Proteomic analysis of conidia germination in Colletotrichum acutatum.

Arch Microbiol

Microbiology Laboratory, Wine and Grapewine Research Institute, Faculty of Marine and Environmental Sciences, University of Cádiz, Pol. Río San Pedro s/n, Puerto Real, 11510 Cádiz, Spain.

Published: April 2013

AI Article Synopsis

  • Colletotrichum acutatum is a fungus that causes anthracnose in important fruit crops, like strawberries, with its conidia being crucial for infection and propagation.
  • This study is the first to examine the proteomic profiles of ungerminated and germinated conidia, identifying 365 proteins that play key roles in pathogenesis and other biological processes.
  • The findings enhance our understanding of the molecular mechanisms behind conidial germination and set the stage for further research on fungal biology and life cycles.

Article Abstract

Colletotrichum acutatum is an important phytopathogenic fungus causing anthracnose in commercially important fruit crops, such as strawberry. The conidia produced by the fungus are survival structures which play a key role in host infection and fungal propagation. Despite its relevance to the fungal life cycle, conidial biology has not been extensively investigated. Here, we provide the first proteomic description of the conidial germination in C. acutatum by comparing the proteomic profiles of ungerminated and germinated conidia. Using two-dimensional electrophoresis combined with MALDI-TOF/TOF mass spectrometry, we have identified 365 proteins in 354 spots, which represent 245 unique proteins, including some proteins with key functions in pathogenesis. All these proteins have been classified according to their molecular function and their involvement in biological processes, including cellular energy production, oxidative metabolism, stress, fatty acid synthesis, protein synthesis, and folding. This report constitutes the first comprehensive study of protein expression during the early stage of the C. acutatum conidial germination. It advances our understanding of the molecular mechanisms involved in the conidial germination process, and provides a useful basis for the further characterization of proteins involved in fungal biology and fungus life cycles.

Download full-text PDF

Source
http://dx.doi.org/10.1007/s00203-013-0871-0DOI Listing

Publication Analysis

Top Keywords

conidial germination
12
colletotrichum acutatum
8
proteins
5
proteomic analysis
4
analysis conidia
4
germination
4
conidia germination
4
germination colletotrichum
4
acutatum
4
acutatum colletotrichum
4

Similar Publications

A search for antifungal compounds from the mushroom using a bioassay-guided chromatographic fractionation approach led to the discovery of a novel polyketide harboring a rare 3,3a,9,9a-tetrahydro-1-furo[3,4-]chromen-1-one skeleton. The novel compound was named coprinolide. The inhibitory activity and fungicidal potential of coprinolide were evaluated against five economically important plant-pathogenic fungi.

View Article and Find Full Text PDF

Background: The entomopathogenic fungus Beauveria bassiana has been widely used for pest biocontrol with conidia serving as the main active agents. Conidial yield and quality are two important characteristics in fungal conidia development, however, the regulatory mechanisms that orchestrate conidial formation and development are not well understood.

Results: In this study, we identified a ZnCys transcription factor BbCDR1 that inhibits conidial production while promoting conidial maturation.

View Article and Find Full Text PDF

The Effect of Temperature over the Growth and Biofilm Formation of the Thermotolerant .

J Fungi (Basel)

January 2025

Departamento de Microbiología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Prol. Carpio y Plan de Ayala s/n Col. Casco de Santo Tomás, Alcaldia Miguel Hidalgo, Mexico City C.P. 11340, Mexico.

is a medically relevant fungus, particularly in tropical regions. Although its aflatoxin production and thermotolerance are well documented, its biofilm-forming ability has received less attention, despite being a key factor in the virulence of as an opportunistic pathogen, which can significantly impact therapeutic outcomes. To investigate the influence of temperature on the growth and biofilm formation of an isolate, we compared it on solid media with the reference strain ATCC 22546 and documented morphological changes during conidial germination.

View Article and Find Full Text PDF

Tropical fruit-derived Lactiplantibacillus as potential probiotic and antifungal agents against Fusarium oxysporum.

Sci Rep

January 2025

Molecular Mycotoxicology Lab, Department of Studies in Microbiology, University of Mysore, Manasagangotri, Mysuru, 570 006, India.

Fifty-five lactic acid bacteria (LAB) were isolated from seven selected tropical fruits, with Solanum nigrum exhibiting the highest LAB prevalence and Couroupita guianenis and Musa fruits showing the lowest counts. Two strains isolated from Ficus racemosa demonstrated significant antifungal activity against Fusarium oxysporum. 16S rDNA sequencing identified these strains as Lactiplantibacillus plantarum MYSVCF3 and Lpb.

View Article and Find Full Text PDF

Background: Tobacco brown spot (TBS) caused by Alternaria alternata is one of the most common diseases of tobacco in China, resulting in large loss in yield and quality. Demethylation inhibitors (DMIs) such as tebuconazole are commonly used pesticides to control TBS. However, their control effect has shown a downward trend in recent years.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!