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Survival and exopolysaccharide production in Sinorhizobium meliloti WSM419 are affected by calcium and low pH

机译:Sinorhizobium Meliloti WSM419中的存活和外偶糖产生受钙和低pH的影响

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Cells of Sinorhizobium meliloti WSM419 showed an adaptive acid-tolerance response when grown at pH 5·8 instead of pH 7·0. Increasing concentrations of calcium in the exposure medium significantly decreased the death rate of WSM419 cells under conditions of acid stress (pH 4·0). The effect of calcium on survival at pH 4·0 however, appears unconnected to exopolysaccharide (EPS), since a strain with a mutation in exoY (Rm0540) responded to calcium in the exposure medium in the same way as its wild-type parent (Rm2011). The concentration of calcium in the growth medium also affected subsequent survival at pH 4·0, and the effect varied with pH. In cells grown at pH 5·8, higher calcium concentrations also markedly increased the rate of synthesis of EPS; this was not seen in cells grown at pH 7·0. 1H NMR spectra for isolated EPS from WSM419 cultures grown at pH 5·8 and pH 7·0 showed that low pH markedly lowered the degree of substitution with acetyl and pyruvyl groups, but not the degree of substitution with succinyl groups; calcium concentration did not affect the pattern of substitution at either pH. For EPS to be involved in the effect of calcium concentration in the growth medium on survival would imply a deleterious effect of the EPS produced at low pH.
机译:Sinorhizobium Meliloti WSM419的细胞显示在pH5·8时生长而不是pH7·0时的适应性酸性耐受响应。在酸性胁迫条件下,曝光培养基中钙浓度的增加显着降低了WSM419细胞的死亡率(pH4·0)。然而,钙对pH4·0的生存效果出现与外核(EPS)未连接,因为Exoy(RM0540)中具有突变的菌株以与其野生型父母相同的方式(RM0540)响应钙钙(RM0540)( RM2011)。生长培养基中钙的浓度也受到pH 4·0的后续存活,并且效果随pH变化。在pH5·8的细胞中,较高的钙浓度也显着增加了EPS的合成速率;在pH 7·0的细胞中没有看到这一点。从pH5·8和pH7·0生长的WSM419培养物中含有孤立的EPS的NMR光谱表明,低pH显着降低了乙酰基和吡酰基的取代度,但不是用琥珀酰基取代的程度;钙浓度在任何一种pH下都不会影响取代模式。对于EPS参与钙浓度在生长培养基中的生存培养基的影响将意味着在低pH下产生的EPS的有害效果。

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