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疏水性化合物的实际环境混合物不会改变海洋硅藻的生长。

Realistic environmental mixtures of hydrophobic compounds do not alter growth of a marine diatom.

作者信息

Everaert Gert, De Laender Frederik, Claessens Michiel, Baert Jan, Monteyne Els, Roose Patrick, Goethals Peter L M, Janssen Colin R

机构信息

Laboratory of Environmental Toxicology and Aquatic Ecology, Ghent University, Ghent, Belgium.

Research Unit in Environmental and Evolutionary Biology, Université de Namur, Namur, Belgium.

出版信息

Mar Pollut Bull. 2016 Jan 15;102(1):58-64. doi: 10.1016/j.marpolbul.2015.11.058. Epub 2015 Dec 4.

Abstract

In this paper we determine whether a realistic mixture of hydrophobic chemicals affects the growth dynamics of a marine diatom and how this effect compares to the effect of temperature, light regime and nutrient conditions. To do so, we examine the specific growth rate of Phaeodactylum tricornutum in a 72 h algal growth inhibition test using a full factorial design with three nutrient regimes, two test temperatures, three light intensities and three chemical exposures. Passive samplers were used to achieve exposure to realistic mixtures of organic chemicals close to ambient concentrations. Nutrient regime, temperature and time interval (24, 48 and 72 h) explained 85% of the observed variability in the experimental data. The variability explained by chemical exposure was about 1%. Overall, ambient concentrations of hydrophobic compounds present in Belgian coastal waters, and for which the passive samplers have affinity, are too low to affect the intrinsic growth rate of P. tricornutum.

摘要

在本文中,我们确定了疏水性化学物质的实际混合物是否会影响海洋硅藻的生长动态,以及这种影响与温度、光照条件和营养状况的影响相比如何。为此,我们在一项72小时的藻类生长抑制试验中,使用全因子设计,考察了三角褐指藻的比生长速率,该设计包含三种营养状况、两种试验温度、三种光照强度和三种化学物质暴露情况。使用被动采样器来实现对接近环境浓度的有机化学物质实际混合物的暴露。营养状况、温度和时间间隔(24、48和72小时)解释了实验数据中85%的观测变异性。化学物质暴露所解释的变异性约为1%。总体而言,比利时沿海水域中被动采样器有亲和力的疏水性化合物的环境浓度过低,无法影响三角褐指藻的内在生长速率。

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