AbaA regulates conidiogenesis in the ascomycete fungus Fusarium graminearum.

Bibliographic Details
Title: AbaA regulates conidiogenesis in the ascomycete fungus Fusarium graminearum.
Authors: Hokyoung Son, Myung-Gu Kim, Kyunghun Min, Young-Su Seo, Jae Yun Lim, Gyung Ja Choi, Jin-Cheol Kim, Suhn-Kee Chae, Yin-Won Lee
Source: PLoS ONE, Vol 8, Iss 9, p e72915 (2013)
Publisher Information: Public Library of Science (PLoS), 2013.
Publication Year: 2013
Collection: LCC:Medicine
LCC:Science
Subject Terms: Medicine, Science
More Details: Fusarium graminearum (teleomorph Gibberella zeae) is a prominent pathogen that infects major cereal crops such as wheat, barley, and maize. Both sexual (ascospores) and asexual (conidia) spores are produced in F. graminearum. Since conidia are responsible for secondary infection in disease development, our objective of the present study was to reveal the molecular mechanisms underlying conidiogenesis in F. graminearum based on the framework previously described in Aspergillus nidulans. In this study, we firstly identified and functionally characterized the ortholog of AbaA, which is involved in differentiation from vegetative hyphae to conidia and known to be absent in F. graminearum. Deletion of abaA did not affect vegetative growth, sexual development, or virulence, but conidium production was completely abolished and thin hyphae grew from abnormally shaped phialides in abaA deletion mutants. Overexpression of abaA resulted in pleiotropic defects such as impaired sexual and asexual development, retarded conidium germination, and reduced trichothecene production. AbaA localized to the nuclei of phialides and terminal cells of mature conidia. Successful interspecies complementation using A. nidulans AbaA and the conserved AbaA-WetA pathway demonstrated that the molecular mechanisms responsible for AbaA activity are conserved in F. graminearum as they are in A. nidulans. Results from RNA-sequencing analysis suggest that AbaA plays a pivotal role in conidiation by regulating cell cycle pathways and other conidiation-related genes. Thus, the conserved roles of the AbaA ortholog in both A. nidulans and F. graminearum give new insight into the genetics of conidiation in filamentous fungi.
Document Type: article
File Description: electronic resource
Language: English
ISSN: 1932-6203
Relation: http://europepmc.org/articles/PMC3769392?pdf=render; https://doaj.org/toc/1932-6203
DOI: 10.1371/journal.pone.0072915
Access URL: https://doaj.org/article/4237cfe071f741a681d401841bac223c
Accession Number: edsdoj.4237cfe071f741a681d401841bac223c
Database: Directory of Open Access Journals
More Details
ISSN:19326203
DOI:10.1371/journal.pone.0072915
Published in:PLoS ONE
Language:English