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VmMon1-Ccz1 Complex Is Required for Conidiation, Autophagy, and Virulence in Valsa mali
Liangsheng Xu1, Xiaolong Zhang1, Dian Zheng1
1State Key Laboratory of Crop Stress Biology for Arid Areas, College of Plant Protection, Northwest A&F University, Yangling 712100, Shaanxi, China.
Abstract:
Apple Valsa canker caused by Valsa mali is a serious disease in eastern Asia, especially in China. In our previous proteomics study, monensin sensitivity 1 protein in Valsa mali (VmMon1) was identified to be significantly upregulated during V. mali infection. It was reported Mon1 protein formed a heterodimer called MC (Mon1-Ccz1) complex with caffeine, calcium, and zinc sensitivity 1 protein (Ccz1) in yeast. However, Ccz1 had not been identified in plant-pathogenic fungi such as Fusarium graminearum and Magnaporthe oryzae. Here, we identified a Ccz1 ortholog VmCcz1 in V. mali, by using DELTA-BLAST. The interaction of VmMon1 and VmCcz1 were verified using yeast two-hybrid assay, bimolecular fluorescence complementation, and co-immunoprecipitation assays. Further yeast three-hybrid screenings determined that VmRab7 (Ras-related protein in V. mali) interacted with the MC complex. Targeted gene deletion showed that the ∆VmMon1 and ∆VmCcz1 mutants were defective in vegetative growth, conidiation, and pathogenicity. In addition, both mutants were more sensitive to osmotic and oxidative stresses and intracellular protein transport inhibitors. Cytological examination revealed that the ∆VmMon1 and ∆VmCcz1 mutants were impaired in vacuole fusion and autophagy. More importantly, expression of pectinase genes decreased in both mutants compared with those of the wild type during infection. Overall, our study identified Mon1 and Ccz1 genes in V. mali and provided evidence that VmMon1 and VmCcz1 are critical components that modulate vacuole fusion and autophagy, thereby affecting the development, conidiation, and pathogenicity of V. mali. [Formula: see text] Copyright © 2022 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license.
Insights
This study identifies VmMon1 and VmCcz1 proteins in Valsa mali, revealing their crucial roles in vacuole fusion and autophagy. These proteins are essential for fungal development, conidiation, and pathogenicity, impacting apple Valsa canker disease.
Area of Science:
- Plant Pathology
- Mycology
- Molecular Biology
Background:
- Apple Valsa canker, caused by Valsa mali, is a significant agricultural disease.
- Previous research identified VmMon1 protein upregulated during V. mali infection.
- The Ccz1 protein, a partner of Mon1 in yeast, was not previously identified in plant-pathogenic fungi.
Purpose of the Study:
- To identify and characterize the Ccz1 ortholog in Valsa mali.
- To investigate the interaction between VmMon1 and VmCcz1.
- To determine the roles of VmMon1 and VmCcz1 in V. mali development and pathogenicity.
Main Methods:
- DELTA-BLAST for gene identification.
- Yeast two-hybrid, bimolecular fluorescence complementation, and co-immunoprecipitation assays for protein interactions.
- Targeted gene deletion and phenotypic analysis (growth, conidiation, pathogenicity, stress sensitivity).
- Cytological examination of vacuole fusion and autophagy.
Main Results:
- VmCcz1 was identified as a V. mali ortholog of yeast Ccz1.
- VmMon1 and VmCcz1 interact and form a complex with VmRab7.
- Deletion mutants (∆VmMon1, ∆VmCcz1) exhibit defects in growth, conidiation, pathogenicity, and stress tolerance.
- Mutants show impaired vacuole fusion and autophagy, with reduced pectinase gene expression during infection.
Conclusions:
- VmMon1 and VmCcz1 are essential for Valsa mali.
- These proteins regulate vacuole fusion and autophagy, impacting fungal development and virulence.
- The VmMon1-VmCcz1 complex is a potential target for controlling apple Valsa canker.
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