ABSTRACT A mathematical model of the interaction between bovine blastocyst developmental stage and progesterone-stimulated uterine factors on differential embryonic development observed on Day 15 of gestation
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A mathematical model of the interaction between bovine blastocyst developmental stage and progesterone-stimulated uterine factors on differential embryonic development observed on Day 15 of gestation

机译:妊娠第15天观察到的牛胚泡发育阶段与孕酮刺激的子宫因子相互作用对胚胎发育差异的数学模型

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ABSTRACTA complex interaction between the developing bovine embryo and the growth potential of the uterine milieu it inhabits results in an embryo capable of developing past the maternal recognition stage and on to a successful pregnancy. Previously, we observed variation in the lengths of embryos recovered 8 d after bulk transfer of Day 7 in vitro-produced (IVP) blastocysts into the same uterus. Potential causes of the differential embryonic growth were examined and modeled using 2 rounds of bulk (n = 4–6) IVP transfers and recovery of these embryos 8 d later. Morphological and gene expression measurements of the embryos were determined and the progesterone concentration of the cows was measured throughout the reproductive cycle as a reflection of the status of the uterine environment. These data were used to develop and evaluate a model that describes the interaction between the uterine environment and the growth rate of the developing embryo. Expression of 6 trophectoderm genes (IFNT,TKDP1,PAG11,PTGS2,DKK1, andPDPN) was correlated with conceptus length. The model determined that if the embryo develops to blastocyst stage, the uterine environment, driven by progesterone, is a more important component than blastocyst size in the stimulation of embryonic growth rate to ensure adequate interferon tau (IFNT) for pregnancy recognition. We detected an effect of Day 7 progesterone on the expression of all 6 genes, embryonic disc size, and trophectoderm length on Day 15. We also found effects of embryo transfer size on trophectoderm length and expression ofIFNTandPAG11on Day 15. Lower energy balance over the period from transfer to recovery was associated with reduced embryo growth to Day 15, and this effect was independent of progesterone. Energy balance also affected expression ofPDPNandTKDP1on Day 15. We observed an effect of energy balance from transfer to recovery on embryo survival in cows with partial embryo losses, where embryo factors dominate embryo survival, with cows with greater energy balance having lower embryo losses. This effect was independent of energy balance 40 d before transfer and suggests that energy balance has direct, immediate effects on the embryo and maternal environment during this period. Furthermore, energy balance effects on embryo survival in cows with partial embryo losses were largely mediated by expression ofTKDP1,PAG11, andPDPN. These results provide candidate signaling pathways for the effect of progesterone and energy balance on embryo growth and survival.
机译: 抽象 发育中的牛胚胎与其所居住的子宫环境之间潜在的复杂相互作用,导致胚胎能够发育超过母体识别阶段并成功获得成功怀孕。以前,我们观察到第7天体外培养的(IVP)胚泡大量转移到同一子宫后8 d恢复的胚胎长度发生变化。使用2轮散装(n = 4–6)IVP转移和8天后这些胚胎的恢复,检查并模拟了胚胎发育差异的潜在原因。测定胚胎的形态和基因表达,并在整个生殖周期中测量母牛的孕酮浓度,以反映子宫环境的状况。这些数据被用来开发和评估一个模型,该模型描述子宫环境和发育中的胚胎的生长速率之间的相互作用。 6个滋养外胚层基因( IFNT TKDP1 PAG11 的表达PTGS2 DKK1 PDPN )与概念长度相关。该模型确定,如果胚胎发育到胚泡期,那么在刺激胚芽生长速度以确保有足够的干扰素tau(IFNτ)来识别怀孕方面,孕酮驱动的子宫环境比胚泡大小更重要。我们在第15天检测到第7天的孕酮对所有6个基因的表达,胚盘大小和滋养层长度的影响。我们还发现了胚胎移植大小对滋养层长度和IFNτ PAG11 从转移到恢复的这段时间内较低的能量平衡与胚胎生长到第15天的减少有关,并且这种作用与孕酮无关。在第15天,能量平衡还影响 PDPN TKDP1 的表达。我们观察到能量转移从转移到恢复对胚胎存活的影响。具有部分胚胎损失的母牛,其中胚胎因素主导着胚胎的存活,而能量平衡更大的母牛的胚胎损失则更低。此效应与转移前40 d的能量平衡无关,表明在此期间能量平衡对胚胎和母体环境具有直接,直接的影响。此外,能量平衡对部分丧失胚胎的母牛胚胎存活的影响主要由 TKDP1 PAG11 PDPN 。这些结果为孕酮和能量平衡对胚胎生长和存活的影响提供了候选信号通路。

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