Applications of Genomic Tools in Plant Breeding: Crop Biofortification

Author:

Medina-Lozano InésORCID,Díaz AuroraORCID

Abstract

Crop breeding has mainly been focused on increasing productivity, either directly or by decreasing the losses caused by biotic and abiotic stresses (that is, incorporating resistance to diseases and enhancing tolerance to adverse conditions, respectively). Quite the opposite, little attention has been paid to improve the nutritional value of crops. It has not been until recently that crop biofortification has become an objective within breeding programs, through either conventional methods or genetic engineering. There are many steps along this long path, from the initial evaluation of germplasm for the content of nutrients and health-promoting compounds to the development of biofortified varieties, with the available and future genomic tools assisting scientists and breeders in reaching their objectives as well as speeding up the process. This review offers a compendium of the genomic technologies used to explore and create biodiversity, to associate the traits of interest to the genome, and to transfer the genomic regions responsible for the desirable characteristics into potential new varieties. Finally, a glimpse of future perspectives and challenges in this emerging area is offered by taking the present scenario and the slow progress of the regulatory framework as the starting point.

Funder

Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria

Gobierno de Aragón

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference243 articles.

1. The State of Food Security and Nutrition in the World 2021. Trasforming Food System for Food Security, Improved Nutrition and Affordable Healthy Diets for All,2021

2. First call for children,1990

3. Nutritional Value and Phytochemical Content of Crop Landraces and Traditional Varieties;Medina-Lozano,2021

4. Development of an Iron-enriched High-yieldings Indica Rice Cultivar by Introgression of A High-iron Trait from Transgenic Iron-biofortified Rice

5. Introgression of group 4 and 7 chromosomes of Ae. peregrina in wheat enhances grain iron and zinc density

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