斜纹夜蛾siRNA和dsRNA靶向关键基因的RNAi效果差异研究。

IF 2.4 Q1 ENTOMOLOGY
Frontiers in insect science Pub Date : 2025-04-30 eCollection Date: 2025-01-01 DOI:10.3389/finsc.2025.1574585
Yu-Chun Lin, Yun-Heng Lu, Yun Liu, Yu-Juan Su, Yu-Hsien Lin, Yueh-Lung Wu
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引用次数: 0

摘要

RNA干扰(RNA interference, RNAi)是一种很有前途的基因沉默技术,它针对的是害虫防治的重要基因。我们评估了双链RNA (dsRNA)和小干扰RNA (siRNA)沉默斜纹夜蛾(Spodoptera litura)幼虫中部肠道mesh或iap基因的潜力。尽管RNAi方法在理论上很有前景,但我们的研究结果表明,dsRNA不会诱导显著的基因沉默或影响幼虫的生长,而siRNA则表现出明显的杀虫作用,可能是通过破坏肠道渗透调节和损害幼虫适应性来实现的。详细分析表明,dsRNA不能在斜山鸡的肠道中有效转化为功能性siRNA,可能是由于Dicer-2的低表达水平和dsRNA在肠道环境中的快速降解所致。此外,虽然dsRNA在土壤条件下比siRNA表现出更大的环境稳定性,但山楂无法处理dsRNA有效地限制了其作为害虫防治剂的可行性。这些发现表明Dicer-2在rnai介导的基因沉默中起着关键作用,并突出了在鳞翅目物种中使用基于dsrna的遗传农药的挑战和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differential RNAi efficacy of siRNA and dsRNA targeting key genes for pest control in Spodoptera litura.

RNA interference (RNAi) is a promising gene-silencing technique for pest control that targets essential genes. We assessed the potential of double-stranded RNA (dsRNA) and small interfering RNA (siRNA) to silence mesh or iap genes in the midguts of Spodoptera litura larvae. Despite the theoretical promise of RNAi approaches, our findings revealed that dsRNA did not induce significant gene silencing or impact larval growth, whereas siRNA exhibited clear insecticidal effects, likely by disrupting intestinal osmoregulation and impairing larval fitness. Detailed analysis indicated that dsRNA could not be efficiently converted into functional siRNA in the midguts of S. litura, possibly due to the low expression levels of Dicer-2 and the rapid degradation of dsRNA within the gut environment. Furthermore, while dsRNA demonstrated greater environmental stability than siRNA under soil conditions, the inability of S. litura to process dsRNA effectively limits its viability as a pest control agent. These findings indicate the critical role of Dicer-2 in RNAi-mediated gene silencing and highlight the challenges and limitations of employing dsRNA-based genetic pesticides in lepidopteran species.

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