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ACCUMULATION OF CADMIUM BY LUPIN SPECIES AS AFFECTED BY Cd APPLICATION TO ACIDIC YELLOW SAND

机译:酸性黄砂中镉对小L种镉含量的影响

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Cadmium (Cd) accumulation in the aboveground parts of graincrops, and cultivar variation in uptake are of significant concern in the food supply chain. A glasshouse experiment on an acidic yellow sand was conducted to determine the effect of applied cadmium (0, 0.83, 1.67, 2.5, 3.35 mg Cd kg~(-1) soil) on the grain yield of Lupinus angustifolius L. (narrow-leafed lupin; cv. Gungurru) and Lupinus luteus L. (yellow lupin) cultivars, and the concentration and uptake (content) of cadmium by stems and grain. The addition of Cd decreased the grain yield of all varieties of yellow lupin, except Teo-105. However, the grain yield of narrow-leafed lupin was not significantly (p = 0.05) reduced by the addition of Cd to the soil. The grain yield of yellow lupin varieties of P283553 and 94017-3 decreased by 50-60% by the addition of Cd compared to other varieties (Wodjil, 94DO19-1) where grain yield decreased by about 10% with Cd application. Cadmium concentration in plant stems and grain and the content of Cd in lupin plants increased markedly with increasing levels of Cd in the soil. The increase in Cd concentration in stems and grain with the addition of Cd was always higher in yellow lupin than for narrow-leafed lupin. The Cd concentration in the grain of narrow-leafed lupin was about 40% of that of yellow lupin. The concentration of Cd in the stem at maturity was always higher than the Cd concentration in the grain for both Lupinus species. Yellow lupin, except 94DO19-1 had higher concentration of Cd in grain where no Cd was applied to the soil. However, compared to narrow-leafed lupin, all yellow lupin varieties had higher concentration of Cd in grain where Cd was applied to the soil.
机译:谷物作物地上部分的镉积累和品种吸收的差异在食品供应链中是备受关注的问题。进行了在酸性黄沙上的温室试验,以确定施用镉(0、0.83、1.67、2.5、3.35 Cd kg〜(-1)土壤)对羽扇豆(窄叶)产量的影响。 lupin; cung。Gungurru)和Lupinus luteus L.(黄色羽扇豆)品种,以及茎和谷物对镉的浓度和吸收(含量)。镉的添加降低了除Teo-105外的所有黄色羽扇豆品种的籽粒产量。但是,向土壤中添加Cd不会使窄叶羽扇豆的谷物产量显着降低(p = 0.05)。与其他品种(Wodjil,94DO19-1)相比,添加Cd后,P283553和94017-3黄色羽扇豆变种的籽粒产量降低了50-60%,而施用Cd的其他品种(Wodjil,94DO19-1)降低了。随着土壤中镉含量的增加,植物茎和谷粒中的镉浓度以及羽扇豆植物中的镉含量显着增加。黄羽扇豆羽扇豆和籽粒中Cd的浓度随Cd的增加而始终高于窄叶羽扇豆。窄叶羽扇豆的籽粒中Cd含量约为黄色羽扇豆中Cd含量的40%。对于两种羽扇豆,成熟时茎中的Cd浓度始终高于谷物中的Cd浓度。除94DO19-1外,黄色羽扇豆的谷物中Cd浓度较高,而没有向土壤中施用Cd。但是,与窄叶羽扇豆相比,所有黄色羽扇豆品种在其土壤中施用Cd的谷物中的Cd含量都较高。

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