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Exopolysaccharide-producing cyanobacteria and their possible exploitation:A review

机译:产生胞外多糖的蓝细菌及其可能的利用:综述

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摘要

Since the early 1950s, more than one hundred cyanobacterial strains, belonging to twenty different genera, have been investigated with regard to the production and the released exocellular polysaccharides (RPS) into the culture medium. The chemical and rheological properties show that such polysaccharides are complex anionic heteropolymers, in about 80% cases containing six to ten different monosaccharides and in about 90% cases containing one or more uronic acids; almost all have non-saccharidic components, such as peptidic moieties, acetyl, pyruvyl and/or sulphate groups. Based on such ingredients, cyanobacterial RPSs show promise as thickening or suspending agents, emulsifying or cation-chelating compounds and the residual capsulated cyanobacterial biomass, following R-PS extraction, could be an effective cation-chelating material. Indeed, when eleven unicellular and filamentous RPS-producing cyanobacteria, selected on the basis of the anion density of their RPSs and on the abundance of their outermost investments, were screened for their ability to remove Cu2+ from aqueous solutions, a quick and most effective heavy metal adsorption was observed for the unicellular Cyanothece CE 4 and the filamentous Cyanospira capsulata. These results suggest the possibility to accomplish, through the exploitation of RPS-producing cyanobacteria, a multiproduct strategy to procure a wide range of biopolymers suited to various industrial applications, in addition to the residual biomass effective in the recovery of heavy metals from polluted waters.
机译:自1950年代初以来,已经对属于二十个不同属的一百多个蓝细菌菌株进行了研究,研究了其向培养基中释放和释放胞外多糖(RPS)的情况。化学和流变性表明,这种多糖是复杂的阴离子杂聚物,在约80%的情况下含有6至10种不同的单糖,在约90%的情况下含有一种或多种糖醛酸。几乎所有的成分都具有非糖性成分,例如肽部分,乙酰基,丙酮基和/或硫酸盐基团。基于此类成分,蓝细菌RPS有望作为增稠剂或悬浮剂,乳化或阳离子螯合化合物,而残留的胶囊化蓝细菌生物质(经R-PS提取)可能是有效的阳离子螯合材料。的确,当根据其RPS的阴离子密度和其最外层投资的丰度对11个产生RPS的单细胞和丝状蓝细菌进行筛选时,筛选出它们从水溶液中去除Cu2 +的能力,这是一种快速而有效的重金属观察到单细胞蓝藻CE 4和丝状蓝藻荚膜的金属吸附。这些结果表明,通过利用产生RPS的蓝细菌的开发,除了可以有效地从污染水中回收重金属的残留生物质外,还可以采取多种产品策略来采购适合各种工业应用的多种生物聚合物。

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