HittingerLab

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HittingerLab

HittingerLab

@HittingerLab

Biodiversity | Biochemistry | Biotechnology | Functional, Ecological, and Evolutionary Genomics | Moderated by current lab members

Madison, WI Se unió Nisan 2018
761 Siguiendo1.7K Seguidores
HittingerLab
HittingerLab@HittingerLab·
UW-Madison Evolution Seminar Series' Early Career Award is open for applications until November 30th, 2024. This is a great opportunity to showcase your work at our seminar! 🦡⚗️ Postdocs and grad students in evolutionary biology are encouraged to apply: forms.gle/uyftSGQbV8LGZ8…
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ASBMB
ASBMB@ASBMB·
🍺Q: What makes a yeast variety suitable for lager beer rather than ales? 🍻A: Yeast that ferments best at cool temperatures. Industrial lager brewers favor S. pastorianus. 🧬Learn about research from the @HittingerLab for more on the genetics of #beer: ow.ly/f4sq50U0Wiz.
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HittingerLab
HittingerLab@HittingerLab·
Zooming out to look at the Major Facilitator Superfamily across diverse yeasts, we find that these specialized alpha-glucoside transporters likely evolved from a generalist ancestral transporter.
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HittingerLab
HittingerLab@HittingerLab·
How can a yeast sugar transporter find a new function? In our new paper out now in @MolBioEvol we look at a recent evolutionary innovation in an alpha-glucoside transporter in S. eubayanus and find that multiple simultaneous mutations are required for this new function!
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UW Energy Institute
UW Energy Institute@UWEnergy·
Happy Halloween from the Wisconsin Energy Institute!
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HittingerLab
HittingerLab@HittingerLab·
See our new article in which we developed an Ontology of Yeast Environments.🌱This hierarchical framework allows for new systematic analyses and insights into the evolution, ecology, and diversity of yeasts!💡onlinelibrary.wiley.com/doi/10.1002/ye…
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HittingerLab
HittingerLab@HittingerLab·
How can yeast fermentation workflows be optimized in biorefineries for isobutanol production? See our @GLBioenergy collaborative work on using gamma-valerolactone (a renewable green solvent) in biomass pretreatment to achieve high titers of isobutanol #fn2" target="_blank" rel="nofollow noopener">pubs.rsc.org/en/content/art…
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HittingerLab
HittingerLab@HittingerLab·
The most predictive gene families included reductases and were enriched for cell wall-related genes. After interrogating the model to make specific hypotheses about how manipulating gene families would impact ROS resistance, we also validated their impact using two yeast species.
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HittingerLab
HittingerLab@HittingerLab·
The most predictive gene families included reductases and were enriched for cell wall-related genes. After interrogating the model to make specific hypotheses about how manipulating gene families would impact ROS resistance, we also validated their impact using two yeast species.
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