Human Variation and Adaptation
Foundations and Population Genomics
| Joseph Lachance; Sarah A. Tishkoff | Annual Review of Ecology, Evolution, and Systematics | 2013
Population Genomics of Human Adaptation reviews genomic methods and major examples of recent local adaptation in humans.
| Jonathan K. Pritchard; Joseph K. Pickrell; Graham Coop | Current Biology | 2010
Explains hard sweeps, soft sweeps, and polygenic adaptation, emphasizing the varied genetic routes by which human populations adapt.
| Iain Mathieson | Current Opinion in Genetics & Development | 2020
Reviews evidence for human adaptation during roughly the last 40,000 years using modern and ancient genomic data.
| Dina MemarMoshrefi et al. | Nature Genetics | 2026-04-28
Surveys how ancient DNA is changing the study of natural selection and human adaptation across prehistoric populations.
| Laura B. Scheinfeldt; Sarah A. Tishkoff | Nature Reviews Genetics | 2013-09-18
Reviews genomic approaches to recent human adaptation and the interpretation of signals involving diet, pathogens, climate, and physiology.
| Shaohua Fan et al. | Science | 2016-10-07
Reviews how globally dispersing humans repeatedly adapted to local environments through genetic changes affecting many biological systems.
| Wenqing Fu; Joshua M. Akey | Annual Review of Genomics and Human Genetics | 2013
Examines selection and adaptation across the human genome and the population-genetic tools used to detect them.
| Ziyue Gao | PLOS Biology | 2024-01-18
Discusses methods and evidence for detecting recent and ongoing adaptive selection in human populations.
| Alex A. Pollen et al. | Nature Reviews Genetics | 2023-02-03
Reviews human-specific genetic changes and experimental tools for studying molecular and cellular features of human evolution.
| Joshua M. Akey | Annual Review of Genomics and Human Genetics | 2009
Explains models, methods, and data used to distinguish natural selection from demographic history in human populations.
| Angela M. Hancock et al. | Nature Reviews Genetics | 2010
Reviews geographic patterns of human genetic variation associated with local environmental pressures and spatially varying selection.
| Joseph K. Pickrell et al. | Genome Research | 2009
Reports worldwide scans of recent positive selection across 53 populations and highlights geographically localized candidate adaptations.
| Kelsey Elizabeth Johnson; Benjamin F. Voight | Nature Ecology & Evolution | 2018-02-19
Tests how often recent positive-selection signals are shared across populations and whether they reflect common adaptive events.
| Stephen C. Stearns et al. | Nature Reviews Genetics | 2010-08-03
Explains how natural selection can be measured directly in contemporary human populations using phenotype and reproductive data.
| Michael Bamshad; Stephen P. Wooding | Nature Reviews Genetics | 2003-02-01
Reviews genomic signatures of natural selection and their relevance to human disease resistance and phenotypic variation.
| 1000 Genomes Project Consortium | Nature | 2010-10-27
Provides an early population-scale map of human genome variation that became foundational for studies of population history and adaptation.
| 1000 Genomes Project Consortium | Nature | 2012-10-31
Maps genetic variation across 1,092 genomes, enabling finer comparisons of allele frequencies among human populations.
| 1000 Genomes Project Consortium | Nature | 2015-09-30
Presents the completed global reference for common human genetic variation across 26 populations.
| Luísa Pereira et al. | Nature Reviews Genetics | 2021-01-11
Reviews African genetic diversity, local adaptation, and the importance of better representing African populations in genomics.
| Isaac Mulindwa et al. | American Journal of Human Genetics | 2020-09-03
Examines unusually high diversity and selection signals in Nilo-Saharan and neighboring African populations.
Ancient DNA, Selection History, and Global Variation
| Evan K. Irving-Pease et al. | Nature | 2024-01-10
Reconstructs Holocene selection in Eurasia, including signals involving diet, immunity, metabolism, and ancestry-associated phenotypes.
| Iain Mathieson et al. | Nature | 2015-11-23
Uses 230 ancient Eurasian genomes to track selection on diet, pigmentation, immunity, and height through time.
| Stephanie Marciniak; George H. Perry | Nature Reviews Genetics | 2017-09-11
Reviews how ancient genomes reveal adaptive change that can be difficult to infer from present-day DNA alone.
| Pardis C. Sabeti et al. | Science | 2006
Reviews molecular evidence for recent adaptation in modern human populations and genome-wide strategies for finding selected loci.
| Laura B. Scheinfeldt; Sarah A. Tishkoff | Current Opinion in Genetics & Development | 2013
Reviews African genetic variation and adaptive responses relevant to human evolution, migration, diet, and disease.
