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2006 | 52 | 4 |

Tytuł artykułu

Cleavage in Ixodes ricinus [L.] [Acari: Ixodidae]

Autorzy

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The author analyzed the first 5 days of embryonic development of Ixodes ricinus. The cleavage takes 4 days, being terminated on the 5th day of embryogenesis, when the cells start to invaginate and differentiate. The karyomeres play a role in the initial mitotic divisions. Cellularization occurs on the 2nd and 3rd day of embryogenesis. The blastoderm cells maintain their potential for division, and as from the 5th day cellular differentiation starts.

Wydawca

-

Rocznik

Tom

52

Numer

4

Opis fizyczny

p.291-297,fig.,ref.

Twórcy

autor
  • Silesian Medical Academy, Jagiellonska 4, 41-200 Sosnowiec, Poland

Bibliografia

  • [1] Brinton L.P., Oliver J.H.Jr. 1971. Fine structure of oogonial and oocyte development in Dermacentor andersoni Stiles (Acari: Ixodidae). Journal of Parasitology 57: 720-747.
  • [2] Sonenshine D.E. (Ed.) 1991. Biology of ticks. Vol. 1 Oxford University Press. New York.
  • [3] Wolley T.A. 1988. Mites and human welfare. In: Acarology. (Ed. J. Wiley). Willey Interscience Publ., New York.
  • [4] Wagner J. 1894. On the embryology of mites: segmentation of the origin of the germinal layers and development of appendages in Ixodes. Annals of Magazine of Natural History 11: 220-224.
  • [5] Arthur D.R. 1948. On the egg of tick, Ixodes ricinus. Journal of Parasitology 39: 53-60.
  • [6] Aeschlimann A. 1961. Complement a l'étude de l'embryologie d'Ornithodoros moubata (Murray). Acta Tropica 18: 58-60.
  • [7] El Kammah K.M., Adham F.K., Tadross N.R., Osman M. 1982. Embryonic development of the camel tick Hyalomma dromedarii (Ixodidea: Ixodidae). International Journal of Acarolology 8: 47-54.
  • [8] Aeschlimann A. 1958. Dévelopment embrionaire d'Ornithodoros moubata (Murray) et transmission transovarienne de Borrelia duttoni. Acta Tropica 15: 15-64.
  • [9] Gilbert S.F. 1997. Arthropods: The Crustaceans, Spiders and Myriapods. In: Embryology: Constructing the Organism. (Eds. S.F. Gilbert, A.M. Raunio):Sunderland/USA.
  • [10] Klag J., Jura Cz., Krzysztofowicz A., Kisiel E. 1995. Karyomere formation in cleaving eggs of Tetrodontophora bielanensis (Collembola). Folia Biologica 43: 61-67.
  • [11] Lemaitre J.M., Géraud G. and Méchali M. 1998. Dynamics of the genome during early Xenopus laevis development: karyomeres as independent units of replication. Journal of Cell Biology 142: 1159-1165.
  • [12] El-Gohary M., Kamel M.Y., Madbouly M.H. 1986. On the morphology of developing eggs of the camel tick Hyalomma dromedarii Koch, 1844. Canadian Journal of Zoology 64: 1994-1997.
  • [13] Loncar D., Singer S.J. 1995. Cell membrane formation during the cellularization of syncytial blastoderm of Drosophila. Proceedings of the National Academy of Sciences 92: 2199-2203.
  • [14] Lundquist A., Emanuelsson H. 2005. Membrane production and yolk degradation in the early fly embryo (Calliphora erythrocephala meig.): An ultrastructural analysis. Journal of Morphology 161: 53-77.
  • [15] Suzuki H., Kondo A. 1995. Early embryonic development, including germ-disk stage, in the theridiid spider Achaearanea japonica (Bös. et Str.). Journal of Morphology 224: 147-157.
  • [16] Akiyma-Oda Y., Oda H. 2003. Early patterning of the spider embryo: a cluster of mesenchymal cells at the cumulus produces Dpp signals received by germ disc epithelial cells. Development 130: 1735-1747.
  • [17] Jasik K., Buczek A. 2004. Development of the salivary glands in embryos of Ixodes ricinus (Acari: Ixodidae). Experimental and Applied Acarology 32: 219-230.
  • [18] Jasik K., Buczek A. 2005. Origin of Alimentary Tract in Embryogenesis of Ixodes ricinus (Acari: Ixodidae). Journal of Medical Entomology 42: 541-547.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-bb7ed8ad-f584-4e8c-b3f8-f9bd7fef9d02
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