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Warnowiaceae

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Also known as the warnowiids

The Warnowiaceae are a family of athecate dinoflagellates (a diverse group of unicellular eukaryotes). Members of the family are known as warnowiids. The family is best known for a light-sensitive subcellular structure known as the ocelloid, a highly complex arrangement of organelles with a structure directly analogous to the eyes of multicellular organisms. The ocelloid has been shown to be composed of multiple types of endosymbionts, namely mitochondria and at least one type of plastid.

Species

ワルノヴィア科

FAMILY

  1. KingdomChromista
  2. PhylumMyzozoa
  3. ClassDinophyceae
  4. OrderGymnodiniales
  5. FamilyWarnowiaceae
Habitatmarine

via GBIF

Wikidata facts

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Bmc evol bio hoppenrath proterythropsis ocelloid fig1a.png
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taxon name
Warnowiaceae
Commons category
Warnowiaceae
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Article

7 sections
Contents
  • Habitat and life cycle
  • Taxonomy
  • Subcellular structures
  • Ocelloid function and origin
  • Gallery
  • References
  • External links

The Warnowiaceae are a family of athecate dinoflagellates (a diverse group of unicellular eukaryotes). Members of the family are known as warnowiids. The family is best known for a light-sensitive subcellular structure known as the ocelloid, a highly complex arrangement of organelles with a structure directly analogous to the eyes of multicellular organisms. The ocelloid has been shown to be composed of multiple types of endosymbionts, namely mitochondria and at least one type of plastid.

==Habitat and life cycle== Warnowiids are found in marine plankton but are very rare in most plankton samples. Little is known about their life histories because they cannot be cultured in the laboratory, and samples obtained from the natural environment do not survive well under laboratory conditions. Studies of wild samples have found evidence of distinctive structures called trichocysts in warnowiid cell vacuoles, suggesting that their prey might be other dinoflagellates. Despite the complexity of the ocelloid, the experimental difficulty of working with the cells has prevented experimental study of light-directed behavior such as phototaxis.

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