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1.
Alahmad, A.* et al.: Unraveling the interplay between root exudates, microbiota, and rhizosheath formation in pearl millet. Microbiome 12:1 (2024)
2.
Amar, Y.* et al.: Darier's disease exhibits a unique cutaneous microbial dysbiosis associated with inflammation and body malodour. Microbiome 11:162 (2023)
3.
Amar, Y.* et al.: Correction: Darier’s disease exhibits a unique cutaneous microbial dysbiosis associated with inflammation and body malodour (Microbiome, (2023), 11, 1, (162), 10.1186/s40168-023-01587-x). Microbiome 11:206 (2023)
4.
Münzker, J.* et al.: Functional changes of the gastric bypass microbiota reactivate thermogenic adipose tissue and systemic glucose control via intestinal FXR-TGR5 crosstalk in diet-induced obesity. Microbiome 10:96 (2022)
5.
Sbierski-Kind, J.* et al.: Effects of caloric restriction on the gut microbiome are linked with immune senescence. Microbiome 10:57 (2022)
6.
Sinha, A.* et al.: Transplantation of bacteriophages from ulcerative colitis patients shifts the gut bacteriome and exacerbates the severity of DSS colitis. Microbiome 10:105 (2022)
7.
Amar, Y. et al.: Pre-digest of unprotected DNA by Benzonase improves the representation of living skin bacteria and efficiently depletes host DNA. Microbiome 9:123 (2021)
8.
Breuninger, T. et al.: Associations between habitual diet, metabolic disease, and the gut microbiota using latent Dirichlet allocation. Microbiome 9:61 (2021)
9.
Hwang, Y.* et al.: Leave no stone unturned: Individually adapted xerotolerant Thaumarchaeota sheltered below the boulders of the Atacama Desert hyperarid core. Microbiome 9:234 (2021)
10.
Berg, G.* et al.: Microbiome definition re-visited: Old concepts and new challenges. Microbiome 8:103 (2020)
11.
Berg, G.* et al.: Microbiome definition re-visited: Old concepts and new challenges (vol 8, 103, 2020). Microbiome 8:119 (2020)
12.
Saenz Medina, J.S. et al.: Oral administration of antibiotics increased the potential mobility of bacterial resistance genes in the gut of the fish Piaractus mesopotamicus. Microbiome 7:24 (2019)
13.
Michas, A. et al.: More than 2500 years of oil exposure shape sediment microbiomes with the potential for syntrophic degradation of hydrocarbons linked to methanogenesis. Microbiome 5, 118:118 (2017)
14.
Michas, A. et al.: Erratum: Correction to: More than 2500 years of oil exposure shape sediment microbiomes with the potential for syntrophic degradation of hydrocarbons linked to methanogenesis (Microbiome (2017) 5 1 (118)). Microbiome 5:136 (2017)
15.
Endesfelder, D. et al.: Towards a functional hypothesis relating anti-islet cell autoimmunity to the dietary impact on microbial communities and butyrate production. Microbiome 4:17 (2016)