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A top-down view of potted sorghum plants.
December 19, 2023
A research team led by MSU scientists has made a biological discovery that could help sorghum become an even more promising biofuel feedstock.
Michigan State University researcher Acer VanWallendael, a postdoctoral research associate in the Department of Plant Biology, is helping highlight the very real and diverse ways microscopic fungi affect crops. His team’s recent paper in the journal PLOS Biology explores the complex relationships fungi have with switchgrass, a promising biofuel crop.
March 15, 2023
In a world where switchgrass could cut our fossil fuel dependency, can communities of fungi help grow more potent plants? Michigan State University researcher Acer VanWallendael, a postdoctoral research associate in the Department of Plant Biology, is helping highlight the very real and diverse ways microscopic fungi affect crops. His team’s recent paper in the journal PLOS Biology explores the complex relationships fungi have with switchgrass, a promising biofuel crop.
By explaining a photosynthetic peculiarity in switchgrass, Michigan State University researchers may have unlocked even more of the plant’s potential.
January 25, 2023
Michigan State University researchers have solved a puzzle that could help switchgrass realize its full potential as a low-cost, sustainable biofuel crop and curb our dependence on fossil fuels. Berkley Walker’s team in the Department of Plant Biology in MSU’s College of Natural Science has revealed why switchgrass stops performing photosynthesis in the middle of the summer — its growing season — limiting how much biofuel it yields. This knowledge, published in the journal Frontiers in Plant Science, is a key piece to overcoming this quirk and getting the most out of switchgrass.
MSU scientists have landed a $2 million Department of Energy grant to improve the oilseed yield of Camelina sativa, a common plant that could provide cleaner jet fuels and teach us about other important crops.
December 9, 2022
MSU researchers are working to clear the runway for a new source of cleaner, more sustainable biodiesel and jet fuels derived from a relative of cabbage and cauliflower. With $2 million in funding from the U.S. Department of Energy, MSU scientists, including College of Natural Science biochemist Erich Grotewold, are helping unravel the complex genetics of a plant named Camelina sativa to better equip researchers to improve the plant’s oilseed yield and establish it as a more viable alternative to current petroleum-based fuels that meet the unique demands of air travel.

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