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3. BugSigDB captures patterns of differential abundance across a broad range of host-associated microbial signatures

4. A host–microbiota interactome reveals extensive transkingdom connectivity

6. Extending and improving metagenomic taxonomic profiling with uncharacterized species using MetaPhlAn 4

8. Human gut bacteria produce ΤΗ17-modulating bile acid metabolites

9. Gut microbial metabolism of 5-ASA diminishes its clinical efficacy in inflammatory bowel disease

11. Global chemical effects of the microbiome include new bile-acid conjugations

13. Discovery of bioactive microbial gene products in inflammatory bowel disease

15. Obese Individuals with and without Type 2 Diabetes Show Different Gut Microbial Functional Capacity and Composition.

16. Multi-omics of the gut microbial ecosystem in inflammatory bowel diseases.

18. Species-level functional profiling of metagenomes and metatranscriptomes

19. Compositional and Temporal Changes in the Gut Microbiome of Pediatric Ulcerative Colitis Patients Are Linked to Disease Course

20. Erratum: Strains, functions and dynamics in the expanded Human Microbiome Project

21. Strains, functions and dynamics in the expanded Human Microbiome Project

22. A framework for microbiome science in public health

25. Advancing the microbiome research community.

26. Gut microbiome structure and metabolic activity in inflammatory bowel disease

30. Pulsed antibiotic treatments of gnotobiotic mice manifest in complex bacterial community dynamics and resistance effects

31. The human gut microbiome in early-onset type 1 diabetes from the TEDDY study

32. Dynamics of metatranscription in the inflammatory bowel disease gut microbiome

33. Strain-level fitness in the gut microbiome is an emergent property of glycans and a single metabolite

35. A platform for deep learning on (meta)genomic sequences

37. Additional file 8 of RNA-based amplicon sequencing is ineffective in measuring metabolic activity in environmental microbial communities

39. BugSigDB captures patterns of differential abundance across a broad range of host-associated microbial signatures

41. Relating the metatranscriptome and metagenome of the human gut

42. Extending and improving metagenomic taxonomic profiling with uncharacterized species with MetaPhlAn 4

44. High-sensitivity pattern discovery in large, paired multiomic datasets

45. Author Correction: Gut microbiome structure and metabolic activity in inflammatory bowel disease

46. 549: GUT MICROBIAL METABOLISM OF 5-ASA DIMINISHES ITS CLINICAL EFFICACY IN IBD

47. 1136: COMPREHENSIVE MULTI-OMIC ASSESSMENT OF DIETARY INTAKE AND THE GUT MICROBIOME IN INFLAMMATORY BOWEL DISEASE: RESULTS FROM THE INTEGRATIVE HUMAN MICROBIOME PROJECT

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