Meta-Transcriptomic Analysis Reveals the Virome and Viral Genomic Evolution of Medically Important Mites
Liping Guo1, Xiaoyu Lu1, Xue Liu1
1MOE Key Laboratory of Tropical Disease Control, Centre for Infection and Immunity Study (CIIS), Seventh Affiliated Hospital, School of Medicine, Sun Yat-sen University, Shenzhen, China.
Abstract:
Mites are notorious for being vectors transmitting infectious pathogens and source of allergens causing allergic conditions in animals and humans. However, despite their huge impact on public health, the virome of mites remains unknown. Here we characterized the virus diversity and abundance of 14 species of medically important mites based on total RNA sequencing data sets generated in this study as well as those deposited in the Sequence Read Archive (SRA) database. A total of 47 genetically distinct viruses were identified and classified into 17 virus families or virus super-groups, and the viral sequences accounted for as much as 29.67% of total non-rRNA transcriptome in one mite library. The most commonly identified viruses are members of Picornavirales, among which we revealed more than one type of viruses that are evolutionarily related to dicistronic viruses but contain a single open reading frame, thus likely representing a recent example of host (i.e., mite)-related parallel evolution from dicistronic to monocistronic genomic form within the family Dicistroviridae To our best knowledge, this is the first time to perform comprehensive and systematic screening of RNA virome in medically important mites including house dust mites (HDM). Overall, the RNA virome identified here provides not only significant insights into the diversity and evolution of RNA viruses in mites, but also a solid knowledge base for studying their roles in human diseases.IMPORTANCE Mites are important group of arthropods that are associated with a variety of human diseases including scrub typhus and asthma. However, it remains unclear whether or not mites carry viruses that might play a role in human infections or allergic disease. In this study, we used a total transcriptomics approach to characterize and compare the complete RNA virome within mites that are relevant to human health and diseases. Specifically, our data revealed a large diversity, a high abundance, and a flexible genomic evolution for these viruses. Although most of the viruses identified here are unknown to associate with human infectious disease, the abundant presence of viral RNAs may play an immunomodulatory role in the development of allergic reactions such as asthma during environmental exposure to mite allergens, and therefore provide important insights into the mite-induced allergy and preparation of mite allergen vaccines.
Insights
This study reveals a vast diversity and abundance of RNA viruses in medically important mites, including house dust mites. These findings offer new insights into mite viromes and their potential role in human health and allergic diseases.
Area of Science:
- Virology
- Medical Entomology
- Genomics
Background:
- Mites are significant vectors of pathogens and sources of allergens impacting public health.
- The RNA virome of medically important mites has not been comprehensively studied.
- Understanding mite viromes is crucial for assessing their role in human diseases and allergies.
Purpose of the Study:
- To characterize the diversity and abundance of RNA viruses in 14 species of medically important mites.
- To investigate the evolutionary dynamics of mite-associated viruses.
- To establish a knowledge base for studying the impact of mite viromes on human health.
Main Methods:
- Total RNA sequencing of medically important mite species.
- Analysis of both newly generated and publicly available Sequence Read Archive (SRA) data.
- Bioinformatic identification and classification of viral sequences.
Main Results:
- Identification of 47 distinct viruses across 17 virus families/super-groups.
- Viral sequences constituted up to 29.67% of the non-ribosomal transcriptome in some mite libraries.
- Discovery of novel picornaviruses, including single open reading frame variants of dicistroviruses, indicating parallel evolution.
Conclusions:
- This study presents the first comprehensive RNA virome analysis of medically relevant mites, including house dust mites (HDM).
- The identified mite virome exhibits high diversity, abundance, and genomic flexibility.
- The presence of abundant viral RNA may influence allergic responses, offering insights into mite-induced allergies and vaccine development.
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