Integrative Biology Journals

Plant Diversity ›› 2026, Vol. 48 ›› Issue (04): 747-765.DOI: 10.1016/j.pld.2026.02.005

• Articles • Previous Articles     Next Articles

Phylogenomic conflict in Lycium (Solanaceae): Revealing the roles of hybridization, incomplete lineage sorting, and biogeographic history using nuclear and mitochondrial genomes

Gulbar Yisilama,b,c, Yu-Zhu Gaoa,b, Zuan Weia,b, Hans Peter Comesd, Zheng Lie, Pan Lif,g, Xin-Min Tiana,b   

  1. a. Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection (Ministry of Education) & Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin, Guangxi Normal University, Guilin 541006, China;
    b. University Engineering Research Center of Bioinformation and Genetic Improvement of Specialty Crops, Guangxi, Guilin 541006, China;
    c. Laboratory of Systematic & Evolutionary Botany and Biodiversity, College of Life Sciences, Zhejiang University, Hangzhou 310058, China;
    d. Department of Environment & Biodiversity, University of Salzburg, Salzburg, Austria;
    e. Department of Biology, Miami University, Oxford, OH 45056, USA;
    f. Key Laboratory of Biodiversity and Environment on the Qinghai-Tibetan Plateau, Ministry of Education, School of Ecology and Environment, Xizang University, Lhasa 850000, China;
    g. Motuo Biodiversity Observation and Research Station of Xizang Autonomous Region, Motuo 860700, China
  • Received:2025-12-27 Revised:2026-02-03 Accepted:2026-02-06 Online:2026-02-16 Published:2026-07-25
  • Contact: Pan Li,E-mail:panli_zju@126.com;Xin-Min Tian,E-mail:tianxm333333@foxmail.com
  • Supported by:
    This work was supported by the Key Research and Development Program of Guangxi Province of China (GuikeAB25069162, GuikeAB25069252), the National Natural Science Foundation of China (31760102, 32360058, 32570239), the Central Government Guides Local Science and Technology Development Projects (2023ZYZX1224), and Science and Technology Projects of Xizang Autonomous Region, China (XZ202402ZD0005). We would like to thank the University of Arizona Herbarium (ARIZ) and the Wisconsin State Herbarium (WIS) for providing Lycium specimens.

Phylogenomic conflict in Lycium (Solanaceae): Revealing the roles of hybridization, incomplete lineage sorting, and biogeographic history using nuclear and mitochondrial genomes

Gulbar Yisilama,b,c, Yu-Zhu Gaoa,b, Zuan Weia,b, Hans Peter Comesd, Zheng Lie, Pan Lif,g, Xin-Min Tiana,b   

  1. a. Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection (Ministry of Education) & Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin, Guangxi Normal University, Guilin 541006, China;
    b. University Engineering Research Center of Bioinformation and Genetic Improvement of Specialty Crops, Guangxi, Guilin 541006, China;
    c. Laboratory of Systematic & Evolutionary Botany and Biodiversity, College of Life Sciences, Zhejiang University, Hangzhou 310058, China;
    d. Department of Environment & Biodiversity, University of Salzburg, Salzburg, Austria;
    e. Department of Biology, Miami University, Oxford, OH 45056, USA;
    f. Key Laboratory of Biodiversity and Environment on the Qinghai-Tibetan Plateau, Ministry of Education, School of Ecology and Environment, Xizang University, Lhasa 850000, China;
    g. Motuo Biodiversity Observation and Research Station of Xizang Autonomous Region, Motuo 860700, China
  • 通讯作者: Pan Li,E-mail:panli_zju@126.com;Xin-Min Tian,E-mail:tianxm333333@foxmail.com
  • 基金资助:
    This work was supported by the Key Research and Development Program of Guangxi Province of China (GuikeAB25069162, GuikeAB25069252), the National Natural Science Foundation of China (31760102, 32360058, 32570239), the Central Government Guides Local Science and Technology Development Projects (2023ZYZX1224), and Science and Technology Projects of Xizang Autonomous Region, China (XZ202402ZD0005). We would like to thank the University of Arizona Herbarium (ARIZ) and the Wisconsin State Herbarium (WIS) for providing Lycium specimens.

Abstract: The genus Lycium is of considerable medicinal and economic importance and has a discontinuous intercontinental distribution. However, its evolutionary history remains obscured by morphological convergence, hybridization, and incomplete lineage sorting (ILS). Here, we conducted the first phylogenomic study of Lycium, integrating three independent genomic compartments, single-copy nuclear genes, mitochondrial genomes, and published plastid data to reconstruct its history and dissect the roles of incomplete lineage sorting, hybridization, and long-distance dispersal in its evolution. Both concatenation and coalescence methods based on nuclear genes yielded a congruent, well-resolved phylogeny, strongly supporting the monophyly of Lycium and recovering five major clades with a North American lineage as sisters to all the others. This phylogeny reveals significant conflicts with the traditional morphology. Our analyses clarify the primary cause of two distinct types of conflict. First, the pervasive tripartite (nuclear-plastid-mitochondrial) topological discordance is primarily linked to historical hybridization and introgression events, as demonstrated by strong gene-flow signals and detailed network models. In contrast, the discordance observed among gene trees appears to be predominantly influenced by incomplete lineage sorting, with some nodes exhibiting peaks exceeding 60%, indicative of rapid radiation during the Miocene epoch. Divergence dating and ancestral area reconstruction support a North American origin in the early Miocene (∼21.84 Ma), followed by sequential long-distance dispersal to South America across the Pacific, Africa, and Eurasia. Collectively, our results establish a process-based framework for Lycium’s complex evolutionary history, highlighting the interplay of rapid radiation, quantified ILS, modeled hybridization, and bird-mediated dispersal in shaping its intercontinental distribution.

Key words: Phylogenomics, Reticulate evolution, Biogeography, Incomplete lineage sorting, Hybridization, Mitogenome

摘要: The genus Lycium is of considerable medicinal and economic importance and has a discontinuous intercontinental distribution. However, its evolutionary history remains obscured by morphological convergence, hybridization, and incomplete lineage sorting (ILS). Here, we conducted the first phylogenomic study of Lycium, integrating three independent genomic compartments, single-copy nuclear genes, mitochondrial genomes, and published plastid data to reconstruct its history and dissect the roles of incomplete lineage sorting, hybridization, and long-distance dispersal in its evolution. Both concatenation and coalescence methods based on nuclear genes yielded a congruent, well-resolved phylogeny, strongly supporting the monophyly of Lycium and recovering five major clades with a North American lineage as sisters to all the others. This phylogeny reveals significant conflicts with the traditional morphology. Our analyses clarify the primary cause of two distinct types of conflict. First, the pervasive tripartite (nuclear-plastid-mitochondrial) topological discordance is primarily linked to historical hybridization and introgression events, as demonstrated by strong gene-flow signals and detailed network models. In contrast, the discordance observed among gene trees appears to be predominantly influenced by incomplete lineage sorting, with some nodes exhibiting peaks exceeding 60%, indicative of rapid radiation during the Miocene epoch. Divergence dating and ancestral area reconstruction support a North American origin in the early Miocene (∼21.84 Ma), followed by sequential long-distance dispersal to South America across the Pacific, Africa, and Eurasia. Collectively, our results establish a process-based framework for Lycium’s complex evolutionary history, highlighting the interplay of rapid radiation, quantified ILS, modeled hybridization, and bird-mediated dispersal in shaping its intercontinental distribution.

关键词: Phylogenomics, Reticulate evolution, Biogeography, Incomplete lineage sorting, Hybridization, Mitogenome