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Genotypic and Environmental Variations in Grain Cadmium and Arsenic Concentrations Among a Panel of High Yielding Rice Cultivars

机译:高产水稻品种小组中籽粒镉和砷浓度的基因型和环境变化

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BackgroundRice is a major dietary source of cadmium (Cd) and arsenic (As) for populations consuming rice as the staple food. Excessive Cd and As accumulation in rice grain is of great concern worldwide, especially in South China where soil contamination with heavy metals and metalloids is widespread. It is important to reduce Cd and As accumulation in rice grain through selection and breeding of cultivars accumulating low levels of Cd or As. ResultsTo assess the genetic and environmental variations in the concentrations of Cd and As in rice grains, 471 locally adapted high-yielding rice cultivars were grown at three moderately contaminated sites in South China for two years. Cadmium and As concentrations in brown rice varied by 10 – 32 and 2.5 – 4 fold, respectively. Genotype (G), environment (E) and G x E interactions were highly significant factors explaining the variations. Brown rice Cd concentration was found to correlate positively with the heading date among different cultivars, whereas As concentration and heading date correlated negatively. There was a significant and negative correlation between grain Cd and As concentrations. ConclusionsEight and 6 rice cultivars were identified as stable low accumulators of Cd and As, respectively, based on the multiple site and season trials. These cultivars are likely to be compliant with the grain Cd or As limits of the Chinese Food Safety Standards when grown in moderately contaminated paddy soils in South China.
机译:BackgroundRice是镉(CD)和砷(AS)的主要膳食来源,用于消耗米饭作为主食的群体。过多的CD和随着水稻谷物的积累在全球范围内具有极大的关注,特别是在华南,其中具有重金属和金属的土壤污染是普遍的。通过选择和繁殖累积低水平的Cd或籽粒,减少CD和稻粒中的积累是重要的。结果斯托评估CD浓度和水稻籽粒浓度的遗传和环境变化,471种局部适应的高产水稻品种在南部三个中度污染的地方生长两年。镉和糙米中的浓度分别为10 - 32和2.5-4倍。基因型(G),环境(E)和G X E相互作用是解释变化的高度重要因素。发现糙米Cd浓度与不同品种之间的标题日期正面相关,而作为浓度和标题日期的负面相关。谷物CD和浓度之间存在显着且负相关性。结论基于多个位点和季节试验,鉴定为稳定的低蓄能器和6种水稻品种。这些品种可能符合粮食CD或作为中国食品安全标准的限制,当时在华南的中度污染的水稻土壤中生长。

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