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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Interactions between nitrogen application and soil properties and their impacts on the transfer of cadmium from soil to wheat (Triticum aestivum L.) grain
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Interactions between nitrogen application and soil properties and their impacts on the transfer of cadmium from soil to wheat (Triticum aestivum L.) grain

机译:氮施用与土壤性质之间的相互作用及其对小麦土壤中镉转移(Triticum Aestivum L.)粒的影响

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Rapid urbanization, industrialization, and agricultural intensification have triggered soil and environmental pollution through excessive nitrogen (N) application and cadmium (Cd) contamination. There is still contradiction regarding the effect of N application and soil properties on grain Cd concentration in wheat (Triticum aesavum L.). Grain Cd concentration does not only rely on crop genotypic characteristics and soil geochemical properties but also to a large extent on N fertilizer application. Assessing and identifying the factors governing Cd phytoavailability in soil-plant systems is thus crucial. For this purpose, we developed and validated quantitative relationships of wheat grain Cd concentration with soil geochemical properties related to Cd phytoavailability (pH, Eh, CEC, EC), and N application rates and to investigate interactions between N application rates (0-300 kg ha(-1)), soil geochemical properties, and grain Cd concentration with data acquired from four field trials conducted in China during 2017-2018 using two wheat cultivars (Annong-1124 and Ningmai-15). The results indicated that N application rates significantly influenced soil properties (pH, Eh, CEC, and EC) and played a decisive role in the transfer of Cd from soil to wheat grain by increasing soil acidification, soil salinity, oxidation reactions, and exchange capacity. Soil geochemical properties were ranged from 5.49 to 6.02 (pH), 55.07 to 103.73 mV (Eh), 164.57 to 258.63 2 mu S.cm(-1) (EC), 19.2 to 23 cmol.kg(-1) (CEC), while grain Cd was ranged from 0.16 to 0.27 mg.kg(-1). Quantitative relationships were highly significant for both wheat cultivars with R-2 > 0.83. Validation results indicated a solid performance of quantitative relationships (RMSE < 3%, RRMSE < 8%, RE < 7%, and R-2 > 0.90) and confirmed their robustness as reliable predictors for assessing wheat grain Cd concentration. The finding of this work will further assist agronomist to assess the possible risk of elevated Cd content in these wheat cultivars arising from regional crop and soil management strategies, especially related to N. The findings will help to improve food security and soil sustainability without compromising the food safety-related risks.
机译:通过过量的氮气(N)施用和镉(CD)污染,快速城市化,工业化和农业增强引发了土壤和环境污染。关于N施用和土壤性质对小麦籽粒CD浓度的影响仍然是矛盾(Triticum Aesavum L.)的影响。谷物Cd浓度不仅依赖于作物基因型特征和土壤化学性质,而且在很大程度上对N肥料应用。因此,评估和鉴定治疗土壤植物系统中CD植物可利用性的因素至关重要。为此目的,我们开发和验证了与CD PhytoAvaIsability(pH,EH,CEC,EC)和N申请率相关的土壤地球化学性质的小麦籽粒CD浓度的定量关系,并研究了N申请率之间的相互作用(0-300 kg HA(-1)),土壤地球化学性质,以及在2017 - 2018年在中国进行的四次田间试验中获取的数据,使用两种小麦品种(Annong-1124和Ningmai-15)在中国进行的四个现场试验中获取的数据。结果表明,N申请率显着影响土壤性质(pH,eH,CEC和EC),通过增加土壤酸化,土壤盐度,氧化反应和交换能力,在从土壤到小麦籽粒转移到小麦籽粒中的决定性作用。土壤地球化学性能为5.49至6.02(pH),55.07至103.73 mV(EH),164.57至258.63 2亩S.cm(-1)(EC),19.2至23 cmol.kg(CEC) ,谷物Cd的范围为0.16至0.27 mg.kg(-1)。对于R-2> 0.83的小麦品种,定量关系非常显着。验证结果表明定量关系的固体性能(RMSE <3%,RRMSE <8%,RE <7%和R-2> 0.90),并证实了它们作为评估小麦谷物CD浓度的可靠预测因子的鲁棒性。这项工作的发现将进一步协助农学家,评估由区域作物和土壤管理策略引起的这些小麦品种中升高的CD含量的可能风险,特别是与N.结果有助于改善粮食安全和土壤可持续性,而不会影响食品安全相关风险。

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