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Meta-omic analyses of Baltic Sea cyanobacteria: diversity, community structure and salt acclimation

机译:波罗的海蓝藻的元组学分析:多样性、群落结构和盐驯化

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摘要

Cyanobacteria are important phytoplankton in the Baltic Sea, an estuarine-like environment with pronounced north to south gradients in salinity and nutrient concentrations. Here, we present a metagenomic and -transcriptomic survey, with subsequent analyses targeting the genetic identity, phylogenetic diversity, and spatial distribution of Baltic Sea cyanobacteria. The cyanobacterial community constituted close to 12 of the microbial population sampled during a pre-bloom period (June-July 2009). The community was dominated by unicellular picocyanobacteria, specifically a few highly abundant taxa (Synechococcus and Cyanobium) with a long tail of low abundance representatives, and local peaks of bloom-forming heterocystous taxa. Cyanobacteria in the Baltic Sea differed genetically from those in adjacent limnic and marine waters as well as from cultivated and sequenced picocyanobacterial strains. Diversity peaked at brackish salinities 3.5-16psu, with low N:P ratios. A shift in community composition from brackish to marine strains was accompanied by a change in the repertoire and expression of genes involved in salt acclimation. Overall, the pre-bloom cyanobacterial population was more genetically diverse, widespread and abundant than previously documented, with unicellular picocyanobacteria being the most abundant clade along the entire Baltic Sea salinity gradient.
机译:蓝藻是波罗的海重要的浮游植物,波罗的海是一个类似河口的环境,盐度和营养浓度呈明显的南北梯度。在这里,我们提出了宏基因组学和转录组学调查,随后针对波罗的海蓝藻的遗传身份、系统发育多样性和空间分布进行了分析。蓝藻群落占开花前(2009年6月至7月)采样微生物种群的近12%。群落以单细胞微蓝藻为主,特别是少数高丰度的类群(聚球菌属和蓝藻),具有低丰度代表的长尾,以及形成水华的异囊类群的局部峰值。波罗的海的蓝藻在遗传上与邻近的湖沼和海水以及培养和测序的微蓝藻菌株不同。多样性在咸水盐度为3.5-16psu时达到峰值,N:P比较低。群落组成从咸水菌株向海洋菌株的转变伴随着与盐驯化有关的基因库和表达的变化。总体而言,开花前的蓝藻种群比以前记录的更具遗传多样性、广泛性和丰富性,单细胞微蓝藻是整个波罗的海盐度梯度上最丰富的分支。

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