Department of Biomedical and Clinical Sciences, Faculty of Medicine and Health Sciences, Linköping University, SE-58185, Linköping, Sweden.
Department of Physics, Chemistry and Biology, Faculty of Science and Engineering; Linköping University, SE-58183, Linköping, Sweden.
Sci Rep. 2020 Mar 19;10(1):5061. doi: 10.1038/s41598-020-60810-z.
Semen modifies the expression of genes related to immune function along the porcine female internal genital tract. Whether other pathways are induced by the deposition of spermatozoa and/or seminal plasma (SP), is yet undocumented. Here, to determine their relative impact on the uterine and tubal transcriptomes, microarray analyses were performed on the endocervix, endometrium and endosalpinx collected from pre-ovulatory sows 24 h after either mating or artificial insemination (AI) with specific ejaculate fractions containing spermatozoa or sperm-free SP. After enrichment analysis, we found an overrepresentation of genes and pathways associated with sperm transport and binding, oxidative stress and cell-to-cell recognition, such as PI3K-Akt, FoxO signaling, glycosaminoglycan biosynthesis and cAMP-related transcripts, among others. Although semen (either after mating or AI) seemed to have the highest impact along the entire genital tract, our results demonstrate that the SP itself also modifies the transcriptome. The detected modifications of the molecular profiles of the pre/peri-ovulatory endometrium and endosalpinx suggest an interplay for the survival, transport and binding of spermatozoa through, for instance the up-regulation of the Estrogen signaling pathway associated with attachment and release from the oviductal reservoir.
精液通过改变与免疫功能相关的基因表达来修饰母猪生殖道。然而,目前还没有文献报道精子和/或精浆的沉积是否会诱导其他途径。在这里,为了确定它们对子宫和输卵管转录组的相对影响,我们对发情前母猪排卵后 24 小时进行交配或人工授精(AI)后收集的子宫颈内口、子宫内膜和输卵管内口进行了微阵列分析,这些 AI 分别使用含有精子或不含精子的精浆的特定精液部分。经过富集分析,我们发现了与精子运输和结合、氧化应激和细胞间识别相关的基因和途径的过度表达,例如 PI3K-Akt、FoxO 信号、糖胺聚糖生物合成和 cAMP 相关转录本等。尽管精液(无论是交配后还是 AI 后)似乎对整个生殖道都有最高的影响,但我们的结果表明,精浆本身也会改变转录组。对排卵前/围排卵期子宫内膜和输卵管的分子谱的检测结果表明,精子的存活、运输和结合存在相互作用,例如与附着和从输卵管库释放相关的雌激素信号通路的上调。