At Least Two Origins of Fungicide Resistance in Grapevine Downy Mildew Populations
- 15 August 2007
- journal article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 73 (16) , 5162-5172
- https://doi.org/10.1128/aem.00507-07
Abstract
Quinone outside inhibiting (QoI) fungicides represent one of the most widely used groups of fungicides used to control agriculturally important fungal pathogens. They inhibit the cytochrome bc 1 complex of mitochondrial respiration. Soon after their introduction onto the market in 1996, QoI fungicide-resistant isolates were detected in field plant pathogen populations of a large range of species. However, there is still little understanding of the processes driving the development of QoI fungicide resistance in plant pathogens. In particular, it is unknown whether fungicide resistance occurs independently in isolated populations or if it appears once and then spreads globally by migration. Here, we provide the first case study of the evolutionary processes that lead to the emergence of QoI fungicide resistance in the plant pathogen Plasmopara viticola . Sequence analysis of the complete cytochrome b gene showed that all resistant isolates carried a mutation resulting in the replacement of glycine by alanine at codon 143 (G143A). Phylogenetic analysis of a large mitochondrial DNA fragment including the cytochrome b gene (2,281 bp) across a wide range of European P. viticola isolates allowed the detection of four major haplotypes belonging to two distinct clades, each of which contains a different QoI fungicide resistance allele. This is the first demonstration that a selected substitution conferring resistance to a fungicide has occurred several times in a plant-pathogen system. Finally, a high population structure was found when the frequency of QoI fungicide resistance haplotypes was assessed in 17 French vineyards, indicating that pathogen populations might be under strong directional selection for local adaptation to fungicide pressure.Keywords
This publication has 56 references indexed in Scilit:
- The Population Biology of Mitochondrial DNA and Its Phylogenetic ImplicationsAnnual Review of Ecology, Evolution, and Systematics, 2005
- Importance of secondary inoculum of Plasmopara viticola to epidemics of grapevine downy mildewPlant Pathology, 2005
- Effect of the F129L Mutation in Alternaria solani on Fungicides Affecting Mitochondrial RespirationPlant Disease, 2005
- The Mitochondrial Genome of Saprolegnia ferax: Organization, Gene Content and Nucleotide SequenceMycologia, 2004
- Genetic Structure of a Plasmopara viticola Population in an Isolated Italian Mountain VineyardJournal of Phytopathology, 2003
- Distribution of Baseline Sensitivities to Azoxystrobin Among Isolates of Plasmopara viticolaPlant Disease, 2000
- Mode of action of famoxadonePesticide Science, 1999
- Worldwide migration of amplified insecticide resistance genes in mosquitoesNature, 1991
- A Stochastic Model for the Initial Occurrence and Development of Fungicide Resistance in Plant Pathogen PopulationsPhytopathology®, 1990
- Oudemansin, strobilurin A, strobilurin B and myxothiazol: new inhibitors of the bc1 segment of the respiratory chain with an E‐β‐methoxyacrylate system as common structural elementFEBS Letters, 1981