Microbiome
@MicrobiomeJ
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A family of journals from @BioMedCentral that seek to unite investigators conducting microbiome research in environmental, agricultural, and biomedical arenas.
Joined January 2013
Growth of candidate phyla radiation bacteria in groundwater incubations reveals widespread adaptations to oxic conditions #microbiology #bacteria #groundwater
@MicrobiomeJ
https://t.co/qcvwhAQBgw
microbiomejournal.biomedcentral.com
Background The candidate phyla radiation (CPR) comprises a widespread but poorly understood group of bacteria with limited cultured representatives, largely due to their metabolic dependencies on...
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In #Microbiome 🚨Introducing Metero2, a tool that leverages compact, environment-specific microbial gene catalogues to deliver comprehensive TFSP insights from metagenomic samples 👉Find out more: https://t.co/t9mbdDh80b
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Day 4, session 5 of #PMS2025: Plant Microbiomes & Abiotic Stress Tolerance (sponsored by @MicrobiomeJ )
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In #AnimalMicrobiome 🔍Characterising the microbiome of the bay pipefish using high-throughput 16S rRNA gene sequencing 💡Highlighting the influence of both environmental & host-specific factors in shaping bay pipefish microbiome 👉 https://t.co/g1ZZyrv046
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In #Microbiome 🔍Exploring the specific microbial & host features that influence microbial succession at weaning 🦠Highlighting the importance of host-derived glycans in shaping microbial communities during the weaning transition 👉 https://t.co/4SfB76iIoE
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#EnvironmentalMicrobiome 🔍Investigating the stability of Spirochaetota symbionts in the octocoral Corallium rubrum under heat stress Even under thermal stress, these bacterial symbionts persist, mirroring their constant presence in octocoral tissues 👉 https://t.co/LvIinwwFY1
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In #Microbiome 🔍Exploring distinct microbial communities associated with the ovaries & testes of a hermaphroditic eel 🚨The gonad microbial communities shared > 55% of their diversity with those in the gut & blood 👉 https://t.co/EmemzZ9azJ
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In #AnimalMicrobiome 🔍A longitudinal cohort study exploring the gut microbiota of Labrador Retriever puppies 🚨Identifying associations with demographic, environmental & health-related factors Read more➡️ https://t.co/3TZnyJUVmY
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In #Microbiome 🔍Developing strategies to modify donor microbiota to promote gastrointestinal development & maturation in germ-free mice 🚨Li05-modulated fecal microbiota significantly promoted epithelial development 👉 https://t.co/o5CILv7AQT
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In #EnvironmentalMicrobiome 🔍Investigating the viral communities of diverse aquatic plants 🚨Identifying a novel potyvirus that appears to be globally present in multiple ornamental plants from the genus Sagittaria 👉 https://t.co/toL6ywkzEe
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In #Microbiome 🚨Introducing concept of the #OneHealth Microbiome, discussing strain-sharing across & within domains🦠 📢Highlighting its impact on the spread of #AMR genes & overall microbiome diversity & resilience to #ClimateChange 👉 https://t.co/4xzEX9HmDJ
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In #AnimalMicrobiome 🔍Exploring how seasonality, diet & phyllosphere-associated microorganisms affect red panda gut microbiota 🚨Bamboo's crude protein & phosphorus content are pivotal in shaping the phyllosphere & gut microbial communities 👉 https://t.co/WH0w5w2jTG
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In #Microbiome 🔍Distinguishing diet- and microbe-derived metabolites in the human gut 🚨Seven days after antibiotics, 98% of gut metabolites recovered to pre-antibiotic levels in the omnivore group Read more👉 https://t.co/JG7iHOgqlk
#OpenAccess
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Diet alters maternal microbiome, increasing offspring susceptibility to metabolic, inflammatory & immune-related diseases @Claradelaroque & @BenoitChassaing review the "invisible heritance" in @MicrobiomeJ: https://t.co/rBWEOZW6Q4
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In #EnvironmentalMicrobiome 🔍Investigating the functional changes in the microbiome of red coral C. rubrum under thermal stress🪸 🌡️Spirochaetota may play a critical role in coral thermotolerance across temperatures ranging from 12-24°C 👉 https://t.co/LvIinwwFY1
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In #Microbiome 🚨Can Baltic Sea microbes naturally break down petroleum pollution? 🔍Using metagenomics, this research profiles the native microorganisms associated with hydrocarbon degradation in the Baltic Sea Read more➡️ https://t.co/eUF5T79fE0
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New insights into the evolution and metabolism of the bacterial phylum Candidatus Acidulodesulfobacteriota through metagenomics #microbiology #bacteria
@MicrobiomeJ
https://t.co/PipKCDXU7G
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🧬🚢 New in @MicrobiomeJ: Metagenomic analysis of the #BalticSea microbiome reveals widespread hydrocarbon‑degrading potential, shaped by depth & oil‑spill history. Providing key insights for natural attenuation & bioremediation of #Hydrocarbon compounds. https://t.co/unCRc2JVqt
link.springer.com
Background The Baltic Sea receives petroleum hydrocarbons from various point sources. The degradation of these contaminants in the environment is typically facilitated by a variety of microorganisms...
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In #AnimalMicrobiome 🚨Developing a new in vitro model of the healthy adult pig colon integrating both luminal & mucosal microenvironments 🦠Enabling early testing of innovative feed strategies to understand their effects on gut microbiota 👉 https://t.co/kbfWBfSEhJ
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In #Microbiome 🔍Exploring environmental influences on gill-associated microbiomes in the southern king crab holobiont🦀 💡Highlighting the significance of gill-associated microbiome plasticity in adapting to changing habitats 👉 https://t.co/EzsZYUB00d
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