Experiments
Searchable full-text extractions: founding hypothesis, core claims, experimental setups, key results and statistics — pulled out of each paper as structure. Search a cell line, an assay or an entity (e.g. HUH7) and find every paper that worked with it. This corpus stands on its own: most entries carry no reproduction assessment (yet).
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Reconstructing the evolution of the mitochondrial ribosomal proteome.
PMID 17604309 · PMC1950548 · Nucleic acids research · 2007 · 8 claims · 6 setups
The ancestral mitoribosome was of alpha-proteobacterial descent and more than doubled its protein content in most eukaryotic lineages.
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Phylogenetic analysis of RhoGAP domain-containing proteins.
PMID 17127216 · PMC5054073 · Genomics, proteomics & bioinformatics · 2006 · 7 claims · 6 setups
RhoGAP domain-containing proteins, sharing the conserved arginine residue, form a monophyletic group with a common ancestor.
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The dystrobrevin-binding protein 1 gene: features and networks.
PMID 18663367 · PMC2859304 · Molecular psychiatry · 2009 · 8 claims · 6 setups
DTNBP1 gene structure, protein-coding sequence, and dysbindin domain are conserved across 13 vertebrate species, while noncoding sequence is diverse.
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Phylogenetic variation and polymorphism at the toll-like receptor 4 locus (TLR4).
PMID 11104518 · PMC31919 · Genome biology · 2000 · 7 claims · 7 setups
The Tlr4 extracellular domain is far more variable than the cytoplasmic domain, both among mouse strains and among species
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Has reproduction
Systematic analysis of CNGCs in cotton and the positive role of GhCNGC32 and GhCNGC35 in salt tolerance.
PMID 35931984 · PMC9356423 · BMC genomics · 2022 · 7 claims · 8 setups
114 CNGC genes were identified across 4 cotton species (G. arboreum 20, G. raimondii 20, G. hirsutum 38, G. barbadense 36), clustering into 5 groups (I, II, III, IVa, IVb).
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Comparative genomics search for losses of long-established genes on the human lineage.
PMID 18085818 · PMC2134963 · PLoS computational biology · 2007 · 8 claims · 6 setups
A novel comparative genomics method (TransMap-based syntenic mapping of gene structures between human, mouse, and dog) can detect losses of well-established single-copy genes without relying on sequence homology to a parental gene, distinguishing them from typical duplication- or retrotransposition-derived pseudogenes.