Tariq Kaleem, Metzendorf Christoph, Peng Wei, Sohail Summar, Zhang Hongyu
State Key Laboratory of Agricultural Microbiology, Institute of Urban and Horticultural Entomology, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, Hubei, People's Republic of China.
Heidelberg University Biochemistry Center (BZH), University of Heidelberg, ImNeuenheimer Feld 328, Heidelberg, Germany.
Sci Rep. 2016 Mar 2;6:22565. doi: 10.1038/srep22565.
Genetics-enhanced sterile insect techniques (SIT) are promising novel approaches to control Bactrocera dorsalis, the most destructive horticultural pest in East Asia and the Pacific region. To identify novel genetic agents to alter male fertility of B. dorsalis, previous studies investigated miRNA expression in testes of B. dorsalis. One miRNA, miR-8-3p was predicted to bind the 3'UTR of putative B. dorsalis mitoferrin (bmfrn). The ortholog of bmfrn in D. melanogaster is essential for male fertility. Here we show that bmfrn has all conserved amino acid residues of known mitoferrins and is most abundantly expressed in B. dorsalis testes, making miR-8-3p and mitoferrin candidates for genetics-enhanced SIT. Furthermore, using a dual-luciferase reporter system, we show in HeLa cells that miR-8-3p interacts with the 3'UTR of bmfrn. Dietary treatments of adult male flies with miR-8-3p mimic, antagomiR, or bmfrn dsRNA, altered mitoferrin expression in the testes and resulted in reduced male reproductive capacity due to reduced numbers and viability of spermatozoa. We show for the first time that a mitoferrin is regulated by a miRNA and we demonstrate miR-8-3p as well as bmfrn dsRNA to be promising novel agents that could be used for genetics-enhanced SIT.
基因增强不育昆虫技术(SIT)是控制橘小实蝇的一种很有前景的新方法,橘小实蝇是东亚和太平洋地区最具破坏力的园艺害虫。为了鉴定改变橘小实蝇雄性生育力的新基因因子,先前的研究调查了橘小实蝇睾丸中的miRNA表达。一种miRNA,即miR-8-3p,被预测可结合假定的橘小实蝇线粒体铁转运蛋白(bmfrn)的3'UTR。黑腹果蝇中bmfrn的直系同源物对雄性生育力至关重要。在这里,我们表明bmfrn具有已知线粒体铁转运蛋白的所有保守氨基酸残基,并且在橘小实蝇睾丸中表达最为丰富,这使得miR-8-3p和线粒体铁转运蛋白成为基因增强不育昆虫技术的候选对象。此外,使用双荧光素酶报告系统,我们在HeLa细胞中表明miR-8-3p与bmfrn的3'UTR相互作用。用miR-8-3p模拟物、抗miR或bmfrn dsRNA对成年雄蝇进行饮食处理,改变了睾丸中线粒体铁转运蛋白的表达,并由于精子数量减少和活力降低而导致雄性生殖能力下降。我们首次表明线粒体铁转运蛋白受miRNA调控,并且我们证明miR-8-3p以及bmfrn dsRNA是有前景的新因子,可用于基因增强不育昆虫技术。