数字农科院2.0

The miR7125-MdARF1 module enhances the resistance of apple to Colletotrichum gloeosporioides by promoting lignin synthesis in response to salicylic acid signalling

文献类型: 外文期刊

作者: Liu, Xinmei;Dai, Hongyan;Zhang, Feng;Wang, Jun;Shi, Jiajun;Chen, Junqin;He, Ping;Wang, Feng;Ma, Yue

作者机构:

关键词: Colletotrichum gloeosporioides;salicylic acid signalling;lignin synthesis;miRNA/ARF module

期刊名称: PLANT BIOTECHNOLOGY JOURNAL

ISSN: 1467-7644

年卷期: 2024 年

页码:

收录情况: SCIE(2024版)

摘要: Apple is an important cash crop in China, and it is susceptible to fungal infections that have deleterious effects on its yield. Apple bitter rot caused by Colletorichum gloeosporioides is one of the most severe fungal diseases of apple. Salicylic acid (SA) is a key signalling molecule in the plant disease resistance signalling pathways. Lignin synthesis also plays a key role in conferring disease resistance. However, few studies have clarified the relationship between the SA disease resistance signalling pathway and the lignin disease resistance pathway in apple. MdMYB46 has previously been shown to promote lignin accumulation in apple and enhance salt and osmotic stress tolerance. Here, we investigated the relationship between MdMYB46 and biological stress; we found that MdMYB46 overexpression enhances the resistance of apple to C. gloeosporioides. We also identified MdARF1, a transcription factor upstream of MdMYB46, via yeast library screening and determined that MdARF1 was regulated by miR7125 through psRNATarget prediction. This regulatory relationship was confirmed through LUC and qRT-PCR experiments, demonstrating that miR7125 negatively regulates MdARF1. Analysis of the miR7125 promoter revealed that miR7125 responds to SA signals. The accumulation of SA level will result in the decrease of miR7125 expression level. In sum, the results of our study provide novel insights into the molecular mechanisms underlying the resistance of apple to C. gloeosporioides and reveal a new pathway that enhances lignin accumulation in apple in response to SA signals. These findings provide valuable information for future studies aimed at breeding apple for disease resistance.

分类号:

  • 相关文献

[1]Integrated Transcriptomic and Metabolomic Analysis of Exogenous NAA Effects on Maize Seedling Root Systems under Potassium Deficiency. Dongying Zhou,Yuanchun Zhang,Qiqi Dong,Kai Wang,He Zhang,Qi Du,Jing Wang,Xiaoguang Wang,Haiqiu Yu,Xinhua Zhao. 2024

[2]Optimising the Morphology and Quality of Basal Stem Nodes to Improve Wheat Lodging Resistance and Yield. J. C. Zhang,Y. Q. Zhang,Q. J. Xu,J. J. Lei,C. X. Chen,J. Li,S. H. Nie,J. Li,X. H. Chang,W. X. Xu. 2025

[3]A Cotton Laccase Confers Disease Resistance Against Verticillium dahliae by Promoting Cell Wall Lignification. Cheng, Guanfu,Li, Chuanzong,Zhang, Guoshuai,Fernando, W. G. Dilantha,Bi, Yanqing,Lei, Jianfeng,Dai, Peihong,Su, Xiaofeng,Li, Yue. 2025

[4]Overexpression of TaPSKR1L-6A improves resistance to sharp eyespot and increases lignin accumulation in wheat. Qi, Haijun,Hao, Yuran,Zhu, Xiuliang,Zhang, Zengyan. 2025

[5]Colletotrichum Gloeosporioides-Contaminated Tea Infusion Blocks L.ipids Reduction And Induces K idney Damage In Mice. Chen, Xuan,Chen, Jin,Yang, Dingjun,Wang, Le,Li, Xinghui,Li, Jin,Sun, Kang,Ma, Qingping. 2017

[6]Molecular Characterization of a Trisegmented Mycovirus from the Plant Pathogenic Fungus Colletotrichum gloeosporioides. Pang, Xi Dan,Zhu, Hong Jian,Gao, Bi Da,Zhou, Qian,Huang, Wen Kun. 2016

[7]CLONING AND ANALYSIS OF T-DNA TARGETED GENE OF Colletotrichum gloeosporioides PATHOGENICITY-DEFECTIVE STRAIN Cs16. Moazam Hyder,Muhammad Ibrahim Khaskheli,Abdul Mubeen Lodhi,Aslam Bukero,Raja Asad Ali Khan,Imtiaz Ahmed Nizamani,Raja Tahir Mahmood,Aamar Mushtaq,Zhirui Ji. 2023

[8]MCT1 plays crucial roles in conidiation, lactate metabolism and pathogenicity in Colletotrichum gloeosporioides. Zhao, Xuanzhu,Wang, Na,Ji, Zhirui,Zhou, Zongshan,Zhang, Junxiang. 2023

[9]Carbamoyl phosphate synthase subunit cgcps1 is necessary for virulence and to regulate stress tolerance in colletotrichum gloeosporioides. Aamar Mushtaq,Muhammad Tariq,Maqsood Ahmed,Zongshan Zhou,Imran Ali,Raja Tahir Mahmood. 2021

[10]MdIPT8, an isopentenyl transferase enzyme, enhances the resistance of apple to Colletotrichum gloeosporioides infection. Jiajun Shi,Feng Zhang,Yufei Su,Qiu Jiang,Yuhong Yuan,Xiaolin Nie,Ying Zhou,Xinxu Zhang,Zhigang Wang,Feng Wang,Yue Ma. 2022

[11]Rapid detection of the E198A mutation of carbendazim-resistant isolates in Colletotrichum gloeosporioides by loop-mediated isothermal amplification. Hongbo Yuan,Hui Hou,Zengqiang Zhou,Hongtao Tu,Li Wang. 2022

[12]The cytochrome P450 gene, MdCYP716B1, is involved in regulating plant growth and anthracnose resistance in apple. Jiajun Shi,Feng Zhang,Yangshu Wang,Shuyuan Zhang,Feng Wang,Yue Ma. 2023

[13]Ectopic and transient expression of VvDIR4 gene in Arabidopsis and grapes enhances resistance to anthracnose via affecting hormone signaling pathways and lignin production. Qimeng Zhang,Ning Luo,Xicheng Dai,Jinhui Lin,Bilal Ahmad,Qingxi Chen,Yan Lei,Zhifeng Wen. 2024

[14]Expression Analysis of Trihelix Transcription Factor Family in Strawberries and Functional Characterization of FvTrihelix6. Fan, Jianshuai,Jiang, Fan,Sun, Hongyuan,He, Tiannan,Liu, Yuhan,Jiao, Gaozhen,Ahmad, Bilal,Bokhari, Syeda Anum Masood,Chen, Qingxi,Wen, Zhifeng. 2023

[15]Detached leaf assay-based screening of anthracnose resistant wild strawberry genotypes. Shi, Yaqian,Shen, Yaru,Bai, Jinhui,Ahmad, Bilal,Rahman, Mati Ur,Chen, Qingxi,Wen, Zhifeng. 2024

[16]MdCDPK24 Encoding Calcium-Dependent Protein Kinase Enhances Apple Resistance to Colletotrichum gloeosporioides. Shi, Jiajun,Ma, Yuxin,Wang, Dajiang,Wang, Feng. 2025

作者其他论文 更多>>