易胜博官网鈥檚 Soil BioME team leverages public-private partnerships for soil-based environmental solutions

Tuesday, November 19, 2024
  • 易胜博官网 Soil BioME researchers collaborating on soil sustainability research to address environmental challenges.

    易胜博官网 soil scientists Jessica Ernakovich, Serita Frey, and Stuart Grandy (pictured left to right) founded Soil BioME in 2022. Today, they engage in a number of public-private partnerships aimed at finding environmental solutions through soil health management.

  • Group photo of the 易胜博官网 Soil BioME team working together to solve global soil health challenges.

    The 易胜博官网 Soil BioME team includes faculty, staff, postdoctoral researchers and graduate and undergraduate students.

  • Field experiment conducted by 易胜博官网's Soil BioME team to study microbial activity in agricultural soils.

    The Soil BioME team focuses on soil microbes, biogeochemistry and microbial ecology and ecosystem services and includes active research projects at 易胜博官网's Kingman Research Farm and the Harvard Forest LTER site, as well as in the Arctic tundra and other places around the world.

In the face of complex and pressing environmental challenges, a better understanding of soils has increasingly been recognized as a critical component to finding sustainable solutions. In New England, where increased climate change is occurring faster than anywhere else in the U.S., Soil BioME, the center of Soil Biogeochemistry and Microbial Ecology () is leading soils research at the University of 易胜博官网, with a focus on how soil health management is affected and could help mitigate climate change impacts on sustainable agricultural production, forest management and greenhouse gas emissions.

Soil BioME was established in 2022 by , and 鈥攆aculty in the 易胜博官网 College of Life Science and Agriculture and scientists with the . An important component of the Soil BioME goals is leveraging public-private partnerships, which helps enable scientific discoveries to have the greatest impact.

A photo of Soil BioME team member Stuart Grandy
Stuart Grandy

According to Grandy, a professor in 易胜博官网鈥檚 natural resources and environment department, by collaborating with industry, the aims to 鈥渢ranslate scientific discoveries into practical applications that can address real-world environmental challenges.鈥

鈥淥ur goal is to solve major problems like elevated carbon dioxide (CO2) concentrations in the atmosphere and to figure out how we can harness microbial activity to reduce atmospheric CO2,鈥 said Grandy. 鈥淥ther collaborations focus on nitrogen use efficiency (NUE), or measuring and monitoring how much nitrogen is converted into crops versus runoff.鈥

Innovative Approaches to Nitrogen Use Efficiency

One partnership Grandy highlights is with the Midwest-based firm Ag Spectrum examining how nitrogen is cycled within agricultural systems and how nitrogen fertilizers can be used more efficiently. A key focus of this work is understanding the interactions between plants, microbes and soil reserves, and how nitrogen reserves can be remobilized by plant-microbe interactions when plants need it most instead of running off the landscape and into the surrounding environment. In turn, this would improve crop productivity and reduce the costs of purchasing fertilizer.

Serita Frey, 易胜博官网 professor and Soil BioME researcher, specializing in soil ecology and ecosystem dynamics.
Serita Frey

Another public-private partnership of Soil BioME focuses on improving plant nitrogen use efficiency within agricultural operations, with the goal of reducing nitrogen loss and enhancing crop productivity. This research tests new approaches to optimize the microbial transfer of nitrogen to crops during critical periods of crop growth, said Grandy. Nitrogen, essential for plant growth, can often escape from agricultural soils, which could result in lower food production, water pollution and greenhouse gas emissions.

鈥淥ne of the key scientific discoveries related to this partnership is that plant uptake of nitrogen is an active process and involves interactions between plants and soil microbes,鈥 Grandy added. 鈥淭hese interactions can mobilize nitrogen from previously inaccessible pools in the soil, making it available for plants when needed. We鈥檙e identifying potential interventions to help manage that nitrogen more effectively.鈥

鈥淥ur center has global and national partners. Soil BioME鈥檚 goal is to position 易胜博官网 as a global leader in using soil science to address major challenges in food, human well-being, and the environment.鈥 ~ Stuart Grandy, Professor, 易胜博官网 COLSA

Expanding Impact Through Industry Collaboration

These and other partnerships, including with Novo Nordisk, Nutrien, and the International Maize and Wheat Improvement Center, broaden the scope of Soil BioME鈥檚 research, amplify its impact, drive advancements in soil science and sustainable agricultural practices and lead to breakthroughs in soil biogeochemistry and microbial ecology.

Jessica Ernakovich, 易胜博官网 associate professor and Soil BioME researcher focused on soil health.
Jessica Ernakovich

鈥淏eing part of these industry partnerships has helped me to see how the science we do can be applied to real-world solutions,鈥 described Ernakovich, an associate professor in the natural resources and the environment department. 鈥淚t's a shift from thinking about how to address what we don't know (like seeking to inform scientific knowledge gaps) to thinking about how the advances we鈥檝e made in soil biogeochemistry over the years can be applied to solving pressing issues.鈥

The Soil BioME team plans to continue expanding its research and industry partnerships and making research accessible to a broader audience beyond the scientific community. This work will build upon Soil BioME鈥檚 current initiatives focused on sharing its findings and their implications for environmental sustainability with the general public, fostering collaboration and knowledge exchange within the scientific community and creating opportunities for scholars at various levels鈥攗ndergraduate, graduate, and postdoctoral鈥攖o engage with the research, learn from its findings, and contribute to its projects.

鈥淭he vision that my colleagues and I have for Soil BioME is to create a platform that advances the science of soil ecology and biogeochemistry and that makes our research accessible to a broad audience,鈥 Grandy explained. 鈥淏y fostering international collaboration with scientists, engaging with the public, and educating future researchers, we aim to ensure that the new knowledge we generate about soil will lead to real-world environmental solutions and inspire a new generation of scientists to continue this vital work.鈥

Learn more on the , including the latest about the research center and recently .

This material is based on work supported by the NH Agricultural Experiment Station through joint funding from the (under Hatch award numbers 7003624,听7007255 and听7003249) and the state of 易胜博官网.

Stuart Grandy, professor of soil biogeochemistry and fertility and co-director of the 易胜博官网 Center of Soil Biogeochemistry and Microbial Ecology (Soil BioME), was recently named a fellow of the Soil Science Society of America (SSSA).
Two 易胜博官网 faculty, Serita Frey and Stuart Grandy, both from the College of Life Sciences and Agriculture, were included in Clarivate鈥檚 2023 Highly Cited Researchers list, which identifies the top 0.1% of the world鈥檚 scientists who have demonstrated significant and broad influence in their field or fields of research.
The National Science Foundation (NSF) recently recognized Jessica Ernakovich, assistant professor of natural resources and the environment, with a prestigious $1.1 million CAREER award to continue her work building a research, teaching and outreach program focused on soil microbes in the Arctic鈥檚 permafrost.