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Sucrose synthase in unicellular cyanobacteria and its relationship with salt and hypoxic stress

机译:单细胞蓝细菌中的蔗糖合酶及其与盐和低氧胁迫的关系

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摘要

Higher plants and cyanobacteria metabolize sucrose (Suc) by a similar set of enzymes. Suc synthase (SuS, A/UDP-glucose: d-fructose 2-α-d-glucosyl transferase) catalyzes a reversible reaction. However, it is in the cleavage of Suc that this enzyme plays an important role in vivo, providing sugar nucleotides for polysaccharide biosynthesis. In cyanobacteria, SuS occurrence has been reported in heterocyst-forming strains, where it was shown to be involved also in nitrogen fixation. We investigated the presence of sequences homologous to SuS-encoding genes (sus) in recently sequenced cyanobacterial genomes. In this work, we show for the first time the presence of SuS in unicellular cyanobacterium strains (Microcystis aeruginosa PCC 7806, Gloebacter violaceus PCC 7421, and Thermosynechococcus elongatus BP-1). After functional characterization of SuS encoding genes, we demonstrated an increase in their transcript levels after a salt treatment or hypoxic stress in M. aeruginosa and G. violaceus cells. Based on phylogenetic analysis and on the presence of sus homologs in the most recently radiated cyanobacterium strains, we propose that sus genes in unicellular cyanobacteria may have been acquired through horizontal gene transfer. Taken together, our data indicate that SuS acquisition by cyanobacteria might be related to open up new ecological niches.
机译:高等植物和蓝细菌通过一组相似的酶代谢蔗糖(Suc)。 Suc合酶(SuS,A / UDP葡萄糖:d-果糖2-α-d-葡萄糖基转移酶)催化可逆反应。然而,正是在Suc的裂解中,该酶在体内起着重要的作用,为多糖的生物合成提供了糖核苷酸。在蓝细菌中,已经报道过在异囊形成菌株中发生SuS的情况,该菌株还显示出SuS也与固氮作用有关。我们调查了最近测序的蓝细菌基因组中与SuS编码基因(sus)同源的序列的存在。在这项工作中,我们首次展示了单细胞蓝藻菌株(铜绿微囊藻PCC 7806,紫罗兰杆菌PCC 7421和伸长嗜热球菌BP-1)中SuS的存在。 SuS编码基因的功能表征后,我们证明了在盐处理或缺氧胁迫下,铜绿假单胞菌和紫堇菌细胞中它们的转录水平增加。基于系统发育分析和最近辐射的蓝细菌菌株中sus同源物的存在,我们建议单细胞蓝细菌中的sus基因可能已通过水平基因转移获得。两者合计,我们的数据表明蓝细菌获得的SuS可能与开拓新的生态位有关。

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