Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5589558 | Gene | 2017 | 33 Pages |
Abstract
Under natural conditions, some embryos cannot implant successfully because of the dysfunction of receptive endometrium (RE). Thus, it is imperative for us to study the molecular mechanisms involved in the formation of the RE from pre-receptive endometrium (PE). In this study, the endometrium from gestational day 5 (D5, PE) and gestational day 15 (D15, RE) dairy goats were selected to systematically analyze the transcriptome using strand-specific Ribo-Zero RNA-Seq, > 120 million high-quality paired-end reads were generated and 47,616 transcripts were identified in the endometrium of dairy goats. A total of 810 mRNAs were differentially expressed genes (DEGs) between the RE and PE meeting the criteria of P-values < 0.05. Bioinformatics analysis of the DEGs revealed that a number of biological processes and pathways were potentially involved in the establishment of the RE, notably energy metabolism and amino acid metabolism. Furthermore, we speculated that CXCL14, IGFBP3, and LGALS15 potentially participated in the development of endometrium. What's more, putative SNPs, InDels and AS events were identified and analyzed in the endometrium. In a word, this resulting view of the transcriptome greatly enhances the comprehensive transcript catalog and uncovers the global trends in gene expression during the formation of receptive endometrium in dairy goats.
Keywords
TSSd15DEUEndometrium receptivityFPKMIGFBP3TTSDEGsInDelSNPsRNA-seqIgf1PCADairy goatsPrincipal component analysisTranscriptomeRNA-sequencingAlternative splicingKEGG یا Kyoto Encyclopedia of Genes and Genomes transcription start siteinsulin-like growth factor 1Gene ontologyInsulin-like growth factor binding protein 3Single nucleotide polymorphismsDifferentially expressed genes
Related Topics
Life Sciences
Biochemistry, Genetics and Molecular Biology
Genetics
Authors
Lei Zhang, XiaoRui Liu, JunZe Liu, Li Ma, ZhanQin Zhou, YuXuan Song, BinYun Cao,