March 25, 2022

Human gut microbiome

In Vitro and In Silico Based Approaches to Identify Potential Novel Bacteriocins from the Athlete Gut Microbiome of an Elite Athlete Cohort – Wosinska et al. Microorganisms

Cancer pharmacomicrobiomics: targeting microbiota to optimise cancer therapy outcomes – Ting et al. Gut

Human respiratory microbiome

Inhibition of lung microbiota-derived proapoptotic peptides ameliorates acute exacerbation of pulmonary fibrosis – D’Alessandro-Gabazza et al. Nature Communications

Probiotics

Gut microbiota and fermentation-derived branched chain hydroxy acids mediate health benefits of yogurt consumption in obese mice – Daniel et al. Nature Communications

Animal experiments

Gut microbiota determines the social behavior of mice and induces metabolic and inflammatory changes in their adipose tissue – Agranyoni et al. npj biofilms and microbiomes

The microbiota restrains neurodegenerative microglia in a model of amyotrophic lateral sclerosis – Cox et al. Microbiome

Water & Extremophile microbiome

Spatial organization of the kelp microbiome at micron scales – Ramirez-Puebla et al. Microbiome

Metagenomics reveals global-scale contrasts in nitrogen cycling and cyanobacterial light-harvesting mechanisms in glacier cryoconite – Murakami et al. Microbiome.

Virome

Phages and their satellites encode hotspots of antiviral systems – Rousset et al. Cell Host & Microbe

Fungi

Fungal sensing enhances neutrophil metabolic fitness by regulating antifungal Glut1 activity – Li et al. Cell Host & Microbe

The primate gut mycobiome-bacteriome interface is impacted by environmental and subsistence factors – Sharma et al. npj Biofilms and microbiomes

Bioinformatics

Swapping Metagenomics Preprocessing Pipeline Components Offers Speed and Sensitivity Increases – Armstrong et al. mSystems

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