Center of Biotechnology and Genetics, Department of Biological Sciences, State University of Santa Cruz, Ilhéus 45662-900, Brazil.
Laboratory of Entomology, Department of Biological Science, State University of Santa Cruz, Ilhéus 45662-900, Brazil.
Viruses. 2024 Sep 27;16(10):1532. doi: 10.3390/v16101532.
Agricultural pests can cause direct damage to crops, including chlorosis, loss of vigor, defoliation, and wilting. In addition, they can also indirectly damage plants, such as by transmitting pathogenic micro-organisms while feeding on plant tissues, affecting the productivity and quality of crops and interfering with agricultural production. Among the known arthropod pests, mites are highly prevalent in global agriculture, particularly those from the Tetranychidae family. The two-spotted spider mite, , is especially notorious, infesting about 1600 plant species and causing significant agricultural losses. Despite its impact on agriculture, the virome of is poorly characterized in the literature. This lack of knowledge is concerning, as these mites could potentially transmit plant-infecting viral pathogens, compromising food security and complicating integrated pest management efforts. Our study aimed to characterize the virome of the mite by taking advantage of publicly available RNA deep sequencing libraries. A total of 30 libraries were selected, covering a wide range of geographic and sampling conditions. The library selection step included selecting 1 control library from each project in the NCBI SRA database (16 in total), in addition to the 14 unique libraries from a project containing field-collected mites. The analysis was conducted using an integrated de novo virus discovery bioinformatics pipeline developed by our group. This approach revealed 20 viral sequences, including 11 related to new viruses. Through phylogenetic analysis, eight of these were classified into the , , , , , and viral families, while three were characterized only at the order level within Picornavirales and Reovirales. The remaining nine viral sequences showed high similarity at the nucleotide level with known viral species, likely representing new strains of previously characterized viruses. Notably, these include the known (BCMV) and 1, both of which have significant impacts on bean agriculture. Altogether, our results expand the virome associated with the ubiquitous mite pest and highlight its potential role as a transmitter of important plant pathogens. Our data emphasize the importance of continuous virus surveillance for help in the preparedness of future emerging threats.
农业害虫会直接危害作物,导致作物出现黄化、活力丧失、落叶和萎蔫等症状。此外,它们还可以通过在取食植物组织时传播致病微生物而间接危害植物,影响作物的生产力和质量,干扰农业生产。在已知的节肢动物害虫中,螨类在全球农业中普遍存在,尤其是在 Tetranychidae 科中。二斑叶螨是一种特别臭名昭著的害虫,它会侵害约 1600 种植物物种,导致严重的农业损失。尽管它对农业有影响,但关于 的病毒组在文献中描述甚少。这种知识的缺乏令人担忧,因为这些螨类可能会传播感染植物的病毒病原体,从而危及粮食安全,并使综合虫害管理工作复杂化。我们的研究旨在通过利用公开可用的 RNA 深度测序文库来描述 的病毒组。总共选择了 30 个文库,涵盖了广泛的地理和采样条件。在文库选择步骤中,我们从 NCBI SRA 数据库中的每个项目中选择了 1 个对照文库(总共 16 个),此外,还从一个包含野外采集的螨类的项目中选择了 14 个独特的文库。分析使用了我们小组开发的集成从头病毒发现生物信息学管道进行。该方法揭示了 20 种病毒序列,其中 11 种与新病毒有关。通过系统发育分析,其中 8 种被归类为 、 、 、 、 和 病毒科,而 3 种仅在 Picornavirales 和 Reovirales 目水平上进行了描述。其余 9 种病毒序列在核苷酸水平上与已知病毒种高度相似,可能代表了先前已鉴定病毒的新菌株。值得注意的是,其中包括已知的 (BCMV)和 1,这两者都对豆类农业有重大影响。总的来说,我们的结果扩展了与普遍存在的螨类害虫 相关的病毒组,并强调了它作为重要植物病原体传播者的潜在作用。我们的数据强调了持续进行病毒监测的重要性,以帮助为未来出现的新兴威胁做好准备。