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Lipidome signatures in early bovine embryo development

机译:牛早期胚胎发育中的脂质组特征

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Mammalian preimplantation embryonic development is a complex, conserved, and well orchestrated process involving dynamic molecular and structural changes. Understanding membrane lipid profile fluctuation during this crucial period is fundamental to address mechanisms governing embryogenesis. Therefore, the aim of the present work was to perform a comprehensive assessment of stage-specific lipid profiles during early bovine embryonic development and associate with the mRNA abundance of lipid metabolism related genes (ACSL3, ELOVL5, and ELOVL6) and with the amount of cytoplasmic lipid droplets. Immature oocytes were recovered from slaughterhouse-derived ovaries, two-cell embryos, and eight- to 16-cell embryos, morula, and blastocysts that were in vitro produced under different environmental conditions. Lipid droplets content and mRNA transcript levels for ACSL3, ELOVL5, and ELOVL6, monitored by lipid staining and quantitative polymerase chain reaction, respectively, increased at morula followed by a decrease at blastocyst stage. Relative mRNA abundance changes of ACSL3 were closely related to cytoplasmic lipid droplet accumulation. Characteristic dynamic changes of phospholipid profiles were observed during early embryo development and related to unsaturation level, acyl chain length, and class composition. ELOVL5 and ELOVL6 mRNA levels were suggestive of over expression of membrane phospholipids containing elongated fatty acids with 16, 18, and 20 carbons. In addition, putative biomarkers of key events of embryogenesis, embryo lipid accumulation, and elongation were identified. This study provides a comprehensive description of stage-specific lipidome signatures and proposes a mechanism to explain its potential relationship with the fluctuation of both cytoplasmic lipid droplets content and mRNA levels of lipid metabolism-related genes during early bovine embryo development (c) 2016 Elsevier Inc. All rights reserved.
机译:哺乳动物植入前的胚胎发育是一个复杂,保守且精心安排的过程,涉及动态分子和结构变化。了解在这个关键时期的膜脂质分布波动是解决控制胚胎发生的机制的基础。因此,本研究的目的是对牛早期胚胎发育期间特定阶段的脂质谱进行全面评估,并将其与脂质代谢相关基因(ACSL3,ELOVL5和ELOVL6)的mRNA丰度以及细胞质的数量相关联脂质滴。从屠宰场衍生的卵巢,两细胞胚胎以及在不同环境条件下体外产生的八到十六细胞胚胎,桑ula和胚泡中回收未成熟的卵母细胞。分别通过脂质染色和定量聚合酶链反应监测的ACSL3,ELOVL5和ELOVL6的脂质液滴含量和mRNA转录水平在桑ula壳处增加,然后在胚泡期降低。 ACSL3的相对mRNA丰度变化与细胞质脂质滴的积累密切相关。在早期胚胎发育期间观察到磷脂谱的特征动态变化,并与不饱和水平,酰基链长度和类组成有关。 ELOVL5和ELOVL6 mRNA水平提示膜磷脂的过度表达,该膜磷脂含16、18和20个碳原子的细长脂肪酸。此外,鉴定了关键的胚胎发生,胚胎脂质积累和伸长事件的生物标志物。这项研究提供了阶段特异性脂质组特征的全面描述,并提出了一种机制来解释其与早期牛胚胎发育期间细胞质脂质液滴含量和脂质代谢相关基因的mRNA水平波动的潜在关系(c)2016 Elsevier Inc 。 版权所有。

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