首页> 外文期刊>Cereal Research Communications >Zn and Fe Concentration Variations of Grain and Flag Leaf and the Relationship with NAM-G1 Gene in Triticum timopheevii (Zhuk.) Zhuk. ssp timopheevii
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Zn and Fe Concentration Variations of Grain and Flag Leaf and the Relationship with NAM-G1 Gene in Triticum timopheevii (Zhuk.) Zhuk. ssp timopheevii

机译:Zn和Fe浓度变化的谷物和旗叶与Triticum(Zhuk)中的Nam-G1基因的关系。 SSP Timopheevii.

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摘要

Grains of 12 accessions of Triticum timopheevii (Zhuk.) Zhuk. ssp. timopheevii (AAGG, 2n = 4x = 28) and one bread wheat cultivar Chinese Spring (CS) and one durum wheat cultivar Langdon (LDN) grown across two years were analyzed for grain iron (Fe) and zinc (Zn) concentrations. All the 12 tested T. timopheevii ssp. timopheevii genotypes showed significantly higher concentration of grain Fe and Zn than CS and LDN. Aboundant genetic variability of both the Fe and Zn concentrations was observed among the T. timopheevii ssp. timopheevii accessions, averagely varied from 47.06 to 90.26 mg kg(-1) and from 30.05 to 65.91 mg kg(-1), respectively. Their grain Fe and Zn concentrations between years exhibited a significantly positive correlation with the correlation coefficients r = 0.895 and r = 0.891, respectively, indicating the highly genetic stability. Flag leaf possessed twice or three times higher concentrations for both Fe and Zn than grain, and a significantly high positive correlation appeared between the two organs with r = 0.648 for Fe and r = 0.957 for Zn concentrations, respectively, suggesting flag leaves might be indirectly used for evaluating grain Zn and Fe contents. Significant correlations occurred between grain Fe and Zn concentrations, and between grain Zn concentration and the two agronomic traits of plant height and number of spikelets per spike. Both the concentrations were not related to seed size or weight as well as NAM-G1 gene, implying the higher grain Fe and Zn concentrations of T. timopheevii ssp. timopheevii species are not ascribed to concentration effects of seed and the genetic control of NAM-G1 gene. There might be some other biological factors impacting the grain's Zn and Fe concentrations. These results indicated T. timopheevii ssp. timopheevii species might be a promising genetic resource with high Fe and Zn concentrations for the biofortification of current wheat cultivars.
机译:Triticum Diropheevii(Zhuk)Zhuk的12种遗产。 SSP。 Timopheevii(AAGG,2N = 4x = 28)和一个面包小麦品种中国弹簧(CS)和两年内生长的杜兰麦小麦品种Langdon(LDN)用于谷物铁(Fe)和锌(Zn)浓度。所有12个测试的T. Timopheevii SSP。 Timopheevii基因型显示粒子Fe和Zn浓度明显高于Cs和LDN。在Timopheevii SSP中观察到Fe和Zn浓度的吸收剂遗传变异。 Timopheevii附加,平均从47.06到90.26 mg kg(-1)和30.05分别为30.05至65.91 mg kg(-1)。他们的谷物Fe和Zn浓度之间分别与相关系数r = 0.895和r = 0.891显着呈显着正相关,表明高遗传稳定性。 Fe和Zn具有比晶粒的两倍或三倍的浓度高出两倍或三倍,并且对于Zn浓度的r = 0.648的两个器官之间出现显着高的阳性相关性,Zn浓度,暗示旗叶可能是间接的用于评估谷物Zn和Fe内容物。谷物Fe和Zn浓度之间以及谷物Zn浓度与植物高度的两个农艺性状和每穗穗分数的显着相关性。浓度无关与种子尺寸或重量以及Nam-G1基因无关,暗示较高的Timopheevii SSP的谷物Fe和Zn浓度。 Timopheevii物种未归因于种子的浓度效应和Nam-G1基因的遗传控制。可能存在一些影响谷物Zn和Fe浓度的其他生物因素。这些结果指示Timopheevii SSP。 Timopheevii物种可能是具有高Fe和Zn浓度的有前途的遗传资源,用于当前小麦品种的生物侵蚀。

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