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Partitioning of Phenanthrene by Root Cell Walls and Cell Wall Fractions of Wheat (Triticum aestivum L.)

机译:小麦根系细胞壁和细胞壁组分对菲的分配

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摘要

Plant cells have been reported to play an important role in the uptake of organic contaminants. This study was undertaken to provide an insight into the role of the root cell walls and their subfractions on sorption of phenanthrene to roots of wheat (Triticum aestivum L.). Root cell walls were isolated and further sequentially fractioned by removing pectin, hemicellulose one, and hemicellulose two. They were characterized by elemental analysis, Fourier transform infrared spectroscopy, and solid-state (13)C NMR. Root cell walls had a greater proportion of aromatic carbon and exhibited a lower polarity than the bulk roots. There was a stepwise increase in aromatic carbon content and a decrease in polarity following the sequential fractionation. The sorption affinity of phenanthrene increased gradually following the sequential extraction of root cells. A significant positive correlation between the sorption affinity K(OC) values and the aromatic carbon contents (r(2) = 0.896, p < 0.01) and a negative correlation between the sorption affinity K(OC) values and polarity ((O + N)/C) of root cell fractions (r(2) = 0.920, p < 0.01) were obtained. Improved modeling was achieved for phenanthrene sorption by involving the contribution of root cell walls as a source of root carbohydrates instead of using root lipids alone, which further confirms the significant contribution of root cell walls to phenanthrene sorption on wheat roots. The results provide evidence for the importance of the root cell walls in the partitioning of phenanthrene by plant roots.
机译:据报道植物细胞在吸收有机污染物中起重要作用。进行该研究以提供对根细胞壁及其亚组分对菲吸附于小麦根(Triticum aestivum L.)的作用的认识。分离根细胞壁,并通过除去果胶,半纤维素一和半纤维素进一步依次分级分离。它们通过元素分析,傅里叶变换红外光谱和固态(13)C NMR进行表征。根细胞壁的芳族碳比例更高,极性比疏松的根更低。顺序分馏后,芳族碳含量逐步增加,极性降低。依次提取根细胞后,菲的吸附亲和力逐渐增加。吸附亲和力K(OC)值与芳族碳含量之间呈显着正相关(r(2)= 0.896,p <0.01),吸附亲和力K(OC)值与极性之间呈负相关((O + N )/ C)的根细胞级分(r(2)= 0.920,p <0.01)。通过涉及将根细胞壁作为根碳水化合物的来源而不是单独使用根类脂质来实现对菲吸附的建模,这进一步证实了根细胞壁对小麦根上菲吸附的重要贡献。结果提供了证据,证明了根细胞壁在植物根部分配菲中的重要性。

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