Proceedings of the National Academy of Sciences · 2003 · 348 citations · 26 references
GeneticsEducationMtdna Hypervariable RegionModern HumansAncient Dna SequencesHuman VariationBioarchaeologyHuman OriginModern EuropeansCivilizationPaleoanthropologyPrimate FossilPopulation GeneticsHuman EvolutionEvolutionary BiologyGenetic DiscontinuityEvolutionary AnatomyAnthropologyMedicine
During the late Pleistocene, anatomically modern humans coexisted with Neandertals in Europe, and while multiregional models view them as related populations, the Out‑of‑Africa model predicts a genetic discontinuity between the two groups. We sequenced the mtDNA hypervariable region I of two Cro‑Magnon individuals dated to ~23–25 k years BP using stringent ancient‑DNA validation protocols. Their mtDNAs fall within modern human variation yet differ sharply from Neandertal sequences, indicating a genetic discontinuity that challenges the hypothesis of shared ancestry in Europe.
During the late Pleistocene, early anatomically modern humans coexisted in Europe with the anatomically archaic Neandertals for some thousand years. Under the recent variants of the multiregional model of human evolution, modern and archaic forms were different but related populations within a single evolving species, and both have contributed to the gene pool of current humans. Conversely, the Out-of-Africa model considers the transition between Neandertals and anatomically modern humans as the result of a demographic replacement, and hence it predicts a genetic discontinuity between them. Following the most stringent current standards for validation of ancient DNA sequences, we typed the mtDNA hypervariable region I of two anatomically modern Homo sapiens sapiens individuals of the Cro-Magnon type dated at about 23 and 25 thousand years ago. Here we show that the mtDNAs of these individuals fall well within the range of variation of today's humans, but differ sharply from the available sequences of the chronologically closer Neandertals. This discontinuity is difficult to reconcile with the hypothesis that both Neandertals and early anatomically modern humans contributed to the current European gene pool.
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Sequence and organization of the human mitochondrial genome
Stephen K. Anderson, Alan T. Bankier, B. G. Barrell et al. · Nature · 1981 · 9.6K citations
Neandertal DNA Sequences and the Origin of Modern Humans
Matthias Krings, Anne C. Stone, Ralf W. Schmitz et al. · Cell · 1997 · 1.3K citations · Full text
Neandertal Dna Sequences, Evolutionary Biology, Paleoanthropology +3
Y chromosome sequence variation and the history of human populations
Peter A. Underhill, Peidong Shen, Alice Lin et al. · Nature Genetics · 2000 · 992 citations
Biology, Human Variation, Medicine +12
Genetic and Fossil Evidence for the Origin of Modern Humans
C. B. Stringer, Peter Andrews · Science · 1988 · 945 citations