Animal Genomics and Bioinformatics Division, National Institute of Animal Science, RDA, Wanju, 55365, Republic of Korea.
Animal Genetics and Breeding Division, National Institute of Animal Science, RDA, Wanju, 55365, Republic of Korea.
Funct Integr Genomics. 2020 Jan;20(1):117-131. doi: 10.1007/s10142-019-00703-1. Epub 2019 Aug 8.
The estrous cycle is a complex process regulated by several hormones. To understand the dynamic changes in gene expression that takes place in the swine endometrium during the estrous cycle relative to the day of estrus onset, we performed RNA-sequencing analysis on days 0, 3, 6, 9, 12, 15, and 18, resulting in the identification of 4495 differentially expressed genes (DEGs; Q ≤ 0.05 and |logFC| ≥ 1) at various phases in the estrous cycle. These DEGs were integrated into multiple gene co-expression networks based on different fold changes and correlation coefficient (R) thresholds and a suitable network, which included 899 genes (|log2FC| ≥ 2 and R ≥ 0.99), was identified for downstream analyses based on the biological relevance of the Gene Ontology (GO) terms enriched. The genes in this network were partitioned into 6 clusters based on the expression pattern. Several GO terms including cell cycle, apoptosis, hormone signaling, and lipid biosynthetic process were found to be enriched. Furthermore, we found 15 significant KEGG pathways, including cell adhesion molecules, cytokine-cytokine receptor signaling, steroid biosynthesis, and estrogen signaling pathways. We identified several genes and GO terms to be stage-specific. Moreover, the identified genes and pathways extend our understanding of porcine endometrial regulation during estrous cycle and will serve as a good resource for future studies.
发情周期是一个由多种激素调节的复杂过程。为了了解发情周期中猪子宫内膜基因表达的动态变化与发情起始日的关系,我们在发情周期的第 0、3、6、9、12、15 和 18 天进行了 RNA 测序分析,鉴定了 4495 个差异表达基因(DEG;Q≤0.05 和 |logFC|≥1)。这些 DEG 基于不同的倍数变化和相关系数(R)阈值被整合到多个基因共表达网络中,并根据基因本体论(GO)术语富集的生物学相关性选择了一个合适的网络,该网络包含 899 个基因(|log2FC|≥2 和 R≥0.99),用于下游分析。该网络中的基因根据表达模式分为 6 个簇。几个 GO 术语,包括细胞周期、细胞凋亡、激素信号和脂质生物合成过程,被发现是富集的。此外,我们还发现了 15 个显著的 KEGG 途径,包括细胞黏附分子、细胞因子-细胞因子受体信号、甾体生物合成和雌激素信号途径。我们鉴定了几个特定阶段的基因和 GO 术语。此外,鉴定出的基因和途径扩展了我们对发情周期中猪子宫内膜调控的理解,将为未来的研究提供良好的资源。