4.5 Article

New Reference Genes for qRT-PCR Analysis as a Potential Target for Identification of Trichophyton verrucosum in Different Culture Conditions

期刊

PATHOGENS
卷 10, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/pathogens10111361

关键词

qRT-PCR technique; housekeeping genes; Trichophyton verrucosum; gene expression

资金

  1. Kosciuszko Foundation
  2. The American Centre of Polish Culture

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This study examined the suitability of six candidate reference genes for gene expression analysis in the dermatophyte Trichophyton verrucosum cultured in different mycological media. SDHA was identified as the most stable housekeeping gene for future qRT-PCR studies on T. verrucosum strains, suggesting it as an additional good candidate for identification targets in the qRT-PCR technique.
Dermatophytes are a group of filamentous fungi infecting skin, hair, and nails that raise great diagnostic difficulties. qRT-PCR is a reliable technique for quantifying gene expression with increasingly frequent use in mycological diagnostics. Knowledge of genes and molecular markers with potential to be used in the identification of dermatophytes is of great importance for the development of this branch of diagnostics. In this article, the suitability of six candidate reference genes (TUBB, ACTB, ADPRF, RPL2, SDHA, and EEF1A1) was investigated for gene expression analysis in the dermatophyte Trichophyton verrucosum, which was cultured in various mycological media that are commonly used in a diagnostic laboratory, i.e., Sabouraud, potato dextrose, and keratin-supplemented MM-Cove. The different culture conditions are extremely important factors for the growth and physiology of dermatophytes. Gene expression stability was evaluated using geNorm, NormFinder, BestKeeper, and RefFinder algorithms. Regarding the stability of expression, SDHA was the most stable housekeeping gene; hence, this gene is recommended for future qRT-PCR studies on T. verrucosum strains. These results allow us to conclude that the SDHA gene can be an additional good candidate as an identification target in the qRT-PCR technique.

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