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Comparison of Grain Zinc and Iron Concentration between Synthetic Hexaploid Wheats and Their Parents

机译:合成六倍体小麦与其亲本的籽粒锌和铁含量比较

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摘要

Deficiencies of iron (Fe) and zinc (Zn) in human food afflict a large proportion of the world’s population. Wheat is a major food source of minerals. One way to enhance bread wheat’s ability to enrich these minerals would be to take advantage of diversity of wild species by creating synthetic hexaploid wheat (SW). In this study, two minerals (Fe and Zn) concentrated in the grain of Aegilops tauschii Coss. (2n = 2x = 14, DD), Triticum turgidum L. (2n = 4x = 28, AABB), and 33 lines of their corresponding SW (2n = 2x = 42, AABBDD) were evaluated. The results showed that Fe concentration was decreased in most of SW lines compared with their parental Aegilops tauschii accessions, while Zn concentration was greatly increased in most of SW lines compared with their parental Aegilops tauschii accessions. Aegilops tauschii had stronger Fe enrichment than Triticum turgidum while they expressed the same ability for Zn enrichment. The genotypic variance based on their physiological performance was analyzed. SW lines showed less genotypic variance of Fe and Zn concentration than Aegilops tauschii. SW lines showed less genotypic variance of Fe concentration than Triticum turgidum L. lines while they had more genotypic variance of Zn concentration than Triticum turgidum L. lines. Regardless of the fact that the traits expressed in wild relatives of wheat may not predict the traits that will be expressed in SW lines derived from them, production of SW could be a powerful method creating genotypes with enhanced trait expression.
机译:人类食物中铁(Fe)和锌(Zn)的缺乏困扰着世界上很大一部分人口。小麦是矿物质的主要食物来源。提高面包小麦丰富这些矿物质能力的一种方法是通过创建合成六倍体小麦(SW)来利用野生物种的多样性。在这项研究中,两种矿物(Fe和Zn)集中在Aegilops tauschii Coss的谷物中。 (2n = 2x = 14,DD),黑小麦(2n = 4x = 28,AABB)和33行相应的SW(2n = 2x = 42,AABBDD)被评估。结果表明,大多数西南品系的铁含量均比其亲本节节菜的减少,而大多数西南品系的锌浓度比其父本节选品中的锌的含量大大增加。 tauschii山羊草具有比小麦小麦更强的铁富集能力,而它们表现出相同的锌富集能力。基于其生理表现的基因型差异进行了分析。 SW系显示铁和锌浓度的基因型差异小于节节藻。 SW系显示出的Fe的基因型变异比小麦黑麦草的系少,而它们的Zn的基因型变异比小麦草系高。无论在小麦的野生近缘种中表达的性状可能无法预测从其衍生的SW系中表达的性状,SW的产生都可以成为创建具有增强性状表达能力的基因型的有效方法。

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