australian scientists discover faminebeating grain
Last Updated : GMT 06:49:16
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Last Updated : GMT 06:49:16
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Interest in sorghum’s biofuel uses surges

Australian scientists discover famine-beating grain

Arab Today, arab today

Arab Today, arab today Australian scientists discover famine-beating grain

Genetically tweaking sorghum could help populations in the Third World
Paris – Arabstoday

Genetically tweaking sorghum could help populations in the Third World Paris – Arabstoday Agricultural researchers have announced the discovery of a gene that boosts the digestibility of sorghum, transforming a humble grain into a potential famine-beater. Sorghum [Latin name Sorghum bicolor] is a tough tropical cereal grown in dry regions of Africa, India and the southern United States.
The plant is drought-tolerant but ranks far lower than corn, wheat and rice as a food because the human digestive system cannot absorb many of its calories.
It is often grown as animal feed, and interest in it as a biofuel has also surged recently.
But, according to a study published in the journal Nature Communications, sorghum's future may change.
Scientists in Australia said they had pinpointed a tiny variant in a gene which controls an enzyme called pullulanase that helps to break down starch in sorghum, making the grain more digestible.
The gene does not affect the grain's other helpful characteristics, they reported.
The next step should be to cross-breed commonly grown strains of sorghum with the variety that has the genetic variant in order to boost the crop's value as a food source for humans, the study said.
"Ultimately, increasing the calorific value of this crop without reducing yield can help to ensure global food security in drought-prone areas of Africa, Asia and elsewhere, while minimising negative effects of agricultural expansion," the paper said.
The work marks the latest advance in agricultural genomics, in which the DNA of key crop plants is sequenced to look for genes that influence yields or resistance to drought, flood and salinity.
The genome of sorghum was first sequenced in January 2009.
Source: AFP

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