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纳米层状双氢氧化物通过提高 dsRNA 在植物中的稳定性和运输促进 dsRNA 干扰效率在刺吸式害虫中。

Nanoparticle LDH enhances RNAi efficiency of dsRNA in piercing-sucking pests by promoting dsRNA stability and transport in plants.

机构信息

National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, Hubei Hongshan Laboratory, China-Australia Joint Research Centre for Horticultural and Urban Pests, Institute of Urban and Horticultural Entomology, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China.

出版信息

J Nanobiotechnology. 2024 Sep 6;22(1):544. doi: 10.1186/s12951-024-02819-4.

Abstract

Piercing-sucking pests are the most notorious group of pests for global agriculture. RNAi-mediated crop protection by foliar application is a promising approach in field trials. However, the effect of this approach on piercing-sucking pests is far from satisfactory due to the limited uptake and transport of double strand RNA (dsRNA) in plants. Therefore, there is an urgent need for more feasible and biocompatible dsRNA delivery approaches to better control piercing-sucking pests. Here, we report that foliar application of layered double hydroxide (LDH)-loaded dsRNA can effectively disrupt Panonychus citri at multiple developmental stages. MgAl-LDH-dsRNA targeting Chitinase (Chit) gene significantly promoted the RNAi efficiency and then increased the mortality of P. citri nymphs by enhancing dsRNA stability in gut, promoting the adhesion of dsRNA onto leaf surface, facilitating dsRNA internalization into leaf cells, and delivering dsRNA from the stem to the leaf via the vascular system of pomelo plants. Finally, this delivery pathway based on other metal elements such as iron (MgFe-LDH) was also found to significantly improve the protection against P. citri and the nymphs or larvae of Diaphorina citri and Aphis gossypii, two other important piercing-sucking hemipeteran pests, indicating the universality of nanoparticles LDH in promoting the RNAi efficiency and mortality of piercing-sucking pests. Collectively, this study provides insights into the synergistic mechanism for nano-dsRNA systemic translocation in plants, and proposes a potential eco-friendly control strategy for piercing-sucking pests.

摘要

刺吸式害虫是全球农业中最臭名昭著的害虫群体之一。叶面喷施 RNAi 介导的作物保护是田间试验中很有前途的方法。然而,由于双链 RNA(dsRNA)在植物中摄取和转运的限制,这种方法对刺吸式害虫的效果远不理想。因此,迫切需要更可行和更具生物相容性的 dsRNA 递送方法,以更好地控制刺吸式害虫。在这里,我们报告说,叶面喷施负载 dsRNA 的层状双氢氧化物(LDH)可以有效地破坏柑橘全爪螨在多个发育阶段。靶向几丁质酶(Chit)基因的 MgAl-LDH-dsRNA 显著提高了 RNAi 效率,然后通过增强 dsRNA 在肠道中的稳定性、促进 dsRNA 黏附在叶片表面、促进 dsRNA 内吞进入叶片细胞、并通过柚子植物的维管系统将 dsRNA 从茎输送到叶,从而增加了柑橘红蜘蛛若虫的死亡率。最后,还发现基于其他金属元素(如铁(MgFe-LDH)的这种递送途径也显著提高了对柑橘全爪螨和另两种重要的刺吸式半翅目害虫橘蚜和棉蚜的保护作用,表明纳米 LDH 在提高刺吸式害虫的 RNAi 效率和死亡率方面具有普遍性。总的来说,这项研究深入了解了纳米 dsRNA 在植物中系统转运的协同机制,并提出了一种针对刺吸式害虫的潜在环保控制策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42be/11378424/8ba8fa21f661/12951_2024_2819_Fig1_HTML.jpg

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