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Hepatozoon

Genus of single-celled organisms

Hepatozoon

Genus of single-celled organisms

Hepatozoon americanum

Hepatozoon atticorae

Hepatozoon ayorgbor

Hepatozoon canis

Hepatozoon cevapii

Hepatozoon cuestensis

Hepatozoon catesbianae

Hepatozoon clamatae

Hepatozoon fasciatae

Hepatozoon lygosomarum

Hepatozoon massardii

Hepatozoon muris

Hepatozoon pictiventris

Hepatozoon punctatus

Hepatozoon sauritus

Hepatozoon seminatrici

Hepatozoon sipedon

Hepatozoon sirtalis

Hepatozoon thomsoni (Minchin, [1908])

Hepatozoon is a genus of Apicomplexa alveolates which incorporates more than 300 species of obligate intraerythrocytic parasites. Species have been described from all groups of tetrapod vertebrates, as well as a wide range of haematophagous arthropods, which serve as both the vectors and definitive hosts of the parasite. By far the most biodiverse and prevalent of all haemogregarines, the genus is distinguished by its unique reciprocal trophic lifecycle which lacks the salivary transmission between hosts commonly associated with other apicomplexans. While particularly prevalent in amphibians and reptiles, the genus is more well known in veterinary circles for causing a tick-borne disease called hepatozoonosis in some mammals.

Lifecycle

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Members of the genus Hepatozoon possess particularly complex lifecycles which vary considerably among species. Sexual reproduction and sporogenic development occur within the haemocoel of the invertebrate host, which is subsequently consumed by the vertebrate host. The sporozoites then migrate to the liver of the vertebrate, where they undergo multiple fission (asexual reproduction) to produce merozoites. The meronts are released into the bloodstream where they form gametocytes, the final stage of development within the vertebrate host. The gamonts are large, conspicuous organisms which occupy a significant portion of the erythrocyte, and are easily visible on simple blood films. When the invertebrate vector feeds on the blood of the infected vertebrate, the gamonts are taken up into the gut once more, where they undergo gametogenesis and the cycle begins once more.

This simplified lifecycle is, of course, insufficient for species which infect vertebrate and invertebrate hosts which do not directly feed on one another, necessitating an even more complex cycle. For instance, Hepatozoon sipedon infects mosquitoes and snakes, but since snakes do not typically feed on mosquitoes, a third, intermediate host is required, in this case a frog. The frog ingests the infected mosquito, and the snake acquires the infection by feeding on the now-infected frog. Another mosquito can then feed on the snake, thus continuing the lifecycle.

Hepatozoonosis, therefore, results when an animal eats an infected tick - the disease is not spread by tick bites. Species include Hepatozoon muris and Hepatozoon canis, which typically infects mice and dogs, respectively, and Hepatozoon atticorae, which is found in birds.

References

References

  1. Vilcins I, Ujvari B, Old JM, Deane EM (2009). Molecular and morphological description of a Hepatozoon species infecting reptiles and their ticks in the Australian Northern Territory. Journal of Parasitology. 95(2), 434-442. DOI: 10.1645/GE-1725.1
  2. Vilcins IE, Old JM, Deane EM (2009). Detection of a Hepatozoon and spotted-fever group Rickettsia species in the common marsupial tick (Ixodes tasmani) collected from wild Tasmanian devils, Tasmania. Veterinary Parasitology. 162(1-2), 23-31. DOI: 10.1016/j.vetpar.2009.02.015
  3. (2014). "Microscopic and molecular characterization of ''Hepatozoon domerguei'' (Apicomplexa) and ''Foleyella furcata'' (Nematoda) in wild endemic reptiles from Madagascar". Parasite.
  4. "Hepatozoon canis in Dogs".
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