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  5. Climate‐driven niche filtering limits post‐dispersal establishment and genomic introgression in a riverine shrub.

Climate‐driven niche filtering limits post‐dispersal establishment and genomic introgression in a riverine shrub.

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Resource type
Journal article
Creator (person)
Wu, Zeng‐Yuan
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Chapman, Mark A.
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Milne, Richard I.
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Liu, Jie
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Luo, Ya‐Huang
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Fan, Peng‐Zhen
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Zhu, Guang‐Fu
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Weir, Jason T.
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Corlett, Richard T.
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Fu, Xiao‐Gang
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Tsang, Toby P. N.
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Cadotte, Marc W.
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Li, De‐Zhu
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Date published
July 6, 2026
Abstract
Dispersal enables species to track climate change by facilitating range shifts and colonization, yet successful post-dispersal establishment is often constrained by ecological niche mismatches. The mechanisms underlying this constraint remain poorly understood due to a lack of molecular evidence, limiting our ability to predict climate-induced range dynamics. Here, we integrate biogeographic analysis with macroecological insights to investigate how ecology shapes genomic divergence, local adaptation, and climate resilience in Debregeasia orientalis C. J. Chen, a dominant riparian shrub distributed across multiple biodiversity hotspots in southwestern China. Based on whole genome sequencing data from 332 individuals, we identify three genetically distinct groups: two diverged during the early Last Glacial period, and one originated through hybridization more recently. Despite both historical and ongoing opportunities for gene flow, strong genetic differentiation persists among the three groups. This differentiation is supported by clear niche divergence among the three groups and by genomic signatures of local adaptation, including selective sweeps related to hypoxia tolerance, thermal adaptation, and anthropogenic pressures. Together, these findings indicate that post-dispersal niche filtering limits the merging of these lineages. Genomic offset projections reveal asymmetric vulnerabilities to future climate scenarios, with one lineage particularly maladapted under projected shifts. These findings highlight niche-driven adaptation as a primary determinant of both historical divergence and contemporary resilience. Collectively, this study presents a framework linking post-dispersal ecological filtering to long-term genomic divergence, offering new insights into how niche filtering maintains genetic structure under rapid environmental change.
Project(s)
Priority 4: Accelerated Taxonomy
Funder
Funder nameAwards
Light of West China’ Program, Chinese Academy of Sciences, China
Applied and Fundamental Research Foundation of Yunnan Province, China
202401AT070190
National Natural Science Foundation of China, China
42171071 - 32170398
Yunnan Young & Elite Talents Projects, China
YNWR-QNBJ-2020-293 - YNWR-QNBJ-2018-146
Scholarship Council, University of Toronto, Canada
202304910135 - 202304910138
Chinese Academy of Sciences, China
President's International Fellowship Initiative (2022VBA0004)
Journal title
Journal of Integrative Plant Biology
Publisher
Published by John Wiley & Sons Australia, Ltd on behalf of Institute of Botany, Chinese Academy of Sciences.
Place of publication
Australia
ISSN
1672-9072
eISSN
1744-7909
Date accepted
June 8, 2026
Official URL
https://doi.org/10.1111/jipb.70336
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by-nc-nd/4.0/
DOI
10.1111/jipb.70336
Keywords
Population genomics
Local adaptation
Range shift
Dispersal
Riparian ecosystem
Niche filtering
Climate change
Additional information
IF = 12.5 (2025)
Managed by the British Library and supported by the AHRC

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