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Independent horizontal transfer of genes encoding α/β-hydrolases with strigolactone binding and hydrolytic activities from bacteria to fungi and plants

摘要Strigolactones(SLs)are not only phytohormones that influence multiple aspects of plant growth and development but also signaling molecules for interactions between plants and certain fungi or bacteria.In plants,the SL receptor is an α/β-hydrolase(ABH)encoded by the DWARF14(D14)/KARRIKIN INSENSI-TIVE2(KAI2)gene family,which is known to be derived from proteobacterial RsbQ through horizontal gene transfer(HGT).In the phytopathogenic fungus Cryphonectria parasitica,another ABH named CpD14 was found to possess SL binding and hydrolytic activities and mediate SL responses,exhibiting po-tential SL perception functions.Here,we demonstrate that CpD14 and its homologs in Leotiomyceta fungi were derived from Actinobacteria through an independent HGT event,forming a distinct CpD14-like(CDL)family across fungi and bacteria.X-ray crystallography and structural analyses reveal that actinobacterial and fungal CDL proteins share a conserved core"α/β fold"domain with D14/KAI2/RsbQ but possess a unique lid domain.Biochemical assays show that both actinobacterial CDL and proteobacterial RsbQ can recognize and hydrolyze SLs,suggesting that they are pre-adapted for SL responses and potential perception.Both plant D14/KAI2 and fungal CDL proteins retained these functional activities,whereas they evolved distinct ligand specificities for SL structural variants.Collectively,this work reveals that inde-pendent HGT events from two bacterial groups provided plants and their interacting fungi with pre-adapted ABH proteins,which were deployed for SL perception or responses.

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作者 Qia Wang [1] Ye Ye [2] Lulu Wang [3] Yanlong Guan [1] Shuanghua Wang [1] Zhe Wang [4] Hang Sun [5] Steven M.Smith [6] Jinling Huang [7] 学术成果认领
作者单位 State Key Laboratory of Plant Diversity and Specialty Crops & Yunnan Key Laboratory for Fungal Diversity and Green Development,Kunming Institute of Botany,Chinese Academy of Sciences,Kunming 650201,China [1] State Key Laboratory of Phytochemistry and Natural Medicines,Kunming Institute of Botany,Chinese Academy of Sciences,Kunming 650201,China [2] Department of Bioengineering,College of Life Science,Dalian Minzu University,Dalian 116600,China;Wuxi Biortus Biosciences Co.,Ltd.,Jiangyin 214437,China [3] State Key Laboratory of Natural Medicines,School of Traditional Chinese Pharmacy,China Pharmaceutical University,Nanjing 211198,China [4] State Key Laboratory of Plant Diversity and Specialty Crops & Yunnan Key Laboratory for Fungal Diversity and Green Development,Kunming Institute of Botany,Chinese Academy of Sciences,Kunming 650201,China;State Key Laboratory of Phytochemistry and Natural Medicines,Kunming Institute of Botany,Chinese Academy of Sciences,Kunming 650201,China [5] ARC Centre of Excellence for Plant Success in Nature and Agriculture,School of Natural Sciences,University of Tasmania,Hobart,TAS 7001,Australia [6] State Key Laboratory of Plant Diversity and Specialty Crops & Yunnan Key Laboratory for Fungal Diversity and Green Development,Kunming Institute of Botany,Chinese Academy of Sciences,Kunming 650201,China;State Key Laboratory of Crop Stress Adaptation and Improvement,School of Life Sciences,Henan University,Kaifeng 475004,China;Department of Biology,East Carolina University,Greenville,NC 27858,USA [7]
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DOI 10.1016/j.molp.2025.09.021
发布时间 2025-12-10(万方平台首次上网日期,不代表论文的发表时间)
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2025年18卷11期

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