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Root Exudate Enhanced Contaminant Desorption: An Abiotic Contribution to the Rhizosphere Effect

机译:根系分泌物增强的污染物解吸:根际效应的非生物贡献

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摘要

Despite reports in the literature of superior contaminant degradation in the root-zone of plants, this phenomenon, known as the rhizosphere effect, is poorly understood We investigated whether root exudates could enhance desorption of residual pollutants, thus improving bioavailability and subsequent biodegradation potential Root exudates were harvested from three species of hydroponically grown plants, and artificial root exudates (ARBs) were created using a literature recipe. Ahquots of die exudates were metabolized by soil bacteria to investigate whether biotransformed exudates exhibited different chemical characteristics or had different effects on contaminant bioavailability than 'raw exudates.' Slurries of naphthalene-aged soil containing raw exudates had a significantly lower soil-water distribution coefficient (K_d) than slurries with metabolized exudates or no-exudate controls, exhibiting median reductions of 50% and 55%, respectively. Raw exudates had a significantly lower surface tension while not increasing overall solubility, indicating the presence of surface-active compounds below the critical micelle concentration; this is a newly observed mechanism of the rhizosphere effect. Exudate samples were characterized by specific UV absorbance, spectral slope, fluorescence index, and excitation-emission matrices. Substantial changes in organic carbon character pre- and postmetabolism, and between harvested exudates and AREs, suggest that AREs are not chemically representative of plant root exudates. Overall, we present evidence that enhanced contaminant desorption in the presence of exudates provides an abiotic contribution to the rhizosphere effect.
机译:尽管有文献报道了植物根部区域的污染物降解效果显着,但人们对这种现象(即根际效应)了解甚少,我们研究了根系分泌物是否可以增强残留污染物的解吸,从而提高了生物利用度和随后的生物降解潜力根系分泌物从三种水培植物中收获,并使用文献配方创建了人工根系分泌物(ARB)。死菌渗出物的一部分被土壤细菌代谢,以研究经过生物转化的渗出物与“原始渗出物”相比,具有不同的化学特性或对污染物生物利用度的影响。含有生化渗出液的萘老化土的浆液比具有代谢渗出液或无渗出液对照的浆液的土壤水分配系数(K_d)明显低,分别显示中位数减少量为50%和55%。原始渗出液的表面张力显着降低,而总溶解度却没有增加,表明存在低于临界胶束浓度的表面活性化合物。这是新发现的根际效应机制。渗出液样品的特征在于特定的紫外线吸收率,光谱斜率,荧光指数和激发发射矩阵。在代谢前和代谢后以及收获的渗出液和ARE之间有机碳特征的显着变化表明ARE在化学上不代表植物根系渗出液。总体而言,我们提供的证据表明,在渗出液存在下增强的污染物解吸作用可为根际效应提供非生物成分。

著录项

  • 来源
    《Environmental Science & Technology》 |2013年第20期|11545-11553|共9页
  • 作者单位

    Department of Civil & Environmental Engineering, Stanford University, 473 Via Ortega, Stanford, CA 94305;

    Department of Civil Engineering, University of Minnesota, 500 Pillsbury Drive S.E., Minneapolis, Minnesota 55455, United States;

    Department of Civil Engineering, University of Minnesota, 500 Pillsbury Drive S.E., Minneapolis, Minnesota 55455, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-17 14:02:14

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