RESEARCH BASE

Search 3,721 documents across 34 fields — every claim tier-rated by evidence

3,721 Documents 34 Sections 43,625 Citations 34,852 Keywords Indexed 4 Evidence Tiers

3,633 are the core, quality-scored corpus (34 lettered sections — see How We Work); the remaining 88 are cross-corpus synthesis documents (68 InterDocs, 12 Connections, 8 Theories) also indexed here.

3,721 results for "T Tauri star" — page 113 of 187

L_1_15 Credible Genetics & Origins

L_1_15 — Out of Africa Alternatives: Multiregional, Assimilation, and Southern Dispersal Models

The origin and dispersal of anatomically modern humans (Homo sapiens) remains one of the most actively debated topics in paleoanthropology. The dominant model — the Recent African Origin (RAO) or "Out of Africa" hypothes

out of Africa multiregional evolution recent African origin admixture southern dispersal Homo sapiens origins
L_1_02 Verified Genetics & Origins

L_1_02 — Interbreeding Events & Genetic Discontinuities

Ancient DNA has established that late human evolution was not a simple replacement story. Expanding populations of Homo sapiens interbred with Neanderthals and Denisovans, and at least one direct first-generation hybrid

interbreeding admixture introgression Neanderthal Denisovan ghost population
L_1_01 Verified Genetics & Origins

L_1_01 — Ancient DNA & Population Genetics

Modern paleogenomics has shown that human evolution was shaped by interbreeding, population structure, and repeated demographic turnover rather than a simple single-line progression. Ancient DNA revealed previously unkno

Denisovans Denisova Cave Svante Pääbo Nobel Prize ancient DNA aDNA
L_1_06 Verified Genetics & Origins

L_1_06 — Human Migration Synthesis — DNA, Language, and Culture

The synthesis of genetic, linguistic, and archaeological evidence has transformed understanding of human migration over the past three decades.

out-of-Africa migration ancient DNA Austronesian expansion Bantu expansion Yamnaya
L_1_10 Verified Genetics & Origins

L_1_10 — Neanderthal Genome and Legacy in Modern Humans

The sequencing of the Neanderthal genome ranks among the most significant achievements in modern biology. Beginning with the draft genome of Green et al. (2010) and refined by later high-coverage genomes from the Altai,

Neanderthal genome Neanderthal admixture archaic introgression Vindija Altai Neanderthal Homo neanderthalensis
L_1_05 Verified Genetics & Origins

L_1_05 — Human Skin Color — Evolution, Latitude, and Cultural Significance

Human skin color is one of the most visible and most misunderstood traits in our species. The variation is primarily a product of natural selection balancing two competing needs: protection of folate (vitamin B9) from UV

skin pigmentation SLC24A5 MC1R vitamin D folate UV radiation
L_1_04 Verified Genetics & Origins

L_1_04 — Archaic Human Species Synthesis

The human evolutionary tree is far more complex than the older linear model suggested. Fossils, ancient DNA, and proteomics now show that Homo sapiens overlapped with several other hominin lineages, including Neanderthal

archaic humans Neanderthal Denisovan Homo floresiensis hobbit Homo luzonensis
L_1_09 Verified Genetics & Origins

L_1_09 — Ghost Populations & Missing Archaic Lineages

Ghost populations are human groups whose existence is inferred from statistical signatures in modern or ancient genomes rather than from direct fossil or archaeological evidence. The term reflects a central challenge of

ghost population archaic introgression missing lineage unsampled population West African introgression superarchaic
L_1_14 Verified Genetics & Origins

L_1_14 — Homo Erectus: The Most Successful Human Species

Homo erectus (including regional variants sometimes classified as H. ergaster, H. georgicus, H. soloensis, and H. pekinensis) is arguably the most successful hominin species in evolutionary history — persisting for nearl

Homo erectus evolution Out of Africa Acheulean Dmanisi Java Man
L_1_18 Verified Genetics & Origins

L_1_18 — Human Migration: Out of Africa, Dispersal Patterns, and the Peopling of the World

