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Keller Lab

@kellerlab.bsky.social
144 followers 103 following 8 posts

Updates from the Nancy Keller Lab at the University of Wisconsin-Madison Fungal genetics, genomics, and secondary metabolism. 🍄 Managed by grad students Website: sites.google.com/view/kellerlabuw/k…

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Genetics Society of America @genetics-gsa.bsky.social · 07/09/2026
The field of fungal secondary metabolism is expanding as genomics, metabolomics, and computational methods make it easier to expose the chemicals encoded in fungal genomes. In #GENETICS, @kellerlab.bsky.social describes her journey into the world of #fungi 🍄 #Fungal2026 🔗 buff.ly/q979vtf
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Reposted by Keller Lab
garimasingh-gs.bsky.social @garimasingh-gs.bsky.social · 24/06/2026
🍄 New study on #fungal #isocyanide synthases (#ICSs)! With @grantnickles.bsky.social @kellerlab.bsky.social (Uni. Wisconsin-Madison) @currentbiology.bsky.social @unipd.bsky.social Thanks all for the great teamwork! doi.org/10.1016/j.cub.… #Lichens #SecondaryMetabolism #biosyntheticGenes #fungi
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Keller Lab @kellerlab.bsky.social · 05/06/2026
Recently, Dr. Keller was featured on the podcast "The Life Lab by Death Clock," where she discussed molds and mycotoxins, and their impacts on the food supply chain. Curious? Listen here: Spotify (urldefense.com/v3/__https:/...) Apple Podcasts (podcasts.apple.com/us/podcast/d...)
podcasts.apple.com
Dr. Nancy Keller on Mold and Mycotoxins
Podcast Episode · The Life Lab by Death Clock · May 29 · 42m
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Laura Fabre @laurafabre.bsky.social · 31/05/2026
Especially happy to be finishing this project, it taught me so much. doi.org/10.64898/202... Thanks for the journey, @ameliabarberphd.bsky.social and @kellerlab.bsky.social!
doi.org
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Amelia Barber @ameliabarberphd.bsky.social · 31/05/2026
New preprint day!! @laurafabre.bsky.social took 1k RNAseq samples and built an atlas of lncRNAs across four Aspergillus species, expanding the gene content of each by up to 20% and discovering a novel modulator of aflatoxin production. w/ @kellerlab.bsky.social.
doi.org
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CanFunNet @canfunnet.bsky.social · 06/05/2026
Meet Nancy Keller, one of our plenary speakers! Dr. Keller's research focuses on the discovery of secondary metabolite synthases and their chemical products and the intrinsic development of antifungal resistance in Aspergillus pathogens. Register today for #CFN25 to hear more from Dr. Keller.
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Keller Lab @kellerlab.bsky.social · 10/04/2026
Remember: All mushrooms are edible, but some are edible only once! 🍄 Our lab's research made it into @hankgreen.bsky.social and @scishow.bsky.social 's latest video on the death cap! Watch it here: www.youtube.com/watch?v=PNL_...
youtube.com
The World's Deadliest Mushroom is Getting Deadlier
YouTube video by SciShow
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Reposted by Keller Lab
Dante James @dante-james.bsky.social · 09/04/2026
So amazing when my morning show/internet role model cites work from my lab! youtu.be/PNL_C3j1C2A?...
youtu.be
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Keller Lab @kellerlab.bsky.social · 18/02/2026
☠️🍄The world's deadliest mushroom has been hiding a secondary metabolite secret! The Keller, Drott & Pringle Labs just published in @pnas.org: leaderless RiPPs, a peptide class never before seen in fungi, found in Amanita phalloides and linked to its Californian invasion. www.pnas.org/doi/10.1073/...
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Sushmita Roy @sroyyors.bsky.social · 13/01/2026
Very happy to see this published: doi.org/10.1093/nar/...: a GRN-based approach to predict regulatory subnetworks for developmental and pathogenic processes in Aspergillus fumigatus and GRAsp: a network viz tool: grasp.wid.wisc.edu with @jeanmichelane.bsky.social and Nancy Keller labs!
doi.org
A network-based model of Aspergillus fumigatus elucidates regulators of development and defensive natural products of an opportunistic pathogen
Abstract. Aspergillus fumigatus is a notorious pathogenic fungus responsible for various harmful, sometimes lethal, diseases known as aspergilloses. Unders
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Keller Lab @kellerlab.bsky.social · 08/01/2026
