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  4. A highly multiplexed assay to monitor pathogenicity, fungicide resistance and gene flow in the fungal wheat pathogen Zymoseptoria tritici

A highly multiplexed assay to monitor pathogenicity, fungicide resistance and gene flow in the fungal wheat pathogen Zymoseptoria tritici

Author(s)
Bellah, Hadjer  
Faculté des sciences  
Gwilherm Gazeau
Sandrine Gélisse
Reda Amezrou
Thierry C. Marcel
Croll, Daniel  
Laboratoire de génétique évolutive  
Editor(s)
Angela Feechan
Date issued
2023
In
PLOS ONE
Vol
18
No
2
From page
1
To page
22
Abstract
<jats:p>Crop pathogens pose severe risks to global food production due to the rapid rise of resistance to pesticides and host resistance breakdowns. Predicting future risks requires monitoring tools to identify changes in the genetic composition of pathogen populations. Here we report the design of a microfluidics-based amplicon sequencing assay to multiplex 798 loci targeting virulence and fungicide resistance genes, and randomly selected genome-wide markers for the fungal pathogen <jats:italic>Zymoseptoria tritici</jats:italic>. The fungus causes one of the most devastating diseases on wheat showing rapid adaptation to fungicides and host resistance. We optimized the primer design by integrating polymorphism data from 632 genomes of the same species. To test the performance of the assay, we genotyped 192 samples in two replicates. Analysis of the short-read sequence data generated by the assay showed a fairly stable success rate across samples to amplify a large number of loci. The performance was consistent between samples originating from pure genomic DNA as well as material extracted directly from infected wheat leaves. In samples with mixed genotypes, we found that the assay recovers variations in allele frequencies. We also explored the potential of the amplicon assay to recover transposable element insertion polymorphism relevant for fungicide resistance. As a proof-of-concept, we show that the assay recovers the pathogen population structure across French wheat fields. Genomic monitoring of crop pathogens contributes to more sustainable crop protection and yields.</jats:p>
Publication type
journal article
Identifiers
https://libra.unine.ch/handle/20.500.14713/64984
DOI
10.1371/journal.pone.0281181
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journal.pone.0281181.pdf

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