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首页> 外文期刊>Agronomy >Genotypic Variation in Anthocyanins, Phenolic Compounds, and Antioxidant Activity in Cob and Husk of Purple Field Corn
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Genotypic Variation in Anthocyanins, Phenolic Compounds, and Antioxidant Activity in Cob and Husk of Purple Field Corn

机译:紫色大田玉米花色苷,酚类化合物的基因型变异和玉米芯和壳的抗氧化活性

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Information on phytochemicals in the cob and husk of field corn is important for the use of corn waste in the production of value-added corn products. The objectives of this study were to evaluate the variation in monomeric anthocyanin content (MAC), total phenolic content (TPC), and antioxidant activity, as determined by 2,2-diphenyl-1-picrylhydrazyl (DPPH) free radical scavenging activity and Trolox equivalent antioxidant capacity (TEAC) in 53 purple field corn genotypes, and to study the correlations of these traits with color parameters. Fifty-three corn genotypes were planted in a randomized complete block design with three replications in two locations in the dry season of 2015/2016. The effects of genotype, location, and the interaction between genotype and location were significant for most characters. Genotypic variation contributed to a large portion of the total variance for all traits, accounting for 63.9–86.9%. Corn genotypes were classified into six groups based on MAC, TPC, and antioxidant activity determined by the DPPH and the TEAC methods. The highest MAC, TPC, and antioxidant activity were obtained in TB/KND//PF3 and TB/KND//PF8 for husk, and only TB/KND//PF8 for cob. They should be used as parental lines to develop corn varieties with high phytochemicals. Chroma (C*) and hue (H°) of color parameters could potentially be used as an indirect selection criterion for improving MAC, TPC, and antioxidant activity in cob. The information is useful for the improvement of phytochemicals in cob and husk of field corn.
机译:田间玉米穗轴和稻壳中有关植物化学物质的信息对于在生产增值玉米产品中使用玉米废料很重要。这项研究的目的是评估由2,2-二苯基-1-picylhydrazyl(DPPH)自由基清除活性和Trolox确定的单体花色苷含量(MAC),总酚含量(TPC)和抗氧化活性的变化。等价抗氧化能力(TEAC)在53个紫色大田玉米基因型中,并研究这些性状与颜色参数的相关性。在2015/2016旱季,以随机完整区组设计种植了53种玉米基因型,并在两个位置进行了三个重复。基因型,位置以及基因型与位置之间的相互作用对大多数字符都具有显着影响。基因型变异占所有性状总变异的很大一部分,占63.9-86.9%。根据MAC,TPC和通过DPPH和TEAC方法测定的抗氧化活性,将玉米基因型分为六类。壳中的TB / KND // PF3和TB / KND // PF8的MAC,TPC和抗氧化剂活性最高,而穗轴只有TB / KND // PF8。它们应被用作育成具有高植物化学物质的玉米品种的亲本系。颜色参数的色度(C *)和色相(H°)可能被用作改善玉米芯中MAC,TPC和抗氧化活性的间接选择标准。该信息对于改善大田玉米芯和壳中的植物化学物质很有用。

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