Micheletti Ernesto, Pereira Sara, Mannelli Francesca, Moradas-Ferreira Pedro, Tamagnini Paula, De Philippis Roberto
Department of Agricultural Biotechnology, University of Florence, Piazzale delle Cascine 24, I-50144, Florence, Italy.
Appl Environ Microbiol. 2008 May;74(9):2797-804. doi: 10.1128/AEM.02212-07. Epub 2008 Mar 7.
The cyanobacterium Gloeothece sp. strain PCC 6909 and its sheathless mutant were tested for their abilities to remove copper ions from aqueous solutions, with the aim of defining the role of the various outermost polysaccharidic investments in the removal of the metal ions. Microscopy studies and chemical analyses revealed that, although the mutant does not possess a sheath, it releases large amounts of polysaccharidic material (released exocellular polysaccharides [RPS]) into the culture medium. The RPS of the wild type and the mutant are composed of the same 11 sugars, although they are present in different amounts, and the RPS of the mutant possesses a larger amount of acidic sugars and a smaller amount of deoxysugars than the wild type. Unexpectedly, whole cultures of the mutant were more effective in the removal of the heavy metal than the wild type (46.3 +/- 3.1 and 26.7 +/- 1.5 mg of Cu(2+) removed per g of dry weight, respectively). Moreover, we demonstrated that the contribution of the sheath to the metal-removal capacity of the wild type is scarce and that the RPS of the mutant is more efficient in removing copper. This suggests that the metal ions are preferably bound to the cell wall and to RPS functional groups rather than to the sheath. Therefore, the increased copper binding efficiency observed with the sheathless mutant can be attributed to the release of a polysaccharide containing larger amounts and/or more accessible functional groups (e.g., carboxyl and amide groups).
对蓝藻聚球藻属菌株PCC 6909及其无鞘突变体从水溶液中去除铜离子的能力进行了测试,目的是确定各种最外层多糖包裹物在去除金属离子中的作用。显微镜研究和化学分析表明,尽管该突变体没有鞘,但它会向培养基中释放大量的多糖物质(释放的胞外多糖[RPS])。野生型和突变体的RPS由相同的11种糖组成,尽管它们的含量不同,并且突变体的RPS比野生型含有更多的酸性糖和更少的脱氧糖。出乎意料的是,突变体的整个培养物在去除重金属方面比野生型更有效(每克干重分别去除46.3±3.1和26.7±1.5毫克Cu(2+))。此外,我们证明鞘对野生型金属去除能力的贡献很小,并且突变体的RPS在去除铜方面更有效。这表明金属离子更倾向于与细胞壁和RPS官能团结合,而不是与鞘结合。因此,无鞘突变体观察到的铜结合效率增加可归因于释放出含有更多量和/或更易接近的官能团(例如羧基和酰胺基)的多糖。