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评估参与蜜蜂寄生虫狄斯瓦螨繁殖成功的关键基因的作用。

Assessing the role of key genes involved in the reproductive success of the honey bee parasite Varroa destructor.

作者信息

Muntaabski Irina, Salvador Ricardo, Russo Romina M, Wulff Juan P, Landi Lucas, Liendo María C, Lanzavecchia Silvia B, Scannapieco Alejandra C

机构信息

Instituto de Genética "E. A. Favret", Instituto Nacional de Tecnología Agropecuaria (INTA) - Grupo vinculado al Instituto de Agrobiotecnología y Biología Molecular (IABIMO-CONICET), Hurlingham, Buenos Aires, Argentina.

Departamento de Producción Animal, Facultad de Agronomía, Universidad de Buenos Aires (UBA), Buenos Aires, Argentina.

出版信息

BMC Genomics. 2025 Jul 1;26(1):622. doi: 10.1186/s12864-025-11805-5.

DOI:10.1186/s12864-025-11805-5
PMID:40596829
Abstract

The ectoparasite Varroa destructor is the primary global threat to the western honey bee, Apis mellifera. Growing resistance to acaricide-based treatments has spurred interest in alternative control strategies. In this study, we employed a novel and efficient dsRNA delivery method to explore the potential of RNA interference (RNAi)-based approaches for Varroa control in honey bee colonies. We assessed the effects of silencing six target genes (ptch1, ap-1, larp6, chisal, vg1, and vg6) on mite mortality and reproduction through a semi-field experiment. Gene expression analysis revealed significantly reduced transcript levels in mites treated with dsRNA compared to dsGFP controls, with knockdown efficiencies ranging from 88.6% to 97.2%. Silencing of ptch1, ap-1, and vg1 genes resulted in a significant increase in mite infertility, aligning with their known roles in oocyte maturation and embryogenesis. Additionally, silencing of chisal, previously described as essential for effective Varroa feeding, led to a marked increase in mite mortality. These results highlight promising gene targets for RNAi-based Varroa control strategies. Furthermore, our study provides new insights into the molecular pathways involved in mite reproduction and survival, including Wnt, c-Jun N-terminal kinase, Hedgehog, and apoptosis, paving the way for the development of more effective biotechnological control tools.

摘要

外寄生螨类瓦螨是西方蜜蜂(Apis mellifera)面临的主要全球性威胁。对基于杀螨剂的治疗方法的耐药性不断增强,引发了人们对替代控制策略的兴趣。在本研究中,我们采用了一种新颖且高效的双链RNA(dsRNA)递送方法,以探索基于RNA干扰(RNAi)的方法在蜜蜂蜂群中控制瓦螨的潜力。我们通过半田间实验评估了沉默六个靶基因(ptch1、ap-1、larp6、chisal、vg1和vg6)对螨类死亡率和繁殖的影响。基因表达分析显示,与dsGFP对照相比,用dsRNA处理的螨类转录水平显著降低,敲低效率在88.6%至97.2%之间。ptch1、ap-1和vg1基因的沉默导致螨类不育率显著增加,这与其在卵母细胞成熟和胚胎发生中的已知作用一致。此外,先前被描述为对瓦螨有效取食至关重要的chisal基因的沉默,导致螨类死亡率显著增加。这些结果突出了基于RNAi的瓦螨控制策略中前景广阔的基因靶点。此外,我们的研究为螨类繁殖和生存所涉及的分子途径提供了新的见解,包括Wnt、c-Jun氨基末端激酶、刺猬信号通路和细胞凋亡,为开发更有效的生物技术控制工具铺平了道路。

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本文引用的文献

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Insect Mol Biol. 2024 Jul 22. doi: 10.1111/imb.12945.
2
RNA interference as a next-generation control method for suppressing Varroa destructor reproduction in honey bee (Apis mellifera) hives.RNA 干扰作为抑制蜜蜂(Apis mellifera)蜂箱中瓦螨繁殖的下一代控制方法。
Pest Manag Sci. 2024 Sep;80(9):4770-4778. doi: 10.1002/ps.8193. Epub 2024 May 27.
3
First large-scale study reveals important losses of managed honey bee and stingless bee colonies in Latin America.
首次大规模研究揭示了拉丁美洲管理的蜜蜂和无刺蜂群的重要损失。
Sci Rep. 2024 May 2;14(1):10079. doi: 10.1038/s41598-024-59513-6.
4
Case Report: Emerging Losses of Managed Honey Bee Colonies.病例报告:管理的蜜蜂蜂群出现损失
Biology (Basel). 2024 Feb 13;13(2):117. doi: 10.3390/biology13020117.
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Biotic and abiotic stresses on honeybee health.生物和非生物胁迫对蜜蜂健康的影响。
Integr Zool. 2024 May;19(3):442-457. doi: 10.1111/1749-4877.12752. Epub 2023 Jul 10.
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RNAi as a Foliar Spray: Efficiency and Challenges to Field Applications.叶面喷施 RNAi:在田间应用中的效率和挑战。
Int J Mol Sci. 2022 Jun 14;23(12):6639. doi: 10.3390/ijms23126639.
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Front Plant Sci. 2021 Oct 18;12:673576. doi: 10.3389/fpls.2021.673576. eCollection 2021.
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