Naitore Careen, Villinger Jandouwe, Kibet Caleb K, Kalayou Shewit, Bargul Joel L, Christoffels Alan, Masiga Daniel K
International Centre of Insect Physiology and Ecology (icipe), P.O. Box 30772, Nairobi 00100, Kenya.
Department of Biochemistry, Jomo Kenyatta University of Agriculture and Technology (JKUAT), P.O. Box 62000, Nairobi 00200, Kenya.
Bioinform Adv. 2021 Dec 28;2(1):vbab047. doi: 10.1093/bioadv/vbab047. eCollection 2022.
MicroRNAs (miRNAs) are single stranded gene regulators of 18-25 bp in length. They play a crucial role in regulating several biological processes in insects. However, the functions of miRNA in , one of the biological vectors of African animal trypanosomosis in sub-Saharan Africa, remain poorly characterized. We used a combination of both molecular biology and bioinformatics techniques to identify miRNA genes at different developmental stages (larvae, pupae, teneral and reproductive unmated adults, gravid females) and sexes of . We identified 157 mature miRNA genes, including 12 novel miRNAs unique to . Moreover, we identified 93 miRNA genes that were differentially expressed by sex and/or in specific developmental stages. By combining both miRanda and RNAhybrid algorithms, we identified 5550 of their target genes. Further analyses with the Gene Ontology term and KEGG pathways for these predicted target genes suggested that the miRNAs may be involved in key developmental biological processes. Our results provide the first repository of miRNAs across developmental stages, some of which appear to play crucial roles in tsetse fly development. Hence, our findings provide a better understanding of tsetse biology and a baseline for exploring miRNA genes in tsetse flies.
Raw sequence data are available from NCBI Sequence Read Archives (SRA) under Bioproject accession number PRJNA590626.
Supplementary data are available at online.
微小RNA(miRNA)是长度为18 - 25个碱基对的单链基因调控因子。它们在调节昆虫的多个生物学过程中发挥着关键作用。然而,在采采蝇(撒哈拉以南非洲动物锥虫病的生物传播媒介之一)中,miRNA的功能仍未得到充分表征。我们结合分子生物学和生物信息学技术,鉴定采采蝇不同发育阶段(幼虫、蛹、羽化初期和未交配的生殖期成虫、妊娠雌虫)及不同性别的miRNA基因。我们鉴定出157个成熟miRNA基因,其中包括12个采采蝇特有的新miRNA。此外,我们还鉴定出93个在性别和/或特定发育阶段差异表达的miRNA基因。通过结合miRanda和RNAhybrid算法,我们鉴定出了5550个它们的靶基因。对这些预测靶基因进行基因本体论术语和KEGG通路的进一步分析表明,这些miRNA可能参与关键的发育生物学过程。我们的研究结果首次提供了采采蝇不同发育阶段的miRNA库,其中一些miRNA似乎在采采蝇发育中发挥着关键作用。因此,我们的研究结果有助于更好地理解采采蝇生物学,并为探索采采蝇中的miRNA基因提供了一个基线。
原始序列数据可从NCBI序列读取档案库(SRA)获取,生物项目登录号为PRJNA590626。
补充数据可在网上获取。