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Updated: Sep 2, 2025

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Published on: July 12, 2024
PLCζ can stably regulate Ca2+ fluctuations in early embryo
Li-Ming Yuan1, Yun-Lei Chen2, Xin-Huai Shi3
1College of Animal Science and Technology, Shihezi University, Shihezi, 832000, PR China; College of Animal Science and Technology, Northwest A&F University, Yanglin, 712100, PR China.
Phospholipase C zeta (PLCζ) induces calcium (Ca2+) oscillations in early sheep embryo development. While both PLCζ and ionomycin/6-DMAP activate oocytes, PLCζ promotes more stable Ca2+ regulation during embryonic stages.
Area of Science:
- Developmental Biology
- Reproductive Science
- Calcium Signaling
Background:
- Phospholipase C zeta (PLCζ) is crucial for initiating calcium (Ca2+) oscillations in mammalian sperm, essential for fertilization.
- Understanding PLCζ's role in early embryonic Ca2+ fluctuations is key to comprehending fertilization and subsequent development.
- Existing methods for oocyte activation, like ionomycin and 6-DMAP, provide a benchmark for evaluating novel approaches.
Purpose of the Study:
- To investigate the influence of sheep Phospholipase C zeta (PLCζ) on early embryonic Ca2+ fluctuations.
- To construct a model of early embryonic Ca2+ fluctuations using PLCζ.
- To compare the effects of PLCζ-mediated activation with ionomycin/6-DMAP on sheep oocyte activation and early embryonic development.
Main Methods:
- Sheep MII oocytes were cultured and screened.
- Microinjection was used to introduce a pEGFP-N1-PLCζ plasmid for oocyte activation in the test group.
- The control group was activated using Ionomycin combined with 6-Dimethylaminopurine (6-DMAP).
Main Results:
- Both PLCζ and ionomycin/6-DMAP successfully induced parthenogenetic activation and early embryonic development in sheep oocytes.
- The ionomycin/6-DMAP group showed significantly higher cleavage rates (76.1% ± 0.7%) and blastocyst rates (21.1% ± 0.92%) compared to the PLCζ group (60.9% ± 19.4% and 16.2% ± 0.62%, respectively).
- PLCζ induced Ca2+ peaks at the cleavage and morula stages, with levels returning to normal by the morula stage, indicating stable regulation. The ionomycin/6-DMAP group exhibited higher and later Ca2+ peaks.
Conclusions:
- PLCζ gene expression promotes stable regulatory effects on Ca2+ fluctuations throughout early embryonic development stages.
- While ionomycin/6-DMAP yields higher developmental rates, PLCζ offers a distinct pattern of Ca2+ signaling potentially important for specific developmental processes.
- This study provides insights into the differential roles of PLCζ and chemical activators in regulating Ca2+ dynamics during early embryogenesis.
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