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Spectroscopic study of the microbial community in chemocline zones of relic meromictic lakes separating from the White Sea

机译:白海中瑞典湖泊化学联络区微生物区的光谱研究

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As a result of a recent years study on the Karelia shore of the White Sea more than ten relict lakes in different stages of separation from the sea have been discovered. Five of them are located close to the Nikolai Pertsov White Sea Biological Station of Moscow State University. Such separated lakes are interesting to explore for their firm vertical stratification. Water layers differ not only by temperature, salinity and other physic and chemical characteristics and optical properties, but also by ibhabiting microorganisms and by the quality of dissolved organic matter. To study phototropic organisms in water sampled from different depths we used spectroscopic techniques. Identification of the main bands in the absorption and fluorescence spectra showed that there are two main groups of photosynthetic organisms in the redox zone (chemocline): unicellular algae containing chlorophyll a and green sulfur bacteria with bacteriochlorophylls c, d, e. Spectral data were compared with physical and chemical characteristics of the water layer (temperature, salinity, pH, dissolved oxygen and sunlight illumination at certain depth). It gave an opportunity to compare vertical profiles of oxygen and hydrogen sulphide concentration with the number and distribution of oxygenic and anoxygenic phototrophic microorganisms. Maximum abundance of both algae and green sulfur bacteria were achieved within the redox zone. Typical thickness of the layer with the highest concentration of microorganisms did not exceed 10-20 cm.
机译:由于近年来关于白海的卡累利阿岸的研究超过了十大封锁,在不同的海上分离阶段。其中五分之一靠近莫斯科州立大学的Nikolai Pertsov白海生物站。这种分离的湖泊很有意思地探索他们坚定的垂直分层。水层不仅不同于温度,盐度和其他物理和化学特性和光学性质,还可以通过Ibhabiting微生物和通过溶解的有机物质的质量。研究从不同深度采样的水中的光致杂种,我们使用光谱技术。鉴定吸收和荧光光谱中的主带鉴定,氧化还原区(Chemocline)中存在两种主要的光合生物组:含有叶绿素A和绿色硫菌的单细胞藻类含有菌肤氯苯基C,D,E。将光谱数据与水层的物理和化学特性进行比较(温度,盐度,pH,溶解氧和阳光照射在某些深度)。它使得能够将氧和硫化氢浓度的垂直谱与含氧和氧氧性光养微生物的数量和分布进行比较。在氧化还原区内实现了藻类和绿色硫细菌的最大丰度。具有最高浓度微生物浓度的层的典型厚度不超过10-20cm。

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