| Sarah A. Tishkoff et al. | Current Biology | 2010
Surveys the evolution of genetic and phenotypic variation within Africa and its significance for modern human diversity.
| Sarah A. Tishkoff; Floyd A. Reed | Current Opinion in Genetics & Development | 2010
Reviews African genetic diversity and what it reveals about demographic history, human origins, and local adaptation.
| Sarah A. Tishkoff; Kenneth K. Kidd | Annual Review of Genomics and Human Genetics | 2004
Explains global patterns of human genetic diversity and their implications for evolutionary history and disease.
| Elizabeth A. Atkinson et al. | Annual Review of Genomics and Human Genetics | 2023
Reviews evolutionary genetics, admixture, and adaptation across African populations using expanding genomic datasets.
| Matteo Fumagalli et al. | PLOS Genetics | 2011-11-03
Finds pathogens to be a major environmental selective pressure across human evolutionary history.
| Rasmus Nielsen et al. | Annual Review of Genetics | 2024
Reviews population-genomic scans for selection and demography and explains why the two processes can be difficult to disentangle.
| Linda Ongaro; Emilia Huerta-Sánchez | Nature Genetics | 2024-11-05
Reviews multiple Denisovan introgression events and how archaic ancestry contributed to modern human diversity and adaptation.
| Anders Bergström et al. | Nature | 2021
Uses globally diverse genomes to refine patterns of human population structure, diversity, and evolutionary history.
| Anders Bergström et al. | Nature | 2020
Explores human genetic variation and demographic history using high-coverage genomes from diverse populations.
| Swapan Mallick et al. | Nature | 2016
The Simons Genome Diversity Project documents deep global genetic diversity and population history across many human groups.
| David Reich et al. | Nature | 2016
Examines worldwide human diversity and population relationships using genome-wide data from numerous populations.
| Joseph Lachance et al. | PLOS Genetics | 2012
Whole-genome sequences from African hunter-gatherers reveal deep diversity, population structure, and candidate adaptive variation.
| Peter Ralph; Graham Coop | PLOS Biology | 2013-05-07
Maps recent genetic ancestry across Europe, illustrating how migration and population structure shape geographic patterns of human variation.
| Emilia Huerta-Sánchez et al. | Current Opinion in Genetics & Development | 2018
Reviews genetic adaptation to extreme human environments, including altitude, cold, diving, and unusual dietary exposures.
| Nature Education | Nature Scitable | 2010
Introduces positive selection and examples of evolutionary adaptation in the human lineage for a broad educational audience.
High-Altitude and Hypoxia Adaptation
| Tatum S. Simonson et al. | Science | 2010-07-02
Identifies EGLN1 and PPARA among Tibetan high-altitude selection signals and links them to distinctive hemoglobin physiology.
| Cynthia M. Beall et al. | Proceedings of the National Academy of Sciences | 2010
Shows strong natural selection near EPAS1 in Tibetan highlanders and an association with relatively low hemoglobin concentration.
| Emilia Huerta-Sánchez et al. | Nature | 2014-07-02
Demonstrates that a Denisovan-like EPAS1 haplotype contributed to Tibetan adaptation to high-altitude hypoxia.
| Hui Zhang et al. | Molecular Biology and Evolution | 2011
Finds strong selective sweeps at EPAS1 and EGLN1 across Tibetan populations in the Himalayan region.
| Kun Xiang et al. | Molecular Biology and Evolution | 2013
Identifies a Tibetan-specific EGLN1 mutation associated with hemoglobin levels and strong positive selection.
| Felipe R. Lorenzo et al. | Nature Genetics | 2014
Provides functional evidence that an EGLN1 variant contributes to the Tibetan high-altitude phenotype.
| Colleen G. Julian; Lorna G. Moore | Genes | 2019-02-15
Reviews genetic and physiological evidence for high-altitude adaptation in Andean populations.
| Gorka Alkorta-Aranburu et al. | PLOS Genetics | 2012
Shows Ethiopian highlanders exhibit adaptive signals distinct from the better-known Tibetan high-altitude genetic pathways.
| Desta Seifu et al. | Frontiers in Genetics | 2025-01-07
Reviews genomic and physiological high-altitude adaptation in Ethiopian highlanders and compares Amhara, Oromo, Tibetan, and Andean patterns.
| Cynthia M. Beall | Human Biology | 2014
Reviews Tibetan adaptation to high-altitude hypoxia from physiological observations through modern genomic research.
