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通过宿主递送人工 microRNA 沉默 HaAce1 基因会破坏棉铃虫的生长和发育。

Silencing of HaAce1 gene by host-delivered artificial microRNA disrupts growth and development of Helicoverpa armigera.

机构信息

ICAR-National Research Centre on Plant Biotechnology, Pusa Campus, New Delhi, India.

出版信息

PLoS One. 2018 Mar 16;13(3):e0194150. doi: 10.1371/journal.pone.0194150. eCollection 2018.

Abstract

The polyphagous insect-pest, Helicoverpa armigera, is a serious threat to a number of economically important crops. Chemical application and/or cultivation of Bt transgenic crops are the two strategies available now for insect-pest management. However, environmental pollution and long-term sustainability are major concerns against these two options. RNAi is now considered as a promising technology to complement Bt to tackle insect-pests menace. In this study, we report host-delivered silencing of HaAce1 gene, encoding the predominant isoform of H. armigera acetylcholinesterase, by an artificial microRNA, HaAce1-amiR1. Arabidopsis pre-miRNA164b was modified by replacing miR164b/miR164b* sequences with HaAce1-amiR1/HaAce1-amiR1* sequences. The recombinant HaAce1-preamiRNA1 was put under the control of CaMV 35S promoter and NOS terminator of plant binary vector pBI121, and the resultant vector cassette was used for tobacco transformation. Two transgenic tobacco lines expressing HaAce1-amiR1 was used for detached leaf insect feeding bioassays. Larval mortality of 25% and adult deformity of 20% were observed in transgenic treated insect group over that control tobacco treated insect group. The reduction in the steady-state level of HaAce1 mRNA was 70-80% in the defective adults compared to control. Our results demonstrate promise for host-delivered amiRNA-mediated silencing of HaAce1 gene for H. armigera management.

摘要

杂食性害虫棉铃虫是许多重要经济作物的严重威胁。目前,害虫管理有两种策略,即化学应用和/或种植 Bt 转基因作物。然而,环境污染和长期可持续性是反对这两种选择的主要关注点。RNAi 现在被认为是一种有前途的技术,可以补充 Bt 来应对昆虫害虫的威胁。在这项研究中,我们报告了通过人工 microRNA HaAce1-amiR1 对编码棉铃虫乙酰胆碱酯酶主要同工型的 HaAce1 基因进行的宿主介导的沉默。拟南芥 pre-miRNA164b 通过用 HaAce1-amiR1/HaAce1-amiR1序列替换 miR164b/miR164b序列进行了修饰。重组 HaAce1-preamiRNA1 受 CaMV 35S 启动子和植物双元载体 pBI121 的 NOS 终止子的控制,所得载体盒用于烟草转化。使用表达 HaAce1-amiR1 的两个转基因烟草系进行了离体叶片昆虫喂养生物测定。与对照烟草处理的昆虫组相比,转基因处理的昆虫组中幼虫死亡率为 25%,成虫畸形率为 20%。与对照相比,缺陷成虫中 HaAce1 mRNA 的稳态水平降低了 70-80%。我们的结果表明,通过宿主介导的 amiRNA 沉默 HaAce1 基因在棉铃虫管理中具有很大的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0935/5856398/7a8d3d71c5da/pone.0194150.g001.jpg

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