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  1. We attribute this conflict to a combination of incomplete lineage sorting and hybridization, the latter supported in part by previously inferred whole-genome duplications. CONCLUSIONS: Our results challenge several long-standing hypotheses of asterid relationships and have implications for morphological character evolution and for the

    • Gregory W. Stull, Gregory W. Stull, Pamela S. Soltis, Pamela S. Soltis, Douglas E. Soltis, Douglas E...
    • 2020
  2. Methods: We present a phylogenomic examination of a major angiosperm clade (Asteridae) based on sequence data from the nuclear, plastid, and mitochondrial genomes as a means of evaluating currently accepted relationships inferred from the plastome and exploring potential sources of genomic conflict in this group.

  3. Jul 11, 2020 · Asterid Phylogenomics/Phylotranscriptomics Uncover Morphological Evolutionary Histories and Support Phylogenetic Placement for Numerous Whole-Genome Duplications | Molecular Biology and Evolution | Oxford Academic. Journal Article.

    • Caifei Zhang, Taikui Zhang, Federico Luebert, Federico Luebert, Yezi Xiang, Chien Hsun Huang, Yi Hu,...
    • 2020
  4. Feb 25, 2024 · Abstract. Convergent morphological evolution is widespread in flowering plants, and understanding this phenomenon relies on well-resolved phylogenies. Nuclear phylogenetic reconstruction using transcriptome datasets has been successful in various angiosperm groups, but it is limited to taxa with available fresh materials.

  5. May 1, 2020 · Nuclear phylogenomic analyses of asterids conflict with plastome trees and support novel relationships among major lineages. | Semantic Scholar. DOI: 10.1002/ajb2.1468. Corpus ID: 218636092.

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  7. Data from: Nuclear phylogenomic analyses of asterids conflict with plastome trees and support novel relationships among major lineages. Dryad Digital Repository. https://doi.org/10.5061/dryad.h70rxwdfq.

  8. May 1, 2020 · Results: We recovered at least five instances of well-supported cytonuclear discordance concerning the placements of major asterid lineages (i.e., Ericales, Oncothecaceae, Aquifoliales,...

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