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Population Heterogeneity of Lactobacillus plantarum WCFS1 Microcolonies in Response to and Recovery from Acid Stress▿

机译:植物乳杆菌WCFS1小菌落的种群异质性对酸胁迫的响应和从酸胁迫中恢复▿

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摘要

Within an isogenic microbial population in a homogenous environment, individual bacteria can still exhibit differences in phenotype. Phenotypic heterogeneity can facilitate the survival of subpopulations under stress. As the gram-positive bacterium Lactobacillus plantarum grows, it acidifies the growth medium to a low pH. We have examined the growth of L. plantarum microcolonies after rapid pH downshift (pH 2 to 4), which prevents growth in liquid culture. This acidification was achieved by transferring cells from liquid broth onto a porous ceramic support, placed on a base of low-pH MRS medium solidified using Gelrite. We found a subpopulation of cells that displayed phenotypic heterogeneity and continued to grow at pH 3, which resulted in microcolonies dominated by viable but elongated (filamentous) cells lacking septation, as determined by scanning electron microscopy and staining cell membranes with the lipophilic dye FM4-64. Recovery of pH-stressed cells from these colonies was studied by inoculation onto MRS-Gelrite-covered slides at pH 6.5, and outgrowth was monitored by microscopy. The heterogeneity of the population, calculated from the microcolony areas, decreased with recovery from pH 3 over a period of a few hours. Filamentous cells did not have an advantage in outgrowth during recovery. Specific regions within single filamentous cells were more able to form rapidly dividing cells, i.e., there was heterogeneity even within single recovering cells.
机译:在同质环境中的同基因微生物种群中,单个细菌仍可以表现出表型差异。表型异质性可以促进亚群在压力下的生存。随着革兰氏阳性细菌植物乳杆菌的生长,它将酸化生长培养基至低pH。我们已经检查了快速pH下移(pH 2到4)后植物乳杆菌微菌落的生长,这阻止了液体培养中的生长。通过将细胞从液体肉汤转移到多孔陶瓷载体上来实现这种酸化,该载体置于使用Gelrite固化的低pH MRS培养基的基础上。我们发现细胞亚群表现出表型异质性,并在pH 3下继续生长,这导致微菌落以存活但伸长的(丝状)细胞缺乏分隔为主导,这是通过扫描电子显微镜确定的,并用亲脂性染料FM4-对细胞膜染色64。通过接种到pH 6.5的MRS-Gelrite覆盖的载玻片上,研究了从这些菌落中恢复pH胁迫的细胞的情况,并通过显微镜监测了生长。从小菌落区算出的种群异质性在几个小时内随pH 3的恢复而降低。丝状细胞在恢复过程中没有优势。单个丝状细胞内的特定区域更能够形成快速分裂的细胞,即,甚至在单个回收细胞内也存在异质性。

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