Development of β-carotene rich maize hybrids through marker-assisted introgression of β-carotene hydroxylase allele

Development of vitamin A-rich cereals can help in alleviating the widespread problem of vitamin A deficiency. We report here significant enhancement of kernel β-carotene in elite maize genotypes through accelerated marker-assisted backcross breeding. A favourable allele (543 bp) of the β-carotene hy...

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Veröffentlicht in:PloS one 2014-12, Vol.9 (12), p.e113583-e113583
Hauptverfasser: Muthusamy, Vignesh, Hossain, Firoz, Thirunavukkarasu, Nepolean, Choudhary, Mukesh, Saha, Supradip, Bhat, Jayant S, Prasanna, Boddupalli M, Gupta, Hari S
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Sprache:eng
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Zusammenfassung:Development of vitamin A-rich cereals can help in alleviating the widespread problem of vitamin A deficiency. We report here significant enhancement of kernel β-carotene in elite maize genotypes through accelerated marker-assisted backcross breeding. A favourable allele (543 bp) of the β-carotene hydroxylase (crtRB1) gene was introgressed in the seven elite inbred parents, which were low (1.4 µg/g) in kernel β-carotene, by using a crtRB1-specific DNA marker for foreground selection. About 90% of the recurrent parent genome was recovered in the selected progenies within two backcross generations. Concentration of β-carotene among the crtRB1-introgressed inbreds varied from 8.6 to 17.5 µg/g - a maximum increase up to 12.6-fold over recurrent parent. The reconstituted hybrids developed from improved parental inbreds also showed enhanced kernel β-carotene as high as 21.7 µg/g, compared to 2.6 µg/g in the original hybrid. The reconstituted hybrids evaluated at two locations possessed similar grain yield to that of original hybrids. These β-carotene enriched high yielding hybrids can be effectively utilized in the maize biofortification programs across the globe.
ISSN:1932-6203
1932-6203
DOI:10.1371/journal.pone.0113583