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Exploiting Phenylpropanoid Derivatives to Enhance the Nutraceutical Values of Cereals and Legumes

机译:开发苯丙烷类衍生物以增强谷物和豆类的营养价值

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摘要

Phenylpropanoids are a diverse chemical class with immense health benefits that are biosynthesized from the aromatic amino acid L-phenylalanine. This article reviews the progress for accessing variation in phenylpropanoids in germplasm collections, the genetic and molecular basis of phenylpropanoid biosynthesis, and the development of cultivars dense in seed-phenylpropanoids. Progress is also reviewed on high-throughput assays, factors that influence phenylpropanoids, the site of phenylpropanoids accumulation in seed, Genotype × Environment interactions, and on consumer attitudes for the acceptance of staple foods rich in phenylpropanoids. A paradigm shift was noted in barley, maize, rice, sorghum, soybean, and wheat, wherein cultivars rich in phenylpropanoids are grown in Europe and North and Central America. Studies have highlighted some biological constraints that need to be addressed for development of high-yielding cultivars that are rich in phenylpropanoids. Genomics-assisted breeding is expected to facilitate rapid introgression into improved genetic backgrounds by minimizing linkage drag. More research is needed to systematically characterize germplasm pools for assessing variation to support crop genetic enhancement, and assess consumer attitudes to foods rich in phenylpropanoids.
机译:苯丙类化合物是多种化学类别,具有巨大的健康益处,可以通过芳族氨基酸L-苯丙氨酸生物合成。本文综述了种质资源中收集苯丙烷类化合物变异的研究进展,苯丙烷类化合物生物合成的遗传和分子基础以及种子苯丙烷类化合物致密品种的发展。还审查了高通量分析,影响苯丙烷类化合物的因素,种子中苯丙烷类化合物积累的部位,基因型×环境相互作用以及消费者对富含苯丙烷类化合物主食的接受态度的进展。在大麦,玉米,大米,高粱,大豆和小麦中都注意到了范式的转变,其中富含苯丙烷的栽培品种在欧洲,北美洲和中美洲生长。研究突出了一些生物学上的制约因素,而这些制约因素对于开发富含苯丙烷类化合物的高产栽培种来说是必需的。通过最小化连锁阻力,基因组学辅助育种有望促进快速渗入改良的遗传背景。需要进行更多的研究来系统地表征种质库,以评估变异以支持作物遗传改良,并评估消费者对富含苯丙烷类食物的态度。

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