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Comparative metabolic pathway analysis with special reference to nucleotide metabolism-related genes in chicken primordial germ cells

机译:鸡原始生殖细胞中核苷酸代谢相关基因的比较代谢途径分析

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Metabolism provides energy and nutrients required for the cellular growth, maintenance, and reproduction. When compared with genomics and proteomics, metabolism studies provide novel findings in terms of cellular functions. In this study, we examined significant and differentially expressed genes in primordial germ cells (PGCs), gonadal stromal cells, and chicken embryonic fibroblasts compared with blastoderms using microarray. All upregulated genes (1001, 1118, and 974, respectively) and downregulated genes (504, 627, and 1317, respectively) in three test samples were categorized into functional groups according to gene ontology. Then all selected genes were tested to examine their involvement in metabolic pathways through Kyoto Encyclopedia of Genes and Genomes pathway database using overrepresentation analysis. In our results, most of the upregulated and downregulated genes were involved in at least one subcategory of seven major metabolic pathways. The main objective of this study is to compare the PGC expressed genes and their metabolic pathways with blastoderms, gonadal stromal cells, and chicken embryonic fibroblasts. Among the genes involved in metabolic pathways, a higher number of PGC upregulated genes were identified in retinol metabolism, and a higher number of PGC downregulated genes were identified in sphingolipid metabolism. In terms of the fold change, acyl-CoA synthetase medium-chain family member 3 (ACSM3), which is involved in butanoate metabolism, and N-acetyltransferase, pineal gland isozyme NAT-10 (PNAT10), which is involved in energy metabolism, showed higher expression in PGCs. To validate these gene changes, the expression of 12 nucleotide metabolism-related genes in chicken PGCs was examined by real-time polymerase chain reaction. The results of this study provide new information on the expression of genes associated with metabolism function of PGCs and will facilitate more basic research on animal PGC differentiation and function.
机译:代谢提供细胞生长,维持和繁殖所需的能量和营养。与基因组学和蛋白质组学相比,新陈代谢研究在细胞功能方面提供了新发现。在这项研究中,我们检查了原始生殖细胞(PGCs),性腺基质细胞和鸡胚成纤维细胞中的显着和差异表达基因,与使用微阵列的胚盘相比。根据基因本体,将三个测试样品中的所有上调基因(分别为1001、1118和974)和下调基因(分别为504、627和1317)分类为功能组。然后,对所有选定的基因进行检测,以通过《京都议定书》全书的基因百科全书和基因组途径数据库,使用过量表达分析法检查它们是否参与了代谢途径。在我们的结果中,大多数上调和下调的基因都参与了七个主要代谢途径中的至少一个亚类。这项研究的主要目的是将PGC表达的基因及其代谢途径与胚盘,性腺基质细胞和鸡胚成纤维细胞进行比较。在参与代谢途径的基因中,在视黄醇代谢中鉴定出更多的PGC上调基因,在鞘脂代谢中鉴定出更多的PGC上调基因。就倍数变化而言,参与丁酸酯代谢的酰基辅酶A合成酶中链家族成员3(ACSM3)和参与能量代谢的N-乙酰基转移酶松果体同工酶NAT-10(PNAT10),在PGC中显示更高的表达。为了验证这些基因变化,通过实时聚合酶链反应检测了鸡PGC中12个核苷酸代谢相关基因的表达。这项研究的结果为有关PGC代谢功能相关基因的表达提供了新的信息,并将有助于对动物PGC的分化和功能进行更基础的研究。

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