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  2. Human hair color - Wikipedia

    en.wikipedia.org/wiki/Human_hair_color

    A variety of human hair colors; from top left, clockwise: black, brown, blonde, white, red. Human hair color is the pigmentation of human hair follicles and shafts due to two types of melanin: eumelanin and pheomelanin. Generally, the more melanin present, the darker the hair. Its tone depends on the ratio of black or brown eumelanin to yellow ...

  3. Brown hair - Wikipedia

    en.wikipedia.org/wiki/Brown_hair

    Brown hair. Brown hair, also referred to as brunette (when female) or brunet (when male), is the second-most common human hair color, after black hair. It varies from light brown to dark hair. It is characterized by higher levels of the dark pigment eumelanin and lower levels of the pale pigment pheomelanin.

  4. Melanin - Wikipedia

    en.wikipedia.org/wiki/Melanin

    Melanin (/ ˈmɛlənɪn / ⓘ; from Ancient Greek μέλας (mélas) 'black, dark') is a family of biomolecules organized as oligomers or polymers, which among other functions provide the pigments of many organisms. [1] Melanin pigments are produced in a specialized group of cells known as melanocytes.

  5. Human skin color - Wikipedia

    en.wikipedia.org/wiki/Human_skin_color

    Melanocytes produce two types of melanin. The most common form of biological melanin is eumelanin, a brown-black polymer of dihydroxyindole carboxylic acids, and their reduced forms. Most are derived from the amino acid tyrosine. Eumelanin is found in hair, areola, and skin, and the hair colors gray, black, blond, and brown. In humans, it is ...

  6. Cat coat genetics - Wikipedia

    en.wikipedia.org/wiki/Cat_coat_genetics

    Factors affecting the number and width of bands of color on each hair, such as the hypothetical wide band gene wb. Resulting in shaded or tipped (chinchilla/shell) pigmentation. Factors affecting the amount and quality of eumelanin and/or phaeomelanin pigment expression (such as theorized rufousing factors)

  7. Agouti coloration genetics - Wikipedia

    en.wikipedia.org/wiki/Agouti_coloration_genetics

    Agouti works with extension to regulate the color of melanin which is produced in hairs. The agouti protein causes red to yellow pheomelanin to be produced, while the competing molecule α-MSH signals production of brown to black eumelanin. In wildtype mice, alternating cycles of agouti and α-MSH production cause agouti coloration.