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Picocyanobacteria containing a novel pigment gene cluster dominate the brackish water Baltic Sea

机译:含新型色素基因簇的微蓝细菌在咸淡水波罗的海中占主导地位

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摘要

Photoautotrophic picocyanobacteria harvest light via phycobilisomes (PBS) consisting of the pigments phycocyanin (PC) and phycoerythrin (PE), encoded by genes in conserved gene clusters. The presence and arrangement of these gene clusters give picocyanobacteria characteristic light absorption properties and allow the colonization of specific ecological niches. To date, a full understanding of the evolution and distribution of the PBS gene cluster in picocyanobacteria has been hampered by the scarcity of genome sequences from fresh- and brackish water-adapted strains. To remediate this, we analysed genomes assembled from metagenomic samples collected along a natural salinity gradient, and over the course of a growth season, in the Baltic Sea. We found that while PBS gene clusters in picocyanobacteria sampled in marine habitats were highly similar to known references, brackish-adapted genotypes harboured a novel type not seen in previously sequenced genomes. Phylogenetic analyses showed that the novel gene cluster belonged to a clade of uncultivated picocyanobacteria that dominate the brackish Baltic Sea throughout the summer season, but are uncommon in other examined aquatic ecosystems. Further, our data suggest that the PE genes were lost in the ancestor of PC-containing coastal picocyanobacteria and that multiple horizontal gene transfer events have re-introduced PE genes into brackish-adapted strains, including the novel clade discovered here.
机译:光合自养微藻蓝藻通过由保守基因簇中的基因编码的色素胆蓝素(PC)和藻红蛋白(PE)组成的藻胆体(PBS)收集光。这些基因簇的存在和排列赋予了微蓝细菌特有的光吸收特性,并允许特定生态位的定殖。迄今为止,对淡水蓝细菌中PBS基因簇的进化和分布的充分了解已被淡水和微咸水适应菌株的基因组序列的缺乏所困扰。为了对此进行补救,我们分析了在波罗的海沿自然盐度梯度以及整个生长季节过程中从宏基因组样本中组装的基因组。我们发现,虽然在海洋栖息地采样的蓝细菌中的PBS基因簇与已知参考文献高度相似,但咸淡适应的基因型仍具有以前测序的基因组中未见的新型类型。系统发育分析表明,该新基因簇属于未经培养的微蓝细菌进化枝,该细菌在整个夏季都控制着咸淡的波罗的海,但在其他经过检查的水生生态系统中并不常见。此外,我们的数据表明,PE基因在含PC的沿海微蓝细菌的祖先中丢失,并且多个水平基因转移事件已将PE基因重新引入到微咸适应的菌株中,包括在此发现的新进化枝。

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