Yinping Jiao and David Becker are part of a group of researchers and experts striving
to transform basic sorghum research into industry application.

CREATORS

Portrait of Jayden Smith

In the corner of Yinping Jiao’s office in Experimental Sciences Building II sits a vase filled with stalks of sorghum
ranging in shades of brown, some in compact, short clusters, others longer and unfurled.

They’ve lost their color since they were harvested a year ago as orange, burgundy,
bronze, cream and black varieties. But Jiao, a Texas Tech University assistant professor of crop population genomics in the Department of Plant & Soil Science, still marvels at the plant’s diversity.

“Look at this,” she beamed. “How could they look so different?”

Sorghum and corn aren’t easily distinguishable in their germinal stages. Where they
diverge, however, especially with sorghum’s heat and drought tolerance, is crucial
to the future of agriculture on the High Plains and beyond.

A researcher examines sorghum growing in a field as part of an agricultural research project.Yinping Jiao

Jiao’s research on the crop is a part of the Institute of Genomics for Crop Abiotic Stress Tolerance (IGCAST) in the Davis College of Agricultural Sciences & Natural Resources.

With West Texas farmers’ need to maintain soil health and productivity through crop
rotation, sorghum has emerged as a promising solution, especially as it requires roughly
20-35% less water than corn uses to grow. Jiao is working to enhance sorghum grain’s
digestibility and taste, advancing a crop that has historically received far less
research attention than corn.

She is building off one of her major discoveries during her time at Texas Tech. While
investigating mutations of the genes in sorghum proteins, she identified one that
could improve the grain protein’s digestibility by 50%. 

“That’s a big step to solving that limitation,” Jiao said. “With that increased protein
digestibility, the nutrition in sorghum has the potential to be similar to corn.”

In the two years since accomplishing this feat, she’s faced additional challenges
applying the basic research to industry production.

Jiao and her IGCAST and Plant & Soil Science colleagues have developed capabilities
for advanced plant breeding applications, gene editing and genomics. David Becker,
executive director for agricultural research strategy in Research & Innovation, is seeking to bring plans for a translational crop breeding center to life.

Attempts to transfer foundational research to the field are coming just as the industry
elsewhere is improving sorghum berry processing technologies that likewise lagged
behind what exists for corn kernels.

“That also creates a lot of opportunities for us to create optimized genetics for
sorghum that will support the application of the new kernel processing equipment,”
Becker said. 

Though Becker has only spent two years working at Texas Tech, he’s seen a level of
investment in agriculture, both at the Davis College and the university overall, that
is uncommon nationally.

Becker also noted that Texas Tech sits right smack in a semi-arid area with a declining
water supply and has demonstrated a drive to assist local producers by increasing
the water-efficient crop’s nutritional value. These factors place the university in
a prime position to host a conference that brings international thinkers and expands
its reach. 

In the spirit of the Global Sorghum Conference, Becker is hopeful his efforts will
encourage collaboration across federal institutions and universities that maximizes
the dollars put toward research and generates positive outcomes.

Some of that work has already manifested in purchasing a sorghum silage harvester
and a thresher to support research at the New Deal Research Farm and beyond.

The foundational support Texas Tech provides, as well as opportunities for collaboration
with the Lubbock-based United Sorghum Checkoff Program and the local branch of the
U.S. Department of Agriculture’s Agricultural Research Service, make the area one
of the best environments to focus on improving sorghum. 

“This is the right place to turn sorghum discoveries into real-world impact,” she
added.