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タイトル
和文:Biosynthesis of a sulfated exopolysaccharide, synechan, and bloom formation in the model cyanobacterium Synechocystis sp. strain PCC 6803 
英文:Biosynthesis of a sulfated exopolysaccharide, synechan, and bloom formation in the model cyanobacterium Synechocystis sp. strain PCC 6803 
著者
和文: 前田海成, 奥田裕紀子, 榎本元, 渡辺智, 池内昌彦.  
英文: Kaisei Maeda, Yukiko Okuda, Gen Enomoto, Satoru Watanabe, Masahiko Ikeuchi.  
言語 English 
掲載誌/書名
和文:eLife 
英文:eLife 
巻, 号, ページ Vol. 10       
出版年月 2021年6月15日 
出版者
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英文: 
会議名称
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開催地
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英文: 
公式リンク http://dx.doi.org/10.7554/elife.66538
 
DOI https://doi.org/10.7554/elife.66538
アブストラクト <jats:p>Extracellularpolysaccharides of bacteria contribute to biofilm formation, stress tolerance, and infectivity. Cyanobacteria, the oxygenic photoautotrophic bacteria, uniquely produce sulfated extracellular polysaccharides among bacteria to support phototrophic biofilms. In addition, sulfated polysaccharides of cyanobacteria and other organisms have been focused as beneficial biomaterial. However, very little is known about their biosynthesis machinery and function in cyanobacteria. Here, we found that the model cyanobacterium, <jats:italic>Synechocystis</jats:italic> sp. strain PCC 6803, formed bloom-like cell aggregates embedded in sulfated extracellular polysaccharides (designated as synechan) and identified whole set of genes responsible for synechan biosynthesis and its transcriptional regulation, thereby suggesting a model for the synechan biosynthesis apparatus. Because similar genes are found in many cyanobacterial genomes with wide variation, our findings may lead elucidation of various sulfated polysaccharides, their functions, and their potential application in biotechnology.</jats:p>

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