Pliocene-Pleistocene boundary is inferred as the timeframe for neuropogonoid lichen diversification. Ultimately, this study helped fill the gap of fungal diversity by setting a solid backbone phylogeny which raises new questions about which factors may trigger complex evolutionary scenarios.
Keywords: next-generation sequencing; lichen-forming fungi; phylogenomics; systematics; species delimitation; species complex next-generation sequencing; lichen-forming fungi; phylogenomics; systematics; species delimitation; species complex

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MDPI and ACS Style

Otero, A.; Barcenas-Peña, A.; Lumbsch, H.T.; Grewe, F. Reference-Based RADseq Unravels the Evolutionary History of Polar Species in ‘the Crux Lichenologorum’ Genus Usnea (Parmeliaceae, Ascomycota). J. Fungi 2023, 9, 99. https://doi.org/10.3390/jof9010099

AMA Style

Otero A, Barcenas-Peña A, Lumbsch HT, Grewe F. Reference-Based RADseq Unravels the Evolutionary History of Polar Species in ‘the Crux Lichenologorum’ Genus Usnea (Parmeliaceae, Ascomycota). Journal of Fungi. 2023; 9(1):99. https://doi.org/10.3390/jof9010099

Chicago/Turabian Style

Otero, Ana, Alejandrina Barcenas-Peña, H. Thorsten Lumbsch, and Felix Grewe. 2023. "Reference-Based RADseq Unravels the Evolutionary History of Polar Species in ‘the Crux Lichenologorum’ Genus Usnea (Parmeliaceae, Ascomycota)" Journal of Fungi 9, no. 1: 99. https://doi.org/10.3390/jof9010099

APA Style

Otero, A., Barcenas-Peña, A., Lumbsch, H. T., & Grewe, F. (2023). Reference-Based RADseq Unravels the Evolutionary History of Polar Species in ‘the Crux Lichenologorum’ Genus Usnea (Parmeliaceae, Ascomycota). Journal of Fungi, 9(1), 99. https://doi.org/10.3390/jof9010099

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