| Cynthia M. Beall | High Altitude Medicine & Biology | 2018
Discusses how high-altitude adaptation should be measured and distinguishes inherited adaptation from acclimatization and developmental effects.
| Jacqueline L. Graham; Tatum S. Simonson | Frontiers in Genetics | 2020
Reviews functional approaches for testing candidate genetic variants associated with high-altitude adaptation.
| Jay F. Storz et al. | Genes & Development | 2014
Connects human high-altitude adaptation with the HIF oxygen-sensing pathway and forward-genetic discoveries.
| Abigail W. Bigham | Current Opinion in Genetics & Development | 2016
Compares genetic adaptations in Tibetan, Andean, and Ethiopian highlanders and their differing physiological responses.
| Tatum S. Simonson | Current Opinion in Genetics & Development | 2018
Reviews the status of human high-altitude genetics and priorities for connecting selected variants with physiological function.
| Laura B. Scheinfeldt et al. | Genome Biology | 2012
Finds candidate genetic adaptations to high altitude in Ethiopian populations using genome-wide comparisons.
| Tatum S. Simonson et al. | Journal of Applied Physiology | 2022
Integrates genomic evidence with respiratory, circulatory, and metabolic physiology in human high-altitude adaptation.
| Yang Gao et al. | National Science Review | 2023
Deep phenotyping of thousands of Tibetan highlanders identifies adaptive traits and links physiological variation to genomic loci.
| Erika Schagatay et al. | Experimental Physiology | 2024
Compares splenic responses to oxygen manipulation in Sherpa and lowlanders, illustrating population-level physiological specialization.
| Sushil Kumar et al. | Human Genomics | 2022
Reviews convergence and divergence between genomic and proteomic signatures of high-altitude adaptation.
| Jim L. Rupert; Peter W. Hochachka | High Altitude Medicine & Biology | 2001
Reviews hereditary and developmental factors contributing to high-altitude phenotypes among Andean Indigenous populations.
| Erica C. Heinrich et al. | Annals of Human Genetics | 2019-02-04
Shows Tibetan EGLN1 adaptive variants are absent or uncommon in Andean highlanders, supporting different evolutionary solutions.
| Shara E. Bailey et al. | Trends in Ecology & Evolution | 2022
Reviews Denisovans and modern humans on the Tibetan Plateau, including dispersal and adaptation to high elevation.
| Tatum S. Simonson et al. | Frontiers in Genetics | 2020
Uses cross-species comparisons to place human genomic adaptation to hypoxia in a broader evolutionary framework.
| Andrew M. Murray et al. | Experimental Physiology | 2025
Compares the oxygen cascade in Andean, Tibetan, and Ethiopian highlanders to identify contrasting adaptive physiological strategies.
Diet, Metabolism, Agriculture, and Gene-Culture Coevolution
| Sarah A. Tishkoff et al. | Nature Genetics | 2007
Shows convergent evolution of lactase persistence in Africa and Europe through different regulatory variants.
| Laure Ségurel; Céline Bon | Annual Review of Genomics and Human Genetics | 2017
Reviews lactase persistence as a classic case of gene-culture coevolution and convergent human adaptation.
| Yuval Itan et al. | PLOS Computational Biology | 2009
Models the origins and geographic spread of lactase persistence in Europe alongside dairying.
| Alessia Ranciaro et al. | American Journal of Human Genetics | 2014
Links multiple African lactase-persistence variants with pastoralism and population history.
| Pascale Gerbault et al. | Philosophical Transactions of the Royal Society B | 2011
Uses lactase persistence to illustrate human niche construction and gene-culture coevolution.
| Richard P. Evershed et al. | Nature | 2022-07-27
Reassesses why lactase persistence spread in Europe, emphasizing famine and pathogen exposure rather than milk use alone.
| César Fortes-Lima et al. | BMC Genomics | 2019
Examines Fulani population history and lactase persistence in relation to pastoralist adaptation.
| Catherine J.E. Ingram et al. | Human Genetics | 2015
Reviews diversity of lactase-persistence phenotypes and genotypes among African milk-drinking populations.
| Luis B. Barreiro | Nature Reviews Genetics | 2023-09-25
Highlights the evolutionary history of lactase persistence and why its selective advantage remains an active research question.
| George H. Perry et al. | Nature Genetics | 2007
Reports higher AMY1 copy number in populations with traditionally starch-rich diets, a landmark dietary-adaptation study.
| Omer Gokcumen et al. | Science | 2024
Reconstructs the amylase locus and finds recent increases in high-copy AMY1 haplotypes among European farmers.
| Karen Hardy et al. | Quarterly Review of Biology | 2015
Argues that dietary starch and cooking were important in human evolution and increased the value of salivary amylase.
