Integrative Biology Journals

Plant Diversity ›› 2026, Vol. 48 ›› Issue (04): 720-733.DOI: 10.1016/j.pld.2026.03.002

• Articles • Previous Articles     Next Articles

The Tianshan Mountains as a biogeographic barrier driving North-South divergence and local adaptation in Typha laxmannii

Chichi Zhaoa, Lei Huanga, Huijun Wangb,c, Xinwei Xua   

  1. a. National Field Station of Freshwater Ecosystem of Liangzi Lake, College of Life Sciences, Wuhan University, Wuhan 430072, China;
    b. Provincial Key Laboratory of Conservation and Utilization of Traditional Chinese Medicine Resources, Institute of Chinese Herbal Medicines, Henan Academy of Agricultural Sciences, Zhengzhou 450002, China;
    c. Henan Provincial Engineering Technology Research Center of Chinese Medicinal Materials for Genuineness, Zhengzhou 450002, China
  • Received:2025-10-27 Revised:2026-03-01 Accepted:2026-03-02 Online:2026-03-11 Published:2026-07-25
  • Contact: Xinwei Xu,E-mail:xuxw@whu.edu.cn
  • Supported by:
    This study was supported by the National Water Pollution Control and Treatment Science and Technology Major Project, China (No. 2015ZX07503005). The calculations in this paper were performed using the super computing system at the Supercomputing Center of Wuhan University.

The Tianshan Mountains as a biogeographic barrier driving North-South divergence and local adaptation in Typha laxmannii

Chichi Zhaoa, Lei Huanga, Huijun Wangb,c, Xinwei Xua   

  1. a. National Field Station of Freshwater Ecosystem of Liangzi Lake, College of Life Sciences, Wuhan University, Wuhan 430072, China;
    b. Provincial Key Laboratory of Conservation and Utilization of Traditional Chinese Medicine Resources, Institute of Chinese Herbal Medicines, Henan Academy of Agricultural Sciences, Zhengzhou 450002, China;
    c. Henan Provincial Engineering Technology Research Center of Chinese Medicinal Materials for Genuineness, Zhengzhou 450002, China
  • 通讯作者: Xinwei Xu,E-mail:xuxw@whu.edu.cn
  • 基金资助:
    This study was supported by the National Water Pollution Control and Treatment Science and Technology Major Project, China (No. 2015ZX07503005). The calculations in this paper were performed using the super computing system at the Supercomputing Center of Wuhan University.

Abstract: The Tianshan Mountains constitute a major biogeographic barrier in Arid Central Asia, yet their impact on plant genomic divergence and adaptation remains poorly understood. Using Typha laxmannii, a wetland species distributed across this range, we generated a chromosome-scale genome and performed integrated population genomic and environmental analyses of 126 individuals from 31 sites. Our results revealed a clear north-south genetic split demarcated by the Tianshan Mountains, with gene flow restricted since divergence approximately 88.1 thousand years ago (Kya), a pattern further reinforced by post-Pleistocene demographic contraction. Northern and southern populations evolved distinct adaptive signatures in response to their local environments, including differentiation in genes associated with stress response, transcriptional regulation, and flowering time. Beyond single loci, adaptation also acts on large genomic blocks: a ∼2.5 Mb parallel sweep (∼91 Kya) contains a linked block of stress-response genes shared across the species, suggesting a range-wide response to intensified continentality and repeated glacial-interglacial aridification following population decline (∼100 Kya) but preceding the north-south split. In contrast, a ∼3 Mb divergent sweep (∼85 Kya) harbours northern-specific alleles related to glutathione metabolism, zeatin biosynthesis, and transcriptional regulation, likely enhancing tolerance to extreme winter cooling and freeze-thaw cycles under a strengthened Siberian High after divergence. Together, our findings establish a “spatio-temporal environmental sorting” model of biodiversity, providing a critical framework for understanding how the topography and climate of the Arid Central Asian mountains promote evolutionary novelty and safeguard genetic resilience in the face of ongoing global climate change.

Key words: Tianshan Mountains, Typha laxmannii, Local adaptation, Biogeographic barrier, Genomic divergence, Environmental gradient

摘要: The Tianshan Mountains constitute a major biogeographic barrier in Arid Central Asia, yet their impact on plant genomic divergence and adaptation remains poorly understood. Using Typha laxmannii, a wetland species distributed across this range, we generated a chromosome-scale genome and performed integrated population genomic and environmental analyses of 126 individuals from 31 sites. Our results revealed a clear north-south genetic split demarcated by the Tianshan Mountains, with gene flow restricted since divergence approximately 88.1 thousand years ago (Kya), a pattern further reinforced by post-Pleistocene demographic contraction. Northern and southern populations evolved distinct adaptive signatures in response to their local environments, including differentiation in genes associated with stress response, transcriptional regulation, and flowering time. Beyond single loci, adaptation also acts on large genomic blocks: a ∼2.5 Mb parallel sweep (∼91 Kya) contains a linked block of stress-response genes shared across the species, suggesting a range-wide response to intensified continentality and repeated glacial-interglacial aridification following population decline (∼100 Kya) but preceding the north-south split. In contrast, a ∼3 Mb divergent sweep (∼85 Kya) harbours northern-specific alleles related to glutathione metabolism, zeatin biosynthesis, and transcriptional regulation, likely enhancing tolerance to extreme winter cooling and freeze-thaw cycles under a strengthened Siberian High after divergence. Together, our findings establish a “spatio-temporal environmental sorting” model of biodiversity, providing a critical framework for understanding how the topography and climate of the Arid Central Asian mountains promote evolutionary novelty and safeguard genetic resilience in the face of ongoing global climate change.

关键词: Tianshan Mountains, Typha laxmannii, Local adaptation, Biogeographic barrier, Genomic divergence, Environmental gradient