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卵泡刺激素受体的多态性并不影响肉牛小母牛的繁殖性能或体外胚胎生产。

Polymorphism of the follicle stimulating hormone receptor does not impact reproductive performance or in-vitro embryo production in beef heifers.

机构信息

USDA, Agricultural Research Service, U.S. Meat Animal Research Center, Clay Center, NE, 68933-0166, USA.

USDA, Agricultural Research Service, U.S. Meat Animal Research Center, Clay Center, NE, 68933-0166, USA.

出版信息

Theriogenology. 2023 Jan 1;195:131-137. doi: 10.1016/j.theriogenology.2022.10.025. Epub 2022 Oct 22.

Abstract

Assisted reproductive technologies are used to propagate desirable genetics in a shortened timeframe. Selected females undergo ovarian stimulation with the use of follicle stimulating hormone (FSH) to increase embryo recovery for subsequent transfer programs. The FSH receptor (FSHR) c.337 C > G variant was reported to have a reduction in viable embryo numbers in an ovarian stimulation protocol. We, therefore, hypothesized that FSHR c.337 C > G would result in reduced in-vitro blastocyst development. Beef heifers were genotyped and selected based on the c.337 C > G FSHR genotype (CC, CG, GG; n = 15-16/genotype). Estrus was synchronized with a Select Synch protocol and heifers were slaughtered 5 days after induced ovulation. Anterior pituitaries, serum and reproductive tracts were collected at slaughter for analysis. Cumulus oocyte complexes (COCs) were collected and pooled within genotype for in-vitro fertilization (IVF) and subsequent blastocyst development. No differences were observed in carcass weights, anterior pituitary weights, serum progesterone, corpus lutea weight, surface follicle counts, histological follicle counts or follicular fluid estradiol concentration (P > 0.1) due to FSHR genotype. Differences were observed for ovulation rates in the GG FSHR genotype group (P < 0.01). However, cleavage and blastocyst rates were not affected due to FSHR genotype (P > 0.1), following standard IVF protocols. The FSHR variant does not influence antral follicle counts, estradiol production, or in-vitro blastocyst development in beef heifers. The GG FSHR genotype had an increased ovulation rate, which may indicate a greater potential for twinning, but research with a larger population is warranted to support this hypothesis.

摘要

辅助生殖技术用于在缩短的时间内繁殖理想的遗传物质。选择的女性接受促卵泡激素(FSH)的卵巢刺激,以增加胚胎回收,用于随后的转移计划。据报道,FSH 受体(FSHR)c.337C>G 变体在卵巢刺激方案中导致可育胚胎数量减少。因此,我们假设 FSHR c.337C>G 会导致体外囊胚发育减少。根据 c.337C>G FSHR 基因型(CC、CG、GG;n=15-16/基因型)对肉牛小母牛进行基因分型和选择。用 Select Synch 方案同步发情,诱导排卵后 5 天屠宰小母牛。屠宰时收集垂体前叶、血清和生殖道进行分析。在体外受精(IVF)和随后的囊胚发育过程中,收集和汇集同一基因型的卵丘卵母细胞复合物(COC)。由于 FSHR 基因型,牛的胴体重、垂体前叶重量、血清孕酮、黄体重量、表面卵泡计数、组织学卵泡计数或卵泡液雌二醇浓度没有差异(P>0.1)。由于 FSHR 基因型,GG FSHR 基因型组的排卵率存在差异(P<0.01)。然而,根据标准 IVF 方案,由于 FSHR 基因型,胚胎的分裂和囊胚率不受影响(P>0.1)。FSHR 变体不会影响肉牛的腔前卵泡计数、雌二醇产生或体外囊胚发育。GG FSHR 基因型的排卵率增加,这可能表明双胞胎的潜力更大,但需要更大的人群研究来支持这一假设。

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