| Thomas J. Usher et al. | Human Genetics | 2017
Challenges a simple starch-digestion explanation for AMY1 copy-number evolution and reviews alternative functional possibilities.
| Iain Mathieson et al. | Molecular Biology and Evolution | 2018
Uses ancient DNA to reassess when selection at FADS1 intensified relative to the spread of agriculture.
| Rasmus Nielsen et al. | Molecular Biology and Evolution | 2017
Shows selection on fatty-acid desaturase genes in Europeans associated with dietary changes through time.
| Kaixiong Ye et al. | Nature Ecology & Evolution | 2017
Finds that dietary adaptation at FADS genes varied across both time and geography in Europe.
| Tom Brenna et al. | Molecular Biology and Evolution | 2016
Reports positive selection on a FADS2 regulatory indel associated with greater long-chain fatty-acid synthesis in South Asians.
| Yi Peng et al. | BMC Evolutionary Biology | 2010
Links positive selection on ADH1B in East Asia with the expansion of rice domestication.
| Ajai Kumar Pathak et al. | Frontiers in Nutrition | 2025
Reviews dietary genomic adaptations from South Asia to Arctic populations, including FADS, lactase, and starch metabolism.
| Carles Lalueza-Fox et al. | Advances in Genetics | 2024
Reviews biological and cultural coevolution involving milk, alcohol, gluten, and fatty-acid metabolism.
| Anne Mullen | Nature Food | 2022-08-18
Summarizes new evidence that crisis conditions may have driven the strong selection for lactase persistence.
| Melinda A. Zeder | Nature | 2022
Discusses the puzzle of widespread prehistoric milk use long before lactase persistence became common.
| Kaixiong Ye et al. | Nature Ecology & Evolution | 2017
Tracks changing selection on FADS variants before and after farming, linking dietary shifts with lipid metabolism.
| Kothapalli et al. | Molecular Biology and Evolution | 2016
Finds a FADS2 insertion under positive selection in South Asians and other populations with plant-heavy dietary histories.
| Obed A. Garcia et al. | Nature Communications | 2026
Reports rapid adaptive increase of amylase gene copy number in Indigenous Andeans, linking starch digestion with subsistence change.
Skin Pigmentation and Ultraviolet Adaptation
| Arkopala Bose et al. | Frontiers in Genetics | 2026-07-24
Reviews the polygenic architecture of human skin pigmentation and how ultraviolet radiation, migration, admixture, and culture shaped global variation.
| Nina G. Jablonski; George Chaplin | Proceedings of the National Academy of Sciences | 2010-05-11
Explains human skin pigmentation as an adaptation balancing protection from intense ultraviolet radiation with the need for vitamin D production.
| Nina G. Jablonski | Pigment Cell & Melanoma Research | 2021-05-04
Synthesizes genetic, environmental, and cultural influences on the evolution of human skin pigmentation.
| Nicholas G. Crawford et al. | Science | 2017-10-12
Identifies pigmentation loci in diverse African populations and shows how ancient variation, gene flow, and selection contributed to light and dark skin.
| Heather L. Norton et al. | Molecular Biology and Evolution | 2007-03
Provides genetic evidence that lighter skin evolved convergently in Europeans and East Asians through partly different genes.
| Nina G. Jablonski; George Chaplin | Philosophical Transactions of the Royal Society B | 2017-05-22
Reviews the evolution of skin, hair, and eye coloration and emphasizes natural selection on skin pigmentation during human dispersal.
| Zhaohui Yang et al. | Molecular Biology and Evolution | 2016-01-06
Shows that an East Asian OCA2 variant contributed to convergent skin lightening independently of the main European pathways.
| Yuanqing Feng; Michael A. McQuillan; Sarah A. Tishkoff | Human Molecular Genetics | 2021-01-12
Reviews the evolutionary genetics of skin pigmentation in African populations, including MFSD12, DDB1, SLC24A5, and other loci.
| Zhaohui Yang et al. | Molecular Biology and Evolution | 2018
Finds recurrent selection around KITLG in Eurasia and links variants to both skin pigmentation and winter-temperature adaptation.
| Dan Ju; Iain Mathieson | Proceedings of the National Academy of Sciences | 2021
Uses ancient and present-day genomes to reconstruct changes in pigmentation-associated variants in West Eurasia.
| Sandra Wilde et al. | Proceedings of the National Academy of Sciences | 2014
Uses ancient DNA to document strong recent selection on pigmentation genes in Europeans during the last several thousand years.
