首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Exogenous Glycinebetaine Promotes Soil Cadmium Uptake by Edible Amaranth Grown during Subtropical Hot Season
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Exogenous Glycinebetaine Promotes Soil Cadmium Uptake by Edible Amaranth Grown during Subtropical Hot Season

机译:外源甘氨酸甜菜碱促进亚热带炎热季节种植的食用A菜对土壤镉的吸收

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摘要

Exogenous glycinebetaine treatment is an effective measure for preventing crops from being exposed to drought and high temperature; however, the effects of this approach on the soil Cd uptake and accumulation by crops remain unclear. Pot experiments were conducted in this study to analyze the effect of glycinebetaine on the soil Cd uptake and accumulation by edible amaranth cultivated in Cd-contaminated soil. Results revealed that after exogenous glycinebetaine treatment on amaranth leaves during the vigorous growth period, the plant biomass, the Cd concentrations in the roots and shoots, and the Cd translocation factor (TF) were significantly higher than those of the control group. The highest Cd concentrations in the roots and shoots and the TF were higher by 91%, 96% and 23.8%, respectively, than the corresponding values in the control group. In addition, exogenous glycinebetaine treatment significantly increased leaf chlorophyll content and promoted the photosynthesis of edible amaranth. Consequently, the contents of soluble sugar, dissolved organic carbon, and low-molecular-weight organic acids significantly increased in the rhizosphere, resulting in Cd mobilization. Significant positive correlations were observed among the contents of leaf chlorophyll, Mg, Fe, pectin and Ca. Given that Cd shares absorption and translocation channels with these elements, we speculated that the increased leaf chlorophyll and pectin contents promoted the absorption and accumulation of Mg, Fe and Ca, which further promoted the absorption and translocation of Cd. These results indicated that exogenous glycinebetaine treatment during hot season would aggravate the health risks of crops grown in Cd-contaminated soils.
机译:外源甘氨酸甜菜碱处理是防止农作物遭受干旱和高温的有效措施。然而,这种方法对农作物对土壤镉吸收和积累的影响尚不清楚。在这项研究中进行了盆栽试验,以分析甘氨酸甜菜碱对在Cd污染的土壤中种植的可食用a菜对Cd吸收和积累的影响。结果表明,在a菜叶片旺盛的生长时期外源甘氨酸甜菜碱处理后,植物生物量,根和芽中的Cd浓度以及Cd易位因子(TF)均明显高于对照组。根和芽中的最高Cd浓度和TF分别比对照组的相应值高91%,96%和23.8%。此外,外源甘氨酸甜菜碱处理显着增加了叶片叶绿素含量并促进了食用a菜的光合作用。因此,根际中可溶性糖,可溶性有机碳和低分子量有机酸的含量显着增加,导致Cd的迁移。叶片叶绿素,Mg,Fe,果胶和Ca的含量之间存在显着的正相关。考虑到镉与这些元素共有吸收和转运通道,我们推测增加的叶片叶绿素和果胶含量促进了镁,铁和钙的吸收和累积,从而进一步促进了镉的吸收和转运。这些结果表明,在炎热季节外源甘氨酸甜菜碱处理会加剧在受Cd污染的土壤中生长的农作物的健康风险。

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