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Oppliger, B.

Publications and source records attributed to Oppliger, B..

2 recordsLinked to original sources

Rapid replacement of established by exotic genetic lineages of the fungal maize pathogen Exserohilum turcicum in the Swiss Rhine valley

The fungal maize pathogen Exserohilum turcicum, the causative agent of Northern Corn Leaf Blight (NCLB) was introduced to Europe in the late 19th century, E. turcicum where it rapidly expanded. It persisted in four major clonal lineages and multiple physiological races, defined by their interactions with maize disease resistance genes. In a metagenomic survey of natural infections on the susceptible traditional landrace Rheintaler Ribelmais in the Swiss Rhine Valley during 2016 and 2017, we found that one of these clonal lineages ( Small clonal cluster) was dominant in the region. We repeated the surveys in subsequent years and applied a novel pooling strategy to facilitate large-scale sampling by combining ten infected leaves per sampling location. This approach increased sample throughput while reducing sequencing and laboratory costs. The new survey revealed in 2021 and 2022 a significant temporal shift in population structure of exotic genetic lineages from the tropical Kenyan cluster, which have become predominant. It indicates recent introduction and establishment of genetically diverse, tropical E. turcicum lineages into a temperate agricultural system, possibly facilitated by climate change and global seed exchange. Phyllobiome analyses of infected leaves showed that microbial community composition varied across years but remained largely consistent between maize variety types (landrace vs. hybrid). Overall, metagenomic pool sequencing of infected leaves proves to be a cost-effective, spatially resolved method for pathogen monitoring and provides useful evidence for the evolving epidemiology of E. turcicum, with implications for developing durable resistance in maize breeding programs.

plant biology↗

Regional Diversity and Leaf Microbiome Interactions of the Fungal Maize Pathogen Exserohilum turcicum in Switzerland: AMetagenomic Analysis

The spread and adaptation of fungal plant pathogens in agroecosystems are facilitated by environmental homogeneity. Metagenomic sequencing of infected tissues allows to monitor eco-evolutionary dynamics and interactions betwen host, pathogen and the plant microbiome. Exserohilum turcicum, the causal agent of northern corn leaf blight (NCLB) in maize, is distributed in multiple clonal lineages throughout Europe. To characterize regional pathogen diversity, we conducted metagenomic DNA sequencing on 241 infected leaf samples from the highly susceptible Swiss maize landrace Rheintaler Ribelmais, collected over three years (2016-2018) from an average of 14 agricultural farms within the Swiss Rhine Valley. All major European clonal lineages of E. turcicum were identified. Lineages differ by their mating types which indicates potential for sexual recombination and rapid evolution of new pathogen strains, although we found no evidence of recent recombination. The associated eukaryotic and prokaryotic leaf microbiome exhibited variation in taxonomic diversity between years and locations and is likely influenced by local weather conditions. A network analysis revealed distinct clusters of eukaryotic and prokaryotic taxa that correlates with the frequency of E. turcicum sequencing reads, suggesting causal interactions. Notably, the yeast genus Metschnikowia exhibited a strongly negative correlation, supporting its known potential as biological control agent against fungal pathogens. Our findings show that metagenomic sequencing is a useful tool for analyzing the role of environmental factors and potential pathogen-microbiome interactions in shaping pathogen dynamics and evolution, suggesting their potential for effective pathogen management strategies.

plant biology↗