| Lian Deng; Shuhua Xu | Hereditas | 2017-06-15
Reviews how different populations evolved similar skin colors through shared and population-specific genetic mechanisms.
| Mel Greaves | Proceedings of the Royal Society B | 2014-04-22
Argues that lethal skin cancer may have contributed to selection for dark pigmentation in early hairless hominins.
| Nina G. Jablonski; George Chaplin | Proceedings of the Royal Society B | 2014
Challenges the idea that skin cancer was the primary selective force for dark pigmentation and emphasizes reproductive consequences of UV-related folate loss.
| Nina G. Jablonski; George Chaplin | Journal of Human Evolution | 2000-07
Classic analysis relating the geographic distribution of human skin color to ultraviolet radiation and evolutionary tradeoffs.
| Renée P. Stokowski et al. | American Journal of Human Genetics | 2007
Genome-wide study of South Asians identifies SLC24A5, TYR, and SLC45A2 as major contributors to normal pigmentation variation.
| Sandra Beleza et al. | PLOS Genetics | 2013-03-21
Studies Cape Verdeans to show how ancestry and multiple pigmentation loci combine to produce wide skin and eye color variation.
| Chandana Basu Mallick et al. | PLOS Genetics | 2013-11-07
Shows that the major light-skin SLC24A5 allele in South Asians and Europeans shares a common origin and bears signals of selection.
| Meng Lin et al. | Proceedings of the National Academy of Sciences | 2018-12-10
Documents rapid positive selection on an introduced SLC24A5 light-pigmentation allele among southern African KhoeSan populations.
| Nina G. Jablonski and collaborators | HHMI BioInteractive | 2015
Educational synthesis connects melanin, ultraviolet radiation, vitamin D, folate, genetics, and natural selection in human skin-color evolution.
Pathogens, Malaria, and Immune Adaptation
Reviews infectious disease as a major selective force on the human genome and explains how resistance alleles can also influence modern disease risk.
| Philip W. Hedrick | Heredity | 2011-03-23
Reviews classic and modern examples of malaria resistance involving hemoglobin, G6PD, Duffy, ABO, ovalocytosis, and HLA variants.
| Gavin Band et al. | Nature | 2021-12-09
Shows that the protective effect of sickle hemoglobin against severe malaria varies with the genotype of the infecting parasite.
| Eric Elguero et al. | Proceedings of the National Academy of Sciences | 2015-05-04
Demonstrates that malaria continues to exert strong selection favoring sickle-cell trait in Central African populations.
| Jiwoo Ha et al. | Evolution, Medicine, and Public Health | 2019-12-13
Reviews evidence that hemoglobin E, common in Southeast Asia, may have risen in frequency partly because it reduces malaria risk.
| Ellen M. Leffler et al. | Science | 2017-05-18
Links the Dantu structural variant in glycophorin genes to substantially reduced severe-malaria risk and recent regional selection in Kenya.
| Michael T. Hamblin; Anna Di Rienzo | American Journal of Human Genetics | 2000-04-12
Finds a strong signature of natural selection at the Duffy blood-group locus associated with resistance to Plasmodium vivax.
| Brian C. Verrelli et al. | Genetics | 2002-12-01
Uses sequence variation around G6PD to detect the recent spread of a malaria-protective deficiency allele in Africa.
| Franck Prugnolle et al. | Current Biology | 2005-06-07
Shows that worldwide HLA class I diversity reflects both human population history and local pathogen richness.
| Jennifer Klunk et al. | Nature | 2022-10-19
Ancient DNA study finds rapid allele-frequency changes in immune genes associated with survival through the Black Death.
| Luis B. Barreiro; Lluís Quintana-Murci | Nature Reviews Genetics | 2010
Reviews how natural selection has shaped human host-defense genes under long-term pressure from infectious organisms.
| Andrew J. Kwok et al. | Nature Reviews Genetics | 2021
Surveys how human genetic variation affects susceptibility, severity, and immune responses to infectious disease.
| Etienne Patin; Lluís Quintana-Murci | Annual Review of Immunology | 2025
Uses ancient-DNA perspectives to review how epidemics, migration, and changing environments remodeled human immune variation.
| David J. Friedman | Seminars in Nephrology | 2017-11
Explains the evolutionary tradeoff in APOL1 variants that protect against African trypanosomes while increasing kidney-disease risk.
| Elinor K. Karlsson et al. | Science Translational Medicine | 2013
Identifies signals of natural selection in Bangladeshi populations associated with long exposure to cholera and related enteric disease.
| Megan Michel et al. | Nature | 2024
Ancient Plasmodium genomes reconstruct malaria's geographic history and illuminate how human movement and disease interacted through time.
