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Linda Horianopoulos

@linder-surprise.bsky.social
635 followers 713 following 106 posts

Assistant professor in the Department of Food Science at the University of Guelph How can we harness the diversity of metabolism and other characteristics of yeasts for food applications? yeastlab.mystrikingly.com

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Reposted by Linda Horianopoulos
University of Guelph @uofguelph.bsky.social · 27/08/2026
Backed by $8M in federal funding, Dr. Chris Todd Hittinger will be the new Eddie Goldenberg Research Chair of Canada in Biodiscovery, Biodesign and Bioproduction at #UofG as part of the Canada Global Impact+ Research Talent Initiative. His appointment begins on July 1, 2027: uoguel.ph/3nw8s
Dr. Chris Todd Hittinger stands against a dark background, smiling slightly at the camera.
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Reposted by Linda Horianopoulos
MichaelMcMurray lab @mcmurraylab.bsky.social · 14/08/2026
A reminder to budding yeast researchers: if you use the "GAPDH" promoter to drive constitutive expression, please be careful about how you describe this. The gene GPD1 encodes glycerol-3-phosphate dehydrogenase, not Glyceraldehyde-3-phosphate dehydrogenase. The TDH3 promoter is probably what you use
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Anna Meier @annameier.bsky.social · 09/08/2026
If you have so much work to do that you feel you need AI in order to get it all done: you don't. You need a union.
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Linda Horianopoulos @linder-surprise.bsky.social · 05/08/2026
Kicking of #CanFunNet26 today!🍁🍄 canfunnet.conferences.uwo.ca Be sure to check out lab members Adrian Ciemniecki and Laura Delage who will both be speaking in Fungal Genetics and Genomics II today!
canfunnet.conferences.uwo.ca
CanFunNet Conference | 6th Annual CanFunNet Fungal Biology Conference
This year, we are excited to go west for the first time with CanFunNet for a virtual meeting hosted by the University of Alberta in Edmonton. Continuing in the footsteps of previous meetings, our prog...
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Reposted by Linda Horianopoulos
One Health U of Guelph @onehealthuofg.bsky.social · 16/07/2026
FYI, @who.int published a new blueprint to help countries respond to the burden of fungal disease & antifungal resistance. The Blueprint prioritizes interventions under four interlinked domains and identifies 12 catalytic entry points to guide interventions: who.int/news/item/30...
who.int
New WHO report outlines critical steps to confront fungal disease and antifungal resistance
The World Health Organization (WHO) today published a new blueprint to help countries respond to the increasing burden of fungal disease and antifungal resistance – one of global health’s most underes...
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Reposted by Linda Horianopoulos
CanFunNet @canfunnet.bsky.social · 15/07/2026
Dear CanFunNet community, we will be hosting a workshop on science communication with experts in the field. You won't want to miss it!
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Reposted by Linda Horianopoulos
HittingerLab @hittingerlab.bsky.social · 14/07/2026
Our recent work with @linder-surprise.bsky.social and the @rokaslab.bsky.social has been featured as a research highlight on the Great Lakes Bioenergy Research Center (GLBRC) page: www.glbrc.org/research/hig...
glbrc.org
Trait syndrome links cell structure to metabolic efficiency across yeast subphylum
Researchers analyzed a dataset of glucose-induced extracellular acidification rates — as a proxy for glycolytic rates — and phenotypic variation across 282 species with Saccharomycotina to test whethe...
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Reposted by Linda Horianopoulos
Anna Schapiro @annaschapiro.bsky.social · 01/07/2026
PSA for trainees cold emailing with interest in joining a lab: Be careful about your use of LLMs in writing these emails!! It is now *extremely* common to get emails with a bizarrely-detailed, clearly-LLM take on a paper finding or with specific phrases pulled from the lab website. Don’t do this!
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Linda Horianopoulos @linder-surprise.bsky.social · 30/06/2026
Come join the Horianopoulos Lab! I am recruiting a graduate student to join my research group focused on the genetic determinants of yeast stress responses. How to apply: Email lhoriano@uoguelph.ca by July 15, 2026 with a CV and cover letter. Subject line: “Horianopoulos lab graduate position”
This project builds on our recent observations that pathogenic yeasts vary substantially in their in vitro susceptibility to external stress and aims to:
Characterize why this variation exists using comparative genomics and transcriptomics.
