The reconstructed evolutionary history of the Engelhardia spicata complex highlights the impact of a three‐tiered landform in the Indo‐Burma ecoregion
作者:Can‐Yu Zhang, Guan‐Long Cao, Jianlin Hu, Pei‐Han Huang, Min Li, Rina Su, Ou‐Yan Fang, Xiang Cai, Yi‐Gang Song, Guo‐Xiong Hu, Kaiqing Xie, Lang Li, Shi‐Shun Zhou, Yun‐Hong Tan, Hong‐Hu Meng, Jie Li · 发表于:American Journal of Botany · 年份:2025 · DOI:10.1002/ajb2.70077 · 被引用次数:3 · 研究领域:Evolution and Paleontology Studies、Paleontology and Evolutionary Biology、Plant Diversity and Evolution
PREMISE: The lateral displacement of the Indochina Peninsula, driven by the Indian-Asian plate collision, significantly altered the topography of the Indo-Burma ecoregion, affecting its climate and biological evolution. Despite the renowned biodiversity of the region, spatiotemporal patterns of evolution remain poorly understood. METHODS: We analyzed the Engelhardia spicata complex, which has a continuous distribution across Indo-Burma, based on a robust phylogenetic framework comprising 778 individuals from 80 populations, to elucidate spatiotemporal and paleogeological patterns of evolution. We used ancestral area reconstruction to reconstruct the historical biogeography of the species complex and to understand the broader evolutionary history of the Indo-Burma ecoregion. RESULTS: An initial divergence within the E. spicata complex approximately 26.62 million years ago (Ma) separated a lineage in the Truong Son Mountain Range from one in the Hengduan Mountains and the Shan Plateau. The Shan Plateau and Hengduan Mountain lineages subsequently diverged around 23.03 Ma. These results highlight a three-tiered landform in the Indo-Burma ecoregion, characterized by high-elevation northern regions (Hengduan Mountains, Yunnan-Guizhou Plateau), intermediate-elevation central plateau (Shan Plateau), and low-elevation southern ranges (southern Truong Son Mountains). CONCLUSIONS: Our findings support the tectonic hypothesis that crustal thickening and lateral extrusion of Indochina occ...