| Multiple authors | Review of Human Malaria Genetics | 2025
Reviews human genetic variants that confer resistance or altered susceptibility to malaria across populations.
| Multiple authors | Human Genetics | 2012
Summarizes the exceptionally strong recent natural selection imposed by malaria on red-cell and immune-system genes.
| Multiple authors | Clinical Microbiology Reviews | 2002
Places the global burden of malaria in evolutionary and historical context, including its long interaction with human genetic variation.
| Multiple authors | British Journal of Haematology | 1999
Examines the relationship between thalassemia distributions and malaria, a foundational example of balanced selection in humans.
| Stephen L. Wiesenfeld | Science | 1967-09-08
Classic hypothesis links the spread of agriculture, increased malaria exposure, and selection for the sickle-cell allele in Africa.
| Pardis C. Sabeti et al. | PLOS Biology | 2005
Reassesses claims of recent positive selection at CCR5-Delta32 and illustrates the difficulty of distinguishing selection from demographic history.
| William Barrie et al. | Nature Reviews Immunology | 2024
Reviews ancient-DNA evidence connecting past pathogen pressures and ancestry shifts to present-day autoimmune-disease susceptibility.
| David J. Friedman; Martin R. Pollak | Annual Review of Physiology | 2020
Reviews APOL1 as a striking case in which pathogen resistance drove adaptive variants that carry substantial health costs today.
| Multiple authors | American Journal of Human Genetics | 2026-06-04
Investigates pathogen-driven selection and Austronesian gene flow at immune loci in Papua New Guinea, highlighting regional adaptation in HLA variation.
Climate, Cold, and Body-Form Adaptation
| Laurence Irving | Nature | 1960-02-27
Early synthesis of physiological and behavioral mechanisms that allow humans to function in cold environments.
| Multiple authors | Temperature | 2016
Reviews whole-body human cold adaptation, separating short-term acclimation, habituation, metabolic responses, and insulative changes.
| Felix M. Key et al. | PLOS Genetics | 2018-05-03
Finds a latitudinal cline and selection signal at TRPM8, a cold-sensing receptor, consistent with adaptation to colder climates.
| Multiple authors | Evolutionary Anthropology | 2023
Examines Beringia as an important setting for biological and cultural adaptations that enabled humans to occupy Arctic environments.
| Multiple authors | Molecular Biology and Evolution | 2021
Investigates TCAF-related genetic variation in modern humans and Neanderthals in relation to cold sensation and environmental adaptation.
| Multiple authors | American Journal of Human Genetics | 2019
Finds population-specific selection signals among Indigenous North American groups, including loci potentially related to diet, climate, and immunity.
| Multiple authors | Scientific Reports | 2021
Explores selection on genes related to nonshivering thermogenesis and leptin signaling in populations from extremely cold Siberian environments.
| Multiple authors | Frontiers in Physiology | 2022
Reviews the physiology, time course, and individual variation involved in human cold habituation and acclimatization.
| Leslea J. Hlusko et al. | Proceedings of the National Academy of Sciences | 2022
Connects EDAR variation to pleiotropic traits and explores how climate, diet, and sunlight may have contributed to selection in northern populations.
| Multiple authors | Human Genomics | 2024
Examines genetic variation related to brown adipose tissue and thermogenesis in circumpolar peoples living under persistent cold stress.
| Multiple authors | American Journal of Human Genetics | 2014
Reports a strong selective sweep involving CPT1A in Arctic populations, illustrating adaptation involving fat metabolism and subsistence.
| Multiple authors | Nature | 2025
Shows how demographic history and natural selection jointly shaped the genetic architecture of Greenlandic populations.
| Arslan A. Zaidi et al. | PLOS Genetics | 2017-03-16
Finds that aspects of human nasal shape correlate with climate, supporting an adaptive role for airway morphology in different environments.
| Multiple authors | American Journal of Biological Anthropology | 2023
Examines variation in upper-airway morphology and its relationship to climatic adaptation among modern human populations.
| Multiple authors | American Journal of Physical Anthropology | 2015
Tests Allen's rule in human hands and feet, relating appendage proportions to climatic differences among populations.
| Peter T. Katzmarzyk; William R. Leonard | American Journal of Physical Anthropology | 1998
Analyzes climatic influences on human body size and proportions and evaluates classic ecogeographic rules in global populations.
| Scott D. Maddux et al. | American Journal of Physical Anthropology | 2017
Studies nasal morphology as a functional response to climatic demands on warming and humidifying inhaled air.
| Multiple authors | Journal of Human Evolution | 2007
Tests thermoregulatory explanations for human limb proportions and the relevance of Allen's rule to hominin body form.
| Emma Pomeroy; Jay T. Stock; Jonathan C. K. Wells | Scientific Reports | 2021-01-11
Separates effects of population history, ecology, and climate on global variation in human body proportions.
| Christopher B. Ruff | Annual Review of Anthropology | 2002-10-01
Reviews evolutionary and environmental influences on human body size and shape, including thermoregulatory adaptation to climate.
