Insights into the microRNA landscape of Rhodnius prolixus, a vector of Chagas disease

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作者
Paula Beatriz Santiago
Kaio Luís da Silva Bentes
Waldeyr Mendes Cordeiro da Silva
Yanna Reis Praça
Sébastien Charneau
Soraya Chaouch
Philippe Grellier
Marcos Antônio dos Santos Silva Ferraz
Izabela Marques Dourado Bastos
Jaime Martins de Santana
Carla Nunes de Araújo
机构
[1] Institute of Biology,Pathogen
[2] University of Brasília,Host Interface Laboratory, Department of Cell Biology
[3] Federal Institute of Goiás,Laboratory of Protein Chemistry and Biochemistry, Department of Cell Biology
[4] Institute of Biology,UMR 7245 Molécules de Communication et Adaptation des Micro
[5] University of Brasília,organismes
[6] Muséum National d’Histoire Naturelle,Department of Cell Biology, Scientific Illustration Center
[7] CNRS,Faculty of Ceilândia
[8] CP52,undefined
[9] Institute of Biology,undefined
[10] University of Brasília,undefined
[11] University of Brasília,undefined
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摘要
The growing interest in microRNAs (miRNAs) over recent years has led to their characterization in numerous organisms. However, there is currently a lack of data available on miRNAs from triatomine bugs (Reduviidae: Triatominae), which are the vectors of the protozoan parasite Trypanosoma cruzi, the causative agent of Chagas disease. A comprehensive understanding of the molecular biology of vectors provides new insights into insect-host interactions and insect control approaches, which are key methods to prevent disease incidence in endemic areas. In this work, we describe the miRNome profiles from gut, hemolymph, and salivary gland tissues of the Rhodnius prolixus triatomine. Small RNA sequencing data revealed abundant expression of miRNAs, along with tRNA- and rRNA-derived fragments. Fifty-two mature miRNAs, previously reported in Ecdysozoa, were identified, including 39 ubiquitously expressed in the three tissues. Additionally, 112, 73, and 78 novel miRNAs were predicted in the gut, hemolymph, and salivary glands, respectively. In silico prediction showed that the top eight most highly expressed miRNAs from salivary glands potentially target human blood-expressed genes, suggesting that R. prolixus may modulate the host’s gene expression at the bite site. This study provides the first characterization of miRNAs in a Triatominae species, shedding light on the role of these crucial regulatory molecules.
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