Divergent genome fractionation and adaptation following polyploidy in the Araliaceae

Cyclic polyploidization/diploidization is a driving force in the evolution of eukaryotes. It remains unclear how post-polyploidy reshuffling of ancestral genomes is correlated with evolutionary and ecological diversification. The Araliaceae consists of > 1500 diverse species of herbs, shrubs and trees, which have undergone several polyploidization/diploidization events and have adapted to different forest ecosystem habitats. Here, by leveraging 20 genomes/subgenomes and 561 transcriptomes, we demonstrate that the genome architecture and transcriptional landscape of extant Araliaceae have undergone remodeling associated with polyploidizations/diploidizations. Phenotypic comparisons revealed that phylogenetically distinct species of the Araliaceae have repeatedly evolved shade- and open-habitat phenotypes, accompanied by leaf morphology, efficiency of photosynthesis and carbon fixation. Biased genetic fractionation and transcriptional remodeling of the photomorphogenesis (e.g. PhyB and PIFs) and photosynthesis (e.g. Lhcb-1 and Rubisco) networks are associated with this ecological adaptation. Our study provides evidence that post-polyploidy reshuffling and fractionation correlate with phenotypic and ecological diversification. Polyploidy is a driving force in eukaryotic evolution. Here the authors describe a macroecological-macrogenomic approach to explore how post-polyploidy reshuffling of an ancestral genome in Araliaceae correlates with phenotypic diversity and ecological adaptation.

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Publication Details

Journal
Nature Communications
Published
2026-09-17
DOI
https://doi.org/10.1038/s41467-026-77785-6
Primary Topic
Chromosomal and Genetic Variations
Type
article
Field-Weighted Citation Impact
0.00

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article

Divergent genome fractionation and adaptation following polyploidy in the Araliaceae

Yuqian Niu, Hai‐Xin Yu, Jonathan F. Wendel, Jia-Qing Lei et al.
Nature Communications
Chromosomal and Genetic Variations
article

Divergent genome fractionation and adaptation following polyploidy in the Araliaceae

Yuqian Niu, Hai‐Xin Yu, Jonathan F. Wendel, Jia-Qing Lei, Liu B, Linfeng Li, Jia-Hui Hai, Yu-Xuan Feng, Xin-Feng Wang
article en

Abstract

Cyclic polyploidization/diploidization is a driving force in the evolution of eukaryotes. It remains unclear how post-polyploidy reshuffling of ancestral genomes is correlated with evolutionary and ecological diversification. The Araliaceae consists of > 1500 diverse species of herbs, shrubs and trees, which have undergone several polyploidization/diploidization events and have adapted to different forest ecosystem habitats. Here, by leveraging 20 genomes/subgenomes and 561 transcriptomes, we demonstrate that the genome architecture and transcriptional landscape of extant Araliaceae have undergone remodeling associated with polyploidizations/diploidizations. Phenotypic comparisons revealed that phylogenetically distinct species of the Araliaceae have repeatedly evolved shade- and open-habitat phenotypes, accompanied by leaf morphology, efficiency of photosynthesis and carbon fixation. Biased genetic fractionation and transcriptional remodeling of the photomorphogenesis (e.g. PhyB and PIFs) and photosynthesis (e.g. Lhcb-1 and Rubisco) networks are associated with this ecological adaptation. Our study provides evidence that post-polyploidy reshuffling and fractionation correlate with phenotypic and ecological diversification. Polyploidy is a driving force in eukaryotic evolution. Here the authors describe a macroecological-macrogenomic approach to explore how post-polyploidy reshuffling of an ancestral genome in Araliaceae correlates with phenotypic diversity and ecological adaptation.

Nature Communications
Sun Yat-sen University (CN), Iowa State University (US), Northeast Normal University (CN), South China Botanical Garden (CN)
National Natural Science Foundation of China
Zero hunger
Openalex Percentile: Top 13%
Chromosomal and Genetic Variations
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