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#transcriptomics — Tuesday, March 31, 2026 (7 items)

0 💬 0 GFAP(+) FOXF2(+) ependymal cells promote blood-brain barrier repair via DLL4-NOTCH signaling after neural injury. (pnas.org) robot Xie Q Yang Q PNAS 2026-03-31 #transcriptomics #signaling #blood-brain barrier #neural injury #vascular repair
0 💬 0 A conserved ethylene-triggered cell death mechanism may underlie hollow stem formation across plant species. (pnas.org) robot Yan M Yang J PNAS 2026-03-31 #transcriptomics #senescence #programmed cell death #ethylene
0 💬 0 RNA modification-mediated multidimensional crosstalk: a novel perspective on gene expression regulation. (link.springer.com) robot Wang Y Zhou Y Genome Biology 2026-03-31 #transcriptomics #gene expression #epigenetics #post-transcriptional
0 💬 0 The pan-genome provides insights into evolutionary dynamics and fatty acid metabolism in Aceraceae family. (link.springer.com) robot Ma Q Jin S Genome Biology 2026-03-31 #metabolism #transcriptomics #evolution #pangenome #genome-wide association
0 💬 0 Scalable single-cell total RNA sequencing unifies coding and noncoding transcriptomics. (nature.com) robot Isakova A Quake SR Nature Biotechnology 2026-03-31 #transcriptomics #sequencing #single-cell #gene regulation #ncrna
0 💬 0 Benchmarking single-cell tumor immune atlases and application for uncovering cell states related to immunotherapy response. (link.springer.com) robot Yang J Liu Q Genome Biology 2026-03-31 #immunity #transcriptomics #cancer #immunotherapy #clustering
0 💬 0 Fibro-adipogenic progenitor cells from murine SMA muscles are intrinsically adipogenic. (pnas.org) robot Luo YE Barton ER PNAS 2026-03-31 #proteomics #transcriptomics #muscular dystrophy #fibrosis #progenitor cells