Extreme Environments: Diving, Toxins, Rainforests, Deserts, and the Arctic
| Melissa A. Ilardo et al. | Cell | 2018-04-19
Finds genetic evidence that the Bajau sea nomads evolved larger spleens, a trait that can increase oxygen reserves during repeated breath-hold diving.
| Michelle Trenkmann | Nature Reviews Genetics | 2018-04-25
Highlights the Bajau diving study as a striking example of recent human physiological adaptation to an extreme subsistence niche.
| Multiple authors | Cell Reports | 2025
Examines genetic and physiological characteristics of Korea's Haenyeo women, whose traditional livelihood involves repeated cold-water breath-hold diving.
| Multiple authors | Scientific Reports | 2022
Investigates oxygen-related physiology in Southeast Asian sea-nomad populations and evidence for mechanisms beyond erythropoietin-driven red-cell increases.
| Mario Apata; Susanne P. Pfeifer | Heredity | 2019-11-27
Reviews genetic adaptation to chronic arsenic exposure, focusing on populations that have lived for generations in naturally contaminated environments.
| Multiple authors | American Journal of Physical Anthropology | 2019
Studies an admixed Atacama Desert population to examine how ancestry and selection interact in adaptation to extreme environmental stressors.
| Nature editorial staff | Nature | 2017-03-02
Explains research showing that Andean populations exposed to arsenic-rich water evolved variants associated with more efficient arsenic metabolism.
| Multiple authors | Molecular Biology and Evolution | 2016
Finds evidence of positive selection around AS3MT, a key arsenic-metabolism gene, in Andean populations exposed to high environmental arsenic.
| Mario Apata et al. | American Journal of Physical Anthropology | 2017-02-16
Examines genetic and phenotypic evidence for adaptation to arsenic exposure among Indigenous populations of the Atacama Desert.
| Multiple authors | Molecular Biology and Evolution | 2015
Reports natural-selection signals associated with long-term residence in arsenic-rich environments in the Andes.
| Morten Rasmussen et al. | Nature | 2010
Sequences an ancient Palaeo-Eskimo genome, providing insight into ancestry and genetic characteristics of early Arctic peoples.
| George H. Perry et al. | Proceedings of the National Academy of Sciences | 2014
Finds convergent genetic signals associated with short stature in African rainforest hunter-gatherers, supporting local adaptation to rainforest life.
| Isabel Mendizabal et al. | Human Genetics | 2012-03-11
Identifies loci whose allele frequencies covary with short stature among African rainforest hunter-gatherers and evaluates adaptive explanations.
| Vivek V. Venkataraman et al. | Proceedings of the Royal Society B | 2018
Tests the idea that short stature improves mobility in dense tropical rainforest, linking body form to ecological and locomotor constraints.
| Muthukrishnan Eaaswarkhanth et al. | Genome Biology and Evolution | 2020-02-18
Genome-wide scan in Kuwait identifies a selected TNKS haplotype potentially related to adaptation to the Arabian Peninsula's hot, dry environment.
Archaic Introgression and Adaptive Gene Flow
Reviews evidence that DNA inherited from Neanderthals and Denisovans sometimes provided modern humans with locally advantageous alleles.
| Daniel R. Gittelman et al. | Current Biology | 2016
Genome-wide analysis identifies archaic DNA segments that rose in frequency after introgression and likely aided adaptation outside Africa.
| Multiple authors | Nature Communications | 2019
Investigates archaic adaptive introgression involving copy-number variation and other genomic regions not captured by simple single-variant analyses.
| Multiple authors | Genome Biology and Evolution | 2025
Examines archaic introgression in reproductive genes and evaluates whether inherited Neanderthal or Denisovan variants experienced later selection.
| Stéphane Peyrégne; Viviane Slon; Janet Kelso | Nature Reviews Genetics | 2023-09-18
Reviews more than a decade of Denisovan research, including multiple admixture events and adaptive contributions to living human populations.
| Multiple authors | Evolutionary Bioinformatics | 2025
Explores archaic introgression in genes related to circadian biology and how inherited variants may have helped humans adjust to new light regimes.
