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棕榈酰转移酶StPFA5参与调控玉米大斑病菌生长发育及致病力

袁伟 张图 董广恩 石金卓 李海笑 曹志艳 刘宁 董金皋

中国农业科学2026,Vol.59Issue(16):3577-3590,14.
中国农业科学2026,Vol.59Issue(16):3577-3590,14.DOI:10.3864/j.issn.0578-1752.2026.16.008

棕榈酰转移酶StPFA5参与调控玉米大斑病菌生长发育及致病力

Palmitoyl Transferase StPFA5 Regulates the Growth,Development and Pathogenicity of Setosphaeria turcica

袁伟 1张图 1董广恩 1石金卓 1李海笑 1曹志艳 1刘宁 1董金皋1

作者信息

  • 1. 河北农业大学植物保护学院/河北省植物生理与分子病理学重点实验室,河北 保定 071000
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摘要

Abstract

[Objective]S-palmitoylation is a dynamically reversible post-translational protein modification that exerts a key regulatory role in biological processes such as signal transduction,metabolic homeostasis,and protein localization and transport in organisms.However,its function in Setosphaeria turcica and its impact on the pathogenicity of this fungus remain unclear.This study aimed to investigate the role of the palmitoyl transferase StPFA5 in regulating the growth,development and pathogenicity of S.turcica,and to lay a foundation for elucidating the molecular mechanisms underlying S.turcica growth and pathogenic processes mediated by S-palmitoylation.[Method]StPFA5 was identified via homologous alignment and a phylogenetic tree was constructed.RT-qPCR was performed to determine the expression level of StPFA5 during the fungal infection process.The knockout mutant and complementation strain of StPFA5 were generated using homologous recombination technology.For the WT,∆StPFA5 and C.∆StPFA5 strains,the growth rate and pathogenicity were determined,and hyphal morphology and hyphal germination were observed.Mycelial melanin was extracted by acid precipitation and alkaline dissolution,and the expression levels of melanin synthesis-related genes were detected by RT-qPCR.In addition,all strains were inoculated on PDA plates containing Congo red and CFW to assess the effect of StPFA5 on the cell wall integrity of S.turcica.Furthermore,proteomic and S-palmitoylomic analyses combined with database retrieval were conducted to identify differentially modified S-palmitoylation sites and their corresponding proteins in the WT and ∆StPFA5 strains,followed by functional annotation of these proteins.[Result]StPFA5 shared the highest homology(80.35%)with PFA5 from Cochliobolus heterostrophus.Compared with the WT strain,∆StPFA5 exhibited reduced colony growth rate,abnormal hyphal morphology and significantly decreased pathogenicity,and these phenotypic defects were restored to the WT level in the C.∆StPFA5 strain.Meanwhile,the melanin content in the mycelia of ∆StPFA5 was decreased,the expression of melanin synthesis-related genes was significantly down-regulated,and the sensitivity of ∆StPFA5 to cell wall stress was reduced.S-palmitoylomic analysis revealed that knockout of StPFA5 led to the downregulation of modification levels at 448 S-palmitoylation sites,and the proteins containing these downregulated sites were significantly enriched in biological pathways including amino acid anabolism,carbon metabolism,glycolysis,cell cycle and chromosome condensation.Combined with the phenotypic characteristics of ∆StPFA5,StPFA5 may affect the growth,development and pathogenicity of S.turcica by regulating the S-palmitoylation levels of proteins associated with these pathways.[Conclusion]The palmitoyl transferase StPFA5 promotes the growth,development and melanin synthesis of S.turcica by regulating the S-palmitoylation modification levels of target proteins,and exerts a positive regulatory effect on the pathogenicity of this fungus.

关键词

玉米大斑病菌/棕榈酰化修饰/棕榈酰转移酶/StPFA5/黑色素/致病力

Key words

Setosphaeria turcica/S-palmitoylation/palmitoyl transferase/StPFA5/melanin/pathogenicity

引用本文复制引用

袁伟,张图,董广恩,石金卓,李海笑,曹志艳,刘宁,董金皋..棕榈酰转移酶StPFA5参与调控玉米大斑病菌生长发育及致病力[J].中国农业科学,2026,59(16):3577-3590,14.

基金项目

国家重点研发计划(2023YFD1401500)、河北省自然科学基金(C2024204044,C2025204211)、国家玉米产业技术体系(CARS-02-30) (2023YFD1401500)

中国农业科学

0578-1752

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