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斑马鱼暴露于土霉素后对水微生物组的恢复作用。

Zebrafish and water microbiome recovery after oxytetracycline exposure.

机构信息

CESAM & Department of Biology, University of Aveiro, Campus Universitário de Santiago, 3810-193, Aveiro, Portugal.

CESAM & Department of Biology, University of Aveiro, Campus Universitário de Santiago, 3810-193, Aveiro, Portugal.

出版信息

Environ Pollut. 2021 Mar 1;272:116371. doi: 10.1016/j.envpol.2020.116371. Epub 2020 Dec 29.

Abstract

Oxytetracycline (OTC) is a broad-spectrum antibiotic widely used in aquaculture, resulting in contamination of aquatic environments. In a previous study, we observed significant effects of OTC sublethal concentrations in zebrafish, its microbiome and the water bacterial community. Here we assessed the extent to which these effects are reversible after a recovery period. Zebrafish adults were exposed to OTC (10,000 μg/L) via water exposure. Effects were analyzed at 5 days (5 dE) and 2 months (2 mE) of exposure and recovery was assessed at 5 days (5dPE) and 1 month (1mPE) after exposure Impacts were observed in fish energetic reserves and in fish and water microbiomes structure, being significant even at 5 dE. At energetic reserves level, the effect in cellular energy allocation (CEA) was dependent on the exposure time: initially CEA increased while after 2 mE CEA decreased. At microbiome level, diversity was not affected but the richness of the water microbiome significantly decreased at 2 mE. Regarding the post-exposure period, at CEA level, organisms seem to recover. In water and gut microbiomes OTC effects were also attenuated after exposure ceases, indicating a recovery. Even so, the structure of water exposed community remained significantly different towards the control, while richness of this community significantly increased at 1mPE. During exposure the relative abundance of 11 and 16 genera was significantly affected in the gut and water microbiomes, respectively, though these numbers decreased to 4 and 8 genera in the post-exposure period. At functional level during exposure 12 and 13 pathways were predicted to be affected in zebrafish gut and water microbiomes respectively, while post-exposure few pathways remained significantly affected. Hence, our results suggest a recovery of the fish fitness as well as of the water and intestine microbiomes after exposure ceases. Even so, some of the effects caused by OTC remain significant after this recovery period.

摘要

土霉素(OTC)是一种广泛应用于水产养殖的广谱抗生素,导致水环境污染。在之前的研究中,我们观察到 OTC 亚致死浓度对斑马鱼及其微生物组和水细菌群落的显著影响。在这里,我们评估了在恢复期后这些影响的可逆程度。成年斑马鱼通过水暴露于 OTC(10,000μg/L)。在暴露 5 天(5dE)和 2 个月(2mE)时分析影响,并在暴露后 5 天(5dPE)和 1 个月(1mPE)时评估恢复情况。在鱼类能量储备以及鱼类和水微生物组结构中观察到影响,即使在 5dE 时也具有显著性。在能量储备水平上,细胞能量分配(CEA)的影响取决于暴露时间:最初 CEA 增加,而在 2mE 后 CEA 减少。在微生物组水平上,多样性不受影响,但水微生物组的丰富度在 2mE 时显著降低。关于暴露后的时期,在 CEA 水平上,生物体似乎可以恢复。在水和肠道微生物组中,停止暴露后 OTC 的影响也减弱,表明有恢复。即便如此,暴露后的水群落结构仍然与对照显著不同,而该群落的丰富度在 1mPE 时显著增加。在暴露期间,肠道和水微生物组中的 11 和 16 个属的相对丰度分别受到显著影响,尽管在暴露后这些数字减少到 4 和 8 个属。在暴露期间,预测 12 和 13 条途径分别在斑马鱼肠道和水微生物组中受到影响,而在暴露后,只有少数途径仍然受到显著影响。因此,我们的结果表明,鱼类适应力以及水和肠道微生物组在暴露停止后会恢复。即便如此,OTC 造成的一些影响在恢复后仍然显著。

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