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Analysis of Semen Proteomic Differences Among Three Genotypes of FecB Rams in Duolang Sheep
Yanlong Zhang1, Zhigang Niu2, Jiabao Yan1
1College of Animal Science and Technology, Xinjiang Agricultural University, Urumqi 830052, China.
Backgrouds:
To explore the differences in semen proteins among rams of three FecB genotypes (++, B+, and BB) in Duolang sheep.
Methods:
This study employed DIA quantitative proteomics technology to identify semen proteins from four wild-type (Group A), two heterozygous (Group B), and three homozygous (Group C) rams.
Results:
Compared with the ++ genotype, the differentially expressed proteins (DEPs) in the semen of B+ genotype rams are significantly involved in the biological process of innate immune response and are significantly enriched in the oxidative phosphorylation pathway in KEGG analysis. From a biological perspective, the innate immune response may affect the immune health of Duolang sheep, while oxidative phosphorylation influences energy metabolism, which in turn impacts reproductive performance. Compared with the BB genotype, the DEPs in the semen of B+ genotype rams participate in biological processes such as protein phosphorylation and protein hydrolysis during cellular protein catabolism. These DEPs are also significantly enriched in pathways related to Parkinson's disease and non-alcoholic fatty liver disease in KEGG analysis. These differences may affect the cellular metabolism and physiological functions of Duolang sheep, thereby being associated with their reproductive performance. Compared with the ++ genotype, the DEPs in the semen of BB genotype rams exhibit differences in molecular function, cellular component, KEGG pathway, domain function, and subcellular localization. For instance, they are involved in threonine-type endopeptidase activity and associated with pathways like Alzheimer's disease and retrograde endocannabinoid signaling.
Conclusions:
These differences may have potential impacts on the physiology and reproductive performance of Duolang sheep.
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