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PMID: 20736229 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Reshaping the gut microbiome with bacterial transplantation and antibiotic intake.

Genome research ·Vol. 20 ·No. 10 ·2010-10-00 ·Pages 1411-9

Manichanh C, Reeder J, Gibert P, Varela E, Llopis M, Antolin M, Guigo R, Knight R, Guarner F

Abstract

The intestinal microbiota consists of over 1000 species, which play key roles in gut physiology and homeostasis. Imbalances in the composition of this bacterial community can lead to transient intestinal dysfunctions and chronic disease states. Understanding how to manipulate this ecosystem is thus essential for treating many disorders. In this study, we took advantage of recently developed tools for deep sequencing and phylogenetic clustering to examine the long-term effects of exogenous microbiota transplantation combined with and without an antibiotic pretreatment. In our rat model, deep sequencing revealed an intestinal bacterial diversity exceeding that of the human gut by a factor of two to three. The transplantation produced a marked increase in the microbial diversity of the recipients, which stemmed from both capture of new phylotypes and increase in abundance of others. However, when transplantation was performed after antibiotic intake, the resulting state simply combined the reshaping effects of the individual treatments (including the reduced diversity from antibiotic treatment alone). Therefore, lowering the recipient bacterial load by antibiotic intake prior to transplantation did not increase establishment of the donor phylotypes, although some dominant lineages still transferred successfully. Remarkably, all of these effects were observed after 1 mo of treatment and persisted after 3 mo. Overall, our results indicate that the indigenous gut microbial composition is more plastic that previously anticipated. However, since antibiotic pretreatment counterintuitively interferes with the establishment of an exogenous community, such plasticity is likely conditioned more by the altered microbiome gut homeostasis caused by antibiotics than by the primary bacterial loss.

