Taking the Genomic Revolution to Corn Fields

Taking the Genomic Revolution to Corn Fields

“Having the sequence of a genome is like having the blueprint of a house,” says Natalia de Leon, a professor of agronomy at the University of Wisconsin–Madison.

But, says de Leon, if you don’t know how those plans get turned into a house, they don’t do you much good.

The initiative she helps run, Genomes2Fields, is trying to address that problem. By bringing the genomic revolution into corn fields, Genomes2Fields aims to improve the nation’s corn crop by uncovering how genomes — the blueprints for plants — are turned into yield, stress resistance, and all manner of different traits. In a collaboration stretching across 20 states and into Canada, the project has tested hundreds of varieties of corn in more than 70 different environments since 2014 to tease out how genomes interact with environments to produce different traits in corn.

The project recently received a $1.25 million grant from the U.S. Department of Agriculture to support its expanding field trials. Roughly $438,000 of the grant is slated for UW–Madison, which is a central hub for experimental design, seed distribution, and machine vision analysis for the research. Initial and ongoing support for the project also comes from industry groups like the Wisconsin Corn Promotion Board. Other state corn growing associations are also supporting researchers from Genomes2Fields in their own States.

All of the data are made publically available a year after it is collected, so any interested scientist could use this information to help advance knowledge and develop tools that will help produce improved varieties of corn.

Genomes2Fields put out its first multi-state trial in 2014. It grew out of conversations with corn grower associations and other stakeholders that approached scientists like de Leon, wanting to know how the expanding genomic information about corn could help them in their fields, and not just in a research lab.

“Once multiple corn genomes had been sequenced, it became desirable to see that information translated into products,” says Shawn Kaeppler, director of the Wisconsin Crop Innovation Center and another Genomes2Fields investigator.

The project decided to focus on how corn responds to different environments.

“We want to understand what is it that makes certain plants more adapted to stressful environments than other plants,” says de Leon.

To do that, de Leon and 29 other researchers grow different lines of corn across the country, where they will be exposed to different stresses. By comparing the size of ears of corn grown in Texas heat against corn maturing during long, cooler Wisconsin summer days, for example, the researchers can uncover which genetic traits help corn varieties adapt to diverse environments. Each field is equipped with a weather station to ensure consistent climate data collection.

Scientists measure not only the size of ears and yield of corn, but also the plant height, the time it takes to flower, and a number of other relevant traits. Each location decides to make unique measurements as well. De Leon and Kaeppler are partnering with UW–Madison botanist Edgar Spalding to test high-throughput methods for measuring the plants.

Spalding flies drones over fields to measure plant size, and he has scanned corn cobs from last year’s trials that are then measured by machine vision systems to quickly collect data.

The 2017 trials will, for the first time, collect soil and leaves from the majority of the test sites to analyze the microbiomes associated with the crops. As research continues to highlight the importance of microbial communities in human and animal health, plant researchers aim to uncover the role microbiomes play in crop growth as well.

Genomes2Fields is designed to combine the consistency across locations required to produce strong results with the flexibility needed for innovation in crop improvement research.

“The platform is out there for people to test and develop new technologies to try to make the process of improving plants, and translating all of this genomic information to the field, better,” says de Leon.

 

 

Latest News

How Do Wind, Solar, Renewable Energy Effect Land Values?
How Do Wind, Solar, Renewable Energy Effect Land Values?

“If we step back and look at what that means for farmland, we're taking our energy production system from highly centralized production facilities and we have to distribute it,” says David Muth.

Food Security is a Real Challenge
Food Security is a Real Challenge

A recent airport visit gave Chad Carr, a meat scientist at the University of Florida, a new perspective on challenges commercial food production faces with consumers.

Profit Tracker: Packer Losses Mount; Pork Margins Solid
Profit Tracker: Packer Losses Mount; Pork Margins Solid

Cattle and hog feeders find dramatically lower feed costs compared to last year with higher live anumal sales prices. Beef packers continue to struggle with negative margins.

Colombia Becomes First Country to Restrict US Beef Due to H5N1 in Dairy Cattle
Colombia Becomes First Country to Restrict US Beef Due to H5N1 in Dairy Cattle

Colombia has restricted the import of beef and beef products coming from U.S. states where dairy cows have tested positive for H5N1 as of April 15, according to USDA.

On-farm Severe Weather Safety
On-farm Severe Weather Safety

When a solid home, tornado shelter or basement may be miles away, and you’re caught in a severe storm, keep in mind these on-farm severe weather safety tips.

Invest in Resources Today for a More Successful Tomorrow
Invest in Resources Today for a More Successful Tomorrow

In the fast-paced world of business, it's easy to get caught up in the day-to-day operations, but true success lies in working on your business, not just in it.