Journal article icon

Journal article

Raman–deuterium isotope probing to study metabolic activities of single bacterial cells in human intestinal microbiota

Abstract:
Human intestinal microbiota is important to host health and is associated with various diseases. It is a challenge to identify the functions and metabolic activity of microorganisms at the single-cell level in gut microbial community. In this study, we applied Raman microspectroscopy and deuterium isotope probing (Raman-DIP) to quantitatively measure the metabolic activities of intestinal bacteria from two individuals and analysed lipids and phenylalanine metabolic pathways of functional microorganisms in situ. After anaerobically incubating the human faeces with heavy water (D2 O), D2 O with specific substrates (glucose, tyrosine, tryptophan and oleic acid) and deuterated glucose, the C-D band in single-cell Raman spectra appeared in some bacteria in faeces, due to the Raman shift from the C-H band. Such Raman shift was used to indicate the general metabolic activity and the activities in response to the specific substrates. In the two individuals' intestinal microbiota, the structures of the microbial communities were different and the general metabolic activities were 76 ± 1.0% and 30 ± 2.0%. We found that glucose, but not tyrosine, tryptophan and oleic acid, significantly stimulated metabolic activity of the intestinal bacteria. We also demonstrated that the bacteria within microbiota preferably used glucose to synthesize fatty acids in faeces environment, whilst they used glucose to synthesize phenylalanine in laboratory growth environment (e.g. LB medium). Our work provides a useful approach for investigating the metabolic activity in situ and revealing different pathways of human intestinal microbiota at the single-cell level.
Publication status:
Published
Peer review status:
Peer reviewed

Actions

Access Document

Files:
Publisher copy:
10.1111/1751-7915.13519

Authors

More by this author
Role:
Author
ORCID:
0000-0001-5701-9229


Publisher:
Wiley
Journal:
Microbial Biotechnology More from this journal
Volume:
13
Issue:
2
Pages:
572-583
Publication date:
2019-12-10
Acceptance date:
2019-11-15
DOI:
EISSN:
1751-7915
Pmid:
31821744


Language:
English
Keywords:
Pubs id:
pubs:1077806
UUID:
uuid:b451bd9b-26f6-46c7-ab27-22dcd63b9e13
Local pid:
pubs:1077806
Source identifiers:
1077806
Deposit date:
2020-01-14
ARK identifier:

Terms of use


Views and Downloads






If you are the owner of this record, you can report an update to it here: Report update to this record

TO TOP