Home Reports Studies and Analyses Content
next article
13.07.2012
They might be called a blessing or a curse -- tannins, which are present in certain sorghums, contain health-promoting antioxidant properties, but also provide a bitter taste and decreased protein digestibility.
To better understand tannins, their role in sorghum and how they can be altered to improve sorghum's use as food and feed, a team of scientists led by Kansas State University and U.S. Department of Agriculture researchers, has cloned the tannin gene in sorghum.
Tannins' high antioxidant, anti-inflammatory and UV-protective functions promote human health, plus recent studies show they can be a tool in fighting obesity because they reduce digestibility, said Jianming Yu, associate professor of agronomy at Kansas State University. Tannins in sorghum also provide a natural chemical defense against bird predation and bacterial and fungal attack in the field.
On the other hand, tannins provide a bitter taste to some foods and decrease protein digestibility and feed efficiency in humans and livestock.
The team was led by Yu, along with Tesfaye Tesso, Kansas State University sorghum breeder and associate professor of agronomy and Scott Bean, scientist with the U.S. Department of Agriculture-Agricultural Research Service (USDA-ARS) and adjunct faculty in the university's Department of Agronomy.
The researchers' study, "Presence of tannins in sorghum grains is conditioned by different natural alleles of Tannin1" was published in the June 26 issue of the Proceedings of the National Academy of Sciences of the United States of America (PNAS).
Sorghum is an old-world cereal grass that serves as a dietary staple for more than 500 million people in more than 30 countries, Yu said. In 2011, the United States was the No. 1 exporter of sorghum on the world market and the No. 2 producer (behind Nigeria), according to the U.S. Department of Agriculture. In 2011, Kansas produced 110.0 million bushels ? 51 percent of the total U.S. crop. Sorghum production in the U.S., primarily for the feed industry, uses non-tannin sorghum hybrids.
Unlike many plants which employ C3 photosynthesis that uses water, carbon dioxide and solar energy to synthesize sugars, sorghum, which performs a modified form called C4 photosynthesis, has adapted to hot environments.
"One key reason to study tannins is to untangle their relationship with cold tolerance, a key agronomic trait to improve sorghum. The work is ongoing," said sorghum breeder Tesso. An earlier screening work found that a high proportion of cold tolerant sorghum lines contain tannins.
"Several other factors make tannins an important research subject," said Bean, noting their antioxidant capacity and relevant health benefits, their natural occurrence in some cereal crops, and their role in sorghum production. "Knowledge of tannins in biosynthesis pathways can be used to generate lines that produce high-content tannins in sorghum and other cereals to promote health through their unique nutritional properties."
This study, like many studies in recent years, benefits from work done several years ago on Arabidopsis, which are small flowering plants related to cabbage and mustard, said Yuye Wu, the first author and Kansas State University research associate of agronomy. "Many genes have been identified in Arabidopsis, through the mutational approach, but there is still much to be learned about the genetic control of tannins in cereal crops."
"This kind of genetic research in crops, coupled with nutritional and medical research, could open the possibility of producing different levels and combinations of phenolic compounds to promote human health," Yu said. What the researchers learn about tannins in sorghum will be beneficial to the future study of tannins in other plants, including some fruits, vegetables and a few other grains such as finger millets and barley.
Other researchers involved in the study were Mitch Tuinstra, Purdue University; Ming Li Wang, USDA-ARS, Griffin, Georgia; and Guihua Bai, USDA-ARS and adjunct professor of agronomy at Kansas State University.
The project was supported by USDA National Institute of Food and Agriculture, Department of Energy Plant Feedstock Genomics Program, National Science Foundation Plant Genome Research Program, USDA Agricultural Research Service, and the National Sorghum Checkoff program.
Jianming Yu | Source: EurekAlert!
Further information: www.k-state.edu
next article
Overview of the latest five Focus news of the innovations-report:
In the focus: How cells degrade aberrant membrane proteins
Heidelberg researchers unravel new degradation route
Researchers from Heidelberg University?s Center for Molecular Biology (ZMBH) have achieved unexpected insights into the process of how damaged proteins are degraded within cells. Their work focused on the function of a special protease.
This enzyme can hydrolyse peptide bonds in the plane of cellular membranes, a site where such water-requiring ...
In the focus: New Agent against Tropical Parasites
There is an urgent need for better drugs to treat African sleeping sickness. W?rzburg scientists have developed a very promising new agent, which is now to be further optimized.
African sleeping sickness is caused by the tropical parasite Trypanosoma brucei. This unicellular, worm-shaped organism is endemic in Sub-Saharan Africa. It can be transmitted to humans through the bite of the tsetse fly. Infected people first get headaches and aching limbs, after which confusion, spasms and other symptoms follow at ...
In the focus: The more gray matter you have, the more altruistic you are
The volume of a small brain region influences one?s predisposition for altruistic behavior. Researchers from the University of Zurich show that people who behave more altruistically than others have more gray matter at the junction between the parietal and temporal lobe, thus showing for the first time that there is a connection between brain anatomy, brain activity and altruistic behavior.
Why are some people very selfish and others very altruistic? Previous studies indicated that social categories like gender, income or education can hardly explain differences in altruistic behavior.
Recent neuroscience studies have demonstrated that differences in brain structure might be linked to differences in personality traits and abilities. Now, for the ...
In the focus: Ferroelectricity on the Nanoscale
Berkeley Lab Researchers Say First Atomic-Scale Look at Ferroelectric Nanocrystals Points to Terabytes/Inch Storage
Promising news for those who relish the prospects of a one-inch chip storing multiple terabytes of data, some clarity has been brought to the here-to-fore confusing physics of ferroelectric nanomaterials.
A multi-institutional team of researchers, led by scientists at the U.S. Department of Energy (DOE)?s Lawrence Berkeley National Laboratory (Berkeley ...
In the focus: Tracked step for step: ATP splitting in membrane protein dynamically measured for the first time
Tracked step for step
ATP splitting in membrane protein dynamically measured for the first time
RUB researchers report in the Journal of Biological Chemistry
How a transport protein obtains its driving force from the energy storage molecule ATP, has been tracked dynamically by RUB researchers. Using time-resolved infrared spectroscopy, they measured the structural changes in the bacterial membrane protein MsbA and its interaction partner ATP.
The researchers led by Prof. Dr. Eckhard Hofmann and ...
ndaa timberwolves weight watchers rawhide bigfoot sandra dee twilight zone
No comments:
Post a Comment
Note: Only a member of this blog may post a comment.