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植物乳杆菌 WCFS1 中超量叶酸生产的生理反应。

Physiological responses to folate overproduction in Lactobacillus plantarum WCFS1.

机构信息

TI Food & Nutrition, Wageningen, Nieuwe Kanaal 9A, 6709 PA, Wageningen, The Netherlands.

出版信息

Microb Cell Fact. 2010 Dec 17;9:100. doi: 10.1186/1475-2859-9-100.

Abstract

BACKGROUND

Using a functional genomics approach we addressed the impact of folate overproduction on metabolite formation and gene expression in Lactobacillus plantarum WCFS1. We focused specifically on the mechanism that reduces growth rates in folate-overproducing cells.

RESULTS

Metabolite formation and gene expression were determined in a folate-overproducing- and wild-type strain. Differential metabolomics analysis of intracellular metabolite pools indicated that the pool sizes of 18 metabolites differed significantly between these strains. The gene expression profile was determined for both strains in pH-regulated chemostat culture and batch culture. Apart from the expected overexpression of the 6 genes of the folate gene cluster, no other genes were found to be differentially expressed both in continuous and batch cultures. The discrepancy between the low transcriptome and metabolome response and the 25% growth rate reduction of the folate overproducing strain was further investigated. Folate production per se could be ruled out as a contributing factor, since in the absence of folate production the growth rate of the overproducer was also reduced by 25%. The higher metabolic costs for DNA and RNA biosynthesis in the folate overproducing strain were also ruled out. However, it was demonstrated that folate-specific mRNAs and proteins constitute 8% and 4% of the total mRNA and protein pool, respectively.

CONCLUSION

Folate overproduction leads to very little change in metabolite levels or overall transcript profile, while at the same time the growth rate is reduced drastically. This shows that Lactobacillus plantarum WCFS1 is unable to respond to this growth rate reduction, most likely because the growth-related transcripts and proteins are diluted by the enormous amount of gratuitous folate-related transcripts and proteins.

摘要

背景

我们采用功能基因组学的方法研究了叶酸过量生产对植物乳杆菌 WCFS1 代谢产物形成和基因表达的影响。我们特别关注降低叶酸过量生产细胞生长速率的机制。

结果

在叶酸过量生产菌株和野生型菌株中测定了代谢产物的形成和基因表达。对细胞内代谢物库的差异代谢组学分析表明,这两种菌株的 18 种代谢物的库大小有显著差异。两种菌株的基因表达谱在 pH 调节恒化器培养和分批培养中均被确定。除了叶酸基因簇的 6 个基因的预期过表达外,在连续和分批培养中均未发现其他基因差异表达。低转录组和代谢组响应与叶酸过量生产菌株生长速率降低 25%之间的差异进一步研究。叶酸生产本身可以排除为一个促成因素,因为在没有叶酸生产的情况下,过量生产菌的生长速率也降低了 25%。叶酸过量生产菌株中 DNA 和 RNA 生物合成的更高代谢成本也被排除在外。然而,证明叶酸特异性的 mRNA 和蛋白质分别占总 mRNA 和蛋白质库的 8%和 4%。

结论

叶酸过量生产导致代谢产物水平或整体转录谱几乎没有变化,而同时生长速率急剧下降。这表明植物乳杆菌 WCFS1 无法对这种生长速率的降低做出反应,很可能是因为与生长相关的转录物和蛋白质被大量的免费叶酸相关转录物和蛋白质稀释了。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09cf/3014895/2c3ac0978a73/1475-2859-9-100-1.jpg

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