首页> 外文期刊>Applied Microbiology >Multi-omics Approach Reveals How Yeast Extract Peptides Shape Streptococcus thermophilus Metabolism
【24h】

Multi-omics Approach Reveals How Yeast Extract Peptides Shape Streptococcus thermophilus Metabolism

机译:多OMICS方法揭示酵母提取物肽的形状链球菌嗜热代谢

获取原文
       

摘要

Peptides present in growth media are essential for nitrogen nutrition and optimal growth of lactic acid bacteria. In addition, according to their amino acid composition, they can also directly or indirectly play regulatory roles and influence global metabolism. This is especially relevant during the propagation phase to produce high cell counts of active lactic acid bacteria used as starters in the dairy industry. In the present work, we aimed at investigating how the respective compositions of two different yeast extracts, with a specific focus on peptide content, influenced Streptococcus thermophilus metabolism during growth under pH-controlled conditions. In addition to free amino acid quantification, we used a multi-omics approach (peptidomics, proteomics, and transcriptomics) to identify peptides initially present in the two culture media and to follow S. thermophilus gene expression and bacterial protein production during growth. The free amino acid and peptide compositions of the two yeast extracts differed qualitatively and quantitatively. Nevertheless, the two yeast extracts sustained similar levels of growth of S. thermophilus and led to equivalent final biomasses. However, transcriptomics and proteomics showed differential gene expression and protein production in several S. thermophilus metabolic pathways, especially amino acid, citrate, urease, purine, and pyrimidine metabolisms. The probable role of the regulator CodY is discussed in this context. Moreover, we observed significant differences in the production of regulators and of a quorum sensing regulatory system. The possible roles of yeast extract peptides on the modulation of the quorum sensing system expression are evaluated.IMPORTANCE Improving the performance and industrial robustness of bacteria used in fermentations and food industry remains a challenge. We showed here that two Streptococcus thermophilus fermentations, performed with the same strain in media that differ only by their yeast extract compositions and, more especially, their peptide contents, led to similar growth kinetics and final biomasses, but several genes and proteins were differentially expressed/produced. In other words, subtle variations in peptide composition of the growth medium can finely tune the metabolism status of the starter. Our work, therefore, suggests that acting on growth medium components and especially on their peptide content, we could modulate bacterial metabolism and produce bacteria differently programmed for further purposes. This might have applications for preparing active starter cultures.
机译:生长介质中存在的肽对于氮营养和乳酸菌的最佳生长至关重要。此外,根据其氨基酸组成,它们还可以直接或间接地发挥调节作用并影响全球新陈代谢。这在繁殖阶段特别相关,以产生用作乳制品行业的初学者的活性乳酸菌的高细胞计数。在本作本作中,我们旨在研究两种不同酵母提取物的各种组合物,具有特异性关注肽含量,影响了在pH控制条件下生长期间的链球菌性质代谢。除了游离氨基酸定量之外,我们使用多OMICS方法(肽族,蛋白质组学和转录组织)来鉴定最初存在于两种培养基中的肽,并在生长期间遵循S.嗜热素基因表达和细菌蛋白质产生。两个酵母提取物的游离氨基酸和肽组合物定性和定量不同。然而,两种酵母提取物持续相似的S.热嗜热杆菌水平,并导致了等同的最终生物量。然而,转录组织和蛋白质组学表现出差异基因表达和蛋白质产生在几种嗜热代谢途径,特别是氨基酸,柠檬酸盐,脲酶,嘌呤和嘧啶代谢中。在这种情况下讨论了调节器Cody的可能作用。此外,我们观察了监管机构和法定传感监管体系的产生显着差异。酵母提取物肽的可能作用在评估致法感测系统表达的调节上。分别提高发酵和食品工业中使用的细菌的性能和产业稳健性仍然是一个挑战。我们在此显示,两种链球菌热嗜热疗法发酵,在培养基中的相同菌株进行,其仅通过它们的酵母提取物组合物而不同,并且更特别地,它们的肽含量导致了类似的生长动力学和最终生物量,但差异表达了几种基因和蛋白质/生产。换句话说,生长培养基的肽组合物的微妙变化可以整理起动器的代谢状态。因此,我们的作品表明,对生长培养基组分作用,尤其是对其肽含量,我们可以调节细菌代谢并产生不同编程的细菌以进一步地进行进一步的目的。这可能具有准备主动启动文化的申请。

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