4.4 Article

Expression profile analysis of sheep ovary after superovulation and estrus synchronisation treatment

Journal

VETERINARY MEDICINE AND SCIENCE
Volume 8, Issue 3, Pages 1276-1287

Publisher

WILEY
DOI: 10.1002/vms3.783

Keywords

estrus synchronisation; ovary; sheep; superovulation; transcriptome

Funding

  1. National Natural Science Foundation of China (NSFC) [31640076]

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Superovulation and estrus synchronisation treatment in sheep affected the levels of serum FSH and LH as well as the number of dominant follicles. Analysis of differentially expressed genes revealed their involvement in regulating follicular development, cell cycle, material synthesis, and energy metabolism. The findings provide a foundation for further research on improving the ovulation rate and birth rate of livestock using breeding techniques.
Superovulation is a widely used reproductive technique in livestock production, but the mechanism of sheep's superovulation is not yet clear. Here, a method of superovulation and estrus synchronisation was used to treat female Duolang sheep. After treatment, there were significant differences in serum FSH and LH levels and the number of dominant follicles between the two groups of sheep. We identified a total of 5021 differentially expressed genes (11, 13 and 15 days after treatment) and performed RT-qPCR analysis to identify several mRNA expression levels. GO and KEGG enrichment analysis revealed that differentially expressed genes were involved in the regulation of signalling pathways of follicular development, cell cycle, material synthesis, energy metabolism, such as COL3A1, RPS8, ACTA2, RPL7RPS6 and TNFAIP6 may play a key role in regulating the development of follicles. Our results show a comprehensive expression profile after superovulation and estrus synchronisation treatment. We provide the basis for further research on breeding techniques to improve the ovulation rate and birth rate of livestock.

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