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The interactive effects of titanium dioxide nanoparticles and light on heterotrophic bacteria and microalgae associated with marine aggregates in nearshore waters

机译:二氧化钛纳米粒子和光对近岸水域陆地植入杂养细菌和微藻的互动效果

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Titanium dioxide nanoparticles (n-TiO2) are emerging contaminants and the ecological impact of these materials to the nearshore environment is largely unknown. The reactivity of n-TiO2 increases with light exposure, and the photocatalytic effects have been shown on cultures of bacteria and microalgae in the laboratory. The purpose of this study was to assess the response of natural bacterial and microalgal communities associated with marine aggregates to n-TiO2 under conditions similar to those found in the photic zone of nearshore waters. Nano and bulk TiO2 particles were incorporated into marine aggregates over 4 days under two light conditions: 6:18 and 0:24 (hours light:dark). The abundance and metabolic response of heterotrophic bacteria and viability of microalgae associated with aggregates were assessed. Although the proportion of living microalgae was unchanged, the abundance, total metabolic activity and functional diversity of heterotrophic bacteria were significantly altered by irradiated n-TiO2.
机译:二氧化钛纳米颗粒(N-TiO 2)是新兴污染物,这些材料对近岸环境的生态影响在很大程度上是未知的。 N-TiO2的反应性随着曝光而增加,并且已经显示了实验室中细菌和微藻培养物的光催化作用。本研究的目的是评估与海洋骨料与N-TiO2相关的天然细菌和微藻间社区的响应,与近岸水的光区相似的条件下。在两个光条件下4天内纳米和散装TiO 2颗粒掺入海洋骨料中:6:18和0:24(小时光:暗)。评估异养细菌的丰度和代谢反应和与聚集体相关的微藻的活力。虽然生活微藻的比例不变,但辐照的N-TiO 2显着改变了异常细菌的丰度,总代谢活性和功能多样性。

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