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首页> 外文期刊>Environmental Science and Pollution Research >Profiling of main metabolites in root exudates and mucilage collected from maize submitted to cadmium stress
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Profiling of main metabolites in root exudates and mucilage collected from maize submitted to cadmium stress

机译:从玉米收集的根渗滤物和粘液中的主要代谢物分析提交给镉胁迫

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摘要

The aim of this study was to characterize qualitatively and quantitatively the composition of the main rhizodeposits emitted from maize (Zea mays) under Cd stress, in order to discuss their role in Cd availability and tolerance. Maize was grown for 6weeks in sand at four Cd exposure levels (0, 10, 20, and 40M Cd in nutrient solution) and two types of rhizodeposits were collected at the end of cultivation period. Mucilage and other molecules adhering to rhizospheric sand were extracted with a buffer before root exudates were collected by diffusion into water. Total carbon, proteins, amino acids, and sugars were analyzed for both rhizodeposit types and about 40 molecules were identified using GC-MS and LC-MS. Cadmium effect on plant morphology and functioning was slight, but consistent with previous works on Cd toxicity. However, rhizodeposition did tend to be impacted, with a decrease in total carbon, sugars, and amino acids correlating with an increasing Cd content. Such a decrease was not noticeable for proteins in root exudates. These observations were confirmed by the same trends in individual compound contents, although the results were generally not statistically significant. Many of the molecules determined are well-known to modify, whether directly or indirectly, Cd speciation and dynamics in the soil and could play a role in Cd tolerance.
机译:本研究的目的是定性和定量地表征镉胁迫下从玉米发出的主要rhizodeposits(玉蜀黍)的组合物中,为了讨论它们在镉的可用性和公差的作用。玉米是在四个镉暴露水平生长在砂6周(0,10,20,和40M镉在营养液),并在培养期结束时,收集两种类型的rhizodeposits。粘液和其它分子附着于根际砂用缓冲液提取前对扩散收集到水根分泌物。总碳,蛋白质,氨基酸和糖进行分析两种rhizodeposit类型和使用GC-MS和LC-MS鉴定约40的分子。植物形态和功能镉效果是轻微的,但对镉的毒性以前的作品是一致的。然而,根际沉积并趋于受到影响,在总碳,糖的减少,和氨基酸随着增加的Cd含量相关。这种下降是不显着的根分泌物的蛋白质。这些观察结果在各个化合物的含量相同的趋势证明,虽然成绩一般无统计学显著。许多确定的分子是公知的是修改,无论是直接或间接,镉形态和土壤中的动态变化,并可能起到镉耐受性的作用。

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