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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DupyliCate: mining, classifying, and characterizing gene duplications.
PMID 42209743 · PMC13219399 · Scientific reports · 2026 · 8 claims · 8 setups
DupyliCate is a Python tool for identifying and classifying gene duplication arrays, using BUSCO-based species-specific thresholds and offering integrated expression divergence and Ka/Ks analysis.
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Expansion of the human mitochondrial proteome by intra- and inter-compartmental protein duplication.
PMID 19930686 · PMC3091328 · Genome biology · 2009 · 8 claims · 6 setups
The human mitochondrial proteome expanded via two prevailing gene duplication modes: intra-mitochondrial and inter-compartmental duplication
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Gene duplication: the genomic trade in spare parts.
PMID 15252449 · PMC449868 · PLoS biology · 2004 · 8 claims · 7 setups
Gene duplication relaxes selective constraint on one copy, allowing exploration of evolutionary space that is otherwise forbidden in single-copy genes, making duplication the major opportunity for new gene function evolution.
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Analysis of recent segmental duplications in the bovine genome.
PMID 19951423 · PMC2796684 · BMC genomics · 2009 · 8 claims · 6 setups
Recently duplicated sequence (≥1 kb, ≥90% identity) comprises 3.11% (94.4 Mb) of the bovine genome assembly (Btau_4.0)
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The revolution of the biology of the genome.
PMID 15040884 · PMC7091781 · Cell research · 2004 · 8 claims · 6 setups
Polyploidization and gene duplication are the major mechanisms increasing eukaryotic genome size.
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Recurring genomic breaks in independent lineages support genomic fragility.
PMID 17090315 · PMC1636669 · BMC evolutionary biology · 2006 · 6 claims · 6 setups
The propensity of a chromosomal region to break is significantly correlated among independent lineages, even after accounting for covariates like region length and functional class.
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Has reproduction · 49
Insights into the differentiation and adaptation within Circaeasteraceae from Circaeaster agrestis genome sequencing and resequencing.
PMID 36895650 · PMC9988679 · iScience · 2023 · 8 claims · 8 setups
C. agrestis and K. uniflora are sister species with contrasting reproductive modes, providing a natural system to test effects of sexual vs asexual reproduction on genome evolution
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Evolutionary toggling of the MAPT 17q21.31 inversion region.
PMID 19165922 · PMC2684794 · Nature genetics · 2008 · 8 claims · 6 setups
The H2 (inverted) orientation is the most likely ancestral great ape/human configuration at 17q21.31
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Evolutionary history of the UCP gene family: gene duplication and selection.
PMID 18980678 · PMC2584656 · BMC evolutionary biology · 2008 · 8 claims · 8 setups
The UCP gene family arose through two ancestral gene duplications early in vertebrate evolution, producing the UCP1, UCP2 and UCP3 lineages.
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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 · 8 claims · 8 setups
114 CNGC genes were identified across the genomes of four cotton species (G. arboreum, G. raimondii, G. barbadense, G. hirsutum)
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Tandem repeats modify the structure of human genes hosted in segmental duplications.
PMID 19954527 · PMC2812944 · Genome biology · 2009 · 8 claims · 6 setups
Around 7% of primate-specific genes located within segmental duplications contain variable internal tandem repeats (ITRs).
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Comparative genomics comes of age.
PMID 12186641 · PMC139393 · Genome biology · 2002 · 8 claims · 8 setups
Only about 50% of conserved sequence elements (exons+introns) in orthologous human-mouse genes correspond to exons, implying substantial non-exonic conservation
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Web-based resources for comparative genomics.
PMID 16197736 · PMC3525128 · Human genomics · 2005 · 8 claims · 8 setups
Comparative genomics is an indispensable tool for identifying functional genome elements and exploring evolutionary genome dynamics
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Chimp genome: branching out.
PMID 16136102 · PMC7420934 · Nature · 2005 · 8 claims · 8 setups
The Chimpanzee Sequencing and Analysis Consortium published the initial draft chimpanzee genome sequence and compared it to the human genome.
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Comparative mapping of expressed sequence tags containing microsatellites in rainbow trout (Oncorhynchus mykiss).
PMID 15836796 · PMC1090573 · BMC genomics · 2005 · 8 claims · 7 setups
89 polymorphic microsatellite markers were developed from rainbow trout EST-derived cDNA clones
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Accelerated evolution of the ASPM gene controlling brain size begins prior to human brain expansion.
PMID 15045028 · PMC374243 · PLoS biology · 2004 · 8 claims · 6 setups
The ASPM gene shows accelerated (positively selected) evolution in the African hominoid clade, and this acceleration precedes hominid brain expansion by several million years.
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Evolutionary analysis of the highly dynamic CHEK2 duplicon in anthropoids.
PMID 18831734 · PMC2566985 · BMC evolutionary biology · 2008 · 8 claims · 6 setups
CHEK2 is present as a single copy in New World monkeys, Old World monkeys, and gibbons
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The DNA sequence and analysis of human chromosome 13.
PMID 15057823 · PMC2665288 · Nature · 2004 · 8 claims · 8 setups
95.5 Mb of finished sequence from chromosome 13 was completed, containing 633 genes and 296 pseudogenes.
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Phylogenomic approaches to common problems encountered in the analysis of low copy repeats: the sulfotransferase 1A gene family example.
PMID 15752422 · PMC555591 · BMC evolutionary biology · 2005 · 8 claims · 8 setups
A previously unidentified fourth human SULT1A gene (SULT1A4) exists on chromosome 16 and is transcriptionally active
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TreeFam: a curated database of phylogenetic trees of animal gene families.
PMID 16381935 · PMC1347480 · Nucleic acids research · 2006 · 7 claims · 6 setups
Tree-based inference of orthologs and paralogs is more robust than BLAST-based methods because evolutionary rates (and thus pairwise BLAST scores) vary across gene family members