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◆ Cell Reports2025-12-01· Edaphic

Primulina pan-genome reveals differential gene retention following whole-genome duplications and provides insights into edaphic specialization

Chao Feng, Lihua Yang, Jing Wang, Xizuo Shi, Ming Kang

原始摘要(英文原文)· Original abstract
Primulina, a genus of >200 species specialized to extreme soils, provides a model for edaphic adaptation. We assemble seven genomes and construct a pan-genome spanning nine species from karst, Danxia, and acidic soils. Comparative analyses reveal that karst-adapted species have smaller genomes. Two lineage-specific whole-genome duplications (WGDs) exhibit biased duplicate loss in large gene families but preferential retention of transcription factors, indicating combined adaptive and nonadaptive forces. Pan-genome analyses identify ion channel and transporter genes enriched in variant hotspots and under positive selection in karst lineages. Candidate genes for drought and salt stress tolerance include ABC transporters and ion channels. Notably, an ABC transporter shows positive selection in karst species and unique structural variation in non-karst species. Together, our findings show that genome downsizing, biased post-WGD retention, and evolution of ion-transport pathways shape adaptation to extreme soils. The Primulina pan-genome provides a resource for dissecting mechanisms underlying edaphic specialization.
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Primulina pan-genome reveals differential gene retention following whole-genome duplications and provides insights into edaphic specialization — 科研速览 Science Skim