López-Úbeda Rebeca, Muñoz Marta, Vieira Luis, Hunter Ronald H F, Coy Pilar, Canovas Sebastian
Department of Physiology, Veterinary Faculty, University of Murcia, Campus de Espinardo, 30100, Murcia, Spain.
International Excellence Campus for Higher Education and Research (Campus Mare Nostrum), Murcia, Spain.
J Ovarian Res. 2016 Jul 22;9(1):44. doi: 10.1186/s13048-016-0252-9.
Oviducts participate in fertilization and early embryo development, and they are influenced by systemic and local circulation. Local functional interplay between ovary, oviduct and uterus is important, as deduced from the previously observed differences in hormone concentrations, presence of sperm, or patterns of motility in the oviduct after unilateral ovariectomy (UO). However, the consequences of unilateral ovariectomy on the oviductal transcriptome remain unexplored. In this study, we have investigated the consequences of UO in a higher animal model as the pig.
The influence of UO was analyzed on the number of ovulations on the contra ovary, which was increased, and on the ipsilateral oviductal transcriptome. Microarray analysis was performed and the results were validated by PCR. Differentially expressed genes (DEGs) with a fold change ≥ 2 and a false discovery rate of 10 % were analyzed by Ingenuity Pathway Analysis (IPA) to identify the main biofunctions affected by UO.
Data revealed two principal effects in the ipsilateral oviduct after UO: i) down-regulation of genes involved in the survival of sperm in the oviduct and early embryonic development, and ii) up-regulation of genes involved in others functions as protection against external agents and tumors.
Results showed that unilateral ovariectomy results in an increased number of ovulation points on the contra ovary and changes in the transcriptome of the ipsilateral oviduct with consequences on key biological process that could affect fertility output.
输卵管参与受精和早期胚胎发育,并受全身和局部循环的影响。从先前观察到的单侧卵巢切除术(UO)后激素浓度、精子存在情况或输卵管运动模式的差异可以推断,卵巢、输卵管和子宫之间的局部功能相互作用很重要。然而,单侧卵巢切除术对输卵管转录组的影响仍未得到探索。在本研究中,我们在猪这种高等动物模型中研究了单侧卵巢切除术的后果。
分析单侧卵巢切除术对另一侧卵巢排卵数量(该数量增加)以及同侧输卵管转录组的影响。进行了微阵列分析,并通过聚合酶链反应(PCR)对结果进行验证。通过 Ingenuity 通路分析(IPA)分析了变化倍数≥2 且错误发现率为 10%的差异表达基因(DEG),以确定受单侧卵巢切除术影响的主要生物功能。
数据显示单侧卵巢切除术后同侧输卵管有两个主要影响:i)参与输卵管内精子存活和早期胚胎发育的基因下调,ii)参与其他功能(如抵御外部因素和肿瘤)的基因上调。
结果表明,单侧卵巢切除术导致另一侧卵巢排卵点数量增加,同侧输卵管转录组发生变化,对可能影响生育能力的关键生物学过程产生影响。