Microbiome
@microbiomej
A family of open access journals that seek to unite investigators conducting microbiome research in environmental, agricultural, and biomedical arenas🦠
In #AnimalMicrobiome Using sequence-derived microbiome information from bulk tank milk samples to assess the influence of post-milking teat disinfection in New Zealand dairy herds🐄 Read more👉 doi.org/rfqf #Microbes
In #Microbiome Neighborhood deadwood and yard rewilding modulate commensal microbiomes and inflammatory signals among urbanites🦠 Read more 👉 doi.org/rfzt
In #EnvironmentalMicrobiome Predicting the seed microbiome using phylogeny-driven machine learning🦠 Read more👉 doi.org/rfqg #Microbes
In #Microbiome Unleashing the potential of mRNA-seq to uncover the microbiome structure and their crosstalk with host cells: the vulvar ecosystem🦠 Read more 👉 doi.org/q86g
In #AnimalMicrobiome A placebo-controlled study of the effects of Saccharomyces cerevisiae var. boulardii CNCM I-1079 probiotic on faecal quality, microbiota and immunity in weaned kittens🐈 Read more➡️ doi.org/rdqf #Microbiota #Kittens
In #Microbiome Gut microbiome combined with anti-IL-17A therapy: A potential new treatment for multiple sclerosis (MS) Read more➡️ doi.org/rdqb #OpenAccess
In #EnvironmentalMicrobiome Azolla reshapes rhizosphere microbiomes and nutrient cycling in paddy fields🦠 Read more ➡️ doi.org/rdqd #Microbes #Environment
In #Microbiome Uncovering transcriptional processes in microbial communities adapted to differing saline conditions in salt-weathered historic buildings🦠 Read more ➡️ doi.org/rdp9 #OpenAccess #Microbes
In #AnimalMicrobiome A diverse gut virome in natural populations of Drosophila melanogaster🪰 Read more 👉 doi.org/rcxt
In #Microbiome Unlocking the unexplored AMPSphere in marine rare species🦠 Read more 👉 doi.org/qzkc
In #EnvironmentalMicrobiome Legacy effects of cover cropping and crop phase on soybean health and associated rhizosphere microbiome in corn-soybean rotation🦠 Read more 👉 doi.org/rcxw #OpenAccess #Microbes
In #Microbiome Red seaweed may help cows produce less methane🐄 Read more 👉 doi.org/rcxr
In Animal Microbiome: Optimization of solid-state fermentation process of diets and its effects on growth performance and intestinal function in growing pigs🐖 Read more 👉 doi.org/rcsz #OpenAccess
In #Microbiome Impacts of host genetics on gut microbiome composition in Alzheimer’s disease🦠 Read more 👉 doi.org/q3c7 #OpenAccess #Alzheimers #Microbes #Gut #Health
In #EnvironmentalMicrobiome Identification of keystone taxa shaping biocrust formation and biodeterioration of limestone monuments in the Xiaoling Tomb of the Ming Dynasty🦠 Read more👉 doi.org/rcs2 #OpenAccess #Microbes
In #Microbiome RNA-seq sheds light on “who is doing what” in the coral Porites lutea🪸 Read more 👉 doi.org/rcsv #OpenAccess #Coral #Microbes
In #AnimalMicrobiome Beyond metagenomics: culturomics uncovers aerobic and facultative anaerobic bacterial diversity in the camel gut🐪 Read more👉 doi.org/rbr3 #OpenAccess #Microbiome #Camel #Bacteria #Gut
In #Microbiome 🚨Introducing NIS: a new tool to compare metabolism among different microbes Providing an automated, scalable & reproducible framework for dissecting microbial metabolic networks beyond gene content or taxonomy🦠 👉 doi.org/rbr2 #OpenAccess #Microbes #Metabolism
In #EnvironmentalMicrobiome Unraveling the colonization process of microeukaryotic communities on artificial micro-ecological islands🦠 Read more👉 doi.org/q86q #OpenAccess #Microbes
In #Microbiome Hidden health risks in household dust: microbes and their EVs 🦠 🔍Using a multi-omics approach to measure microbial levels in household dust, identifying disease-related factors & examining links to health outcomes 👉 doi.org/rbrx #OpenAccess #Health #Microbes #Disease
In #AnimalMicrobiome Multi-omics elucidates the regulatory mechanisms of tryptophan in gut health of weaned piglets🐖 Read more👉 doi.org/rbhr #OpenAccess #Gut #Health
In #Microbiome The microbiome is key to supporting the life of deep-sea sponges🦠 Read more👉 doi.org/rbhw #OpenAccess
In #EnvironmentalMicrobiome Microbiome legacy influences necrosis formation in Diplodia sapinea-infected Scots pine shoots Read more👉 doi.org/rbhs #Microbes #Environment
In #Microbiome 🔍How aging changes the immune system, the gut microbiome and vitamin availability Read more👉 doi.org/rbhv #OpenAcess #GutHealth #Vitamins #Aging #Health
In #AnimalMicrobiome African carnivore gut bacterial diversity and composition are associated with sample condition but not storage technique🦁 Read more👉 doi.org/q9j9 #OpenAccess #Microbes #Africa
In #Microbiome Unraveling the microbiomes contributing to biodeterioration dynamics of limestone heritage at the Longmen Grottoes archeological site🦠 Read more👉 doi.org/q9kf #OpenAccess #Microbes #Archaeology
In #EnvironmentalMicrobiome Microbiome and plasmidome shifts drive carbon, nitrogen, and greenhouse gas dynamics within transitioning permafrost🦠 Read more👉 doi.org/q9kb #OpenAccess #Microbes #GreenhouseGas
In #Microbiome 🦠For more than 5,300 years, Ötzi the Iceman lay frozen in an Alpine glacier, providing a unique opportunity to study ancient microbial ecosystems 🚨The Iceman is not a static artifact but a dynamic ecosystem of living archive Read more👉 doi.org/hb6dd7 #Otzi #Iceman
In #AnimalMicrobiome Gut microbiome mediates an evolutionarily conserved social behavior in eusocial insects🐝 Read more👉 doi.org/q86j #OpenAccess #Microbiome #Gut #Insects
In #Microbiome Unleashing the potential of mRNA-seq to uncover the microbiome structure and their crosstalk with host cells: the vulvar ecosystem🦠 Read more👉 doi.org/q86g #OpenAccess #Health