Instituto de Bioquímica Vegetal y Fotosíntesis, CSIC and Universidad de Sevilla, Américo Vespucio 49, 41092, Seville, Spain.
Environ Microbiol Rep. 2018 Feb;10(1):40-48. doi: 10.1111/1758-2229.12603. Epub 2017 Dec 14.
Cyanobacteria are generally capable of photoautotrophic growth and are widely distributed on Earth. The model filamentous, heterocyst-forming strain Anabaena sp. PCC 7120 has long been considered as a strict photoautotroph but is now known to be able to assimilate fructose. We have previously described two components of ABC glucoside uptake transporters from Anabaena that are involved in uptake of the sucrose analog esculin: GlsC [a nucleotide-binding domain subunit (NBD)] and GlsP [a transmembrane component (TMD)]. Here, we created Anabaena mutants of genes encoding three further ABC transporter components needed for esculin uptake: GlsD (NBD), GlsQ (TMD) and GlsR (periplasmic substrate-binding protein). Phototrophic growth of Anabaena was significantly stimulated by sucrose, fructose and glucose. Whereas the glsC and glsD mutants were drastically hampered in sucrose-stimulated growth, the different gls mutants were generally impaired in sugar-dependent growth. Our results suggest the participation of Gls and other ABC transporters encoded in the Anabaena genome in sugar-stimulated growth. Additionally, Gls transporter components influence the function of septal junctions in the Anabaena filament. We suggest that mixotrophic growth is important in cyanobacterial physiology and may be relevant for the wide success of these organisms in diverse environments.
蓝藻通常能够进行光合作用自养生长,并且广泛分布在地球上。模式丝状、异形胞形成菌株鱼腥藻 sp. PCC 7120 长期以来被认为是严格的光合作用自养生物,但现在已知它能够同化果糖。我们之前描述了鱼腥藻中参与蔗糖类似物黎芦醇摄取的 ABC 糖苷摄取转运蛋白的两个成分:GlsC(核苷酸结合结构域亚基 (NBD))和 GlsP(跨膜成分 (TMD))。在这里,我们创建了鱼腥藻中编码三种进一步参与黎芦醇摄取的 ABC 转运蛋白成分的基因的突变体:GlsD(NBD)、GlsQ(TMD)和 GlsR(周质底物结合蛋白)。鱼腥藻的光养生长受到蔗糖、果糖和葡萄糖的显著刺激。虽然 glsC 和 glsD 突变体在蔗糖刺激的生长中受到严重阻碍,但不同的 gls 突变体通常在糖依赖性生长中受到损害。我们的结果表明,Gls 和鱼腥藻基因组中编码的其他 ABC 转运蛋白参与了糖刺激的生长。此外,Gls 转运蛋白成分影响鱼腥藻丝状体内隔 Junction 的功能。我们认为,混养生长在蓝藻生理学中很重要,并且可能与这些生物体在各种环境中的广泛成功相关。