Cytoplasmic granules in bovine oocytes do not affect embryonic or fetal development.

IF 1.5 4区 生物学 Q4 CELL BIOLOGY Zygote Pub Date : 2024-02-01 Epub Date: 2023-12-04 DOI:10.1017/S0967199423000576
Paola Maria da Silva Rosa, Pedro Henrique Evagelista Guedes, Joaquim Mansano Garcia, Clara Slade Oliveira
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Abstract

Oocyte cytoplasmic evaluation is based on homogeneity and granular appearance. Our study investigated if a granular cytoplasm, highly heterogeneous, would affect oocyte competence in bovine. In two experiments, bovine cumulus-oocyte complexes (COCs) with homogeneous cytoplasm (control, CC) and granulated cytoplasm (granular, GC) were selected from a regular pool of COCs. Experiment 1 was performed with slaughterhouse ovaries, and Experiment 2 was carried out in Girolando COCs obtained from ovum pick-up. Granular oocytes had higher caspase 3 levels (66.17 ± 11.61 vs 172.08 ± 16.95, P < 0.01) and similar GAP junction activity (5.64 ± 0.45 vs 6.29 ± 0.29). ZAR1 relative mRNA amount was lower in granular oocytes (178.27 ± 151.63 vs 0.89 ± 0.89, P = 0.01) and no effect was detected for MATER, PPP2R1A, ENY2, IGF2R, and BMP15 genes. Despite molecular differences, no detrimental effect was detected on oocyte competence in GC oocytes. Cleavage (Experiment 1: 59.52 ± 7.21% vs 59.79 ± 6.10% and Experiment 2: 68.88 ± 4.82 vs 74.41 ± 5.89%) and blastocyst (Experiment 1: 29.28 ± 4.14% vs 23.15 ± 2.96% and Experiment 2: 21.11 ± 3.28% vs 21.02 ± 6.08%) rates were similar between CC and GC (Experiments 1 and 2, respectively). Post-transfer embryo development revealed that pregnancy (CC: 24.27 ± 9.70% vs GC: 26.31 ± 7.23%) and calving (23.68% vs 33.33%) rates and fetal growth were not affected by the presence of cytoplasmic granules. Our results demonstrated that oocytes with granular cytoplasm present equivalent efficiency for IVF and calf production compared with homogenous cytoplasm oocytes. This could be observed through similar cleavage, blastocyst rates, and fetal growth development. In addition to differences in oocyte gene expression related to oocyte quality, it seems not to affect oocyte developmental competence.

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牛卵母细胞内的细胞质颗粒不影响胚胎或胎儿的发育。
卵母细胞细胞质评价是基于均匀性和颗粒状外观。本研究探讨了高度异质性的颗粒状细胞质是否会影响牛卵母细胞的能力。在两个实验中,从常规的COCs池中选择具有均匀细胞质(对照,CC)和粒状细胞质(颗粒,GC)的牛卵母细胞复合物(COCs)。试验1以屠宰场子房为试验材料,试验2以采卵获得的Girolando COCs为试验材料。颗粒状卵母细胞的caspase 3水平较高(66.17±11.61 vs 172.08±16.95,P 0.01), GAP连接活性相似(5.64±0.45 vs 6.29±0.29)。颗粒状卵母细胞中ZAR1相对mRNA量较低(178.27±151.63 vs 0.89±0.89,P = 0.01),对MATER、PPP2R1A、ENY2、IGF2R和BMP15基因无影响。尽管存在分子差异,但未检测到GC卵母细胞对卵母细胞能力的不利影响。CC和GC的卵裂率(实验1:59.52±7.21% vs 59.79±6.10%,实验2:68.88±4.82 vs 74.41±5.89%)和囊胚率(实验1:29.28±4.14% vs 23.15±2.96%,实验2:21.11±3.28% vs 21.02±6.08%)相似(实验1和2)。移植后胚胎发育结果显示,细胞质颗粒的存在对妊娠率(CC: 24.27±9.70% vs GC: 26.31±7.23%)、产羔率(23.68% vs 33.33%)和胎儿生长均无影响。我们的研究结果表明,颗粒状细胞质的卵母细胞与均匀细胞质的卵母细胞相比,在试管婴儿和犊牛生产中具有同等的效率。这可以通过相似的卵裂、囊胚率和胎儿生长发育来观察。除了与卵母细胞质量相关的卵母细胞基因表达差异外,似乎不影响卵母细胞的发育能力。
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来源期刊
Zygote
Zygote 生物-发育生物学
CiteScore
1.70
自引率
5.90%
发文量
117
审稿时长
6-12 weeks
期刊介绍: An international journal dedicated to the rapid publication of original research in early embryology, Zygote covers interdisciplinary studies on gametogenesis through fertilization to gastrulation in animals and humans. The scope has been expanded to include clinical papers, molecular and developmental genetics. The editors will favour work describing fundamental processes in the cellular and molecular mechanisms of animal development, and, in particular, the identification of unifying principles in biology. Nonetheless, new technologies, review articles, debates and letters will become a prominent feature.
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