Great Lakes Bioenergy Research Center

Great Lakes Bioenergy Research Center Department of Energy-funded research center led by the University of Wisconsin–Madison.

A new GLBRC study used NMR methods known as FLOPSY and TOCSY to reveal small chemical structures in lignin, a complex po...
09/03/2026

A new GLBRC study used NMR methods known as FLOPSY and TOCSY to reveal small chemical structures in lignin, a complex polymer found in plant cell walls.

The work could help researchers better understand plant biomass and how it can be broken into useful parts for fuels, plastics, medicines, and other products.

Read more: https://www.glbrc.org/news/flopsy-and-tocsy-reveal-hidden-molecules-plant-fibers

How can biorefineries make biofuels more competitive?A new GLBRC study uses modeling to compare ways of using energy-ric...
08/18/2026

How can biorefineries make biofuels more competitive?

A new GLBRC study uses modeling to compare ways of using energy-rich byproducts from lignocellulosic biofuel production.

Researchers evaluated strategies including biomethane production, electricity generation, lignin conversion, and carbon capture and storage. The results highlight trade-offs between cost, energy efficiency, and carbon footprint.

Read more: https://www.glbrc.org/news/biorefinery-side-hustles-make-fuels-more-competitive

Poisonous plants hold keys to potent medicines.A new GLBRC study from Björn Hamberger and collaborators identifies early...
08/12/2026

Poisonous plants hold keys to potent medicines.

A new GLBRC study from Björn Hamberger and collaborators identifies early steps in how larkspur and wolfsbane make diterpenoid alkaloids, complex plant compounds with uses in medicine and pest control.

Researchers also showed a possible path toward producing these compounds in simpler plant systems.

Read more: https://natsci.msu.edu/news/2026/2026-07-larkspur-wolfsbane.aspx

Trine Anderson and Brandon Kristy have received the 2026 GLBRC Mentorship Award.Anderson, a senior scientist in Bjoern H...
08/06/2026

Trine Anderson and Brandon Kristy have received the 2026 GLBRC Mentorship Award.

Anderson, a senior scientist in Bjoern Hamberger’s lab at Michigan State University, and Kristy, a PhD candidate in Sarah Evans’ lab, were honored for helping students build confidence, gain hands-on research experience, and grow as scientists.

Read more: https://www.glbrc.org/news/glbrc-honors-researchers-mentorship

07/24/2026

Wisconsin Energy Institute co-investigator Troy Runge has been named interim dean of the UW-Madison College of Agricultural and Life Sciences.

Runge is an associate dean and professor of biological systems engineering whose research explores biobased products and bioprocessing systems. He will help lead CALS while the university begins its search for the college’s next dean.

Read more: https://energy.wisc.edu/news/wei-investigator-runge-named-interim-dean

Trey Sato, a senior scientist at the Wisconsin Energy Institute, has received the 2026 GLBRC Service and Impact Award.Si...
07/07/2026

Trey Sato, a senior scientist at the Wisconsin Energy Institute, has received the 2026 GLBRC Service and Impact Award.

Since joining GLBRC in 2008, Sato has supported research across the center through collaboration, mentorship, and his work on yeast, fermentation, and biomass-to-biofuel testing.

He has coauthored more than 75 peer-reviewed papers and helped connect researchers across disciplines and institutions.

Read more about his service, leadership, and research: https://www.glbrc.org/news/advancing-science-through-service-glbrc-scientist-trey-sato-honored-collaborative-leadership

Where can a GLBRC postdoc experience lead?Meet three GLBRC alumni whose careers have taken them into academia, industry,...
07/01/2026

Where can a GLBRC postdoc experience lead?

Meet three GLBRC alumni whose careers have taken them into academia, industry, and international research: Caro Córdova, Brian Burger, and Ilya Gelfand.

Their profiles highlight how work at GLBRC helped shape careers in soil health, animal genetics, biogeochemistry, and ecosystem ecology.

Read their stories: https://www.glbrc.org/careers/postdoc-profiles

Dae Kwan Ko, a fixed-term research assistant professor at Michigan State University, has received the 2026 Yaoping Zhang...
06/29/2026

Dae Kwan Ko, a fixed-term research assistant professor at Michigan State University, has received the 2026 Yaoping Zhang Bioenergy Research Award.

At the GLBRC, Ko studies how genes and proteins interact in plants, with a focus on understanding plant cell walls and stress resilience. His work uses systems-level approaches, bioinformatics, and functional genomics to support the development of more resilient bioenergy crops.

Ko has also helped develop computational tools and datasets that allow GLBRC scientists to identify genes and pathways involved in crop productivity and stress response.

Read more about his award and research: https://www.glbrc.org/news/system-approach-innovations-improve-understanding-plant-resilience

Poulamee Chakraborty, a postdoctoral researcher at Michigan State University, has received the 2026 Jennifer L. Reed Bio...
06/23/2026

Poulamee Chakraborty, a postdoctoral researcher at Michigan State University, has received the 2026 Jennifer L. Reed Bioenergy Science Award.

At the GLBRC, Chakraborty studies how microscopic soil structures influence the movement of carbon and nitrogen through plants, microbes, and soil. Her research helps scientists better understand how bioenergy cropping systems can become more productive and sustainable.

Using tools such as X-ray microscopy, isotope labeling, and machine learning, Chakraborty is working to identify soil features that support carbon storage, nutrient cycling, and resilient plant growth.

Read more about her award and research: https://www.glbrc.org/news/zooming-studying-soil-microscopic-level-solve-big-problems

GLBRC scientists are investigating how sorghum survives abiotic stresses such as drought and high temperatures. By mappi...
05/11/2026

GLBRC scientists are investigating how sorghum survives abiotic stresses such as drought and high temperatures. By mapping the genes and molecular networks that contribute to stress tolerance, they aim to develop more resilient crop varieties.

Why does it matter? Climate change poses growing challenges for agriculture, making it essential to breed crops that can withstand environmental extremes. Stress-resilient sorghum supports both food security and the production of sustainable biofuels.

Learn more about this research: https://www.glbrc.org/research/highlights/decoding-abiotic-stress-resilience-sorghum

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