MeSH Terms
Animals Anti-Bacterial Agents/administration & dosage,pharmacology Bacteria/classification,drug effects,genetics Bacterial Load Cecum/microbiology,surgery DNA, Bacterial/genetics Ecosystem Female Gastrointestinal Tract/drug effects,microbiology Humans Intestines/drug effects,microbiology Male Phylogeny Rats Rats, Inbred Lew Rats, Sprague-Dawley Rats, Wistar Sequence Analysis, DNA
Chemicals
Anti-Bacterial Agents DNA, Bacterial
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Manichanh Chaysavanh
Digestive System Research Unit, University Hospital Vall d'Hebron, Ciberehd, 08035 Barcelona, Spain. [email protected]
Reeder Jens
Gibert Prudence
Varela Encarna
Llopis Marta
Antolin Maria
Guigo Roderic
Knight Rob
Guarner Francisco
References (36)
36 references, click to expand
  1. Cd-hit: a fast program for clustering and comparing large sets of protein or nucleotide sequences.
    Bioinformatics. 2006 Jul 1;22(13):1658-9 PMID: 16731699
  2. The pervasive effects of an antibiotic on the human gut microbiota, as revealed by deep 16S rRNA sequencing.
    PLoS Biol. 2008 Nov 18;6(11):e280 PMID: 19018661
  3. Greengenes, a chimera-checked 16S rRNA gene database and workbench compatible with ARB.
    Appl Environ Microbiol. 2006 Jul;72(7):5069-72 PMID: 16820507
  4. Naive Bayesian classifier for rapid assignment of rRNA sequences into the new bacterial taxonomy.
    Appl Environ Microbiol. 2007 Aug;73(16):5261-7 PMID: 17586664
  5. Butyrate strongly inhibits in vitro stimulated release of cytokines in blood.
    Dig Dis Sci. 2002 Apr;47(4):921-8 PMID: 11991629
  6. Bacterial community variation in human body habitats across space and time.
    Science. 2009 Dec 18;326(5960):1694-7 PMID: 19892944
  7. Accurate determination of microbial diversity from 454 pyrosequencing data.
    Nat Methods. 2009 Sep;6(9):639-41 PMID: 19668203
  8. The gut microbiota shapes intestinal immune responses during health and disease.
    Nat Rev Immunol. 2009 May;9(5):313-23 PMID: 19343057
  9. Therapeutic implications of manipulating and mining the microbiota.
    J Physiol. 2009 Sep 1;587(Pt 17):4175-9 PMID: 19505978
  10. FastTree: computing large minimum evolution trees with profiles instead of a distance matrix.
    Mol Biol Evol. 2009 Jul;26(7):1641-50 PMID: 19377059
  11. Role of intestinal microflora in chronic inflammation and ulceration of the rat colon.
    Gut. 1994 Aug;35(8):1090-7 PMID: 7926912
  12. Low counts of Faecalibacterium prausnitzii in colitis microbiota.
    Inflamm Bowel Dis. 2009 Aug;15(8):1183-9 PMID: 19235886
  13. The gut microbiota predispose to the pathophysiology of acute postradiotherapy diarrhea.
    Am J Gastroenterol. 2008 Jul;103(7):1754-61 PMID: 18564125
  14. Molecular analysis of the gut microbiota of identical twins with Crohn's disease.
    ISME J. 2008 Jul;2(7):716-27 PMID: 18401439
  15. Changes in the composition of the human fecal microbiome after bacteriotherapy for recurrent Clostridium difficile-associated diarrhea.
    J Clin Gastroenterol. 2010 May-Jun;44(5):354-60 PMID: 20048681
  16. Long-term stability of the human gut microbiota in two different rat strains.
    Curr Issues Mol Biol. 2008;10(1-2):17-24 PMID: 18525103
  17. Evolution of mammals and their gut microbes.
    Science. 2008 Jun 20;320(5883):1647-51 PMID: 18497261
  18. Clindamycin-induced enrichment and long-term persistence of resistant Bacteroides spp. and resistance genes.
    J Antimicrob Chemother. 2006 Dec;58(6):1160-7 PMID: 17046967
  19. Reciprocal gut microbiota transplants from zebrafish and mice to germ-free recipients reveal host habitat selection.
    Cell. 2006 Oct 20;127(2):423-33 PMID: 17055441
  20. Reproducible community dynamics of the gastrointestinal microbiota following antibiotic perturbation.
    Infect Immun. 2009 Jun;77(6):2367-75 PMID: 19307217
  21. Development of the human infant intestinal microbiota.
    PLoS Biol. 2007 Jul;5(7):e177 PMID: 17594176
  22. Treatment of ulcerative colitis using fecal bacteriotherapy.
    J Clin Gastroenterol. 2003 Jul;37(1):42-7 PMID: 12811208
  23. Successful treatment of fulminant Clostridium difficile infection with fecal bacteriotherapy.
    Ann Intern Med. 2008 Apr 15;148(8):632-3 PMID: 18413636
  24. Pharmacometabonomic identification of a significant host-microbiome metabolic interaction affecting human drug metabolism.
    Proc Natl Acad Sci U S A. 2009 Aug 25;106(34):14728-33 PMID: 19667173
  25. A core gut microbiome in obese and lean twins.
    Nature. 2009 Jan 22;457(7228):480-4 PMID: 19043404
  26. Host-bacterial mutualism in the human intestine.
    Science. 2005 Mar 25;307(5717):1915-20 PMID: 15790844
  27. Reduced diversity of faecal microbiota in Crohn's disease revealed by a metagenomic approach.
    Gut. 2006 Feb;55(2):205-11 PMID: 16188921
  28. Accuracy and quality of massively parallel DNA pyrosequencing.
    Genome Biol. 2007;8(7):R143 PMID: 17659080
  29. PyNAST: a flexible tool for aligning sequences to a template alignment.
    Bioinformatics. 2010 Jan 15;26(2):266-7 PMID: 19914921
  30. UniFrac: a new phylogenetic method for comparing microbial communities.
    Appl Environ Microbiol. 2005 Dec;71(12):8228-35 PMID: 16332807
  31. Molecular-phylogenetic characterization of microbial community imbalances in human inflammatory bowel diseases.
    Proc Natl Acad Sci U S A. 2007 Aug 21;104(34):13780-5 PMID: 17699621
  32. Long-term ecological impacts of antibiotic administration on the human intestinal microbiota.
    ISME J. 2007 May;1(1):56-66 PMID: 18043614
  33. Butyrate modulates oxidative stress in the colonic mucosa of healthy humans.
    Clin Nutr. 2009 Feb;28(1):88-93 PMID: 19108937
  34. Mechanisms of disease: the hygiene hypothesis revisited.
    Nat Clin Pract Gastroenterol Hepatol. 2006 May;3(5):275-84 PMID: 16673007
  35. Comparative analysis of pyrosequencing and a phylogenetic microarray for exploring microbial community structures in the human distal intestine.
    PLoS One. 2009 Aug 20;4(8):e6669 PMID: 19693277
  36. Reduction in diversity of the colonic mucosa associated bacterial microflora in patients with active inflammatory bowel disease.
    Gut. 2004 May;53(5):685-93 PMID: 15082587
Article Info
Journal
Genome research
Abbr.
Genome Res
ISSN
1549-5469
Published
2010-10-00
Epub
2010-00-24
Pages
1411-9
Language
English
Region
United States
NLM ID
9518021
PMCID
PMC2945190
Subset
IM
Grants
Howard Hughes Medical Institute · United States
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