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Investigation of essential cell cycle regulator genes as candidates for immortalized shrimp cell line establishment based on the effect of in vitro culturing on gene expression of shrimp primary cells

机译:基于体外培养对虾原代细胞基因表达的体外培养的虾细胞系成立素质细胞周期调节剂基因

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Continuous shrimp cell cultures offer opportunities for studying shrimp pathogens at the cellular and molecular level and developing diagnostic tools. However, no continuous shrimp cell lines have yet been successfully established. This might be due to the lack of information on the molecular mechanisms that control shrimp cell proliferation and cell arrest under culture conditions. In this study, differentially expressed genes (DEGs) in shrimp primary culture cells were determined by comparison with normal tissue (in vivo). This study aimed to comprehensively identify key regulator genes that control cell proliferation and cell cycle arrest in culture conditions. The primary shrimp cells were derived from testicular tissue and cultured in vitro. RNA sequencing (RNA-Seq) was performed to investigate change in gene expression level across the entire transcriptome between shrimp primary cells and normal tissue (in vivo). RNA-seq results revealed over 100 genes with distinct gene expression patterns between primary cells and normal tissue. The DEG results and functional gene analysis showed a clear difference in gene expression patterns of cell cycle-related genes between primary cells and normal tissue. LRWD1, TMEM127, CDCA3, PPP2R1A, and GOLGA2, which are cell cycle-related genes, were downregulated in shrimp primary cells. These genes are required for G1/S phase transition, entry into mitosis, and cell proliferation control. However, a gene that induces cell cycle arrest, ARAF, was upregulated in culture conditions. The results demonstrated that these genes might play essential roles in cell proliferation and cell arrest under culture conditions. These candidate genes may be alternative potential targets for genetic manipulation to maintain cell proliferation and establishment of a shrimp continuous cell line.
机译:连续虾细胞培养物为在细胞和分子水平和发展诊断工具中研究虾病原体的机会。然而,尚未成功建立连续的虾细胞系。这可能是由于缺乏关于在培养条件下控制虾细胞增殖和细胞残留的分子机制的信息。在该研究中,通过与正常组织(体内)进行比较来确定虾原培养细胞中的差异表达基因(DEGS)。本研究旨在全面鉴定控制细胞增殖和细胞周期停滞的关键调节剂基因在培养条件下。初级虾细胞衍生自睾丸组织并在体外培养。进行RNA测序(RNA-SEQ)以研究虾原代细胞和正常组织(体内)之间整个转录组的基因表达水平的变化。 RNA-SEQ结果揭示了100多个基因,主要细胞和正常组织之间具有不同的基因表达模式。 DEG结果和功能基因分析表明,原代细胞和正常组织之间的细胞周期相关基因的基因表达模式的明显差异。在虾原代细胞中下调LRWD1,TMEM127,CDCA3,PPP2R1A和GOLGA2,其是细胞周期相关基因的。 G1 / S期转变,进入有丝分裂和细胞增殖对照所需的这些基因。然而,在培养条件下诱导细胞周期停滞的基因。结果表明,这些基因可能在培养条件下对细胞增殖和细胞滞留的基本作用起着重要作用。这些候选基因可以是遗传操作的替代潜在靶标,以维持细胞增殖和建立虾连续细胞系。

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