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species · Editorial draft · human review pending

Homo sapiens

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Introduction

Homo sapiens is the species to which all living humans belong.

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Evidence for this statement

Editorial synthesis

Humans are primates in the great-ape family Hominidae, with evolutionary origins in Africa and a present distribution across the world.

[1] [2]
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A body adapted to upright movement

The human body plan supports habitual movement on two legs, with the head balanced above the spine and the hips and knees carrying weight during upright walking.

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The curve of the lower spine helps absorb the mechanical stresses of walking.

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Compared with many earlier human forms, modern humans generally have a lighter skeleton, a high skull vault, a relatively vertical forehead and a smaller, less projecting face.

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Reproduction and development

Human reproduction involves the union of sperm and egg, followed by development of an embryo that implants in the lining of the uterus.

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During pregnancy, the placenta supports exchange of oxygen and nutrients and removal of waste products.

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Its branching villi develop as the fetus grows, creating an extensive exchange structure rather than a simple container around the fetus.

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Pregnancy is commonly dated as about 40 weeks from the last menstrual period, a convention that starts before fertilization rather than at it.

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After birth, human milk can supply fats, proteins, carbohydrates, vitamins and minerals during early development.

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Later, puberty brings sexual maturation, a major transition between childhood and reproductive adulthood.

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Food, environments and social life

Human ways of obtaining food have included gathering plants, hunting animals and fishing with specialized tools.

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Fire, clothing and shelters helped people occupy different environments, while social networks enabled the exchange of resources over wide areas.

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Human material culture also includes art, music and symbolic objects.

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Over the last roughly 12,000 years, farming and herding have transformed many landscapes and relationships with other species, without describing the way of life of every human community.

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Chromosomes, genomes and variation

Human nuclear DNA is packaged with proteins into chromosomes; the usual chromosome complement in a body cell is 23 pairs.

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Egg and sperm normally contribute one set each, bringing together genetic material inherited from both parents.

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This shared organization does not make every human genome identical: a single reference sequence cannot represent all human genetic variation.

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A 2022 study filled major gaps in a human reference assembly, producing chromosome sequences that excluded the Y chromosome.

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A different approach, described in 2023, combined phased genome assemblies from 47 individuals into a draft pangenome reference.

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Using multiple genomes provides a way to study sequence differences that comparison with one reference can miss.

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Species identity and genomic sampling

NCBI Taxonomy assigns identifier 9606 to Homo sapiens at species rank, but a taxonomy record is not a genome assembly or a sample from every population.

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The 2023 pangenome study represents 47 diploid individuals as 94 haplotype assemblies, keeping the paired chromosome sequences distinct.

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The authors discuss the benefits of broader representation while identifying continued work on validation and challenging genomic regions.

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A reference version changes the interpretation

The 2022 T2T paper’s abstract explicitly excludes Y from its assembled chromosome set.

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The 2023 pangenome methods describe a later T2T-CHM13 v2.0 reference that includes a Y chromosome from HG002, which they excluded from the stated segmental-duplication reliability analysis.

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Consequently, the study year, reference version and donor origin must accompany a statement about whether that reference includes Y.

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Developmental structure and exchange

Placental development includes remodeling of maternal uterine blood vessels by cells associated with the placental villi.

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The growth and branching of villi connect the placenta’s changing structure with the exchange needs of the developing fetus.

[5]
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Continue exploring

Sources and versions

Editorial draft · human review pending

  1. NCBI Taxonomy · https://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=9606&mode=info

    2026-09-06 · No source asset reproduced; no item-level media grant verified.

  2. Smithsonian National Museum of Natural History · https://humanorigins.si.edu/evidence/human-fossils/species/homo-sapiens

    2026-09-06 · No source asset reproduced; no item-level media grant verified.

  3. Smithsonian National Museum of Natural History · https://humanorigins.si.edu/human-characteristics/walking-upright

    2026-09-06 · No source asset reproduced; no item-level media grant verified.

  4. NICHD / National Institutes of Health · https://www.nichd.nih.gov/health/topics/pregnancy/conditioninfo

    2026-09-06 · No source asset reproduced; no item-level media grant verified.

  5. NICHD / National Institutes of Health · https://www.nichd.nih.gov/research/supported/human-placenta-project/how-does-placenta-form

    2026-09-06 · No source asset reproduced; no item-level media grant verified.

  6. NICHD / National Institutes of Health · https://www.nichd.nih.gov/health/topics/factsheets/breastfeeding

    2026-09-06 · No source asset reproduced; no item-level media grant verified.

  7. NICHD / National Institutes of Health · https://www.nichd.nih.gov/health/topics/puberty/conditioninfo

    2026-09-06 · No source asset reproduced; no item-level media grant verified.

  8. National Human Genome Research Institute · https://www.genome.gov/about-genomics/fact-sheets/Chromosomes-Fact-Sheet

    2026-09-06 · No source asset reproduced; no item-level media grant verified.

  9. Science / University of Cambridge Repository · 10.1126/science.abj6987

    2026-09-06 · Repository displays Attribution 4.0 International; no PDF figures or source assets copied.

  10. Nature · 10.1038/s41586-023-05896-x

    2026-09-06 · CC BY 4.0 stated; third-party exclusions require asset-level checking.

Inspect structured data
Content version
49123a7be618b347aa29ea92876eca34ec00f7848d0862f0e98d15dd5910bcc5
Source version
editorial-source-set.v1@891dab7390b7f7fb403cb4b8d8c743fd4bce9a08d25dde54ad0aa502eeffb4f8
Updated
2026-09-06

Where this organism has been observed

Observations and connections with other organisms

Marine and community observations, and interactions reported in research. Each source retains its own records and query scope.

Research about this organism

01 · A place in the living world

Classification

Explore the tree of life
  1. No rankcellular organisms
  2. DomainEukaryota
  3. CladeOpisthokonta
  4. KingdomMetazoa
  5. CladeEumetazoa
  6. CladeBilateria
  7. CladeDeuterostomia
  8. PhylumChordata
  9. SubphylumCraniata
  10. CladeVertebrata
  11. CladeGnathostomata
  12. CladeTeleostomi
  13. CladeEuteleostomi
  14. SuperclassSarcopterygii
  15. CladeDipnotetrapodomorpha
  16. CladeTetrapoda
  17. CladeAmniota
  18. ClassMammalia
  19. CladeTheria
  20. CladeEutheria
  21. CladeBoreoeutheria
  22. SuperorderEuarchontoglires
  23. OrderPrimates
  24. SuborderHaplorrhini
  25. InfraorderSimiiformes
  26. ParvorderCatarrhini
  27. SuperfamilyHominoidea
  28. FamilyHominidae
  29. SubfamilyHomininae
  30. GenusHomo
  31. SpeciesHomo sapiens

02 · From organism to molecules

Genes, genomes and proteins

03 · Continue exploring

Tools and connections

04 · EcoGenesis

What the available evidence supports

Classification and name provenance; a source-attributed description.

A catalogue name does not establish a genome, protein or measurement. Missing records do not mean a trait or gene is absent from the organism.

Coverage updates as this page checks its sources.

Sources and licences

SourceIDLicenceDetails
UniProt Taxonomy9606CC-BY-4.0Source record ↗
UniProt Taxonomy9606CC-BY-4.0Description version ↗