World-first QUT research that has produced a golden-orange fleshed banana, rich in pro-vitamin A, has been published today in the prestigious Plant Biotechnology Journal.
- QUT has produced Ugandan bananas high in pro-vitamin A
- Cooking bananas are the staple food in rural Uganda
- Worldwide 650 000 – 750 000 children die from vitamin A deficiency
- Ugandan farmers will be growing pro-vitamin A rich bananas in 2021
- A humanitarian project backed by the Bill & Melinda Gates Foundation
The decade-long research, led by Distinguished Professor James Dale, involved extensive laboratory tests at QUT as well as field trials in north Queensland.
Professor Dale said the genetic modification process had resulted in the identification and selection of banana genes that could be used to enhance pro-vitamin A in banana fruit.
Professor Dale describes the development of the biofortified banana as a significant humanitarian project.
“The East African Highland cooking banana is an excellent source of starch. It is harvested green then chopped and steamed,” Professor Dale said.
“But it has low levels of micronutrients particularly pro-vitamin A and iron. The consequences of vitamin A deficiency are severe.”
He said it had been estimated that 650,000-700,000 children world-wide die from pro-vitamin A deficiency each year with a further several hundred thousand going blind.
“What we’ve done is take a gene from a banana that originated in Papua New Guinea and is naturally very high in pro-vitamin A but has small bunches, and inserted it into a Cavendish banana,” Professor Dale said.
“Over the years, we’ve been able to develop a banana that has achieved excellent pro-vitamin A levels, hence the golden-orange rather than cream-coloured flesh.
“Achieving these scientific results along with their publication, is a major milestone in our quest to deliver a more nutritional diet to some of the poorest subsistence communities in Africa.
“Our science works,” Professor Dale said, “and it’s technology that was developed here at QUT.
“We tried and tested hundreds of different genetic variations here in our lab and in field trials in Queensland until we got the best results.
“These elite genes have been sent to Uganda in test tubes where they have been inserted into Ugandan bananas for field trials there.”
Professor Dale said another really pleasing aspect of the project was the fact that young Ugandan students, who came to QUT to undertake their studies, had now completed their PhDs and were overseeing the research and field trials in Uganda.
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