We are excited to announce the publication of GRAsp, a gene regulatory network prediction tool for A. fumigatus in collaboration with @sroyyors.bsky.social and @jeanmichelane.bsky.social in Nucleic Acid Reports! This tool can be found on our lab website or at grasp.wid.wisc.edu.
academic.oup.com
A network-based model of Aspergillus fumigatus elucidates regulators of development and defensive natural products of an opportunistic pathogen
Abstract. Aspergillus fumigatus is a notorious pathogenic fungus responsible for various harmful, sometimes lethal, diseases known as aspergilloses. Unders
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Reposted by Keller Lab
Jean-Michel Ané @jeanmichelane.bsky.social · 08/01/2026
Latest paper from our lab in collaboration with @sroyyors.bsky.social and Nancy Keller. Most notably for me, we describe here the first fungal gene required for responses to LCOs (Nod factors) in the fungus Aspergillus fumigatus. More to come on this topic later!
sco.lt
network-based model of Aspergillus fumigatus elucidates regulators of development and defensive natural products of an opportunistic pathogen
Aspergillus fumigatus is a notorious pathogenic fungus responsible for various harmful, sometimes lethal, diseases known as aspergilloses. Understanding the gene regulatory networks that specify the expression programs underlying this fungus’ diverse phenotypes can shed mechanistic insight into its growth, development, and determinants of pathogenicity. We used eighteen publicly available RNA-seq datasets of Aspergillus fumigatus to construct a comprehensive gene regulatory network resource. Our resource, named GRAsp (Gene Regulation of Aspergillus fumigatus), was able to recapitulate known regulatory pathways such as response to hypoxia, iron and zinc homeostasis, and secondary metabolite synthesis. Further, GRAsp was experimentally validated in two cases: one in which GRAsp accurately identified an uncharacterized transcription factor negatively regulating the production of the virulence factor gliotoxin and another where GRAsp revealed the bZip protein, AtfA, as required for fungal responses to microbial signals known as lipo-chitooligosaccharides. Our work showcases the strength of using network-based approaches to generate new hypotheses about regulatory relationships in Aspergillus fumigatus. We also unveil an online, user-friendly version of GRAsp available to the Aspergillus research community.
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Reposted by Keller Lab
Anna Lehmann @aelehmann.bsky.social · 04/10/2025
Excited to share our new preprint in collaboration with @kellerlab.bsky.social! We identified unstable aneuploidy in Aspergillus fumigatus and explore how aneuploidy-mediated transcriptional and metabolic changes influence antifungal resistance. www.biorxiv.org/content/10.1...
biorxiv.org
Whole-chromosome duplications drive antimicrobial resistance in Aspergillus fumigatus
Aneuploidy causes genome plasticity and enables adaptive responses that confer drug resistance in eukaryotes ranging from fungal pathogens to human cancer cells. Aspergillus fumigatus is a soil-reside...
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Ákos T Kovács @evolvedbiofilm.bsky.social · 14/09/2025
Long-term monitoring of a North American cheese cave reveals mechanisms and consequences of fungal adaptation Penicillium solitum over 8 years in a cheese cave => green-to-white shift @currentbiology.bsky.social from @benwolfe.bsky.social with @kellerlab.bsky.social www.cell.com/current-biol...
cell.com
Long-term monitoring of a North American cheese cave reveals mechanisms and consequences of fungal adaptation
Using a unique longitudinal sampling approach, Louw et al. demonstrate how a cheese-associated Penicillium population has adapted in an artisan cheese production facility in Vermont, USA. Adaptation i...
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Keller Lab @kellerlab.bsky.social · 16/04/2025
New publication with the Huttenlocher Lab! Led by PhD candidate Nayanna Mercado Soto, we used zebrafish to study burn wound infections with Candida albicans & Aspergillus fumigatus, showing the innate immune response is highly conserved across fungal species. #fungi journals.asm.org/doi/10.1128/...
journals.asm.org
Larval zebrafish burn wound infection model reveals conserved innate immune responses against diverse pathogenic fungi | mBio
Secondary fungal infections within burn wound injuries are a significant problem that delays wound healing and increases the risk of patient mortality. Currently, little is known about how fungi colon...
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