Identify strategies to sensitize pathogenic yeasts to host-like stress for antifungal therapy development.
Validate targets using genetic knockout or overexpression strategies.

What we’re looking for:
Curious and motivated student with a willingness to learn new things.
Experience in microbiology, molecular biology, genetics, and/or genomics is an asset.
Strong research ethics and the ability to work respectfully as part of a diverse team.

A bit about the Horianopoulos lab - see lab website (QR code) for more:
Interested in what makes yeast vary (macroevolution of yeasts).
Focused on identifying and manipulating the genetic determinants of yeast stress responses.
Located in the Food Science Department at the University of Guelph.
Has a network of local and global collaborators.
How to apply:
Interested applicants should contact Dr. Horianopoulos (lhoriano@uoguelph.ca) by July 15, 2026 with a CV and cover letter. Please put “Horianopoulos lab graduate position” as the subject line. A Fall 2026 or Winter 2027 start is preferred.
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Reposted by Linda Horianopoulos
HittingerLab @hittingerlab.bsky.social · 24/06/2026
A new study out with @linder-surprise.bsky.social and @rokaslab.bsky.social in iScience across ~300 yeast species confirms the correlation between glucose uptake rate and cell surface-to-volume (SA:V) ratio, but suggests a link to other traits (growth rates and genome size). doi.org/10.1016/j.is...
sciencedirect.com
A trait syndrome ties cell morphology to glycolysis across the yeast subphylum
Co-variation of traits provides fundamental insights into constraints governing their evolution. An inverse correlation between glucose uptake rates (…
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Linda Horianopoulos @linder-surprise.bsky.social · 24/06/2026
Happy to share our new paper showing a correlation between cell metabolism and morphology across the budding yeasts: www.cell.com/iscience/ful...
cell.com
A trait syndrome ties cell morphology to glycolysis across the yeast subphylum
Biological sciences; microbial genomics; evolutionary biology; phylogenetics
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Yamuna Krishnan @krishnanyamuna.bsky.social · 22/06/2026
3/ We were both happily shocked. Weird observations are often biology's way of telling you a secret, so, we followed on. That led to MitRatiNa: a ratiometric fluorescent reporter for mitochondrial Na+.
Chemical structure of MitRatiNa, a Na+ sensing dye. It binds Na+ and fluorescence turns on (yellow). MitRatiNa is made by linking two dyes Chicago Green on the right (grey, that turns to yellow when it is ON) and Coumarin 343, which is always ON (blue)
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Reposted by Linda Horianopoulos
The Rokas Lab at Vanderbilt University @rokaslab.bsky.social · 11/06/2026
Interested in how #fungi came about on this planet? If so, take a look at my new article that just came out in @annualreviews.bsky.social. doi.org/10.1146/annu...
doi.org
The Origin and Early Evolution of Fungi: Challenges, Inferences, and Principles
Fungi are widespread on our planet and essential for life as we know it, but how did they come about? Their last common ancestor lived hundreds of millions of years ago, but its characteristics, and t...
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Linda Horianopoulos @linder-surprise.bsky.social · 15/06/2026
Last chance!! Abstract submission deadline is tonight at 11:59 eastern. 📆 Don't miss this chance to share your fungal research and network with the Canadian Fungal Research community!🍄
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Linda Horianopoulos @linder-surprise.bsky.social · 08/06/2026
There's still one week left to submit an abstract #CanFunNet26 🍄 🗓️ Come tell us about the cool fungal research you've been up to at this low cost, virtual meeting!
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Linda Horianopoulos @linder-surprise.bsky.social · 08/06/2026
Pleased to share the newly launched lab website, check it out: yeastlab.mystrikingly.com
yeastlab.mystrikingly.com
Horianopoulos Lab on Strikingly
Microbiology yeast laboratory at the University of Guelph
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CanFunNet @canfunnet.bsky.social · 25/05/2026
Only one week left to register and/or submit an abstract for #CFN26!
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CanFunNet @canfunnet.bsky.social · 21/05/2026
Meet Aleeza Gerstein, one of our plenary speakers! Dr. Gerstein's research applies evolutionary principles and statistical methods to understand the evolution of human fungal pathogens in the context of drug resistance and chronic infection. Register today for #CFN26 to hear more from Dr. Gerstein.
