首页> 外文期刊>Ecology and Evolution >Genome‐wide identification, expression profiling, and target gene analysis of microRNAs in the Onion thrips, Thrips tabaci Lindeman (Thysanoptera: Thripidae), vectors of tospoviruses (Bunyaviridae)
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Genome‐wide identification, expression profiling, and target gene analysis of microRNAs in the Onion thrips, Thrips tabaci Lindeman (Thysanoptera: Thripidae), vectors of tospoviruses (Bunyaviridae)

机译:全基因组识别,洋葱蓟马,烟蓟马(Thysanoptera:Thripidae)中的microRNA的全基因组鉴定,表达谱分析和靶基因分析,弓形病毒(Bunyaviridae)的载体

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Thrips tabaci Lindeman is an important polyphagous insect pest species estimated to cause losses of more than U.S. $1 billion worldwide annually. Chemical insecticides are of limited use in the management of T.?tabaci due to the thigmokinetic behavior and development of resistance to insecticides. There is an urgent need to find alternative management strategies. Small noncoding RNAs (sncRNAs) especially microRNAs (miRNAs) hold great promise as key regulators of gene expression in a wide range of organisms. MiRNAs are a group of endogenously originated sncRNA known to regulate gene expression in animals, plants, and protozoans. In this study, we explored these RNAs in T.?tabaci using deep sequencing to provide a basis for future studies of their biological and physiological roles in governing gene expression. Apart from snoRNAs and piRNAs, our study identified nine novel and 130 known miRNAs from T.?tabaci . Functional classification of the targets for these miRNAs predicted that majority are involved in regulating transcription, translation, signal transduction and genetic information processing. The higher expression of few miRNAs (such as tta ‐ miR‐281, tta‐miR‐184, tta‐miR‐3533, tta‐miR‐N1, tta‐miR‐N7, and tta‐miR‐N9) in T.?tabaci pupal and adult stages reflected their possible role in larval and adult development, metamorphosis, parthenogenesis, and reproduction. This is the first exploration of the miRNAome in T.?tabaci , which not only provides insights into their possible role in insect metamorphosis, growth, and development but also offer an important resource for future pest management strategies.
机译:烟蓟马Lindeman是一种重要的多食性虫害,估计每年在全球范围内造成的损失超过10亿美元。由于其药动学行为和对杀虫剂的抗性发展,化学杀虫剂在控制烟草中的应用有限。迫切需要找到替代的管理策略。小型非编码RNA(sncRNA),尤其是microRNA(miRNA)具有广阔的前景,可以作为广泛生物体中基因表达的关键调节剂。 MiRNA是一组内源性的sncRNA,已知它们在动物,植物和原生动物中调节基因表达。在这项研究中,我们使用深度测序探索了烟草中的这些RNA,为进一步研究其在调控基因表达中的生物学和生理学作用提供了基础。除了snoRNA和piRNA,我们的研究还鉴定了来自塔巴氏梭菌的9种新颖和130种已知的miRNA。这些miRNA靶标的功能分类预测大多数参与调节转录,翻译,信号转导和遗传信息处理。少数miRNA(例如tta‐miR‐281,tta‐miR‐184,tta‐miR‐3533,tta‐miR‐N1,tta‐miR‐N7和tta‐miR‐N9)的表达较高。烟粉虱p期和成虫期反映出它们在幼虫和成虫发育,变态,孤雌生殖和繁殖中的可能作用。这是对塔巴氏杆菌中miRNAome的首次探索,它不仅提供了对它们在昆虫变态,生长和发育中可能作用的见解,而且还为以后的有害生物管理策略提供了重要资源。

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