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Published on: June 27, 2013
Expression and localization of tubulin isotypes and its mRNAs during Thecaphora frezii developments
Ana Cristina Figueroa1, María Soledad Díaz1, Roxana Valeria Alasino1,2
1Centro de Excelencia en Productos y Procesos de Córdoba - CEPROCOR- Complejo Hospitalario Santa María de Punilla X6154, Córdoba, Argentina.
Abstract:
Thecaphora frezii is a phytopathogenic fungus that infects Arachys hypogaea L. and produces peanut smut. It has three ontological stages teliospores, basidiospores, and hyphae. Microtubules are cellular structures that participate in various important cellular processes. In this work, we analyzed the presence and location of α-tubulin isotypes and enzymes that participate in tyrosination-detyrosination in the three stages of T. frezii. Although both tyrosinated and detyrosinated tubulin seem to be associated with a membrane fraction component that gives it a similar behavior to integral proteins, in the soluble cytosolic fraction, only detyrosinated tubulin was detected, not tyrosinated tubulin. The presence of α-tubulin was not detected using the monoclonal antibody DM1A as neither acetylated tubulin. The RNA-Seq analysis showed the presence of α, β, and γ-tubulins and the genes that codes for tyrosine-tubulin ligase and cytosolic carboxypeptidase 1, enzymes that are involved in post-translational modification processes. These sequences showed a high percentage of identity and homology with Ustilago maydis, Thecaphora thlaspeos, and Anthracocystis flocculosa. This is the first report for tubulins subpopulations and the cellular distribution in T. frezii, which together with the data obtained by RNA-Seq contribute to the knowledge of the pathogen, which will allow the development of control strategies.
Insights
This study investigates tubulin proteins and their modifications in peanut smut fungus, Thecaphora frezii. Researchers identified key tubulin types and related enzymes, aiding in developing new control strategies for this plant pathogen.
Area of Science:
- Mycology
- Cell Biology
- Plant Pathology
Background:
- Thecaphora frezii causes peanut smut, impacting Arachis hypogaea L. cultivation.
- Microtubules, composed of tubulin, are crucial for cellular functions.
- Understanding tubulin dynamics is vital for pathogen control.
Purpose of the Study:
- To analyze α-tubulin isotypes and tyrosination-detyrosination enzymes in T. frezii.
- To determine the cellular distribution of these components across different fungal stages.
- To identify potential targets for managing peanut smut.
Main Methods:
- Immunoblotting to detect tubulin and related enzymes.
- Fractionation of cellular components (membrane and soluble cytosolic).
- RNA-Sequencing (RNA-Seq) for gene expression analysis.
Main Results:
- Detyrosinated tubulin was found in the soluble cytosolic fraction; tyrosinated tubulin was not.
- Both tubulin forms associated with a membrane fraction.
- RNA-Seq confirmed α, β, and γ-tubulins and key modifying enzymes, with high homology to related fungi.
Conclusions:
- This is the first report on tubulin subpopulations and their distribution in T. frezii.
- The findings provide insights into the pathogen's cellular biology.
- This knowledge can inform the development of targeted control strategies against peanut smut.
Related Concept Videos
Microtubule Formation
Regulated mRNA Transport
Microtubule Associated Proteins (MAPs)