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CanFunNet @canfunnet.bsky.social · 20/05/2026
Meet Michael Pyne, one of our plenary speakers! Dr. Pyne's research aims to discover, produce, and engineer plant natural product pathways in microbial systems, combining synthetic biology with classical retrosynthesis to design novel routes to pharmaceutical scaffolds. Register for #CFN26 today!
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The EMBO Journal @embojournal.org · 19/05/2026
In issue 10: Convergent evolution of aerobic fermentation CIN promotes migration & invasion via EFEMP1 secretion SenSet resource defines cell-type specific senescence signatures ... Cover: @franbottanelli.bsky.social and colleagues link.springer.com/journal/4431...
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Mycological Society of America @msafungi.bsky.social · 15/05/2026
The proposed closure of the Beltsville Agricultural Research Center threatens the U.S. National Fungus Collections—vital for agriculture, biosecurity, and research. The Mycological Society of America calls for continued preservation and enhanced support! msafungi.org/wp-content/u...
msafungi.org
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CanFunNet @canfunnet.bsky.social · 08/05/2026
Meet Jan Van Kan, one of our plenary speakers! Dr. Van Kan's research focuses on necrotrophic fungal pathogens of plants investigating molecular mechanisms of infection, and the development of strategies to combat plant diseases. Register today for #CFN25 to hear more from Dr. Van Kan.
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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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Linda Horianopoulos @linder-surprise.bsky.social · 30/04/2026
There's a story behind every project that doesn't get fully captured in the final paper. Check out our "behind the paper" accompanying our paper on convergent evolution of aerobic fermentation in yeast. communities.springernature.com/posts/learni... @hittingerlab.bsky.social @rokaslab.bsky.social
communities.springernature.com
Learning the rules of metabolic innovation in yeast evolution
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Linda Horianopoulos @linder-surprise.bsky.social · 27/04/2026
It's Mycology Monday! 🍄 Which reminds me! CanFunNet registration is now open: canfunnet.conferences.uwo.ca/registration If you study fungi, this broad fungal conference is a great one to attend (or present at).
Fungi growing on a stump
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Reposted by Linda Horianopoulos
HittingerLab @hittingerlab.bsky.social · 22/04/2026
With @linder-surprise.bsky.social and the @rokaslab.bsky.social, we evaluated glycolytic rates in 299 species using a newly developed ECAR assay. Genes retained by S. cerevisiae were highly expressed in Sat. dispora, indicating the CE of aerobic fermentation. link.springer.com/article/10.1...
link.springer.com
Convergent evolution of aerobic fermentation through divergent mechanisms acting on key shared glycolytic genes - The EMBO Journal
As the tree of life becomes increasingly accessible to molecular investigations, describing mechanisms underlying evolutionary convergence and constraint will be crucial to understanding diversificati...
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Reposted by Linda Horianopoulos
Saccharomyces Genome Database @yeastgenome.bsky.social · 24/04/2026
🧰 MoClo toolkit 2.0: Updated modular #Yeast cloning system enables mix-and-match assembly of parts for protein secretion & surface display. New anchors, fluorescence detection & secretion boosters streamline #biotechnology applications 🧬 #YeastResearch 🧪 #SGD 🔬 www.yeastgenome.org/reference/S1...
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CanFunNet @canfunnet.bsky.social · 22/04/2026
Dear CanFunNet community, we are happy to announce that abstract submission and registration are now open! Here is the link: conference.has.uwo.ca/Register/def.... #CFN26
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Linda Horianopoulos @linder-surprise.bsky.social · 13/04/2026
So pleased to share that this project identifying convergent evolution of aerobic fermentation in a poorly characterized genus of yeasts (Saturnispora) is now out in @embojournal.org @hittingerlab.bsky.social @rokaslab.bsky.social @glbioenergy.bsky.social link.springer.com/article/10.1...
link.springer.com
Convergent evolution of aerobic fermentation through divergent mechanisms acting on key shared glycolytic genes - The EMBO Journal
As the tree of life becomes increasingly accessible to molecular investigations, describing mechanisms underlying evolutionary convergence and constraint will be crucial to understanding diversificati...
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Reposted by Linda Horianopoulos
The EMBO Journal @embojournal.org · 10/04/2026
Convergent evolution of aerobic fermentation through divergent mechanisms acting on key shared glycolytic genes @hittingerlab.bsky.social , @linder-surprise.bsky.social et al show how distinct genetic routes can converge on the same genetic outcome link.springer.com/article/10.1...
