Abstract
Dietary vitamin A deficiency causes eye disease in 40 million children each year and places 140 to 250 million at risk for health disorders. Many children in sub-Saharan Africa subsist on maize-based diets. Maize displays considerable natural variation for carotenoid composition, including vitamin A precursors alpha-carotene, beta-carotene, and beta-cryptoxanthin. Through association analysis, linkage mapping, expression analysis, and mutagenesis, we show that variation at the lycopene epsilon cyclase (lcyE) locus alters flux down alpha-carotene versus beta-carotene branches of the carotenoid pathway. Four natural lcyE polymorphisms explained 58% of the variation in these two branches and a threefold difference in provitamin A compounds. Selection of favorable lcyE alleles with inexpensive molecular markers will now enable developing-country breeders to more effectively produce maize grain with higher provitamin A levels.
MeSH Terms
Base Sequence
Breeding
Carotenoids/analysis,metabolism
Crosses, Genetic
Cryptoxanthins
Gene Expression Regulation, Plant
Genetic Variation
Haplotypes
Intramolecular Lyases/genetics,metabolism
Molecular Sequence Data
Mutagenesis
Nutritive Value
Polymorphism, Genetic
Quantitative Trait Loci
Xanthophylls/analysis,metabolism
Zea mays/chemistry,enzymology,genetics
beta Carotene/analysis,metabolism
Chemicals
Cryptoxanthins
Xanthophylls
beta Carotene
Carotenoids
alpha-carotene
Intramolecular Lyases
lycopene cyclase-isomerase
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Harjes Carlos E
Institute for Genomic Diversity, Cornell University, Ithaca, NY 14853, USA.
Rocheford Torbert R
Bai Ling
Brutnell Thomas P
Kandianis Catherine Bermudez
Sowinski Stephen G
Stapleton Ann E
Vallabhaneni Ratnakar
Williams Mark
Wurtzel Eleanore T
Yan Jianbing
Buckler Edward S
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