Translocation of active mitochondria during pig oocyte maturation, fertilization and early embryo development in vitro
Транслокация активных митохондрий в процессе созревания ооцитов, оплодотворения и раннего развития эмбрионов свиньи in vitro
2001-07-01
SCID: 54.1/xwracs69
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MitoTracker Green stainingactive mitochondriaearly embryo developmentmicrotubule-mediated translocationpig oocyte maturation
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Abstract (AI)
The distribution of active mitochondria during pig oocyte maturation, fertilization and early embryo development in vitro was revealed by using MitoTracker Green staining and confocal laser scanning microscopy. The regulation of mitochondrial translocation by microfilaments and microtubules was also studied. In oocytes collected from small follicles, strong staining of active mitochondria was observed in the cell cortex. Accumulation of active mitochondria in the peripheral cytoplasm and around the germinal vesicles was characteristic of fully grown oocytes collected from large follicles. Mitochondria accumulated in the perinuclear area during meiotic progression from germinal vesicle breakdown (GVBD) to anaphase I. Larger mitochondrial foci were formed and moved to the inner cytoplasm in mature oocytes. Compared with the oocytes matured in vivo, in which large mitochondrial foci were distributed throughout the cytoplasm, mitochondria were not observed in the central cytoplasm in most of the oocytes matured in vitro. Strong staining of mitochondria was observed in the first polar bodies in metaphase II oocytes. In fertilized eggs, active mitochondria aggregated in the pronuclear region. Perinuclear clustering and a cortical ring were the most marked features of early cleavage. Active mitochondria were distributed in both inner cell mass cells and trophectoderm cells of the blastocysts. Disassembly of microtubules with nocodazole inhibited both mitochondrial aggregations to the germinal vesicle area and their inward movement to the inner cytoplasm during oocyte maturation, as well as the translocation of mitochondria to the peri-pronuclear region during fertilization, whereas disruption of microfilaments by cytochalasin B had no effects. These data indicate that: (i) oocyte maturation, fertilization and early embryo development in pigs are associated with changes in active mitochondrial distribution; (ii) mitochondrial translocation is mediated by microtubules, but not by microfilaments; and (iii) in vitro maturation conditions may cause incomplete movement of mitochondria to the inner cytoplasm and thus affect cytoplasmic maturation.
Key Findings
1
Active mitochondrial distribution changes dynamically during pig oocyte maturation, fertilization, and early embryo development in vitro.
2
During maturation, mitochondria shift from cortical and germinal-vesicle-associated locations toward perinuclear regions, forming larger foci that move inward after meiosis resumes.
3
Fertilization caused active mitochondria to aggregate around pronuclei, while early cleavage embryos showed perinuclear clustering and a cortical mitochondrial ring.
4
Microtubule disruption inhibited mitochondrial aggregation and inward translocation during maturation and fertilization, whereas microfilament disruption had no effect, indicating microtubule-mediated transport.
5
Most in-vitro-matured oocytes lacked mitochondria in the central cytoplasm, unlike in-vivo-matured oocytes, whose large mitochondrial foci were distributed throughout the cytoplasm.
Research Object
Active mitochondria in pig oocytes, fertilized eggs, and early embryos during in vitro maturation, fertilization, and development
Research Subject
The spatiotemporal distribution and microtubule-mediated translocation of active mitochondria during oocyte maturation, fertilization, and early embryonic development
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2001-07-01
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