Publications by authors named "Mathilda Walch"

Article Synopsis
  • During the avian influenza outbreaks in France (2020/21 and 2021/22), the virus spread rapidly, leading to the slaughter of millions of birds as the only control method.
  • Researchers developed a MinION sequencing workflow to quickly analyze the genetic makeup of avian influenza strains, focusing on the hemagglutinin gene and the entire virus genome.
  • By sequencing 30 field samples and conducting phylogenetic analysis, they discovered connections between different outbreaks, indicating this method's potential for real-time monitoring and management of future viral outbreaks.
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Horizontal gene transfer was long thought to be marginal in Mollicutes, but the capacity of some of these wall-less bacteria to exchange large chromosomal regions has been recently documented. Mycoplasma chromosomal transfer (MCT) is an unconventional mechanism that relies on the presence of a functional integrative conjugative element (ICE) in at least one partner and involves the horizontal acquisition of small and large chromosomal fragments from any part of the donor genome, which results in progenies composed of an infinite variety of mosaic genomes. The present study focuses on Mycoplasma bovis, an important pathogen of cattle responsible for major economic losses worldwide.

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Severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) is responsible for COVID-19 and spread rapidly following its emergence in Wuhan in 2019. Although cats are, among other domestic animals, susceptible to SARS-CoV-2 infection, little is known about their epidemiological role in the dynamics of a household infection. In this study, we monitored five cats for viral shedding daily.

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A complex network of pathways coordinates nodulation and epidermal root hair infection in the symbiotic interaction between rhizobia and legume plants. Whereas nodule formation was known to be autoregulated, it was so far unclear whether a similar control is exerted on the infection process. We assessed the capacity of Medicago plants nodulated by Sinorhizobium meliloti to modulate root susceptibility to secondary bacterial infection or to purified Nod factors in split-root and volatile assays using bacterial and plant mutant combinations.

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