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Comparative Rice Bran Metabolomics across Diverse Cultivars and Functional Rice Gene–Bran Metabolite Relationships

机译:跨品种水稻麸皮代谢组学的比较及功能性水稻基因麸皮代谢物的关系

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摘要

Rice (Oryza sativa L.) processing yields ~60 million metric tons of bran annually. Rice genes producing bran metabolites of nutritional and human health importance were assessed across 17 diverse cultivars from seven countries using non-targeted metabolomics, and resulted in 378–430 metabolites. Gambiaka cultivar had the highest number and Njavara had the lowest number of metabolites. The 71 rice bran compounds of significant variation by cultivar included 21 amino acids, seven carbohydrates, two metabolites from cofactors and vitamins, 33 lipids, six nucleotides, and two secondary metabolites. Tryptophan, α-ketoglutarate, γ-tocopherol/β-tocopherol, and γ-tocotrienol are examples of bran metabolites with extensive cultivar variation and genetic information. Thirty-four rice bran components that varied between cultivars linked to 535 putative biosynthetic genes using to the OryzaCyc 4.0, Plant Metabolic Network database. Rice genes responsible for bran composition with animal and human health importance is available for rice breeding programs to utilize in crop improvement.
机译:稻米(Oryza sativa L.)加工每年可产生约6000万吨的麸皮。水稻基因产生了具有营养和人类健康意义的麸皮代谢产物,使用非目标代谢组学方法对来自七个国家的17个品种进行了评估,结果产生了378-430种代谢产物。 Gambiaka品种的代谢物数量最多,而Njavara的代谢物数量最少。 71个因品种不同而异的米糠化合物包括21个氨基酸,7个碳水化合物,两种来自辅因子和维生素的代谢产物,33个脂质,6个核苷酸和2个次级代谢产物。色氨酸,α-酮戊二酸酯,γ-生育酚/β-生育酚和γ-生育三烯酚是麸皮代谢产物的示例,这些品种具有广泛的品种变异和遗传信息。使用OryzaCyc 4.0植物代谢网络数据库,在与535个推定的生物合成基因相关的栽培品种之间变化的34种米糠成分。水稻基因组具有重要的麸皮组成,对动物和人类健康具有重要意义,可用于水稻育种计划,以用于作物改良。

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