Instituto Tecnológico de Chascomús (INTECH), Universidad Nacional de San Martín-Consejo Nacional de Investigaciones Científicas y Técnicas, Av. Intendente Marino Km 8.200, (7130) Chascomús, Buenos Aires, Argentina.
Instituto Nacional de Limnología (INALI), Universidad Nacional del Litoral-Consejo Nacional de Investigaciones Científicas y Técnicas, Ciudad Universitaria, Paraje El Pozo, (3000) Santa Fe, Argentina.
FEMS Microbiol Ecol. 2021 Apr 13;97(5). doi: 10.1093/femsec/fiab055.
In aquatic systems, an interplay between bottom-up and top-down processes determines the dynamic of picocyanobacteria (Pcy) abundance and community structure. Here, we analyzed a 10-year time series (sampled fortnightly) from a hypereutrophic turbid shallow lake located within the Pampa Region of South America, generating the first long-term record of freshwater Pcy from the Southern Hemisphere. We used a cytometric approach to study Pcy community, and focused on its relations with nutrient and light conditions (bottom-up) and potential grazers (top-down). A novel Pcy abundance seasonality with winter maximums was observed for years with relatively stable hydrological levels, related with decreased abundance of seasonal rotifers during colder seasons. Pcy showed lower abundance and higher cytometric alpha diversity during summer, probably due to a strong predation exerted by rotifers. In turn, a direct effect of the non-seasonal small cladocerans Bosmina spp. decreased Pcy abundance and induced a shift from single-cell Pcy into aggregated forms. This structuring effect of Bosmina spp. was further confirmed by Pcy cytometric (dis)similarity analyses from the time series and in situ experimental data. Remarkably, Pcy showed acclimatization to underwater light variations, resembling the relevance of light in this turbid system.
在水生系统中,底栖和顶栖过程之间的相互作用决定了微微型蓝藻(Pcy)丰度和群落结构的动态。在这里,我们分析了来自南美洲潘帕斯地区一个富营养化浑浊浅水湖的 10 年时间序列(每两周采样一次),这是南半球首次对淡水 Pcy 的长期记录。我们使用细胞计量学方法研究了 Pcy 群落,并重点研究了其与营养和光照条件(底栖)和潜在捕食者(顶栖)的关系。在相对稳定的水文水平下,我们观察到了具有冬季最大值的新型 Pcy 丰度季节性,这与寒冷季节季节性轮虫丰度的减少有关。在夏季,Pcy 的丰度较低,细胞计量学 alpha 多样性较高,这可能是由于轮虫的强烈捕食作用。反过来,非季节性的小型桡足类 Bosmina spp. 的直接作用降低了 Pcy 的丰度,并诱导 Pcy 从单细胞形式向聚集形式转变。从时间序列和原位实验数据的 Pcy 细胞计量学(不)相似性分析进一步证实了 Bosmina spp. 的这种结构作用。值得注意的是,Pcy 对水下光照变化表现出适应能力,这类似于在这个浑浊系统中光照的重要性。