[1] |
Jean-Yves Dubuisson, Adèle Nivart, Ehoarn Bidault, Vincent Deblauwe, Vincent Droissart, Narcisse G. Kamdem, Germinal Rouhan, Atsushi Ebihara, and Timothée le Péchon.
Diversity, taxonomy, and history of the tropical fern genus Didymoglossum Desv. (Hymenophyllaceae, Polypodiidae) in Africa
[J]. J Syst Evol, 2024, 62(1): 84-101.
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[2] |
Jing Zhao, Qiao Wu, Xin-Hong Bai, Edward Allen, Meng-Ge Wang, Guang-Lin He, Jian-Xin Guo, Xiao-Min Yang, Jian-Xue Xiong, Zi-Xi Jiang, Xiao-Yan Ji, Hui Wang, Jing-Ze Tan, Shao-Qing Wen, and Chuan-Chao Wang.
Genetic admixture of Chinese Tajik people inferred from genome-wide array genotyping and mitochondrial genome sequencing
[J]. J Syst Evol, 2024, 62(1): 181-192.
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[3] |
Zhi-Yuan Du, Jin Cheng, and Qiu-Yun (Jenny) Xiang.
RAD-seq data provide new insights into biogeography, diversity anomaly, and species delimitation in eastern Asian–North American disjunct clade Benthamidia of Cornus (Cornaceae)
[J]. J Syst Evol, 2024, 62(1): 1-19.
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[4] |
Xiao-Ying Liu, Dan-Qing Zhang, and Jian-Qiang Zhang.
Plastomic data shed new light on the phylogeny, biogeography, and character evolution of the family Crassulaceae
[J]. J Syst Evol, 2023, 61(6): 990-1003.
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[5] |
Zhe-Chen Qi, Pan Li, Jun-Jie Wu, Alexander Gamisch, Tuo Yang, Yun-Peng Zhao, Wu-Qing Xu, Shi-Chao Chen, Kenneth M. Cameron, Ying-Xiong Qiu, and Cheng-Xin Fu.
Climatic niche evolution in Smilacaceae (Liliales) drives patterns of species diversification and richness between the Old and New World
[J]. J Syst Evol, 2023, 61(5): 733-747.
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[6] |
Zhi‐Yao Ma, Ze‐Long Nie, Xiu‐Qun Liu, Jing‐Pu Tian, Yong‐Feng Zhou, Elizabeth Zimmer, and Jun Wen.
Phylogenetic relationships, hybridization events, and drivers of diversification of East Asian wild grapes as revealed by phylogenomic analyses
[J]. J Syst Evol, 2023, 61(2): 273-283.
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[7] |
Meng‐Ge Wang, Guang‐Lin He, Xing Zou, Peng‐Yu Chen, Zheng Wang, Ren‐Kuan Tang, Xiao‐Min Yang, Jing Chen, Mei‐Qing Yang, Ying‐Xiang Li, Jing Liu, Fei Wang, Jing Zhao, Jian‐Xin Guo, Rong Hu, Lan‐Hai Wei, Gang Chen, Hui‐Yuan Yeh, and Chuan‐Chao Wang.
Reconstructing the genetic admixture history of Tai-Kadai and Sinitic people: Insights from genome-wide SNP data from South China
[J]. J Syst Evol, 2023, 61(1): 157-178.
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[8] |
Guang‐Lin He, Meng‐Ge Wang, Xing Zou, Hui‐Yuan Yeh, Chang‐Hui Liu, Chao Liu, Gang Chen, and Chuan‐Chao Wang.
Extensive ethnolinguistic diversity at the crossroads of North China and South Siberia reflects multiple sources of genetic diversity
[J]. J Syst Evol, 2023, 61(1): 230-250.
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[9] |
Cédric Del Rio, Teng-Xiang Wang, Shu-Feng Li, Lin-Bo Jia, Pei-Rong Chen, Robert A. Spicer, Fei-Xiang Wu, Zhe-Kun Zhou, and Tao Su.
Fruits of Firmiana and Craigia (Malvaceae) from the Eocene of the Central Tibetan Plateau with emphasis on biogeographic history
[J]. J Syst Evol, 2022, 60(6): 1440-1452.
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[10] |
Daiki Takahashi, Yuji Isagi, Pan Li, Ying-Xiong Qiu, Hiroaki Setoguchi, Yoshihisa Suyama, Ayumi Matsuo, Yoshihiro Tsunamoto, and Shota Sakaguchi.
Stable persistence of relict populations involved evolutionary shifts of reproductive characters in the genus Tanakaea (Saxifragaceae)
[J]. J Syst Evol, 2022, 60(6): 1405-1416.
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[11] |
Else Demeulenaere and Stefanie M. Ickert-Bond.
Origin and evolution of the Micronesian biota: Insights from molecular phylogenies and biogeography reveal long-distance dispersal scenarios and founder-event speciation
[J]. J Syst Evol, 2022, 60(5): 973-997.
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[12] |
Robert M. Kooyman, Sarah J. Ivory, Adam J. Benfield, and Peter Wilf.
Gondwanan survivor lineages and the high-risk biogeography of Anthropocene Southeast Asia
[J]. J Syst Evol, 2022, 60(4): 715-727.
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[13] |
Lu Jiang, Qin Bao, Wei He, Deng-Mei Fan, Shan-Mei Cheng, Jordi López-Pujol, Myong Gi Chung, Shota Sakaguchi, Arturo Sánchez-González, Aysun Gedik, De-Zhu Li, Yi-Xuan Kou, and Zhi-Yong Zhang.
Phylogeny and biogeography of Fagus (Fagaceae) based on 28 nuclear single/low-copy loci
[J]. J Syst Evol, 2022, 60(4): 759-772.
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[14] |
Chen-Yang Liao, Qing Gao, Deborah S. Katz-Downie, and Stephen R. Downie.
A systematic study of North American Angelica species (Apiaceae) based on nrDNA ITS and cpDNA sequences and fruit morphology
[J]. J Syst Evol, 2022, 60(4): 789-808.
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[15] |
Qiu-Yue Zhang, Min Deng, Yanis Bouchenak-Khelladi, Zhe-Kun Zhou, Guang-Wan Hu, and Yao-Wu Xing.
The diversification of the northern temperate woody flora – A case study of the Elm family (Ulmaceae) based on phylogenomic and paleobotanical evidence
[J]. J Syst Evol, 2022, 60(4): 728-746.
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