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Plant Defensins NaD1 and NaD2 Induce Different Stress Response Pathways in Fungi

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posted on 2023-03-30, 00:44 authored by Peter DracatosPeter Dracatos, J Payne, A Di Pietro, Marilyn AndersonMarilyn Anderson, Kim PlummerKim Plummer
Nicotiana alata defensins 1 and 2 (NaD1 and NaD2) are plant defensins from the ornamental tobacco that have antifungal activity against a variety of fungal pathogens. Some plant defensins interact with fungal cell wall O-glycosylated proteins. Therefore, we investigated if this was the case for NaD1 and NaD2, by assessing the sensitivity of the three Aspergillus nidulans (An) O-mannosyltransferase (pmt) knockout (KO) mutants (AnΔpmtA, AnΔpmtB, and AnΔpmtC). AnΔpmtA was resistant to both defensins, while AnΔpmtC was resistant to NaD2 only, suggesting NaD1 and NaD2 are unlikely to have a general interaction with O-linked side chains. Further evidence of this difference in the antifungal mechanism was provided by the dissimilarity of the NaD1 and NaD2 sensitivities of the Fusarium oxysporum f. sp. lycopersici (Fol) signalling knockout mutants from the cell wall integrity (CWI) and high osmolarity glycerol (HOG) mitogen-activated protein kinase (MAPK) pathways. HOG pathway mutants were sensitive to both NaD1 and NaD2, while CWI pathway mutants only displayed sensitivity to NaD2.

Funding

Australian Research Council grant, DP120102694 to Marilyn Anderson and Kim Plummer.

History

Publication Date

2016-09-03

Journal

International Journal of Molecular Sciences

Volume

17

Issue

9

Article Number

1473

Pagination

8p.

Publisher

MDPI

ISSN

1422-0067

Rights Statement

© 2016 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).