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钍对周丛生物膜中细菌、微藻和小型底栖动物群落结构的影响。

Effects of thorium on bacterial, microalgal and micromeiofaunal community structures in a periphytic biofilm.

作者信息

Doose Caroline, Morin Soizic, Malbezin Laura, Vedrenne Jacky, Fortin Claude

机构信息

Institut national de la recherche scientifique, 490 rue de la Couronne, G1K 9A9 Quebec City, QC, Canada.

INRAE, EABX, 50 avenue de Verdun, 33612 Cestas Cedex, France.

出版信息

Ecotoxicol Environ Saf. 2021 Jul 15;218:112276. doi: 10.1016/j.ecoenv.2021.112276. Epub 2021 May 4.

DOI:10.1016/j.ecoenv.2021.112276
PMID:33962273
Abstract

Few ecotoxicity studies are available on thorium (Th) which hinders the ability to evaluate its ecotoxicological risk. Its release in the environment is often associated with the extraction of rare earth elements and uranium, as well as the field applications of phosphate fertilizers. This study investigates the effects of Th on microbial communities of periphytic biofilms. Ceramic plates were left to colonize for one month in the laboratory with a biofilm sampled from Cap Rouge river (QC, Canada). Plates were randomly placed in channels containing culture media representing three different conditions: a control condition (C0; background Th concentrations of 0.004 ± 0.002 nM), a low Th concentration condition (C1; 0.18 ± 0.09 nM Th) and a moderately high Th condition (C10; 8.7 ± 3.4 nM) for up to 4 weeks. The presence of Th modified the diatom community by changing its taxonomic structure, reducing diversity and increasing cell density. The taxonomic structure of the bacterial community, followed by 16S metabarcoding analysis, was affected with a significant decrease in Pseudanabaena and Shingopyxis genera in the two Th exposed conditions. No direct toxic effect of Th was observed on counted micromeiofauna but the changes in diatom and bacterial communities could explain the higher number of individual diatoms and micromeiofauna observed in Th-exposed conditions. This work shows that low concentrations of Th can modify biofilm structure, which, in turn, could disturb its ecologically key functions.

摘要

关于钍(Th)的生态毒性研究较少,这妨碍了评估其生态毒理学风险的能力。它在环境中的释放通常与稀土元素和铀的提取以及磷肥的田间应用有关。本研究调查了钍对周丛生物膜微生物群落的影响。在实验室中,将陶瓷板放置一个月,使其定殖来自加拿大魁北克省鲁热河的生物膜。将平板随机放置在含有代表三种不同条件的培养基的通道中:对照条件(C0;背景钍浓度为0.004±0.002 nM)、低钍浓度条件(C1;0.18±0.09 nM钍)和中等高钍条件(C10;8.7±3.4 nM),持续4周。钍的存在通过改变硅藻群落的分类结构、降低多样性和增加细胞密度来改变硅藻群落。通过16S宏条形码分析,细菌群落的分类结构受到影响,在两种钍暴露条件下,伪鱼腥藻属和新皮菌属显著减少。未观察到钍对计数的小型底栖动物有直接毒性作用,但硅藻和细菌群落的变化可以解释在钍暴露条件下观察到的硅藻和小型底栖动物个体数量较多的现象。这项工作表明,低浓度的钍可以改变生物膜结构,进而可能干扰其生态关键功能。

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引用本文的文献

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Development of Cellular and Enzymatic Bioluminescent Assay Systems to Study Low-Dose Effects of Thorium.用于研究钍低剂量效应的细胞和酶促生物发光检测系统的开发
Bioengineering (Basel). 2021 Nov 29;8(12):194. doi: 10.3390/bioengineering8120194.