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首页> 外文期刊>Atmospheric and oceanic optics >Spectroscopic Study of Green Sulfur Bacteria in Stratified Water Bodies of the Kandalaksha Gulf of the White Sea
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Spectroscopic Study of Green Sulfur Bacteria in Stratified Water Bodies of the Kandalaksha Gulf of the White Sea

机译:白海坎达拉山海湾分层水体中绿色硫菌的光谱研究

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Optical characteristics of water in stratified lakes of the White Sea are of particular interest in connection with the observation of thin colored layers resulting from massive development of anoxygenic phototrophic bacteria around the chemocline. While optical properties of chlorophyll are widely used in remote sensing, spectral characteristics of bacteriochlorophylls (BChl) for natural microbial communities have been little studied. In this work, spectral study of green sulfur bacteria of four water bodies of the Kandalaksha Gulf of the White Sea was carried out. Absorption and fluorescence spectra were measured for water samples taken in March 2017 from different depths and compared with spectra of monocultures isolated from the same water bodies earlier. It has been shown that the BChl fluorescence in the living cells of green sulfur bacteria has two overlapping emission bands: in the region of 740–770 nm (BChl d and e ) and at 815 nm (BChl a ). The wavelength of the maximum of the first band depends on the ratio of the concentrations of green- and brown-colored forms of bacteria containing different types of BChl. A new method for separating the contributions of two types of bacteria is proposed, based on the deconvolution of the BChl fluorescence spectrum into three bands whose parameters are determined from the spectra of monocultures. The BChl content at various water depths has been estimated and the percentage ratio of different types of phototrophic bacteria has been determined.
机译:白海的分层湖泊中的水中的光学特性是特别令人兴趣的是,与化学纤维周围的脂肪植物细菌大规模发育的薄色层的观察有特别令人兴趣。叶绿素的光学性质广泛用于遥感,而自然微生物社区的菌肤氯苯基(BCHL)的光谱特征已经很少研究。在这项工作中,进行了白海的坎达拉哈湾四个水体绿色硫菌的光谱研究。测量从不同深度拍摄的水样测量吸收和荧光光谱,并与前面与同一水体中分离的单一栽培的光谱相比。已经表明,绿色硫细菌的活细胞中的BCH1荧光具有两个重叠的发射带:在740-770nm(BCHl D和E)和815nm(BCHl A)的区域中。第一频带的最大波长取决于含有不同类型的BCH1的绿色和棕色形式的浓度的比率。提出了一种基于BCHL荧光光谱的去卷积分成三个带,其参数从单一栽培的光谱确定的三个带,提出了一种分离两种细菌的​​贡献的新方法。已经估计了各种水深的BCH1含量,并确定了不同类型的光养细菌的百分比。

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