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Heat Resistance and Salt Hypersensitivity in Lactococcus lactis Due to Spontaneous Mutation of llmg_1816 (gdpP) Induced by High-Temperature Growth

机译:高温生长引起的llmg_1816(gdpP)自发突变导致乳酸乳球菌的耐热性和盐超敏性

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During construction of several gene deletion mutants in Lactococcus lactis MG1363 which involved a high-temperature (37.5°C) incubation step, additional spontaneous mutations were observed which resulted in stable heat resistance and in some cases salt-hypersensitive phenotypes. Whole-genome sequencing of one strain which was both heat resistant and salt hypersensitive, followed by PCR and sequencing of four other mutants which shared these phenotypes, revealed independent mutations in llmg_1816 in all cases. This gene encodes a membrane-bound stress signaling protein of the GdpP family, members of which exhibit cyclic dimeric AMP (c-di-AMP)-specific phosphodiesterase activity. Mutations were predicted to lead to single amino acid substitutions or protein truncations. An independent llmg_1816 mutant (Δ1816), created using a suicide vector, also displayed heat resistance and salt hypersensitivity phenotypes which could be restored to wild-type levels following plasmid excision. L. lactis Δ1816 also displayed improved growth in response to sublethal concentrations of penicillin G. High-temperature incubation of a wild-type industrial L. lactis strain also resulted in spontaneous mutation of llmg_1816 and heat-resistant and salt-hypersensitive phenotypes, suggesting that this is not a strain-specific phenomenon and that it is independent of a plasmid integration event. Acidification of milk by the llmg_1816 -altered strain was inhibited by lower salt concentrations than the parent strain. This study demonstrates that spontaneous mutations can occur during high-temperature growth of L. lactis and that inactivation of llmg_1816 leads to temperature resistance and salt hypersensitivity.
机译:在乳酸乳球菌MG1363中涉及高温(37.5°C)孵育步骤的几个基因缺失突变体的构建过程中,观察到其他自发突变,导致稳定的耐热性,在某些情况下还导致盐敏感性高的表型。对一株既耐热又对盐敏感的菌株进行全基因组测序,然后对具有这些表型的其他四个突变体进行PCR和测序,发现在所有情况下llmg_1816均发生独立突变。该基因编码GdpP家族的膜结合应激信号蛋白,其成员表现出环状二聚AMP(c-di-AMP)特异性磷酸二酯酶活性。突变预计会导致单个氨基酸取代或蛋白质截断。使用自杀载体产生的独立的llmg_1816突变体(Δ1816)也显示出耐热性和盐超敏性表型,可在质粒切除后将其恢复为野生型水平。乳酸乳球菌Δ1816还显示了对亚致死浓度的青霉素G的响应。生长的野生型工业乳酸乳球菌菌株的高温孵育还导致llmg_1816的自发突变以及耐​​热和盐敏感性高的表型。这不是菌株特异性现象,它与质粒整合事件无关。盐浓度比亲代菌株低,从而抑制了llmg_1816改变菌株对牛奶的酸化。这项研究表明,在乳酸乳球菌的高温生长过程中会发生自发突变,而llmg_1816的失活会导致耐热性和盐敏感性。

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