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Effect of Metal Cations on the Viscosity of a Pectin-Like Capsular Polysaccharide from the Cyanobacterium Microcystis flos-aquae C3-40

机译:金属阳离子对蓝藻微囊藻C3-40类似于果胶的荚膜多糖粘度的影响

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摘要

The properties of purified capsular polysaccharide from the cyanobacterium Microcystis flos-aquae C3-40 were examined by capillary viscometry. Capsule suspensions exhibited similar viscosities between pH 6 and 10 but were more viscous at pH <=4 than at pH 6 to 11. At pH 7, a biphasic effect of metal ion concentration on capsule viscosity was observed: (i) capsule viscosity increased with increasing metal ion concentration until a maximal viscosity occurred at a specific concentration that was a reproducible characteristic of each metal ion, and (ii) the viscosity decreased with further addition of that ion. Because the latter part of the biphasic curve was complicated by additional factors (especially the precipitation or gelation of capsule by divalent metal ions), the effects of various metal chlorides were compared for the former phase in which capsule viscosity increased in the presence of metal ions. Equivalent increases in capsule viscosity were observed with micromolar concentrations of divalent metal ions but only with 10 to 20 times greater concentrations of Na(sup+). The relative abilities of various metal salts to increase capsule viscosity were as follows: CdCl(inf2), Pb(NO(inf3))(inf2), FeCl(inf2) > MnCl(inf2) > CuCl(inf2), CaCl(inf2) >> NaCl. This pattern of metal efficacy resembles known cation influences on the structural integrity of capsule in naturally occurring and cultured M. flos-aquae colonies. The data are the first direct demonstration of an interaction between metal ions and purified M. flos-aquae capsule, which has previously been proposed to play a role in the environmental cycling of certain multivalent metals, especially manganese. The M. flos-aquae capsule and the plant polysaccharide pectin have similar sugar compositions but differ in their relative responses to various metals, suggesting that capsular polysaccharide could be a preferable alternative to pectin for certain biotechnological applications.
机译:通过毛细管粘度测定法检查了来自蓝藻微囊藻C3-40的纯化荚膜多糖的性质。胶囊悬浮液在pH 6至10之间显示出相似的粘度,但在pH <= 4时比在pH 6至11时更粘。在pH 7下,观察到金属离子浓度对胶囊粘度的两相作用:(i)胶囊粘度随增加金属离子浓度,直到在特定浓度下出现最大粘度为止(这是每种金属离子的可再现特征),并且(ii)粘度随着进一步添加该离子而降低。由于双相曲线的后半部分受其他因素(特别是二价金属离子对胶囊的沉淀或胶凝)的影响而变得复杂,因此比较了前者的各种金属氯化物的作用,在前一阶段中,在存在金属离子的情况下,胶囊的粘度增加了。在微摩尔浓度的二价金属离子中观察到胶囊粘度的等效增加,但在Na(sup +)浓度中仅增加10至20倍。各种金属盐增加胶囊粘度的相对能力如下:CdCl(inf2),Pb(NO(inf3))(inf2),FeCl(inf2)> MnCl(inf2)> CuCl(inf2),CaCl(inf2) 氯化钠。这种金属功效的模式类似于已知的阳离子对天然存在和培养的大花莫拉氏菌菌落中胶囊结构完整性的影响。该数据是金属离子与纯化的浮水藻胶囊之间相互作用的第一个直接证明,先前已提出在某些多价金属(尤其是锰)的环境循环中发挥作用。弗洛斯海藻胶囊和植物多糖果胶具有相似的糖组成,但是它们对各种金属的相对反应不同,这表明荚膜多糖对于某些生物技术应用而言可能是果胶的优选替代品。

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