[1] |
Li He, Natascha Dorothea Wagner, and Elvira Hörandl.
Restriction‐site associated DNA sequencing data reveal a radiation of willow species (Salix L., Salicaceae) in the Hengduan Mountains and adjacent areas
[J]. J Syst Evol, 2021, 59(1): 44-57.
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[2] |
David M. Spooner, Holly Ruess, Shelby Ellison, Douglas Senalik, and Philipp Simon.
What is truth: Consensus and discordance in next‐generation phylogenetic analyses of Daucus
[J]. J Syst Evol, 2020, 58(6): 1059-1070.
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[3] |
Isaac H. Lichter‐Marck, William A. Freyman, Carolina M. Siniscalchi, Jennifer R. Mandel, Arturo Castro‐Castro, Gabriel Johnson, and Bruce G. Baldwin.
Phylogenomics of Perityleae (Compositae) provides new insights into morphological and chromosomal evolution of the rock daisies
[J]. J Syst Evol, 2020, 58(6): 853-880.
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[4] |
Verônica A. Thode, Lúcia G. Lohmann, and Isabel Sanmartín.
Evaluating character partitioning and molecular models in plastid phylogenomics at low taxonomic levels: A case study using Amphilophium (Bignonieae, Bignoniaceae)
[J]. J Syst Evol, 2020, 58(6): 1071-1089.
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[5] |
Linda E. Watson, Carolina M. Siniscalchi, and Jennifer Mandel.
Phylogenomics of the hyperdiverse daisy tribes: Anthemideae, Astereae, Calenduleae, Gnaphalieae, and Senecioneae
[J]. J Syst Evol, 2020, 58(6): 841-852.
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[6] |
Cassiano A. D. Welker, Michael R. McKain, Matt C. Estep, Rémy S. Pasquet, Gilson Chipabika, Beatrice Pallangyo, and Elizabeth A. Kellogg.
Phylogenomics enables biogeographic analysis and a new subtribal classification of Andropogoneae (Poaceae—Panicoideae)
[J]. J Syst Evol, 2020, 58(6): 1003-1030.
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[7] |
Jun‐Xia Su, Cong‐Cong Dong, Yan‐Ting Niu, Li‐Min Lu, Chao Xu, Bing Liu, Shi‐Liang Zhou, An‐Ming Lu, Yu‐Ping Zhu, Jun Wen, and Zhi‐Duan Chen.
Molecular phylogeny and species delimitation of Stachyuraceae: Advocating a herbarium specimen‐based phylogenomic approach in resolving species boundaries
[J]. J Syst Evol, 2020, 58(5): 710-724.
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[8] |
Kira Lindelof, Julieta A. Lindo, Wenbin Zhou, Xiang Ji, Qiu-Yun (Jenny) Xiang.
Phylogenomics, biogeography, and evolution of the blue‐ or white‐fruited dogwoods (Cornus)—Insights into morphological and ecological niche divergence following intercontinental geographic isolation
[J]. J Syst Evol, 2020, 58(5): 604-645.
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[9] |
Jian-Fei Ye, Yan-Ting Niu, Yan-Lei Feng, Bing Liu, Li-Si Hai, Jun Wen, and Zhi-Duan Chen.
Taxonomy and biogeography of Diapensia (Diapensiaceae) based on chloroplast genome data
[J]. J Syst Evol, 2020, 58(5): 696-709.
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[10] |
Wenbin Zhou, Qiu-Yun (Jenny) Xiang, and Jun Wen.
Phylogenomics, biogeography, and evolution of morphology and ecological niche of the eastern Asian–eastern North American Nyssa (Nyssaceae)
[J]. J Syst Evol, 2020, 58(5): 571-603.
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[11] |
Niklas Wikström, Birgitta Bremer, and Catarina Rydin.
Conflicting phylogenetic signals in genomic data of the coffee family (Rubiaceae)
[J]. J Syst Evol, 2020, 58(4): 440-460.
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[12] |
Umar Zeb, Wan-Lin Dong, Ting-Ting Zhang, Ruo-Nan Wang, Khurram Shahzad, Xiong-Feng Ma, and Zhong-Hu Li.
Comparative plastid genomics of Pinus species: Insights into sequence variations and phylogenetic relationships
[J]. J Syst Evol, 2020, 58(2): 118-132.
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[13] |
Jianhua Li, Mark Stukel, Parker Bussies, Kaleb Skinner, Alan R. Lemmon, Emily Moriarty Lemmon, Kenneth Brown, Airat Bekmetjev, and Nathan G. Swenson.
Maple phylogeny and biogeography inferred from phylogenomic data
[J]. J Syst Evol, 2019, 57(6): 594-606.
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[14] |
Joseph A. Kleinkopf, Wade R. Roberts, Warren L. Wagner, and Eric H. Roalson.
Diversification of Hawaiian Cyrtandra (Gesneriaceae) under the influence of incomplete lineage sorting and hybridization
[J]. J Syst Evol, 2019, 57(6): 561-578.
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[15] |
Shu-Li Wang, Lang Li, Xiu-Qin Ci, John G. Conran, and Jie Li.
Taxonomic status and distribution of Mirabilis himalaica (Nyctaginaceae)
[J]. J Syst Evol, 2019, 57(5): 431-439.
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