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银胁迫对光养和异养脆杆藻鞭毛种群的生长有差异影响。

Silver stress differentially affects growth of phototrophic and heterotrophic chrysomonad flagellate populations.

机构信息

Biodiversity, University of Duisburg-Essen, Universitätsstr. 5, 45141 Essen, Germany.

Aquatic Ecology, University of Duisburg-Essen, Universitätsstr. 5, 45141 Essen, Germany; Centre for Water and Environmental Research (ZWU), University of Duisburg-Essen, Universitätsstr. 5, 45141 Essen, Germany.

出版信息

Environ Pollut. 2019 Jan;244:314-322. doi: 10.1016/j.envpol.2018.09.146. Epub 2018 Oct 11.

Abstract

Silver ions are among the predominant anthropogenic introduced pollutants in aquatic systems. As silver has effects on species at all trophic levels the community composition in aquatic habitats can be changed as a result of silver stress. The response of planktonic protists to environmental stressors is particularly important as they act both as producers and consumers in complex planktonic communities. Chrysomonad flagellates are of major interest, since this group includes heterotrophic, mixotrophic and phototrophic taxa, and therefore allows analysis of silver stress in organisms with contrasting nutritional strategies independent of a potential taxonomic bias. In a series of lab experiments, we compared the response of different trophic chrysophyte strains to low (5 μg L), medium (10 μg L) and high (20 μg L) nominal Ag concentrations in combination with changes in temperature and light intensity (phototrophs), temperature and food concentration (heterotrophs), or a combination of the above settings (mixotrophs). All tested strains were negatively affected by silver in their growth rates. The phototrophic strains reacted strongly to silver stress, whereas light intensity and temperature had only minor effects on growth rates. For heterotrophic strains, high food concentration toned down the effect of silver, whereas temperatures outside the growth optimum had a combined stress effect. The mixotrophic strains reacted differently depending on whether their nutritional mode was dominated by heterotrophy or by phototrophy. The precise response pattern across all variables was uniquely different for every single species we tested. The present work contributes to a deeper understanding of the effects of environmental stressors on complex planktonic communities. It indicates that silver will negatively impact planktonic communities and may create shifts in their composition and functioning.

摘要

银离子是水生系统中主要的人为引入污染物之一。由于银对所有营养级的物种都有影响,因此银胁迫会改变水生栖息地的群落组成。浮游原生生物对环境胁迫的反应尤为重要,因为它们在复杂的浮游群落中既是生产者又是消费者。砂壳虫鞭毛虫尤其受到关注,因为该群体包括异养、混养和光合生物,因此可以在不考虑潜在分类偏差的情况下,对具有不同营养策略的生物体进行银胁迫分析。在一系列实验室实验中,我们比较了不同营养型砂壳虫菌株对低(5μg/L)、中(10μg/L)和高(20μg/L)名义银浓度与温度和光照强度变化(光合生物)、温度和食物浓度(异养生物)或上述设置组合(混养生物)的反应。所有测试的菌株的生长速度都受到银的负面影响。光合生物对银胁迫反应强烈,而光照强度和温度对生长速度的影响较小。对于异养菌株,高食物浓度减轻了银的影响,而生长最适温度以外的温度则产生了联合胁迫效应。混养生物的反应取决于其营养模式是由异养还是由光合作用主导。我们测试的每一个单一物种的所有变量的精确反应模式都是独特的。本工作有助于深入了解环境胁迫对复杂浮游群落的影响。它表明,银将对浮游群落产生负面影响,并可能导致其组成和功能发生变化。

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