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◆ Journal of agricultural and food chemistry2026-09-09

Evolution and Expression Divergence of Legume PAL Genes Suggest Associations with Drought Response and Root Nodule Development.

Jianwei Qi, Yongzhong Luo, Songsong Lu, Haixia Huang, Xin Luo, Xiaotong Zhou, Liya Zhang, Shengli Lei, Xia Wang, Jiaqi Zhai, Zhenjia Lu

原始摘要(英文原文)· Original abstract
Comparative genomic analyses provide insight into the mechanisms underlying gene-family evolution and crop adaptation. Here, we used the legume phenylalanine ammonia-lyase (PAL) gene family as a model and integrated pan-genomic, phylogenetic, molecular evolutionary, duplication-mode, and transcriptomic analyses, while developing GFtool for gene family identification. Across 45 genomes, we identified 302 PAL genes and classified them into five Groups. Groups 1-3 represented ancient lineages shared with outgroups, whereas Groups 4 and 5 were legume-specific. Molecular-clock analyses placed the divergence of Group 2 near the Paleocene-Eocene transition, while Groups 4 and 5 diversified from the middle Eocene to the early Oligocene. WGD/segmental duplication broadly contributed to PAL copy-number expansion, whereas tandem duplication was enriched in Group 5 of Papilionoideae. Group 2 genes showed drought-induced expression, whereas Group 5 genes were associated with early root nodule development. GFtool provides a scalable framework for gene-family studies.
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Evolution and Expression Divergence of Legume PAL Genes Suggest Associations with Drought Response and Root Nodule Development. — 科研速览 Science Skim