Microbiome
@MicrobiomeJ
A family of journals from @BioMedCentral that seek to unite investigators conducting microbiome research in environmental, agricultural, and biomedical arenas.
🦠What is microbiome research and what makes a good microbiome study? In their Editorial, the Senior Editors of Microbiome highlight the challenges of microbiome research and what they are looking for in submissions. 🚨Find out more: doi.org/g9fjn3
In #AnimalMicrobiome 🔍Investigating the effects of three bacterial strains on pig health & microbial composition🐖 🚨Probiotics impacted growth performance, reduced fecal odor & enhanced pig carcass quality 👉doi.org/pwj4

In #Microbiome 🔍Exploring how probiotic shows promise to mitigate acute ammonia toxicity (AI) in aquaculture 💡Supplementation of C. somerae mitigates AI by reversing depletion of intestinal argininosuccinic acid & promoting ureagenesis 👉doi.org/pwj3

In #EnvironmentalMicrobiome 🔍Exploring the chemosynthetic biofilm microbiome of deep-sea hydrothermal vents across space and time 🦠Community composition is impacted by biofilm age, temperature, sulfide concentration ranges & locality 👉doi.org/pwj4

In #Microbiome 🌋Submarine volcano Fani Maoré hosts full sulfur-cycling microbial community 🚨Detecting representations of 8 bacterial phyla, but mostly Pseudomonadota, Bacteroidota and Campylobacterota 👉doi.org/pwj2

In #AnimalMicrobiome 🔍Examining how exposure to environmental levels of antibiotics affects the skin microbiomes of Eurasian carp (Cyprinus carpio) 📢Low-level exposure to chemical mixtures can alter fish skin microbiome compositions 👉doi.org/pvwh

In #Microbiome 🔍Investigating how heat stress alters the rhizomicrobiomes of Panax notoginseng 🚨Beneficial microbes Burkholderia sp. and Saitozyma podzolica were confirmed to be responsible for resisting multiple stresses 👉doi.org/g9sm9v

In #EnvironmentalMicrobiome 🔍Identifying the mechanism of Bacillus pacificus SG15’s inhibitory effect on the asexual reproduction of Jellyfish Aurelia coerulea polyps🪼 🚨SG15 influenced both endodermal and ectodermal polyp cells 👉doi.org/pvwk

In #Microbiome 🔍Exploring pairwise bacterial interactions within the human gut microbiome and their contributions to host health🦠 📢Key factors influencing interaction patterns include metabolic capacity and motility 👉doi.org/pvwm

In #AnimalMicrobiome 🔍A randomized controlled dietary feeding trial assessing the effect of high levels of dietary zinc on the microbiomes of a gestating sow & her neonatal piglets 📢Sows had significantly higher alpha diversity at farrowing 👉doi.org/pvb4

In #Microbiome 🔍Investigating the impact of glufosinate (GLU) on chili plant growth & rhizosphere microbial communities 🚨Jasmonic acid acts as a chemoattractant, promoting bacterial growth & metabolic activity to degrade GLU residues in soil 👉doi.org/pvb9

🌊A Splash in the Ocean: Inspired by interest from our readers and authors, we highlight some of the marine microbiome papers published recently across the Microbiome Family🦠 #OceanPlastics #AntimicrobialResistance #PlanktonicLife Find out more➡️ biomedcentral.com/collections/wm…

In #EnvironmentalMicrobiome 🔍Characterising plastisphere communities associated with a wastewater treatment plant in New Zealand 📢No substrate-specific microbial communities were found among glass & polymer types regardless of artificial aging 👉doi.org/pvb5

A Splash in the #Ocean - inspired by interest from our readers and authors, we highlight some of the marine microbiome papers published recently across the Microbiome Family tinyurl.com/54rs4a93

In #Microbiome 🔍Investigating adaptive strategies of Caribbean sponge holobionts beyond the mesophotic zone 🚨Phospholipid homeoviscous adaptation to temperature and pressure might emerge as a key mechanism in phosphorus metabolism 👉doi.org/pvb6

In #AnimalMicrobiome 🔍Using shotgun metagenomic sequencing to characterize eukaryotic diversity in the microbiomes of wild baboons 🚨Social group membership explained 11.2% of the global diversity in gut eukaryotic species composition 👉doi.org/ps6s

In #Microbiome 🔍 Using DNA-stable isotope probing to explore the role of microbes in reducing antimony pollution impact 🚨Identifying Azospirillum spp. as keystone taxa in oligotrophic tailings 👉doi.org/ps6z

In #EnvironmentalMicrobiome 🔍Contrasting stability of fungal and bacterial communities during long-term decomposition of fungal necromass in Arctic tundra 📢20% of fungal necromass remained even after three years of decomposition 👉doi.org/ps6v

In #Microbiome 🔍Uncovering encrypted antimicrobial peptides in health-associated Lactobacillaceae by large-scale genomics and machine learning 🚨Lactobacillaceae possesses strong antimicrobial potential 👉doi.org/ps6w
