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Published on: October 20, 2020
Proteomics of survival structures of fungal pathogens
Dmitry Loginov1, Marek Šebela1
1Department of Protein Biochemistry and Proteomics, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University, Šlechtitelů 27, CZ-783 71 Olomouc, Czech Republic.
Abstract:
Fungal pathogens are causal agents of numerous human, animal, and plant diseases. They employ various infection modes to overcome host defense systems. Infection mechanisms of different fungi have been subjected to many comprehensive studies. These investigations have been facilitated by the development of various '-omics' techniques, and proteomics has one of the leading roles in this regard. Fungal conidia and sclerotia could be considered the most important structures for pathogenesis as their germination is one of the first steps towards a host infection. They represent interesting objects for proteomic studies because of the presence of unique proteins with unexplored biotechnological potential required for pathogen viability, development and the subsequent host infection. Proteomic peculiarities of survival structures of different fungi, including those of biotechnological significance (e.g., Asperillus fumigatus, A. nidulans, Metarhizium anisopliae), in a dormant state, as well as changes in the protein production during early stages of fungal development are the subjects of the present review. We focused on biological aspects of proteomic studies of fungal survival structures rather than on an evaluation of proteomic approaches. For that reason, proteins that have been identified in this context are discussed from the point of view of their involvement in different biological processes and possible functions assigned to them. This is the first review paper summarizing recent advances in proteomics of fungal survival structures.
Insights
This review explores fungal survival structures, such as conidia and sclerotia, using proteomics. It highlights unique proteins essential for fungal pathogenesis and biotechnological applications.
Area of Science:
- Mycology
- Proteomics
- Biotechnology
Background:
- Fungal pathogens cause significant diseases in humans, animals, and plants.
- Fungal infection mechanisms are complex and involve overcoming host defenses.
- Proteomics has become crucial for understanding fungal pathogenesis.
Purpose of the Study:
- To review recent advances in the proteomics of fungal survival structures.
- To focus on the biological roles of proteins within these structures.
- To identify proteins with potential biotechnological applications.
Main Methods:
- Proteomic analysis of fungal conidia and sclerotia.
- Investigation of protein expression in dormant and developing fungal structures.
- Discussion of identified proteins' biological functions.
Main Results:
- Survival structures like conidia and sclerotia are key to fungal pathogenesis.
- Proteomic studies reveal unique proteins critical for fungal viability and host infection.
- Proteins in dormant structures have unexplored biotechnological potential.
Conclusions:
- Proteomics offers deep insights into fungal survival strategies.
- Understanding these proteins can lead to novel disease control methods.
- Further research into fungal survival structure proteomics holds significant biotechnological promise.
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