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Reposted by Linda Horianopoulos
Melanie Blokesch @mblokesch.bsky.social · 10/04/2026
Excited to share our new paper out today in @science.org 🎉 We show that HGT via natural competence drives diversification of chromosomal integrons in V. cholerae 🤩 Below a 🧵 on key findings incl. background on natural competence in V. cholerae 1/ #microsky #phagesky www.science.org/doi/10.1126/...
science.org
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Saccharomyces Genome Database @yeastgenome.bsky.social · 03/04/2026
🧬 Characterized an unnamed #yeast #gene? 1. Name with 3 letters + number (ex. XYZ1) to reflect function. 2. Reserve your unique name at SGD while preparing manuscript www.yeastgenome.org/reserved_nam... 3. Include both ORF & gene names in your publication! 📝 Help: sites.google.com/view/yeastge...
sites.google.com
SGD Help - Gene Registry
SGD Help: Gene Registry The SGD Gene Registry is the system used by the S. cerevisiae community and SGD to reserve standard names for newly characterized genes. The Gene Naming Guidelines describe how...
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CanFunNet @canfunnet.bsky.social · 23/03/2026
Dear CanFunNet community, we are happy to announce the return of our virtual conference this year between August 5-7! We encourage you to save the date and hope to see you all again this year! More information on registration and abstract submission to come soon! #CFN26
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Lotus Lofgren @lotuslofgren.bsky.social · 20/03/2026
Hey #fungal26 our lab is hiring a postdoctoral researcher for an NSF funded project in ectomycorrhizal competition. Come find me for more info! www.lotuslofgren.com/pd2026
lotuslofgren.com
PD ad 2026 — The Lofgren Lab
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Audrey K Ward @audreykward.bsky.social · 18/03/2026
@lablabella.bsky.social shares how we can utilize machine learning to understand patterns of codon usage bias across phenotypes in Saccharomycotina. #fungal26
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Audrey K Ward @audreykward.bsky.social · 18/03/2026
Can filamentous and budding yeasts be friends? More than that - filamentation can be induced (and predicted!) in Saccharomycotina. Awesome talk by Christina Chavez at #fungal26 - read more here: academic.oup.com/femsyr/artic...
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Richard Lenski @relenski.bsky.social · 24/02/2026
Happy 38th birthday to the #LTEE! #BOTD in 1988. Keep on evolving! #science #evolution #microbiology
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Canadian Journal of Microbiology @canjmicrobio.bsky.social · 13/02/2026
Our most read article of 2025 reviews the history of Candida albicans research and advances in understanding this human pathogen. Read it now ▶️ ow.ly/h8Gc50XVPSp 👥 Manjari Shrivastava Malcolm Whiteway #BestofCSP University of California Université Concordia University
Cover of the Canadian Journal of Microbiology featuring a microscopic image of cells and highlighting the most read article in 2025.
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🧬Jacob L Steenwyk @jlsteenwyk.bsky.social · 28/01/2026
Researchers found three previously unknown whole-genome duplications in yeast, challenging the long-held view that such events are rare in fungi. The work reveals these ancient duplications occurred 100-200 million years ago.
Figure from: Discovery of additional ancient genome duplications in yeasts
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Ákos T Kovács @evolvedbiofilm.bsky.social · 29/01/2026
Discovery of additional ancient genome duplications in yeasts @currentbiology.bsky.social by @kylethedavid.bsky.social et al from @rokaslab.bsky.social www.cell.com/current-biol...
cell.com
Discovery of additional ancient genome duplications in yeasts
David et al. report evidence for at least two additional ancient whole-genome duplication events in Saccharomycotina yeasts, challenging the idea that such events are extremely rare in fungi.
