Publications by authors named "Jeremy Berthelier"

In plants, epitranscriptomic mark N6-adenine methylation (m6A) is dynamically regulated in response to environmental cues. However, little is known about m6A dynamics under biotic stresses and their role in environmental adaptation. Additionally, current methodologies limit the investigation of m6A dynamics at single-nucleotide resolution on specific RNA molecules.

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Article Synopsis
  • Transposable elements (TEs) found in both intergenic and intragenic regions of plant genomes can regulate associated genes and create combined TE-gene transcripts.
  • Using long-read RNA sequencing and a specialized bioinformatics tool named ParasiTE, researchers studied these TE-gene transcripts in Arabidopsis thaliana, revealing widespread production across many gene locations.
  • The study highlights how the epigenetic state of intragenic TEs influences gene expression, transcript variety, and plant responses to environmental changes, enhancing our understanding of mRNA regulation in plants.
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Microalgal domestication is an expanding research field that aims to multiply and accelerate the potential of microalgae for various biotechnological purposes. We investigated the stability of improved lipid traits and genetic changes of a domesticated strain of the haptophyte Tisochrysis lutea, TisoS2M2, previously obtained by a mutation-selection improvement program. After 7 years of maintenance, TisoS2M2 still displayed improved lipid traits compared with the native strain, demonstrating that a mutation-selection improvement program is suitable for obtaining a domesticated strain with stable, improved phenotype over time.

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Background: Transposable elements (TEs) are mobile DNA sequences known as drivers of genome evolution. Their impacts have been widely studied in animals, plants and insects, but little is known about them in microalgae. In a previous study, we compared the genetic polymorphisms between strains of the haptophyte microalga Tisochrysis lutea and suggested the involvement of active autonomous TEs in their genome evolution.

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