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Effects of phosphorus on chemical forms of Cd in plants of four spinach (Spinacia oleracea L.) cultivars differing in Cd accumulation

机译:磷对四种镉累积不同的菠菜(C. spinacia oleracea L.)植株中Cd化学形态的影响

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摘要

In order to clarify how cadmium (Cd) chemical forms in planta relate to the genotype difference in Cd accumulation of spinach (Spinacia oleracea L.), two low-Cd and two high-Cd cultivars were compared under a hydroponic experiment with two concentrations of Cd (8.98 or 44.71 μmol Cd L(-1)). The concentrations of phosphorus in the hydroponic system were also adjusted to two levels (0.5 and 1.0 mmol L(-1)) to investigate the influence of phosphorus on the forms and accumulation of Cd in the tested cultivars. Average Cd concentrations in shoots were 8.50-10.06 mg kg(-1) for high-Cd cultivars and 6.11-6.64 mg kg(-1) for low-Cd cultivars a under lower Cd treatment and were as high as 24.41-31.35 mg kg(-1) and 19.65-25.76 mg kg(-1), respectively, under a higher treatment. Phosphorus significantly decreased Cd accumulation in the tested cultivars, and the effect had superiority over the cultivar alternation under higher Cd stress. Cadmium in the NaCl-extractable fraction of the plant tissues showed the greatest relationship to genotype difference of Cd accumulation. The difference in the capacity to binding Cd into F HAc, F HCl, or F Residue was another important mechanism involving in the genotype difference in Cd accumulation of spinach. Among them, average proportion of Cd in F HAc in low-Cd cultivars was higher than that in high-Cd cultivars in association with the effect of phosphorus.
机译:为了阐明植物中镉(Cd)的化学形式与菠菜(Spinacia oleracea L.)Cd积累的基因型差异之间的关系,在水培试验中比较了两种低Cd和两种高Cd品种,两种浓度分别为Cd(8.98或44.71μmolCd L(-1))。将水培系统中的磷浓度也调至两个水平(0.5和1.0 mmol L(-1)),以研究磷对受试品种中Cd形态和累积的影响。高Cd品种的芽中平均Cd浓度为8.50-10.06 mg kg(-1),低Cd处理下低Cd品种的镉平均含量为6.12-4.64 mg kg(-1),高达24.41-31.35 mg kg (-1)和19.65-25.76 mg kg(-1),在更高的处理下。磷显着降低了试验品种中Cd的积累,并且在较高Cd胁迫下,其效果优于品种交替。植物组织中NaCl可萃取部分中的镉与Cd积累的基因型差异具有最大的关系。 Cd与F HAc,F HCl或F残基结合的能力差异是菠菜Cd积累中基因型差异的另一个重要机制。其中,低磷品种F HAc中镉的平均含量要高于高镉品种,这与磷的影响有关。

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