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Sperm hyaluronidase is critical to mammals'fertilization for its ability to disperse cumulus-oocyte complex layer 被引量:3
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作者 Dong-Won Seol Sang Hoon Joo +6 位作者 Young-Hyun Kim Bong-Seok Song Bo-Woong Sim Sun-Uk Kim Soojin Park Gabbine Wee Ekyune Kim 《Asian Journal of Andrology》 SCIE CAS CSCD 2022年第4期411-415,共5页
Glycosylphosphatidylinositol-anchored sperm hyaluronidases have long been believed to assist in sperm penetration through the cumulus-oocyte complex(COC);however,their role in mammalian fertilization remains unclear.P... Glycosylphosphatidylinositol-anchored sperm hyaluronidases have long been believed to assist in sperm penetration through the cumulus-oocyte complex(COC);however,their role in mammalian fertilization remains unclear.Previously,we have shown that hyaluronidase 5(Hyal5)/Hyal7 double-knockout(dKO)mice produce significantly fewer offspring than their wild-type(WT)counterparts because of defective COC dispersal.Male infertility is mainly caused by a low sperm count.It can be further exacerbated by the deficiency of sperm hyaluronidase,which disperses the cumulus cells of the outer layer of the COC.In the current study,we evaluated the effects of a low count of Hyal-deficient sperm and conditions of ovulated oocytes on the fertilization rate using a mouse model.Our results demonstrated that a low sperm count further decreases the in vitro fertilization(IVF)rate of Hyal-deficient dKO spermatozoa.In addition,the dKO spermatozoa resulted in a fertilization rate of 12.5%upon fertilizing COCs with a thick cumulus layer,whereas the IVF rate was comparable to that of WT spermatozoa when oocytes with a thin or no cumulus layer were fertilized.Finally,we proved that the IVF rate of dKO spermatozoa could be recovered by adding rat spermatozoa as a source of sperm hyal.Our results suggest that a deficiency of proteins involved in fertilization,such as sperm hyal,has a vital role in fertilization. 展开更多
关键词 HYAL5 HYAL7 cumulus-oocyte complex FERTILIZATION infertility sperm hyaluronidase
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Higher Tolerance of Min Pigs Under Cold Stress:An Assessment from Reproduction Perspective
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作者 Chen Wen-gui Guo Zhen-hua +7 位作者 Liu Di Ma Hong Yang Yun-chun Islam MdSaiful Lv Lei Wang Wen-tao Zhang Dong-jie Peng Fu-gang 《Journal of Northeast Agricultural University(English Edition)》 CAS 2022年第3期77-84,共8页
Raising Min pigs(MPs)in northern China is challenging,because of harsh environmental conditions in winter.There is a hypothesis that MPs can tolerate cold stress better than Large White pigs(LWPs)and their oocyte comp... Raising Min pigs(MPs)in northern China is challenging,because of harsh environmental conditions in winter.There is a hypothesis that MPs can tolerate cold stress better than Large White pigs(LWPs)and their oocyte competence is particularly protected.Over a period of 3 years,multiple cohorts of MPs and LWPs under different environmental conditions were studied in this paper.Follistatin(FST)serum level was used as a marker for swine oocyte competence.Oocytes were collected from the swine and their maturation rate,cleavage rate and blastocyst rate were measured.Lastly,mRNA expression in ovary and longissimus dorsi for the genes FST,luteinizing hormone receptor(LHR)and cold-inducible RNA-binding protein(CIRP)was measured.Under cold stress,serum follistatin concentrations of both LWPs and MPs were markedly increased,and they were more in LWPs than in MPs.However,oocyte competence was found to be unaffected by cold stress in MPs.It was found that in a separate group of LWPs,oocyte competence was lower in samples collected in winter than that in other seasons.Interestingly,follistatin levels in the follicular fluid of MPs showed no change with cold stress,and serum follistatin levels were increased in sows.Gene expression analysis showed a significant reduction in FST,LHR and CIRP expressions under cold stress in longissimus dorsi,but not in the ovaries.It was found that MPs were better able to maintain oocyte competence under cold stress,which might be due to improved regulation of follistatin in follicular fluid,and MPs appeared likely an adaptation to the harsh conditions that they faced under domestication in northern China. 展开更多
关键词 cumulus-oocyte complexes FOLLISTATIN Large White pig Min pig SEASON
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