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首页> 外文期刊>Theriogenology >Alteration of energy metabolism gene expression in cumulus cells affects oocyte maturation via MOS-mitogen-activated protein kinase pathway in dairy cows with an unfavorable 'Fertil-' haplotype of one female fertility quantitative trait locus
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Alteration of energy metabolism gene expression in cumulus cells affects oocyte maturation via MOS-mitogen-activated protein kinase pathway in dairy cows with an unfavorable 'Fertil-' haplotype of one female fertility quantitative trait locus

机译:丘陵细胞能量代谢基因表达的变化通过MOS-促分裂原激活的蛋白激酶途径影响奶牛的成熟,该母牛具有一个雌性育性数量性状位点的“ Fertil-”单倍型

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摘要

Prim'Holstein heifers selected for the "Fertil-" homozygous haplotype of QTL-Female-Fert ility-BTA3 showed a greater rate of early pregnancy failure and slower embryo development after IVM suggesting lower oocyte quality than those selected for "Fertile+". We aimed to ascertain intrafollicular factors related to lower oocyte quality in "Fertil-" cows. Analysis of individual oocytes showed meiotic progression delay in "Fertil-" compared with "Fertil+" dairy cows after in vivo maturation and IVM (P < 0.05). Expression of several genes localized to QTL-F-Fert-BTA3 or related to meiosis and mitogen-activated protein kinase pathway was analyzed in individual metaphase-II oocytes using reverse transcription-realtime polymerase chain reaction. Energy metabolism, apoptosis, extracellular matrix, and QTL-F-Fert-BTA3 genes were analyzed in surrounding cumulus cells (CC). In vivo, a significant decrease in prostaglandin synthase PTGES1 and PTGS2 expression coupled with lower PTGS2 protein abundance in CC and reduced expression of MOS in enclosed metaphase-II oocytes from "Fertil-" cows was observed. IVM strongly deregulated gene expression in CC and in oocytes compared with in vivo; nevertheless, differential expression of several genes including PEX19, NAMPT and MOS was observed between the two haplotypes. During IVM, PTGS2 activity inhibitor NS398 (50 mu M) led to lower expression of fatty acid synthase (FASN) in CC and of MOS in treated metaphase-II oocytes. Using immunofluorescence, MOS protein was localized to a midbody-like contractile ring separating the polar body from the ooplasm, suggesting a role in the terminal stage of oocyte maturation. Our results suggest that factors involved in prostaglandin synthesis and lipid metabolism in CC could impair oocyte maturation, and might be involved in the reduced fertility of "Fertil-" cows
机译:QVM-Fertile-BTA3“ Fertil-”纯合单倍型的初选荷斯坦小母牛在IVM提示其卵母细胞质量较“ Fertile +”低时,显示出较高的早期妊娠失败率和较慢的胚胎发育。我们的目的是确定与“ Fertil-”奶牛卵母细胞质量降低有关的卵泡内因素。体内成熟和IVM后,与“ Fertil +”奶牛相比,对单个卵母细胞的分析显示“ Fertil-”的减数分裂进程延迟(P <0.05)。使用逆转录实时聚合酶链反应在单个中期II卵母细胞中分析了位于QTL-F-Fert-BTA3或与减数分裂和有丝分裂原激活的蛋白激酶途径相关的几种基因的表达。在周围的卵丘细胞(CC)中分析了能量代谢,细胞凋亡,细胞外基质和QTL-F-Fert-BTA3基因。在体内,观察到CC的前列腺素合酶PTGES1和PTGS2表达显着降低,而CC中较低的PTGS2蛋白丰度,而封闭的来自“ Fertil-”母牛的II期中期卵母细胞中的MOS表达降低。与体内相比,IVM强烈抑制了CC和卵母细胞中的基因表达。然而,在两个单倍型之间观察到包括PEX19,NAMPT和MOS在内的几个基因的差异表达。在IVM期间,PTGS2活性抑制剂NS398(50μM)导致经处理的II期卵母细胞中CC和MOS中脂肪酸合酶(FASN)的表达降低。使用免疫荧光,MOS蛋白被定位在一个中体样的收缩环上,该环将极体与卵质分开,表明在卵母细胞成熟的末期起作用。我们的结果表明,参与CC中前列腺素合成和脂质代谢的因素可能会损害卵母细胞的成熟,并可能与“ Fertil-”奶牛的生育力下降有关。

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