Gene silencing in adult Popillia japonica through feeding of double‐stranded RNA (dsRNA) complexed with branched amphiphilic peptide capsules (BAPCs)

Elijah P Carroll, Nitish Kunte, Erin McGraw, S. Gautam, R. Range, Jose A. Noveron-Nunez, D. Held, L. Avila
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Abstract

Gene silencing by feeding double-stranded (dsRNA) holds promise as a novel pest management strategy. Nonetheless, degradation of dsRNA in the environment and within the insect gut, as well as inefficient systemic delivery are major limitations to applying this strategy. Branched amphiphilic peptide capsules (BAPCs) complexed with dsRNA have been used to successfully target genes outside and inside the gut epithelium upon ingestion. This suggests that BAPCs can protect dsRNA from degradation in the gut environment and successfully shuttle it across gut epithelium. In this study, our objectives were to 1) Determine whether feeding on BAPC-dsRNA complexes targeting a putative peritrophin gene of P. japonica would result in the suppression of gut peritrophin synthesis, and 2) gain insight into the cellular uptake mechanisms and transport of BAPC-dsRNA complexes across the larval midgut of P. japonica. Our results suggest that BAPC-dsRNA complexes are readily taken up by the midgut epithelium, and treatment of the tissue with endocytosis inhibitors effectively suppresses intracellular transport. Further, assessment of gene expression in BAPC- peritrophin dsRNA fed beetles demonstrated significant downregulation in mRNA levels relative to control and/or dsRNA alone. Our results demonstrated that BAPCs increase the efficacy of gene knockdown relative to dsRNA alone in P. japonica adults. To our knowledge, this is the first report on nanoparticle-mediated dsRNA delivery through feeding in P. japonica.
通过喂食双链RNA (dsRNA)和支链两亲肽胶囊(BAPCs)来沉默成虫的基因
通过喂食双链(dsRNA)基因沉默有望成为一种新的害虫管理策略。然而,环境和昆虫肠道内dsRNA的降解以及低效的全身递送是应用该策略的主要限制。支链两亲肽胶囊(BAPCs)与dsRNA络合已被用于成功靶向肠上皮内外的基因。这表明BAPCs可以保护dsRNA在肠道环境中不被降解,并成功地将其穿梭于肠道上皮。在这项研究中,我们的目的是:1)确定以一个假定的japonica的环营养蛋白基因为靶点的BAPC-dsRNA复合物是否会导致肠道环营养蛋白合成的抑制;2)深入了解BAPC-dsRNA复合物在japonica幼虫中肠中的细胞摄取机制和运输。我们的研究结果表明,BAPC-dsRNA复合物很容易被中肠上皮吸收,并且用内吞抑制剂处理该组织可有效抑制细胞内运输。此外,对喂食BAPC- peritrophin dsRNA的甲虫基因表达的评估显示,相对于对照和/或单独喂食dsRNA, BAPC- peritrophin dsRNA的mRNA水平显著下调。我们的研究结果表明,相对于单独的dsRNA, BAPCs在粳稻成虫中增加了基因敲低的功效。据我们所知,这是首次报道纳米颗粒介导的dsRNA通过取食在粳稻中传递。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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