Schools
Kennesaw State Research Team Looks To Expand Mushroom Production Range
Demand for culinary mushrooms in Georgia and the wider region is far higher than supply, leaving both home cooks and chefs wanting.

Nov 29, 2021
Kennesaw State research team looks to expand mushroom production range
Find out what's happening in Kennesawfor free with the latest updates from Patch.
KENNESAW, Ga.
(Nov 29, 2021) — Demand for culinary mushrooms in Georgia and the wider region is far higher than supply,
leaving both home cooks and chefs wanting. Mushroom-growing technology developed at
Kennesaw State University could be poised to change that.
“There is about an eight times greater demand for mushrooms than the supply available
in the Southeast, so there is definitely room for a market here in Georgia,” KSU researcher
Kyle Gabriel said. “Our research seeks to help local growers meet that demand.”
Find out what's happening in Kennesawfor free with the latest updates from Patch.
Chris Cornelison
Kennesaw State’s lead researcher on mushroom production, Chris Cornelison, and his
team recently received funding from the Georgia Department of Agriculture to bring
automated mushroom production technology to four mushroom growers in Dahlonega, Dalton,
Ellijay, and Gainesville. The $102,000, three-year award comes from the Specialty
Crop Block Grant Program, coordinated by the U.S. Department of Agriculture to boost
competitiveness of specialty agricultural products, such as culinary mushrooms, across
the nation.
The central focus of the technology is a prototype mushroom cultivation chamber fabricated
in a 40-foot shipping container with systems to automatically regulate the growing
conditions. The mushrooms grow on recycled agricultural materials, such as pecan shells,
corn chaff and spent brewing grains.
The cultivation chambers will be fabricated at Kennesaw State University, where the
growers will be trained to use them before the units are then transported to their
mushroom farms.
Cornelison said the intent is to create a compact, affordable alternative to conventional
agricultural methods, which typically involve large plots of land and unpredictable
growing conditions. Beyond the system providing more consistent harvests and yields,
he said, such innovation will also make Georgia a more competitive state in the mushroom
cultivation market and more able to meet consumer demand. 
Pennsylvania is the nation’s top mushroom producer, and Gabriel said the distance
required to bring the mushrooms to the Southeast can result in significant amounts
of spoiled product after reaching their destination.
Their project began when Cornelison and Gabriel received their first Specialty Crop
Block grant in 2017, after noticing the scarcity of commercial mushroom growers in
Georgia and the Southeast as a whole. They used that funding to design a mushroom
cultivation chamber within a used shipping container and developed embedded systems
to control temperature, humidity and carbon dioxide.
“Despite how straightforward mushroom cultivation can be, it is not widely practiced
in many communities,” Cornelison said. “The vast majority of all mushrooms in the
U.S. are grown in very few locations, usually in the Northeast. That isn’t a very
suitable solution considering how an embedded system and controlled environments allow
for such mushrooms to grow in facilities across the country.”
Other benefits of the team’s prototype, currently housed at the KSU Field Station,
are mobility, versatility and accessibility, as it can be placed on any available
plot of land, including parking lots. Gabriel said building such a container costs
$10,000 for materials and labor.
“Traditional agriculture requires acres of land to produce a certain amount of food
to remain profitable,” said graduate student William Beeson, who is pursuing a master’s
degree in integrative biology. “These shipping containers can be profitable due to
low start-up costs and taking up much less space. You can easily put them almost anywhere,
especially if you consider using solar panels to power them.”

The deployment of the containers is possible because of the help of the Georgia Research
Alliance (GRA), which provides universities seed funds and access to mentors and consultants
in forming companies related to their research. The team received $18,000 in matching
funds from the GRA’s venture development program to assist in purchasing, preparing
and distributing the containers to commercial growers.
This is the second time the Kennesaw State research team has received funding from
GRA. The first $25,000 was awarded last year to study commercialization of growing
mushrooms using regional agricultural wastes. KSU is also one of two institutions
to participate in GRA’s inaugural Greater Yield Initiative, which supports university
start-up companies focused on agricultural and food technology.
“We have a good team working on this project, and we’re very grateful for the continued
support from the Georgia Department of Agriculture and the Georgia Research Alliance,”
Cornelison said. “We’re glad that they keep us going, and we are excited to see where
this project will take us next.”
— Jacob Segura
Related Stories
Mushrooms and Microbiology
NIH awards $3.3 million grant to tropical disease researcher
Kennesaw State professor earns renewal of NSF grant for DNA research
A leader in innovative teaching and learning, Kennesaw State University offers undergraduate, graduate and doctoral degrees to its nearly 43,000 students. With 11 colleges on two metro Atlanta campuses, Kennesaw State is a member of the University System of Georgia. The university’s vibrant campus culture, diverse population, strong global ties and entrepreneurial spirit draw students from throughout the country and the world. Kennesaw State is a Carnegie-designated doctoral research institution (R2), placing it among an elite group of only 6 percent of U.S. colleges and universities with an R1 or R2 status. For more information, visit kennesaw.edu.
This press release was produced by Kennesaw State University. The views expressed here are the author’s own.