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DkWRKY转录因子通过与DkCAD1启动子相互作用促进木质素积累,从而增强柿树对堀川炭疽菌的抗性。

DkWRKY transcription factors enhance persimmon resistance to Colletotrichum horii by promoting lignin accumulation through DkCAD1 promotor interaction.

作者信息

Fan Hanyue, Shen Xiaoxia, Ding Yu, Li Yongkuan, Liu Shuyuan, Yang Yong, Ding Yuduan, Guan Changfei

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas, College of Horticulture, Northwest A&F University, Yangling, Shaanxi, China.

出版信息

Stress Biol. 2024 Feb 26;4(1):17. doi: 10.1007/s44154-024-00154-0.

Abstract

Persimmon anthracnose, a severe disease caused by the hemibiotrophic fungus Colletotrichum horii, poses a substantial threat to China's persimmon industry. Previous research showed that 'Kangbing Jianshi' cultivar exhibits strong resistance to anthracnose. Notably, 'Kangbing Jianshi' branches exhibit greater lignification compared with the susceptible 'Fuping Jianshi' cultivar. In this study, higher lignin content was observed in 'Kangbing Jianshi' compared with 'Fuping Jianshi', and this difference was associated with disease resistance. Transcriptome and metabolome analyses revealed that the majority of differentially expressed genes and differentially accumulated metabolites were primarily enriched in the phenylpropanoid biosynthesis and lignin synthesis pathways. Furthermore, significant upregulation of DkCAD1, a pivotal gene involved in lignin metabolism, was observed in the resistant cultivar when inoculated with C. horii. Transient overexpression of DkCAD1 substantially increased lignin content and improved resistance to C. horii in a susceptible cultivar. Furthermore, through yeast one-hybrid (Y1H) assays, we identified two WRKY transcription factors, DkWRKY8 and DkWRKY10, which interacts with the DkCAD1 promoter and induces its activity. Overexpression of DkWRKY8 and DkWRKY10 not only increased leaf lignin content but also enhanced persimmon tolerance to C. horii. Moreover, the expression levels of DkCAD1, DkWRKY8, and DkWRKY10 were significantly increased in response to salicylic acid and jasmonic acid in the resistant cultivar. These findings enhance our understanding of the molecular functions of DkWRKY8, DkWRKY10, and DkCAD1 in persimmons, as well as their involvement in molecular breeding processes in persimmons.

摘要

柿炭疽病是由半活体营养型真菌霍氏炭疽菌引起的一种严重病害,对中国的柿产业构成了重大威胁。先前的研究表明,‘抗病尖柿’品种对炭疽病表现出较强的抗性。值得注意的是,与感病的‘富平尖柿’品种相比,‘抗病尖柿’枝条的木质化程度更高。在本研究中,观察到‘抗病尖柿’的木质素含量高于‘富平尖柿’,且这种差异与抗病性相关。转录组和代谢组分析表明,大多数差异表达基因和差异积累代谢物主要富集在苯丙烷生物合成和木质素合成途径中。此外,在接种霍氏炭疽菌后,抗性品种中参与木质素代谢的关键基因DkCAD1显著上调。在感病品种中瞬时过表达DkCAD1可显著增加木质素含量并提高对霍氏炭疽菌的抗性。此外,通过酵母单杂交(Y1H)试验,我们鉴定出两个WRKY转录因子DkWRKY8和DkWRKY10,它们与DkCAD1启动子相互作用并诱导其活性。过表达DkWRKY8和DkWRKY10不仅增加了叶片木质素含量,还增强了柿树对霍氏炭疽菌的耐受性。此外,在抗性品种中,DkCAD1、DkWRKY8和DkWRKY10的表达水平在水杨酸和茉莉酸处理下显著增加。这些发现加深了我们对DkWRKY8、DkWRKY10和DkCAD1在柿树中的分子功能以及它们在柿树分子育种过程中的参与情况的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e47/10897097/edaed59fc8a3/44154_2024_154_Fig1_HTML.jpg

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