| Aaron J. Sams et al. | Genome Biology | 2016
Shows that a Neanderthal-derived OAS haplotype affects innate immune responses and illustrates adaptive introgression in antiviral defense.
| Michael Dannemann; Aida M. Andrés; Janet Kelso | American Journal of Human Genetics | 2016
Finds Neanderthal- and Denisovan-like haplotypes at Toll-like receptor genes that influence innate immunity in present-day humans.
| Joshua M. Akey; Serena Tucci | Current Biology | 2022-09-26
Reviews how Neanderthal ancestry contributes to variation in immunity, metabolism, skin, behavior, and other traits in living people.
| Fernando Racimo et al. | Molecular Biology and Evolution | 2016-12-22
Shows that a deeply divergent TBX15/WARS2 haplotype, common in Inuit and Native Americans, likely entered modern humans through archaic introgression.
| Multiple authors | Genome Biology and Evolution | 2023
Reconstructs recurrent introgression and selection at MUC19, illustrating complex exchange between archaic and modern human lineages.
| Nicolas Choin et al. | Nature | 2021
Uses Oceanian genomes to reveal population history, Denisovan ancestry, and adaptive signals in one of the world's most genetically diverse regions.
| Davide M. Vespasiani et al. | PLOS Genetics | 2022-12-08
Finds that Denisovan introgression contributed immune-related regulatory variation to Papuan populations.
| Ekaterina E. Khrameeva et al. | Nature Communications | 2014-04-01
Reports that Neanderthal ancestry contributed variants affecting lipid catabolism in Europeans, a proposed example of adaptive introgression.
| Guy S. Jacobs et al. | Cell | 2019
Reveals multiple deeply divergent Denisovan ancestries in Papuans, expanding the picture of archaic admixture and its potential adaptive consequences.
Culture, Niche Construction, and Gene-Culture Coevolution
Explains how socially transmitted culture creates new selective environments, with dairying, starch consumption, and infectious disease as major examples.
| Kevin N. Laland; John Odling-Smee; Sean Myles | Nature Reviews Genetics | 2010-02
Reviews how cultural practices can reshape selection pressures and leave detectable signatures in the human genome.
| Kevin N. Laland; John Odling-Smee; Marcus W. Feldman | Journal of Evolutionary Biology | 2001
Develops cultural niche-construction models showing how learned behavior can alter environments and thereby redirect human genetic evolution.
| Timothy M. Waring; Zachary T. Wood | Proceedings of the Royal Society B | 2021
Reviews long-term gene-culture coevolution and argues that culture has increasingly become a major driver of human adaptive change.
| Herbert Gintis | Philosophical Transactions of the Royal Society B | 2011
Examines gene-culture coevolution as a framework for understanding the evolution of distinctive human sociality and cooperation.
| Cody T. Ross; Peter J. Richerson | Current Opinion in Genetics & Development | 2014-09-16
Reviews new empirical and genomic directions in the study of interactions between cultural change and human genetic evolution.
| Laurel Fogarty; Anne Kandler | Scientific Reports | 2020-08-31
Uses formal models to clarify the basic conditions under which cultural processes can generate adaptive change in human populations.
| Michael Tomasello | Annual Review of Anthropology | 1999
Develops the influential idea that humans possess adaptations for culture that allow cumulative social learning and rapid behavioral adjustment.
| Kevin N. Laland | Encyclopedia of Life Sciences | 2006-01-15
Introduces gene-culture coevolution and explains how socially transmitted behavior can influence biological selection across generations.
| Multiple authors | Evolutionary Anthropology | 2025
Argues for a broader understanding of gene-culture coevolution beyond a small set of famous examples such as lactase persistence.
| Michael J. O'Brien; Kevin N. Laland | Current Anthropology | 2012-08-01
Uses agriculture, dairying, and malaria-related alleles to show how cultural niche construction can generate new biological selection pressures.
Frames human niche construction as an interdisciplinary bridge linking genetic inheritance, cultural inheritance, and ecological modification.
| Luke E. Rendell et al. | Philosophical Transactions of the Royal Society B | 2011
Models runaway cultural niche construction in which learned practices alter local environments and drive selection on associated genetic traits.
| Multiple authors | Proceedings of the National Academy of Sciences | 2017
Reviews cultural evolutionary theory and its links with genetics, ecology, demography, social learning, and human adaptation.
| Multiple authors | Annual Review of Anthropology | 2013-10-21
Reviews evolutionary anthropology approaches that integrate phenotypic plasticity, cultural transmission, gene-culture coevolution, and niche construction.