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Mblk‐1 regulates sugar responsiveness in honey bee (Apis mellifera) foragers

机译:Mblk-1 调节蜜蜂 (Apis mellifera) 觅食者的糖反应性

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Abstract Brain transcriptional regulatory network for behavior demonstrates that brain gene expression in the honey bee can be accurately predicted from the expression transcription factors (TFs), but roles for specific TFs are less understood. Mushroom bodies (MBs) are important for learning, memory and sensory integration in the honey bee brain. A TFs, Mblk‐1, expressed preferentially in the large‐type Kenyon cells of the honeybee MBs is predicted to be involved in brain function by regulating transcription of its target genes in honey bee. However, its function and the mechanism of regulation in behavior of honey bee is still obscure. Here we show that Mblk‐1 had significantly higher expression in the brains of forager bees relative to nurse bees. Mblk‐1 was significantly inhibited in bees fed small interfering RNA. In addition, inhibition of Mblk‐1 decreased sucrose responsiveness in foragers. Finally, we determined that Mblk‐1 regulated the messenger RNA of AmGR1. These findings suggest that Mblk‐1 may target AmGR1 to regulate the sucrose responsiveness of foragers.
机译:摘要 脑行为转录调控网络表明,蜜蜂脑基因的表达可以通过表达转录因子(TFs)准确预测,但对特定TFs的作用知之甚少。蘑菇体 (MB) 对蜜蜂大脑的学习、记忆和感觉统合很重要。在蜜蜂MBs的大型Kenyon细胞中优先表达的TFs,Mblk-1,预计通过调节蜜蜂中靶基因的转录来参与脑功能。然而,其功能和调节蜜蜂行为的机制仍然模糊不清。在这里,我们发现Mblk-1在觅食蜂的大脑中相对于护士蜂具有更高的表达。Mblk-1 在喂食小干扰 RNA 的蜜蜂中受到显着抑制。此外,抑制 Mblk-1 降低了觅食者的蔗糖反应性。最后,我们确定 Mblk-1 调控 AmGR1 的信使 RNA。这些发现表明,Mblk-1可能靶向AmGR1来调节觅食者的蔗糖反应性。

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