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Ocean acidification and desalination: climate-driven change in a Baltic Sea summer microplanktonic community

机译:海洋酸化和淡化:波罗的海夏季微浮游生物群落的气候驱动变化

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摘要

Helcom scenario modelling suggests that the Baltic Sea, one of the largest brackish-water bodies in the world, could expect increased precipitation (decreased salinity) and increased concentration of atmospheric CO2 over the next 100 years. These changes are expected to affect the microplanktonic food web, and thereby nutrient and carbon cycling, in a complex and possibly synergistic manner. In the Baltic Proper, the extensive summer blooms dominated by the filamentous cyanobacteria Aphanizomenon sp., Dolichospermum spp. and the toxic Nodularia spumigena contribute up to 30% of the yearly new nitrogen and carbon exported to the sediment. In a 12 days outdoor microcosm experiment, we tested the combined effects of decreased salinity (from 6 to 3) and elevated CO2 concentrations (380 and 960 mu atm) on a natural summer microplanktonic community, focusing on diazotrophic filamentous cyanobacteria. Elevated pCO(2) had no significant effects on the natural microplanktonic community except for higher biovolume of Dolichospermum spp. and lower biomass of heterotrophic bacteria. At the end of the experimental period, heterotrophic bacterial abundance was correlated to the biovolume of N. spumigena. Lower salinity significantly affected cyanobacteria together with biovolumes of dinoflagellates, diatoms, ciliates and heterotrophic bacteria, with higher biovolume of Dolichospermum spp. and lower biovolume of N. spumigena, dinoflagellates, diatoms, ciliates and heterotrophic bacteria in reduced salinity. Although the salinity effects on diatoms were apparent, they could not clearly be separated from the influence of inorganic nutrients. We found a clear diurnal cycle in photosynthetic activity and pH, but without significant treatment effects. The same diurnal pattern was also observed in situ (pCO(2), pH). Thus, considering the Baltic Proper, we do not expect any dramatic effects of increased pCO(2) in combination with decreased salinity on the microplanktonic food web. However, long-term effects of the experimental treatments need to be further studied, and indirect effects of the lower salinity treatments could not be ruled out. Our study adds one piece to the complicated puzzle to reveal the combined effects of increased pCO(2) and reduced salinity levels on the Baltic microplanktonic community.
机译:Helcom情景模型表明,波罗的海是世界上最大的咸水水体之一,在未来100年内,可能会出现降水增加(盐度降低)和大气CO2浓度升高的趋势。预期这些变化将以复杂且可能协同的方式影响微浮游食物网,进而影响营养和碳循环。在波罗的海适当地区,大量的夏季花朵以丝状蓝细菌Aphanizomenon sp。Dolichospermum spp为主。而有毒的结节性结核菌则占每年出口到沉积物中的新氮和碳的30%。在一个为期12天的室外微观实验中,我们测试了盐度降低(从6降低到3)和CO2浓度升高(380和960μatm)对自然夏季微浮游生物群落的综合影响,重点是重氮营养性丝状蓝细菌。 pCO(2)升高对自然微浮游生物群落没有显着影响,除了较高的Dolichospermum spp生物量。和异养细菌的生物量较低。在实验期结束时,异养细菌的丰度与产气荚膜猪笼草的生物量相关。较低的盐度与蓝藻,硅藻,纤毛虫和异养细菌的生物量一起显着影响蓝细菌,而白带菌的生物量更高。降低盐度,降低了孢粉原菌,鞭毛虫,硅藻,纤毛虫和异养细菌的生物量。尽管盐度对硅藻的影响是显而易见的,但仍不能与无机养分的影响区分开来。我们发现光合活性和pH值存在明显的昼夜循环,但没有明显的处理效果。在原位也观察到相同的昼夜模式(pCO(2),pH)。因此,考虑到波罗的海的适当性,我们预计微浮游生物食物网上的pCO(2)增加和盐度降低不会产生任何戏剧性的影响。然而,需要进一步研究实验处理的长期效果,不能排除较低盐度处理的间接影响。我们的研究为复杂的难题增加了一块,以揭示波罗的海微浮游生物群落中增加的pCO(2)和盐度降低的综合作用。

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  • 来源
    《Marine biology》 |2018年第4期|63.1-63.15|共15页
  • 作者单位

    Univ Gothenburg, Dept Biol & Environm Sci, Box 461, S-40530 Gothenburg, Sweden;

    Univ Gothenburg, Dept Biol & Environm Sci, Box 461, S-40530 Gothenburg, Sweden;

    Univ Gothenburg, Dept Marine Sci, Box 461, S-40530 Gothenburg, Sweden;

    Univ Gothenburg, Dept Biol & Environm Sci, Box 461, S-40530 Gothenburg, Sweden;

    Univ Copenhagen, Marine Biol Sect, Dept Biol, Strandpromenaden 5, DK-3000 Helsingor, Denmark;

    Univ Gothenburg, Dept Biol & Environm Sci, Box 461, S-40530 Gothenburg, Sweden;

    Swedish Meteorol & Hydrol Inst, Sven Kallfelts Gata 15, S-42671 Vastra Frolunda, Sweden;

    Univ Gothenburg, Dept Marine Sci, Box 461, S-40530 Gothenburg, Sweden;

    Univ Gothenburg, Dept Marine Sci, Box 461, S-40530 Gothenburg, Sweden;

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