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Panaxadiol saponins treatment caused the subtle variations in the global transcriptional state of Asiatic corn borer, Ostrinia furnacalis

机译:潘纳基奥皂苷治疗导致了亚洲玉米螟的全球转录状态的微妙变化,奥斯特林Furnacalis

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Background The lepidopteran Asiatic corn borer (ACB), Ostrinia furnacalis ( Guenee ), has caused huge economic losses throughout the Asian-Western Pacific region. Usually, chemical pesticides are used for the control, but excessive use of pesticides has caused great harm. Therefore, the inartificial ecotypic pesticides to ACB are extremely essential. In our previous study, we found that panaxadiol saponins (PDS) can effectively reduce the harm of ACB by causing antifeedant activity. Therefore, it is necessary to reveal the biological molecular changes in ACB and the functionary mechanism of PDS. Methods We analyzed the global transcription of ACB with different PDS concentration treatment (5 mg/mL, 10 mg/mL, and 25 mg/mL) by high-throughput sequencing and de novo transcriptome assembly method. Results PDS treatment could cause the changes of many gene expressions which regulate its signal pathways. The genes in peroxisome proliferator–activated receptor (PPAR) signaling pathway were significantly downregulated, and then, the downstream fatty acid degradation pathway had also been greatly affected. Conclusion Through this experiment, we hypothesized that the occurrence of antifeedant action of ACB is because the PDS brought about the downregulation of FATP and FABP , the key regulators in the PPAR, and the downregulation of FATP and FABP exerts further effects on the expression of SCD-1, ACBP, LPL, SCP-X , and ACO , which leads to the disorder of PPAR signaling pathway and the fatty acid degradation pathway. Not only that, PDS treatment leads to enzyme activity decrease by inhibiting the expression of genes associated with catalytic activity, such as cytochrome P450 and other similar genes.
机译:背景技术叶片亚洲玉米螟(ACB),Ostrinia Furnacalis(Guenee),在亚洲西部地区造成了巨大的经济损失。通常,化学农药用于对照,但过度使用农药造成了很大的伤害。因此,对ACB的人工生态型农药非常重要。在我们以前的研究中,我们发现Panaxadiol saponins(PDS)可以通过引起抗透镜活性有效地降低ACB的危害。因此,有必要揭示ACB的生物分子变化和PD的功能机制。方法通过高通量测序和DE Novo转录组件组装方法分析了具有不同PDS浓度处理(5mg / ml,10mg / ml和25mg / ml)的ACB的全局转录。结果PDS治疗可能导致许多调节其信号途径的基因表达的变化。过氧化物体增殖物激活的受体(PPAR)信号传导途径的基因显着下调,然后,下游脂肪酸降解途径也受到很大影响。结论通过该实验,我们假设ACB的抗透镜作用的发生是因为PDS带来了FATP和FABP的下调,PPAR中的关键调节剂,以及FATP和FABP的下调对SCD的表达产生了进一步的影响-1,ACBP,LPL,SCP-X和ACO,其导致PPAR信号通路和脂肪酸降解途径的病症。不仅如此,通过抑制与催化活性相关的基因的表达,例如细胞色素P450和其他类似基因,PDS处理不仅导致酶活性降低。

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