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首页> 外文期刊>BMC Genomics >Transcriptomic analysis of differentially expressed genes in the Ras1 CA-overexpressed and wildtype posterior silk glands
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Transcriptomic analysis of differentially expressed genes in the Ras1 CA-overexpressed and wildtype posterior silk glands

机译:在Ras1 CA高表达和野生型后部丝腺中差异表达基因的转录组学分析

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Background Using the piggyBac-mediated GAL4/UAS transgenic system established in the silkworm, Bombyx mori, we have previously reported that overexpression of the Ras1CA oncogene specifically in the posterior silk gland (PSG) improved cell growth, fibroin synthesis, and thus silk yield. However, the detailed molecular mechanism remains to be fully elucidated. To achieve this goal, Illumina sequencing was used in the present study to compare the transcriptomes of the Ras1CA-overexpressed and wildtype PSGs. Results The transcriptomic sequencing results in 56 million reads following filtering steps. Most of the reads (~70%) are successfully mapped to the Bombyx genome. The mapped reads are situated within at least 9,133 predicted genes, covering 62.46% genes of the Bombyx genome. GO annotation shows that 2512 of the 2,636 differentially expressed genes (DEGs) are mostly distributed in metabolic process, cell and cell part, and binding, and KEGG annotation shows that 1,941 DEGs are mapped into 277 pathways. Importantly, Ras1CA overexpression in the PSG upregulated many DEGs distributed in “pathways in cancer”, “insulin signaling pathway”, and “MAPK signaling pathway” as well as “purine metabolism” and “pyrimidine metabolism”. Transcriptional regulation of these DEGs was verified by quantitative real-time PCR. Moreover, injection of small-molecule chemical inhibitors of the Ras1 downstream effectors into the Ras1CA-overexpressed silkworms revealed that both Raf-MAPK and PI3K-TORC1 pathways are required for the Ras1-induced DEG expression. Conclusion The transcriptomic analysis illustrates that, apart from phosphorylational regulation, Ras1 activates its downstream Raf-MAPK and PI3K-TORC1 pathways at the transcriptional level. Meanwhile, Ras1 increases DNA content and induces endoreplication, at least in part, by upregulating genes in “nucleotide metabolism” and “cell cycle”. This study provides further insights into the molecular mechanism of how Ras1CA overexpression in the PSG improves silk yield.
机译:背景我们使用家蚕中建立的piggyBac介导的GAL4 / UAS转基因系统,家蚕,我们以前曾报道过,Ras1 CA 癌基因的过表达特别是在后丝腺(PSG)中改善了细胞的生长,纤维蛋白合成,从而蚕丝产量。但是,详细的分子机理尚待充分阐明。为了达到这个目的,在本研究中使用Illumina测序比较过表达的Ras1 CA 和野生型PSG的转录组。结果转录组测序结果表明,经过过滤步骤后,共有5600万个读数。大多数读物(约70%)已成功定位到Bombyx基因组。定位的读段位于至少9,133个预测基因内,覆盖了Bombyx基因组的62.46%基因。 GO注释显示2,636个差异表达基因(DEG)中的2512个主要分布在代谢过程,细胞和细胞部分以及结合中,KEGG注释显示1,941个DEG被映射到277条途径中。重要的是,PSG中Ras1 CA 的过表达上调了许多分布在“癌症途径”,“胰岛素信号传导途径”和“ MAPK信号传导途径”以及“嘌呤代谢”和“嘧啶代谢”中的DEG。 。这些DEG的转录调控已通过实时定量PCR验证。此外,将Ras1下游效应子的小分子化学抑制剂注射到过表达的Ras1 CA 家蚕中,揭示Raf1诱导的DEG表达需要Raf-MAPK和PI3K-TORC1途径。结论转录组分析表明,除了磷酸化调控外,Ras1在转录水平上激活其下游Raf-MAPK和PI3K-TORC1途径。同时,Ras1至少部分地通过上调“核苷酸代谢”和“细胞周期”中的基因来增加DNA含量并诱导内复制。这项研究进一步揭示了PSG中Ras1 CA 过表达如何提高蚕丝产量的分子机制。

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