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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Grain Zinc, Iron, and Copper Concentrations of Wheat Grown in Central Iran and Their Relationships with Soil and Climate Variables
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Grain Zinc, Iron, and Copper Concentrations of Wheat Grown in Central Iran and Their Relationships with Soil and Climate Variables

机译:伊朗中部地区小麦的谷物锌,铁和铜含量及其与土壤和气候变量的关系

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摘要

We performed a survey in central Iran to assess the variability in grain zinc (Zn), iron (Fe), and copper (Cu) concentrations of winter wheat and their relationships with soil and climate variables under field conditions. The goal was to identify factors that should be studied further to improve wheat cultivation in the study area with respect to the nutritional quality of this main Iranian staple crop. Soil and grain samples were collected from 137 randomly selected wheat fields in the provinces of Qom, Isfahan, and Fars. In general, soils were characterized by a high pH. Grain micronutrient concentrations ranged from 11.7 to 64.0 mg kg~(-1) (mean, 31.6 mg kg~(-1)) for Zn, from 21.1 to 96.6 mg kg~(-1) (mean, 42.7 mg kg~(-1)) for Fe, and from 2.4 to 9.3 mg kg~(-1) (mean, 5.5 mg kg~(-1)) for Cu. The grain concentrations of these three metals were positively correlated to each other. DTPA-extractable and total soil micronutrient concentrations alone were very poor predictors of grain micronutrient concentrations. Predictions were slightly improved when other soil and climate variables were taken into account (Zn, R~2=0.26; Fe, R~2=0.08; and Cu, R~2=0.13).
机译:我们在伊朗中部进行了一项调查,以评估田间条件下冬小麦的籽粒锌(Zn),铁(Fe)和铜(Cu)浓度的变异性及其与土壤和气候变量的关系。目的是就伊朗主要主粮的营养质量,确定需要进一步研究的因素,以改善研究区域的小麦种植。从库姆,伊斯法罕和法尔斯省的137个随机选择的麦田中收集了土壤和谷物样品。通常,土壤的特征在于高pH。锌的微量营养素浓度范围从11.7至64.0 mg kg〜(-1)(平均31.6 mg kg〜(-1)),从21.1至96.6 mg kg〜(-1)(平均42.7 mg kg〜(-) 1)为铁,Cu为2.4至9.3 mg kg〜(-1)(平均5.5 mg kg〜(-1))。这三种金属的颗粒浓度彼此呈正相关。单独使用DTPA可提取的总微量营养素和土壤微量营养素的总浓度是谷物微量营养素浓度的非常差的预测指标。当考虑其他土壤和气候变量时,预测略有改善(Zn,R〜2 = 0.26; Fe,R〜2 = 0.08; Cu,R〜2 = 0.13)。

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