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温度和光周期会影响生物膜对镍及其积累的敏感性。

Temperature and Photoperiod Affect the Sensitivity of Biofilms to Nickel and its Accumulation.

机构信息

Centre Eau Terre Environnement, Institut National de la Recherche Scientifique, Québec, Canada.

Ecosystèmes Aquatiques et Changements Globaux, Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement, Cestas, France.

出版信息

Environ Toxicol Chem. 2022 Jul;41(7):1649-1662. doi: 10.1002/etc.5335. Epub 2022 May 3.

Abstract

Whereas metal impacts on fluvial communities have been extensively investigated, effects of abiotic parameters on community responses to contaminants are poorly documented. Variations in photoperiod and temperature commonly occur over the course of a season and could affect aquatic biofilm communities and their responses to contaminants. Our objective was to characterize the influence of environmental conditions (photoperiod and temperature) on nickel (Ni) bioaccumulation and toxicity using a laboratory-grown biofilm. Environmental parameters were chosen to represent variations that can occur over the summer season. Biofilms were exposed for 7 days to six dissolved Ni treatments (ranging from 6 to 115 µM) at two temperatures (14 and 20 °C) using two photoperiods (16:8 and 12:12-h light:dark cycle). Under these different scenarios, structural (dry weight biomass and chlorophyll-a) and functional biomarkers (photosynthetic yield and Ni content) were analyzed at four sampling dates, allowing us to evaluate Ni sensitivity of biofilms over time. The results highlight the effects of temperature on Ni accumulation and tolerance of biofilms. Indeed, biofilms exposed at 20 °C accumulated 1.6-4.2-fold higher concentrations of Ni and were characterized by a lower median effect concentration value using photosynthetic yield compared with those exposed at 14 °C. In terms of photoperiod, significantly greater rates of Ni accumulation were observed at the highest tested Ni concentration for biofilms exposed to a 12:12-h compared with a 16:8-h light:dark cycle. Our study demonstrates the influence of temperature on biofilm metabolism and illustrates that environmental factors may influence Ni accumulation response and thus Ni responses of phototrophic biofilms. Environ Toxicol Chem 2022;41:1649-1662. © 2022 SETAC.

摘要

虽然金属对河流群落的影响已经得到了广泛的研究,但生物因素对群落对污染物的反应的影响却鲜有记录。在一个季节的过程中,光周期和温度通常会发生变化,这可能会影响水生生物膜群落及其对污染物的反应。我们的目标是用实验室培养的生物膜来描述环境条件(光周期和温度)对镍(Ni)生物积累和毒性的影响。选择环境参数来代表夏季可能发生的变化。在两种温度(14 和 20°C)下,生物膜分别暴露于六种溶解的 Ni 处理(范围为 6 至 115 µM),使用两种光周期(16:8 和 12:12 小时光照:黑暗循环)。在这些不同的情况下,在四个采样日期分析了结构(干重生物量和叶绿素-a)和功能生物标志物(光合产量和 Ni 含量),使我们能够随时间评估生物膜对 Ni 的敏感性。结果强调了温度对生物膜对 Ni 积累和耐受的影响。事实上,与在 14°C 下暴露的生物膜相比,在 20°C 下暴露的生物膜积累了 1.6-4.2 倍更高浓度的 Ni,并且使用光合产量确定的中值效应浓度值较低。就光周期而言,与 16:8 小时光照:黑暗循环相比,在最高测试的 Ni 浓度下,暴露于 12:12 小时光照:黑暗循环的生物膜的 Ni 积累速度明显更高。我们的研究表明温度对生物膜代谢的影响,并说明了环境因素可能会影响 Ni 积累反应,从而影响光养生物膜对 Ni 的反应。Environ Toxicol Chem 2022;41:1649-1662. © 2022 SETAC.

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