首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Comparative Transcriptome Analyses Uncover Key Candidate Genes Mediating Flight Capacity in Bactrocera dorsalis (Hendel) and Bactrocera correcta (Bezzi) (Diptera: Tephritidae)
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Comparative Transcriptome Analyses Uncover Key Candidate Genes Mediating Flight Capacity in Bactrocera dorsalis (Hendel) and Bactrocera correcta (Bezzi) (Diptera: Tephritidae)

机译:比较转录组分析发现介导了桔小实蝇(Hendel)和实蝇小实蝇(Bezzi)(双翅目:天蛾科)飞行能力的关键候选基因。

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摘要

Flight capacity is important for invasive pests during entry, establishment and spreading. Both Bactrocera dorsalis Hendel and Bactrocera correcta Bezzi are invasive fruit flies but their flight capacities differ. Here, a tethered flight mill test demonstrated that B. dorsalis exhibits a greater flight capacity than B. correcta. RNA-Seq was used to determine the transcriptomic differences associated with the flight capacity of two Bactrocera species. Transcriptome data showed that 6392 unigenes were differentially expressed between the two species in the larval stage, whereas in the adult stage, 4104 differentially expressed genes (DEGs) were identified in females, and 3445 DEGs were observed in males. The flight capacity appeared to be correlated with changes in the transcriptional levels of genes involved in wing formation, flight muscle structure, energy metabolism, and hormonal control. Using RNA interference (RNAi) to verify the function of one DEG, the epidermal growth factor receptor (EGFR), we confirmed the role of this gene in regulating wing development, and thereby flight capacity, in both species. This work reveals the flight mechanism of fruit flies and provides insight into fundamental transcriptomics for further studies on the flight performance of insects.
机译:飞行能力对于入侵害虫在进入,建立和传播过程中至关重要。桔小实蝇(Bactrocera dorsalis Hendel)和实蝇小实蝇(Bactroceracorrecta Bezzi)都是入侵性果蝇,但它们的飞行能力不同。在这里,拴系式飞行磨机测试表明,背叶双歧杆菌比正确双歧杆菌具有更大的飞行能力。 RNA-Seq用于确定与两种拟杆菌属的飞行能力相关的转录组差异。转录组数据显示,在幼虫期两个物种之间有6392个单基因差异表达,而在成年阶段,在雌性中鉴定出4104个差异表达基因(DEG),在雄性中观察到3445个DEG。飞行能力似乎与机翼形成,飞行肌肉结构,能量代谢和激素控制相关基因的转录水平变化相关。使用RNA干扰(RNAi)来验证一个DEG(表皮生长因子受体(EGFR))的功能,我们确认了该基因在两个物种中调节机翼发育并从而调节飞行能力的作用。这项工作揭示了果蝇的飞行机制,并为深入研究昆虫的飞行性能提供了基础转录组学的见解。

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