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Linda Horianopoulos @linder-surprise.bsky.social · 29/01/2026
What can we discover by analyzing new yeast genomes? Well, @kylethedavid.bsky.social noticed a suspiciously high number of duplicated genes in some species suggesting that there were additional whole genome duplications in the yeast subphylum! authors.elsevier.com/c/1mWb33QW8S...
authors.elsevier.com
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Kyle T David @kylethedavid.bsky.social · 28/01/2026
Excited to announce our latest publication in reporting evidence for three (3!) new whole genome duplications (WGDs) in yeasts. Scientists have often wondered why WGD is so rare in fungi, it turns out we may just not have been looking hard enough! 🧪 🍄 🧬 www.sciencedirect.com/science/arti...
sciencedirect.com
Discovery of additional ancient genome duplications in yeasts
Whole-genome duplication (WGD) has had profound macroevolutionary impacts on diverse lineages,1,2 preceding adaptive radiations in vertebrates,3,4,5 t…
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Neil Gow @neil-gow.bsky.social · 07/01/2026
Catch our new review on amphotericin B resistance in fugal pathogens. doi.org/10.1016/j.tc.... @mrccmm.bsky.social @youngecmm.bsky.social @ishamycology.bsky.social @youngisham.bsky.social @bsmm-meeting.bsky.social
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Canadian Paintings @canadianpaintings.bsky.social · 31/12/2025
Closer to You Mike Gough 2022
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François Mayer @francoismayer.bsky.social · 24/12/2025
Out Now! Candida auris skin tropism and antifungal resistance are mediated by carbonic anhydrase Nce103 #CandidaAuris #AntifungalResistance #Microbiology www.nature.com/articles/s41...
nature.com
Candida auris skin tropism and antifungal resistance are mediated by carbonic anhydrase Nce103 - Nature Microbiology
Candida auris can scavenge carbon dioxide from microenvironments through Nce103 to sustain fitness when colonizing human skin.
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Saccharomyces Genome Database @yeastgenome.bsky.social · 19/12/2025
Although the SGD website will be available over the next few weeks, SGD staff will be on winter break until Jan 5, 2026. SGD wishes all of you, your colleagues, and your families a safe and restful holiday season. May your yeast grow robustly and your experiments be reproducible! 🧬🍻☃️
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HittingerLab @hittingerlab.bsky.social · 08/12/2025
New preprint with @rokaslab.bsky.social! We used genomic, metabolic, environmental, and phenotypic data sets from 1,154 Saccharomycotina strains to asses filamentation variability and predict filamentation types across the subphylum. 🧩 www.biorxiv.org/content/10.1...
biorxiv.org
The Macroevolution of Filamentation Morphology Across the Saccharomycotina Yeast Subphylum
Saccharomycotina yeasts are a highly diverse and widely distributed subphylum of ascomycete fungi that exhibit diversity in their asexual growth morphologies; the human commensal yeast Candida albican...
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Linda Horianopoulos @linder-surprise.bsky.social · 24/11/2025
Very cool new paper on a genetically encoded redox sensor in Cryptococcus neoformans: pubs.acs.org/doi/full/10.... These kind of approaches can enable so many cool experiments with real time monitoring! Great work, @ubcmicroimmuno.bsky.social
pubs.acs.org
Genetically Encoded Sensors for Monitoring Intracellular Redox Health of the Pathogenic Fungus Cryptococcus neoformans
Redox sensing and regulation are critical to both the survival and virulence strategies used by the pathogenic fungus Cryptococcus neoformans to evade host immunity and establish infection. However, the precise genetic and biochemical mechanisms driving these redox regulation systems in the context of fungal virulence are unclear. To address this limitation, we designed genetically encoded redox sensors optimized for expression in C. neoformans and linked these sensors to cryptococcal redox proteins for real-time monitoring of intracellular redox status. Using these sensors, we established several fluorescence-based techniques for monitoring dose-responsive changes in the intracellular oxidation status of C. neoformans under stress. Specifically, we demonstrated sensor responsiveness to nontoxic doses of peroxide stress and during different stages of cell growth, and we verified sensor responsiveness in a mutant with known sensitivity to oxidative stress. This approach provides a framework for developing and deploying biosensors in pathogenic fungi and in basidiomycetes─a group of microorganisms with relatively few sophisticated genetic tools for molecular and synthetic biology. Overall, our sensors enable real-time insights into the key redox mechanisms driving growth and survival of a globally important pathogen and pave the way for tool development in other fungi.
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HittingerLab @hittingerlab.bsky.social · 11/11/2025
With @linder-surprise.bsky.social and the @rokaslab.bsky.social, we recently expanded upon an analysis where glucose uptake rates were inversely correlated with the cell surface area-to-volume ratio, testing 282 species in the Saccharomycotina yeast subphylum. www.biorxiv.org/content/10.1...
biorxiv.org
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