Division of Materials Chemistry, Ruđer Bošković Institute, Zagreb, Croatia.
Institute for Chemistry and Biology of the Marine Environment, Carl von Ossietzky University, Oldenburg, Germany.
Environ Microbiol. 2022 May;24(5):2282-2298. doi: 10.1111/1462-2920.15924. Epub 2022 Feb 14.
In lake ecosystems, changes in eukaryotic and prokaryotic microbes and the concentration and availability of dissolved organic matter (DOM) produced within or supplied to the system by allochthonous sources are components that characterize complex processes in the microbial loop. We address seasonal changes of microbial communities and DOM in the largest Croatian lake, Vrana. This shallow lake is connected to the Adriatic Sea and is impacted by agricultural activity. Microbial community and DOM structure were driven by several environmental stressors, including drought, seawater intrusion and heavy precipitation events. Bacterial composition of different lifestyles (free-living and particle-associated) differed and only a part of the particle-associated bacteria correlated with microbial eukaryotes. Oscillations of cyanobacterial relative abundance along with chlorophyll a revealed a high primary production season characterized by increased levels of autochthonous DOM that promoted bacterial processes of organic matter degradation. From our results, we infer that in coastal freshwater lakes dependent on precipitation-evaporation balance, prolonged dry season coupled with heavy irrigation impact microbial communities at different trophic levels even if salinity increases only slightly and allochthonous DOM inputs decrease. These pressures, if applied more frequently or at higher concentrations, could have the potential to overturn the trophic state of the lake.
在湖泊生态系统中,真核生物和原核微生物的变化,以及由异源来源在系统内产生或供应给系统的溶解有机物质 (DOM) 的浓度和可用性,是微生物环中复杂过程的特征。我们研究了克罗地亚最大的湖泊 Vrana 中微生物群落和 DOM 的季节性变化。这个浅水湖与亚得里亚海相连,受到农业活动的影响。微生物群落和 DOM 结构受到多种环境胁迫的驱动,包括干旱、海水入侵和强降水事件。不同生活方式(自由生活和颗粒相关)的细菌组成不同,只有一部分颗粒相关细菌与微生物真核生物相关。蓝藻相对丰度的波动与叶绿素 a 一起揭示了一个高初级生产季节,其特征是增加了自生 DOM 的水平,促进了细菌对有机物的降解过程。从我们的结果推断,在依赖于降水蒸发平衡的沿海淡水湖中,长时间的干旱季节加上大量灌溉,即使盐度仅略有增加且异源 DOM 输入减少,也会对不同营养级的微生物群落产生影响。如果这些压力更频繁或浓度更高地施加,可能会有潜力颠覆湖泊的营养状态。