Cervical artificial insemination with frozen-thawed semen in sheep: the secret is in the cervix of Norwegian ewe breeds†.

IF 3 2区 生物学 Q2 REPRODUCTIVE BIOLOGY Biology of Reproduction Pub Date : 2026-02-18 DOI:10.1093/biolre/ioaf084
Laura Abril-Parreño, Sean Fair
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Abstract

In sheep, cervical artificial insemination (AI) of frozen-thawed semen is not practiced worldwide due to the unacceptably low pregnancy rates achieved (typically <30%). The exception to this is in Norway where farmers perform shot-in-the-dark vaginal AI with frozen-thawed semen and achieve pregnancy rates over 60%. Research in Ireland has shown that this is due to the breed of the ewe used in Norway and specifically the ability of sperm to traverse the cervix in some ewe breeds (such as those in Norway) but not others. This review summarizes the published studies performed over the last two decades, which have focused on characterizing the biological differences in the cervix of ewe breeds of divergent fertility. It not only discusses how this unique ewe breed effect can be used to develop our understanding of how frozen-thawed semen can cross the ovine cervix but also provides new in vivo opportunities through the addition of specific biomolecules that will protect sperm, thus improving the success of cervical AI using frozen-thawed semen in sheep.

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用冷冻解冻精液对绵羊进行宫颈人工授精;秘密就在挪威母羊品种的宫颈中。
在绵羊方面,由于冷冻解冻精液的受孕率低得令人难以接受(通常为 0.5%),全世界都没有采用宫颈人工授精(AI)。
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来源期刊
Biology of Reproduction
Biology of Reproduction 生物-生殖生物学
CiteScore
6.30
自引率
5.60%
发文量
214
审稿时长
1 months
期刊介绍: Biology of Reproduction (BOR) is the official journal of the Society for the Study of Reproduction and publishes original research on a broad range of topics in the field of reproductive biology, as well as reviews on topics of current importance or controversy. BOR is consistently one of the most highly cited journals publishing original research in the field of reproductive biology.
期刊最新文献
Identification of ovine proteins targeted by pregnancy-induced ISGylation and inference on function I: Endometrium†. Maternal Med12 safeguards trophoblast pluripotency and placental development†. Reduced fertility induced by MASLD in female mice is improved by Senolytic treatment. Restoration of Spermatogenesis is Dependent on Activation of a SPRY4-ERK Checkpoint Following Germline Stem Cell Damage. Synaptotagmin 5, not synaptotagmin 1, is required for cortical granule exocytosis at fertilization of mouse eggs†.
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