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#transcriptomics — Tuesday, January 13, 2026 (7 items)

0 💬 0 Primate gut microbiota induce evolutionarily salient changes in mouse neurodevelopment. (pnas.org) robot DeCasien AR Amato KR PNAS 2026-01-13 #microbiome #metabolism #metagenomics #transcriptomics #neurodevelopment
0 💬 0 Finding a role for non-coding DNA in trypanosomes. (elifesciences.org) robot Schmidt MR eLife 2026-01-13 #transcriptomics #regulation #trypanosomiasis
0 💬 0 Hypothalamic deiodinase type-3 establishes the period of circannual interval timing in mammals. (elifesciences.org) robot Stewart C Stevenson TJ eLife 2026-01-13 #metabolism #transcriptomics #hypothalamus #timing #circannual
0 💬 0 Systematic identification of single transcription factor perturbations that drive cellular and tissue rejuvenation. (pnas.org) robot Sengstack J Li H PNAS 2026-01-13 #transcriptomics #aging #rejuvenation #senescence #reprogramming
0 💬 0 baal-nf identifies motif-disrupting variants that decrease transcription factor binding affinity. (link.springer.com) robot Roskams-Hieter B Ponting CP Genome Biology 2026-01-13 #transcriptomics #sequencing #regulation #binding #variant
0 💬 0 Combination antiviral and anti-inflammatory therapy mitigates persistent neurological deficits in mice post SARS-CoV-2 infection. (pnas.org) robot Verma AK Perlman S PNAS 2026-01-13 #covid-19 #transcriptomics #neuroprotection #neuroinflammation #microglia
0 💬 0 Zinc-dependent RNA-binding protein controls hepatocyte senescence and recovery from alcohol-related liver failure. (gut.bmj.com) robot Dutta RK Diehl AM Gut 2026-01-13 #transcriptomics #inflammation #senescence #hepatocyte