首页> 外文期刊>Applied Microbiology >Ecological Importance of Cross-Feeding of the Intermediate Metabolite 1,2-Propanediol between Bacterial Gut Symbionts
【24h】

Ecological Importance of Cross-Feeding of the Intermediate Metabolite 1,2-Propanediol between Bacterial Gut Symbionts

机译:中间代谢物1,2-丙二醇在细菌肠道共生之间的生态重要性

获取原文
           

摘要

Cross-feeding based on the metabolite 1,2-propanediol has been proposed to have an important role in the establishment of trophic interactions among gut symbionts, but its ecological importance has not been empirically established. Here, we show that in vitro growth of Lactobacillus reuteri (syn. Limosilactobacillus reuteri ) ATCC PTA 6475 is enhanced through 1,2-propanediol produced by Bifidobacterium breve UCC2003 and Escherichia coli MG1655 from the metabolization of fucose and rhamnose, respectively. Work with isogenic mutants showed that the trophic interaction is dependent on the pduCDE operon in L. reuteri , which encodes the ability to use 1,2-propanediol, and the l-fucose permease ( fucP ) gene in B. breve , which is required for 1,2-propanediol formation from fucose. Experiments in gnotobiotic mice revealed that, although the pduCDE operon bestows a fitness burden on L. reuteri ATCC PTA 6475 in the mouse digestive tract, the ecological performance of the strain was enhanced in the presence of B. breve UCC2003 and the mucus-degrading species Bifidobacterium bifidum . The use of the respective pduCDE and fucP mutants of L. reuteri and B. breve in the mouse experiments indicated that the trophic interaction was specifically based on 1,2-propanediol. Overall, our work established the ecological importance of cross-feeding relationships based on 1,2-propanediol for the fitness of a bacterial symbiont in the vertebrate gut.IMPORTANCE Through experiments in gnotobiotic mice that employed isogenic mutants of bacterial strains that produce ( Bifidobacterium breve ) and utilize ( Lactobacillus reuteri ) 1,2-propanediol, this study provides mechanistic insight into the ecological ramifications of a trophic interaction between gut symbionts. The findings improve our understanding on how cross-feeding influences the competitive fitness of L. reuteri in the vertebrate gut and revealed a putative selective force that shaped the evolution of the species. The findings are relevant since they provide a basis to design rational microbial-based strategies to modulate gut ecosystems, which could employ mixtures of bacterial strains that establish trophic interactions or a personalized approach based on the ability of a resident microbiota to provide resources for the incoming microbe.
机译:已经提出了基于代谢物1,2-丙二醇的交叉喂养,在肠道共生之间的营养互动中具有重要作用,但其生态重要性尚未经过经验成立。在这里,我们表明,通过双歧杆菌UCC2003和大肠杆菌Mg1655分别从岩藻糖和鼻窦代谢产生1,2-丙二醇,通过1,2-丙二醇增强了乳酸杆菌的体外生长。患有中原突变体的工作表明,营养性相互作用依赖于L. REUTERI中的PDUCDE操纵子,其编码使用1,2-丙二醇的能力,以及B. Breve中的L-岩藻糖允许(FUCP)基因。从岩藻糖中形成1,2-丙二醇。侏毒小鼠的实验表明,尽管PDUCDE型术术在小鼠消化道中赋予L. Reuteri ATCC PTA 6477的健身负担,但在B.Breve UCC2003和粘液降解物种的存在下,菌株的生态性能提高了菌株的生态性能双歧杆菌双歧米。在小鼠实验中使用L. Reuteri和B的各自Pducde和FUCP突变体表明营养性相互作用特别基于1,2-丙二醇。总体而言,我们的工作建立了基于1,2-丙二醇的交叉喂养关系的生态重要性,用于脊椎动物肠道中的细菌肠系中的细菌共生的适应性。通过在生产的细菌菌株的雌激素突变体中的胎虫小鼠的实验重新分析(Bifidobacterium Breve )和利用(Lactobacillus Reuteri)1,2-丙二醇,本研究提供了机械洞察肠道共生之间的营养互动的生态后果。该研究结果改善了我们对交叉喂养如何影响脊椎动物肠道中L. Reuteri的竞争性的理解,并揭示了一种塑造了物种演变的推定选择性力。结果是相关的,因为它们为设计理性微生物的策略来调节肠系生态系统来提供基础,这可以采用结构的细菌菌株的混合物,这些细菌菌株根据常驻微生物群提供资源为进入的资源提供营养互动或个性化方法的细菌菌株的混合物微生物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号