The migration of Homo sapiens out of Africa and across the globe is one of the most extensively studied processes in human evolutionary history, now reconstructed through converging evidence from genetics (mitochondrial

human migration Out of Africa dispersal ancient DNA population genetics Homo sapiens
L_1_03 Verified Genetics & Origins

L_1_03 — Mitochondrial Eve, Y-Chromosomal Adam & Population Origins

Mitochondrial Eve and Y-chromosomal Adam are the most recent common ancestors of all living humans along strictly maternal and strictly paternal lines. They were not the first woman and man, were not a couple, and do not

mitochondrial Eve Y-chromosomal Adam mtDNA haplogroup Out of Africa Jebel Irhoud
L_1_11 Verified Genetics & Origins

L_1_11 — Convergent Genetic Evolution — Same Solutions, Different Lineages

Convergent evolution — the independent evolution of similar features in species from different evolutionary lineages — is one of the most powerful demonstrations of natural selection's predictability and one of the deepe

convergent evolution parallel evolution molecular convergence homoplasy adaptation natural selection
L_1_07 Verified Genetics & Origins

L_1_07 — Genetic Bottlenecks, Founder Effects, and Toba

Genetic bottlenecks — dramatic reductions in population size that slash genetic diversity — and founder effects — the reduced variation carried by small colonizing groups — have profoundly shaped the genomes of species f

genetic bottleneck founder effect Toba catastrophe supervolcano effective population size Ashkenazi founder
L_1_12 Verified Genetics & Origins

L_1_12 — Ghost DNA: Unknown Archaic Hominin Admixture

"Ghost DNA" refers to genetic signals — segments of the genome, deviations in allele frequency distributions, or anomalous phylogenetic patterns — that indicate admixture (interbreeding) between anatomically modern human

ghost DNA archaic admixture unknown hominin introgression ancient DNA aDNA
L_1_16 Verified Genetics & Origins

L_1_16 — Denisovan Genetics and Legacy

The Denisovans — an extinct group of archaic humans first identified in 2010 from ancient DNA extracted from a finger bone fragment found in Denisova Cave, Altai Mountains, Siberia (~41,000 years old) — represent one of

denisovans denisova-cave ancient-dna introgression epas1 altitude-adaptation
L_4_13 Verified Genetics & Origins

L_4_13 — Ancient DNA: Methods, Revelations, and Ethical Debates

Ancient DNA (aDNA) — genetic material recovered from biological remains thousands to hundreds of thousands of years old — has revolutionized our understanding of human evolution, migration, and population history. The fi

ancient DNA aDNA paleogenomics PCR next-generation sequencing Svante Pääbo
L_4_07 Verified Genetics & Origins

L_4_07 — Twin Studies and Heritability

Twin studies represent one of the most powerful natural experiments in human genetics, exploiting the fact that monozygotic (MZ, "identical") twins share ~100% of their DNA while dizygotic (DZ, "fraternal") twins share ~

twin study monozygotic dizygotic heritability concordance ACE model
L_4_05 Verified Genetics & Origins

L_4_05 — Paleogenomics Methods and Ancient DNA

Paleogenomics — the study of ancient genomes — has transformed archaeology, anthropology, and evolutionary biology over the past two decades, recognized by the 2022 Nobel Prize in Physiology or Medicine awarded to Svante

paleogenomics ancient DNA aDNA ancient DNA extraction petrous bone DNA degradation
L_4_04 Credible Genetics & Origins

L_4_04 — Ancient Proteomics and Paleoproteomics

Paleoproteomics — the recovery and analysis of ancient proteins from archaeological and paleontological specimens — has emerged as a revolutionary complement to ancient DNA (aDNA), dramatically extending the temporal and

paleoproteomics ancient proteins collagen fingerprinting ZooMS mass spectrometry MALDI-TOF
L_4_06 Verified Genetics & Origins

L_4_06 — Epigenetics and Transgenerational Inheritance

Epigenetics — the study of heritable changes in gene expression that occur without alterations to the DNA sequence itself — has transformed modern biology by revealing a layer of regulatory information "above" the genome

epigenetics DNA methylation histone modification chromatin transgenerational inheritance imprinting