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Combined stress effect of pH and temperature narrows the niche width of flagellates in acid mining lakes

机译:pH和温度的联合胁迫效应使酸采湖中鞭毛虫的生态位宽度变窄

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摘要

Strains of the green alga Chlamydomonas acidophila and two chrysomonads, Ochromonas spp., isolated from each of two similar acid mining lakes (AMLs) with extremely low pH (∼2.6) were investigated to consider a possible synergistic stress effect of low pH and unfavourable temperature. We measured flagellate growth rates over a combination of four pH (2.5, 3.5, 5.0 and 7.0) and three temperatures (10, 17.5 and 25°C) in the laboratory. Our hypothesis was that, under highly acidic conditions (pH <3), an obligate acidophil species (C. acidophila) would be less sensitive to the combined stress of pH and temperature than acidotolerant species (Ochromonas spp.). We expected that the difference of the fundamental vs. realized pH niche would be greater in the latter. Another chrysomonad, Poterioochromonas malhamensis strain DS, served as a reference for a closely related neutrophil species. Surprisingly, C. acidophila did not survive temperatures >27°C. The lowest temperature tested reduced growth rates of all three chrysomonad strains significantly. Since all chrysomonads were tolerant to high temperature, growth rate of one Ochromonas spp. strain was measured exemplarily at 35°C. Only at this high temperature was the realized pH niche significantly narrowed. We also recorded significant intraspecific differences within the C. acidophila strains from the two AML, illustrating that the niche width of a species is broader than that of individual clones.
机译:从两个相似的pH值极低(〜2.6)的酸采矿湖(AML)中分离出的绿藻嗜酸衣藻和两个嗜藻单孢菌(Ochromonas spp。)进行了研究,以考虑低pH和不利温度可能产生的协同胁迫效应。在实验室中,我们在四个pH(2.5、3.5、5.0和7.0)和三个温度(10、17.5和25°C)的组合下测量了鞭毛的生长速率。我们的假设是,在高酸性条件下(pH <3),专性嗜酸菌(嗜酸梭状芽孢杆菌)对pH和温度的联合胁迫的敏感性要小于耐酸菌(Ochromonas spp。)。我们预计,在后者中,基本pH值和实际pH值之间的差异会更大。另一只金绿藻,Malhamensis Poterioochromonas菌株DS,作为密切相关的嗜中性粒细胞物种的参考。令人惊讶的是,嗜酸梭状芽孢杆菌不能在> 27℃的温度下存活。测试的最低温度显着降低了所有三种金葡菌菌株的生长速率。由于所有金绿藻都对高温具有耐受性,因此,一种色霉菌的生长速率较高。示例性地在35℃下测量应变。仅在这样的高温下,实现的pH生态位才显着缩小。我们还记录了两个AML嗜酸梭菌菌株之间的种内显着差异,这说明一个物种的生态位宽度比单个克隆的生态位宽度更宽。

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