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Mineral element concentrations in grains of Chinese wheat cultivars

机译:中国小麦品种籽粒中矿质元素的含量

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摘要

Investigations on concentration of mineral elements including Fe and Zn in wheat grains are important for human health. Two hundreds and sixty-five cultivars and advanced lines were collected and sown at Anyang experimental station of the Institute of Crop Science of the Chinese Academy of Agriculture Sciences in season 2005–2006 to evaluate the genetic variation of major mineral element concentrations in wheat grain. Twenty-four selected cultivars were also planted at seven representative locations in seasons 2005–2006 and 2006–2007 to evaluate the effects of genotype, environment, and genotype by environment interaction on mineral element concentrations. The 265 genotypes displayed a large variation for all mineral elements investigated including Fe and Zn, ranging from 28.0 to 65.4 mg kg−1 and 21.4 to 58.2 mg kg−1 for Fe and Zn, with mean values of 39.2 and 32.3 mg kg−1, respectively. Jimai 26, Henong 326, and Jingdong 8 displayed high Fe and Zn concentrations, and Jimai 26 and Henong 326 also displayed high concentrations of Cu, Mg, K, P, and protein content. Jingdong 8 is the most promising leading cultivar for increasing Fe and Zn concentrations. All mineral element concentrations including Fe and Zn were largely influenced by environment effects. Production of high Fe concentration can be best secured at Jiaozuo and Jinan, and high Zn concentration can be best secured at Jinan and Xuzhou, since samples from these locations in the two seasons are characterized by high Fe or Zn concentration, compared with the other locations. High and significant genotype by environment interaction effects on all mineral element concentrations were also observed, with ratios of genotype by environment to genotype variances all larger than 1.20. Grain Fe concentration was highly significant and positively correlated with that of Zn, indicating a high possibility to combine high Fe and Zn traits in wheat breeding. It also indicated strong positive correlations between concentrations of Fe, Zn, and protein content.
机译:对小麦籽粒中的铁和锌等矿质元素含量进行调查对人类健康至关重要。 2005-2006年,在中国农业科学院作物科学研究所安阳试验站采集并播种了265个品种和高级品系,以评估小麦籽粒中主要矿质元素含量的遗传变异。在2005–2006和2006–2007的季节中,还在七个有代表性的地点种植了24个选定的品种,以评估基因型,环境和基因型通过环境相互作用对矿质元素浓度的影响。 265种基因型在所有调查的矿物质元素(包括铁和锌)上均表现出很大差异,铁的范围从28.0至65.4 mg kg -1 ,铁的范围从21.4至58.2 mg kg -1 和锌,平均值分别为39.2和32.3 mg kg -1 。集麦26,河农326和京东8表现出高的铁和锌浓度,集麦26和河农326也表现出高浓度的铜,镁,钾,磷和蛋白质含量。京东8号是提高铁和锌浓度最有前途的领先品种。所有矿物元素的浓度(包括铁和锌)在很大程度上受环境影响。焦作和济南最好保证高铁含量的生产,济南和徐州最好保证高锌的含量,因为与其他地点相比,这两个季节来自这些地点的样品的特点是铁或锌的浓度高。 。还观察到了由环境相互作用引起的高而显着的基因型对所有矿物质元素浓度的影响,环境与基因型变异的比率均大于1.20。籽粒中铁的含量非常高,并且与锌呈正相关,表明在小麦育种中将高铁和锌性状结合的可能性很高。这也表明铁,锌的浓度与蛋白质含量之间存在强正相关。

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