首页> 外文期刊>Environmental Science and Pollution Research >Identification of low-Cd cultivars of sweet potato (Ipomoea batatas (L.) Lam.) after growing on Cd-contaminated soil: uptake and partitioning to the edible roots
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Identification of low-Cd cultivars of sweet potato (Ipomoea batatas (L.) Lam.) after growing on Cd-contaminated soil: uptake and partitioning to the edible roots

机译:CD污染土壤生长后甘薯(Ipomoea Batatas(L.)林的低CD品种的鉴定:摄取和分配给食用根

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Cadmium (Cd) contamination in agricultural products presents a threat to humans when consumed. Sweet potato is the world's seventh most important food crop. The aims of this study were to screen for low-Cd sweet potato cultivars and clarify the mechanisms of low-Cd accumulation in edible roots. A pot experiment was conducted to investigate the variation of Cd uptake and translocation among 30 sweet potato cultivars grown in contaminated soils with three different Cd concentrations. Cadmium concentrations in edible roots were significantly different among cultivars and were significantly affected by Cd treatment, and the interaction between cultivar and Cd treatment. High-Cd cultivars have higher ratios of edible root/shoot Cd concentration and edible root/feeder root Cd concentration than low-Cd cultivars; however, the ratio of shoot/feeder root Cd concentration seems unrelated to the ability of Cd accumulation in edible roots. Four sweet potato cultivars, Nan88 (No. 10), Xiang20 (No. 12), Ji78-066 (No. 15), and Ji73-427 (No. 16), were identified as low-Cd cultivars. Cadmium translocation from feeder roots to edible roots via the xylem, and from shoots to edible roots via the phloem, controls Cd accumulation in edible roots of sweet potato cultivars.
机译:农产品中的镉(CD)污染在消费时对人类带来威胁。甘薯是世界第七最重要的食物作物。本研究的目的是筛选低CD甘薯品种,并阐明食用根中低CD积累的机制。进行了罐实验,以研究污染土壤中染色的30种甜薯品种中CD摄取和易位的变异,具有三种不同的CD浓度。美品种中可食用根中的镉浓度显着差异,受Cd处理的显着影响,以及品种和Cd处理之间的相互作用。高CD品种具有比低CD品种更高的可食用根/芽CD浓度和可食用的根/饲养根CD浓度;然而,芽/饲料根Cd浓度的比率与可食用根中CD积累的能力无关。鉴定为低CD栽培品种四种甘薯品种NaN88(No.10),Xiang20(No.12),Ji78-066(No.15)和Ji73-427(第16号)。从饲养者根部的镉易位通过木瓜,通过絮状物从射击到可食用的根部,对食用菌品种的可食用根中的CD积聚进行控制。

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