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Bovine sperm selection procedure prior to cryopreservation for improvement of post-thawed semen quality and fertility

机译:冷冻前的牛精子选择程序可改善解冻后精液的质量和繁殖力

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摘要

Background:The application of cryopreservation and artificial insemination technology have contributed to the advancement of animal reproduction.However,a substantial proportion of spermatozoa undergoes alterations and loses their fertility during cryopreservation,rendering the frozen-thawed semen impractical for routine use.Cryopreservation is known to reduce sperm lifespan and fertility.Variation in cryosurvival of spermatozoa from different sires and even with the individual sire is common in artificial insemination(AI)centers.Our goal is to improve post-thawed semen quality by optimization of cryopreservation technique through sperm selection prior to cryopreservation process.Results:Our strategy of sperm selection based on rheotaxis and thermotaxis(SSRT)on macrosale in a rotating fluid flow demonstrated the ability to maintain the original pre-freezing structural integrity,viability and biological function related to fertilization competence.This strategy has a positive effect on the cryosurvival and fertilizing abilities of spermatozoa as supported by the improvement on pregnancy rate of Japanese Black heifers and Holstein repeat breeders.This technique protected further sublethal damage to bovine spermatozoa(higher%cryosurvival than the control)and resulted in the improvement of DNA integrity.Prefreeze selected spermatozoa demonstrated slower and controlled capacitation than unprocessed control which is thought to be related to sperm longevity and consequently to appropriate timing during in vivo fertilization.Conclusions:These results provide solid evidence that improvement of post-thawed semen quality by SSRT method is beneficial in terms of cryosurvival,longevity of post-thawed sperm,and optimization of in vivo fertilization,embryo development and calving as supported by the favorable results of field fertility study.

著录项

  • 来源
    《畜牧与生物技术杂志(英文版)》 |2020年第1期|44-57|共14页
  • 作者单位

    Advanced Manufacturing Research Institute National Institute of Advanced Industrial Science and Technology (AIST) 807-1 Shuku-machi Tosu Saga841-0052 Japan;

    Saga Prefectural Livestock Experiment Station 23242-2 Yamauchi-machi Miyano Takeo Saga 849-2305 Japan;

    Morinaga Dairy Service Co. Ltd. 1-159 Toyoharaotsu Nasu-gun Nasu-machi Tochigi 329-3224 Japan;

    National Livestock Breeding Center (NLBC) 1 Odakurahara Odakura Nishigo-mura Nishishirakawa-gun Fukushima 961-8511 Japan;

    Institute of Livestock and Grassland Science National Agriculture and Food Research Organization (NARO) Ikenodai 2 Tsukuba Ibaraki 305-0901 Japan;

    Faculty of Agriculture Saga University 1 Honjo-machi Saga 840-8502 Japan;

    Ishikawa Prefectural University 1-308 Suematsu Nonoichi-shi Ishikawa 921-8836 Japan;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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