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Mol Reprod Dev ; 77(2): 167-73, 2010 Feb.
Article in English | MEDLINE | ID: mdl-19908251

ABSTRACT

Recent research has shown that the maternal nucleolus is essential for embryonic development. The morphology of the nucleolus in growing oocytes differs from that in full-grown oocytes. We determined the ability of nucleoli from growing oocytes to substitute for nucleoli of full-grown oocytes in terms of supporting embryonic development in this study. Growing (around 100 microm in diameter) and full-grown porcine oocytes (120 microm) were collected from small (0.6-1.0 mm) and large antral follicles (4-5 mm), respectively. The nucleolus was aspirated from full-grown oocytes by micromanipulation, and the resulting enucleolated oocytes were matured to metaphase II; the nucleoli originating from full-grown and growing oocytes were then injected into the oocytes. The Chromatin of growing oocytes was aspirated with the nucleolus during the enucleolation process. Growing oocytes were thus treated with actinomycin D to release the chromatin from their nucleoli, and the nucleoli were collected and transferred to the enucleolated and matured full-grown oocytes. After activation by electro-stimulation, nucleoli were formed in pronuclei of sham-operated oocytes. Enucleolated oocytes that had been injected with nucleoli from either full-grown or growing, however, did not form any nucleoli in the pronuclei. No enucleolated oocytes developed to blastocysts, whereas enucleolated oocytes injected with nucleoli from full-grown oocytes (15%) or growing oocytes (18%) developed to blastocysts. These results indicate that the nucleoli from growing oocytes can substitute for nucleoli from full-grown oocytes during early embryonic development.


Subject(s)
Cell Nucleolus/metabolism , Chromatin/metabolism , Oocytes/metabolism , Animals , Blastocyst/cytology , Blastocyst/metabolism , Cell Nucleolus/drug effects , Cell Nucleolus/physiology , Cell Nucleolus/transplantation , Dactinomycin/pharmacology , Embryo, Mammalian/cytology , Embryo, Mammalian/metabolism , Embryonic Development/drug effects , Female , Metaphase/drug effects , Nucleic Acid Synthesis Inhibitors/pharmacology , Oocytes/cytology , Swine
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