I. Cakmak, W. Pfeiffer, B. Mcclafferty
2010.1.13CEREAL CHEMISTRY
tlooto Summary
Biofortification of durum wheat with zinc and iron to combat micronutrient malnutrition affecting over 2 billion people worldwide.
Abstract
ABSTRACT Micronutrient malnutrition affects over 2 billion people in the developing world. Iron (Fe) deficiency alone affects >47% of all preschool aged children globally, often leading to impaired physical growth, mental development, and learning capacity. Zinc (Zn) deficiency, like iron, is thought to affect billions of people, hampering growth and development, and destroying immune systems. In many micronutrient-deficient regions, wheat is the dominant staple food making up >50% of the diet. Biofortification, or harnessing the powers of plant breeding to improve the nutritional quality of foods, is a new approach being used to improve the nutrient content of a variety of staple crops. Durum wheat in particular has been quite responsive to breeding for nutritional quality by making full use of the genetic diversity of Fe and Zn concentrations in wild and synthetic parents. Micronutrient concentration and genetic diversity has been well explored under the HarvestPlus biofortification research program, an...
Citation format
CAKMAK, I.; PFEIFFER, W.; MCCLAFFERTY, B. Biofortification of durum wheat with zinc and iron. CEREAL CHEMISTRY, 2010, 87: 10–20.