Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Integrated Metabolomic and Transcriptomic Analyses Reveal that Glutamine Promotes Chicken PGCLC Specification Potentially through α-Ketoglutarate

作者:Qingqing Geng, Lei Zhang, Zhe Wang, Kunyu Liang, Fufu Cheng, Jing Chen, Yifan Xi, Junqiang Hou, Xinyue Jiao, Farooq Mazhar, Sheng Cui, Yani Zhang · 发表于:Animal Bioscience · 年份:2026 · DOI:10.5713/ab.260260 · 研究领域:Cancer, Hypoxia, and Metabolism、Diet and metabolism studies、Biochemical Acid Research Studies

Objective: Primordial germ cell (PGC) is essential for germline transmission and genetic resource conservation in poultry. Although several genes and signaling pathways involved in PGC specification have been identified, the upstream regulatory mechanisms-particularly metabolic regulation and epigenetic modification-remain poorly understood. This study aimed to characterize the metabolic landscape underlying chicken PGC formation and identify key metabolic regulators involved in BMP4-induced primordial germ cell‑like cell (PGCLC) specification in vitro. Methods: Untargeted metabolomics and transcriptomics were performed to compare metabolic profiles and gene expression patterns between chicken embryonic stem cell (ESC) and PGC. Differential metabolites and metabolism-related genes were identified through integrated multi-omics analysis. Functional experiments, including glutamine deprivation and metabolite supplementation, were conducted to verify the role of glutamine metabolism in PGCLC specification. Results: A total of 194 differentially expressed metabolites (DEMs) were identified, mainly enriched in amino acid, nucleotide, energy metabolism, and antioxidant pathways. Compared with ESC, PGC contained higher levels of amino acids, peptides, and benzoic acid derivatives, whereas carbohydrates were more abundant in ESC. Transcriptomic analysis of 14,405 annotated genes revealed similar metabolic gene expression patterns in male and female samples. Integrated analysis indica...