Wheat Grains as a Sustainable Source of Protein for Health

被引:12
作者
Alomari, Dalia Z. [1 ]
Schierenbeck, Matias [2 ,3 ]
Alqudah, Ahmad M. [4 ]
Alqahtani, Mashael Daghash [5 ]
Wagner, Steffen [2 ]
Rolletschek, Hardy [2 ]
Borisjuk, Ljudmilla [2 ]
Roeder, Marion S. [2 ]
机构
[1] Hashemite Univ, Fac Appl Med Sci, Dept Clin Nutr & Dietet, POB 330127, Zarqa 13133, Jordan
[2] Leibniz Inst Plant Genet & Crop Plant Res IPK, Correns Str 3,OT Gatersleben, D-06466 Seeland, Germany
[3] CONICET CCT La Plata, RA-1900 La Plata, Buenos Aires, Argentina
[4] Qatar Univ, Coll Art & Sci, Dept Biol & Environm Sci, Biol Sci Program, POB 2713, Doha, Qatar
[5] Princess Nourah bint Abdulrahman Univ, Coll Sci, Dept Biol, POB 84428, Riyadh 11671, Saudi Arabia
关键词
bread wheat; grain quality; baking quality; flour; GWAS; genetic biofortification; candidate genes; RNA HELICASE; GENE FAMILY; ACCUMULATION; QUALITY; IDENTIFICATION; MALNUTRITION; ASSOCIATION; TOLERANCE; INFECTION; DEFENSE;
D O I
10.3390/nu15204398
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
Protein deficiency is recognized among the major global health issues with an underestimation of its importance. Genetic biofortification is a cost-effective and sustainable strategy to overcome global protein malnutrition. This study was designed to focus on protein-dense grains of wheat (Triticum aestivum L.) and identify the genes governing grain protein content (GPC) that improve end-use quality and in turn human health. Genome-wide association was applied using the 90k iSELECT Infinium and 35k Affymetrix arrays with GPC quantified by using a proteomic-based technique in 369 wheat genotypes over three field-year trials. The results showed significant natural variation among bread wheat genotypes that led to detecting 54 significant quantitative trait nucleotides (QTNs) surpassing the false discovery rate (FDR) threshold. These QTNs showed contrasting effects on GPC ranging from -0.50 to +0.54% that can be used for protein content improvement. Further bioinformatics analyses reported that these QTNs are genomically linked with 35 candidate genes showing high expression during grain development. The putative candidate genes have functions in the binding, remobilization, or transport of protein. For instance, the promising QTN AX-94727470 on chromosome 6B increases GPC by +0.47% and is physically located inside the gene TraesCS6B02G384500 annotated as Trehalose 6-phosphate phosphatase (T6P), which can be employed to improve grain protein quality. Our findings are valuable for the enhancement of protein content and end-use quality in one of the major daily food resources that ultimately improve human nutrition.
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页数:16
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