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Using sowing date management to promote micronutrient quality and alleviate cadmium accumulation in rice grains

机译:利用播播日期管理促进微量营养素质量,缓解水稻籽粒中的镉积累

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摘要

Rice micronutrients and toxic metal levels are important quality issues impacting "hidden hunger" and food safety. The aim of this study was to evaluate the effects of sowing date (SD) on element accumulations in rice grains. We conducted a rice SD experiment every 7 days from May 10 to June 21 in 2017 and 2018 using 2japonica(Oryza sativaL.) cultivars. The rice yields were determined, and 19 element contents in the grains were measured via inductively coupled plasma mass spectrometry. Analysis of variance indicated that early SD significantly promoted the rice yields and the micronutrient (i.e., Cu, Fe, Mn, Ni, and Zn) levels in grains. However, early SD also significantly increased Cr and Pb contents but significantly limited Cd accumulations in rice grains. Anyway, the element contents of all determined samples satisfied the requirements of maximum permissible concentrations (GB2762-2012) in this uncontaminated area. Redundancy analysis indicated that temperature and precipitation were the main meteorological drivers of element accumulations. Meanwhile, Cd accumulation was simultaneously affected by the antagonism of Fe/Zn. Thus, we concluded that SD management could be a feasible strategy for promoting micronutrient quality of rice grains and further alleviating Cd accumulations when aiming at high yields.
机译:大米微量营养素和有毒金属含量是影响“隐性饥饿”和食品安全的重要质量问题。本研究旨在评估播种期(SD)对水稻籽粒中元素积累的影响。2017年和2018年5月10日至6月21日,我们使用2japonica(Oryza sativaL.)每7天进行一次水稻SD试验品种。测定了水稻产量,并用电感耦合等离子体质谱法测定了谷物中19种元素的含量。方差分析表明,早期SD显著提高了水稻产量和籽粒中的微量元素(即铜、铁、锰、镍和锌)水平。然而,早期SD也显著增加了水稻籽粒中的Cr和Pb含量,但显著限制了Cd的积累。总之,所有测定样品的元素含量均满足该未污染区域的最大允许浓度(GB2762-2012)要求。冗余分析表明,温度和降水是元素积累的主要气象驱动因素。同时,铁/锌的拮抗作用也影响镉的积累。因此,我们得出结论,SD管理可能是一种可行的策略,可以提高水稻籽粒的微量营养素质量,并进一步缓解以高产为目标的镉积累。

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