Noah Busch
noahbsc.bsky.social
Noah Busch
@noahbsc.bsky.social
@ceplas.bsky.social PhD student working on a joined project in the labs of @teamthomma.bsky.social and @tonnigrubeandersen.bsky.social
Interested in plant-microbe interactions 🍄‍🟫🌱
Reposted by Noah Busch
📣New year, new preprint @biorxiv-microbiol.bsky.social 🎉! A study led by the brilliant @yukiyosato.bsky.social showing that Starship giant transposons dominate plastic genomic regions in the fungal plant pathogen Verticillium dahliae and drive virulence evolution. 🧵[1/12] doi.org/10.1101/2025...
Starship giant transposons dominate plastic genomic regions in a fungal plant pathogen and drive virulence evolution
Starships form a recently discovered superfamily of giant transposons in Pezizomycotina fungi, implicated in mediating horizontal transfer of diverse cargo genes between fungal genomes. Their elusive nature has long obscured their significance, and their impact on genome evolution remains poorly understood. Here, we reveal a surprising abundance and diversity of Starships in the phytopathogenic fungus Verticillium dahliae. Remarkably, Starships dominate the plastic genomic compartments involved in host colonization, are enriched in virulence-associated genes, and exhibit genetic and epigenetic characteristics associated with adaptive genome evolution. We further uncover extensive horizontal transfer of Starships between Verticillium species and, strikingly, from distantly related Fusarium fungi. Finally, we demonstrate how Starship activity facilitated the de novo formation of a novel virulence gene. Our findings illuminate the profound influence of Starship dynamics on fungal genome evolution and the development of virulence. ### Competing Interest Statement The authors have declared no competing interest.
doi.org
January 10, 2025 at 2:23 PM
Reposted by Noah Busch
Here we show by single-nucleus RNA sequencing of Moricandia arvensis reveals bundle sheath cell-specific expression of photorespiration genes and associated pathways beyond glycine decarboxylase, including ammonium
assimilation and redox regulation.

www.biorxiv.org/content/10.1...
December 3, 2024 at 4:56 PM