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首页> 外文期刊>The Science of the Total Environment >Exposure to naphthenic acids and the acid extractable organic fraction from oil sands process-affected water alters the subcellular structure and dynamics of plant cells
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Exposure to naphthenic acids and the acid extractable organic fraction from oil sands process-affected water alters the subcellular structure and dynamics of plant cells

机译:暴露于环烷酸和酸可萃取的有机级分从油砂过程受影响的水改变了植物细胞的亚细胞结构和动力学

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摘要

Oil sands surface mining generates vast quantities of oil sands process-affected water (OSPW) as a by-product of bitumen extraction. The acid extractable organic (AEO) fraction of OSPW contains several contaminants, including naphthenic acids (NAs). While responses of living organisms to NA and AEO exposure have been described at the developmental, physiological, metabolic and gene expression levels, the effects of these compounds at the cellular and subcellular level are limited. Using live cell fluorescence microscopy and a suite of fluorescent marker proteins, we studied the intracellular responses of the plant cell cytoskeleton and several membrane-bound organelles to NA and AEO treatments. A rapid disassembly of cortical microtubules and a decrease in dynamics associated with actin filaments was observed in response to these treatments. Concomitantly, the integrity and dynamics of mitochondria, peroxisomes, Golgi stacks, and endoplasmic reticulum were also altered. AEO treatments were the most toxic to cells and resulted in the accumulation reactive oxygen species. This study provides foundational evidence for intracellular responses to NA and AEO exposure using two evolutionarily diverse model plant cell types. This cellular assay could be used to identify the most toxic components of AEO sub-fractions, and assist in determining the effectiveness of OSPW remediation efforts. (C) 2018 Elsevier B.V. All rights reserved.
机译:油砂表面挖掘产生大量的油砂处理受影响的水(OSPW)作为沥青提取的副产物。 OSPW的酸可提取的有机(AEO)部分含有几种污染物,包括环烷酸(NAS)。虽然已经在发育,生理学,代谢和基因表达水平上描述了生物体对NA和AEO暴露的反应,但是这些化合物在细胞和亚细胞水平下的影响是有限的。使用直播细胞荧光显微镜和一套荧光标记蛋白,我们研究了植物细胞细胞骨架的细胞内反应和几种膜结合细胞器对Na和Aeo治疗。响应于这些处理,观察到皮质微管的快速拆卸和与肌动蛋白细丝相关的动力学的减少。同时,线粒体,过氧化物体,高尔基堆叠和内质网的完整性和动态也被改变。 AEO治疗对细胞最有毒,导致累积反应性氧。本研究为使用两个进化的不同模型植物细胞类型提供了对NA和AEO暴露的细胞内反应的基础证据。这种细胞测定可用于鉴定AEO子分数的最有毒成分,并有助于确定OSPW修复努力的有效性。 (c)2018年elestvier b.v.保留所有权利。

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