食品科学 ›› 2025, Vol. 46 ›› Issue (13): 75-66.doi: 10.7506/spkx1002-6630-20241008-021

• 生物工程 • 上一篇    

转录组学分析扩展青霉ΔWSC1侵染梨果及梨果防御相关机制

赵利娜,胡义泽,束余玲,Solairaj Dhanasekaran,张晓云,杨其亚,张红印   

  1. (江苏大学食品与生物工程学院,江苏 镇江 212013)
  • 发布日期:2025-06-13
  • 基金资助:
    国家自然科学基金面上项目(32372401;32272383;32172641)

Transcriptomics Analysis of Penicillium expansum ΔWSC1 Infection and Defense Mechanism against It in Pear Fruits

ZHAO Lina, HU Yize, SHU Yuling, Solairaj DHANASEKARAN, ZHANG Xiaoyun, YANG Qiya, ZHANG Hongyin   

  1. (School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, China)
  • Published:2025-06-13

摘要: 扩展青霉产生的WSC蛋白对引起梨果青霉病有着重要作用。为分析WSC1基因在致病过程中的作用,对WSC1敲除菌株(ΔWSC1)进行转录组分析,结果显示WSC1基因的敲除显著改变了扩展青霉中相关基因的表达,特别是涉及细胞壁完整性、信号传导、应激反应和毒素产生相关基因,这些基因的差异表达可能使WSC1突变体更容易受到环境压力的影响,同时毒素生产能力减弱,最终导致致病性能力的下降。梨果转录组分析结果表明,当梨被ΔWSC1侵染后,其涉及应激反应信号、防御机制和氧化应激管理相关基因发生变化,这些基因表达量的改变可能会引起梨对扩展青霉侵染后的防御相关的一系列反应。此外,相较于野生型扩展青霉侵染相比,ΔWSC1侵染也使梨果组织中防御和氧化应激相关基因表达上调。本研究阐明了WSC1基因在扩展青霉侵染梨果过程中的作用,以及梨果实响应扩展青霉侵染的相关机制。

关键词: 梨果;扩展青霉;转录组学分析;侵染

Abstract: The WSC proteins produced by Penicillium expansum play a crucial role in causing blue mold on pears. To analyze the role of the WSC1 gene in the pathogenic process of this fungal pathogen, we conducted transcriptomic analysis of a WSC1 knockout (ΔWSC1) strain. The knockout of WSC1 significantly altered the gene expression profile in P. expansum, particularly for genes involved in cell wall integrity, signaling, stress response, and toxin production. The differential expression of these genes might make the ΔWSC1 strain more vulnerable to environmental stress, while reducing the toxin production capacity, ultimately leading to a decrease in the pathogenicity. The transcriptomic analysis revealed that the expression of genes related to stress response signals, defense mechanisms and oxidative stress management changed when pear fruits were infected with the ΔWSC1 strain. These changes may trigger a cascade of responses in pear fruits. In addition, compared with those infected with the wild-type strain, pear fruits infected with the ΔWSC1 strain exhibited up-regulated expression of genes related to defense and oxidative stress. This study clarifies how the WSC1 gene influences P. expansum’s ability to infect pear fruits and how pear fruits respond to the infection.

Key words: pear fruit; Penicillium expansum; transcriptomic analysis; infection

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