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微小RNA ame-miR-279a调节觅食蜜蜂(西方蜜蜂)的蔗糖反应性。

The microRNA ame-miR-279a regulates sucrose responsiveness of forager honey bees (Apis mellifera).

作者信息

Liu Fang, Shi Tengfei, Yin Wei, Su Xin, Qi Lei, Huang Zachary Y, Zhang Shaowu, Yu Linsheng

机构信息

Anhui Province Key Laboratory of Local Livestock and Poultry, Genetical Resource Conservation and Breeding, College of Animal Science and Technology, Anhui Agricultural University, 230000, Hefei, Anhui, China.

Anhui Province Key Laboratory of Local Livestock and Poultry, Genetical Resource Conservation and Breeding, College of Animal Science and Technology, Anhui Agricultural University, 230000, Hefei, Anhui, China.

出版信息

Insect Biochem Mol Biol. 2017 Nov;90:34-42. doi: 10.1016/j.ibmb.2017.09.008. Epub 2017 Sep 20.

Abstract

Increasing evidence demonstrates that microRNAs (miRNA) play an important role in the regulation of animal behaviours. Honey bees (Apis mellifera) are eusocial insects, with honey bee workers displaying age-dependent behavioural maturation. Many different miRNAs have been implicated in the change of behaviours in honey bees and ame-miR-279a was previously shown to be more highly expressed in nurse bee heads than in those of foragers. However, it was not clear whether this difference in expression was associated with age or task performance. Here we show that ame-miR-279a shows significantly higher expression in the brains of nurse bees relative to forager bees regardless of their ages, and that ame-miR-279a is primarily localized in the Kenyon cells of the mushroom body in both foragers and nurses. Overexpression of ame-miR-279a attenuates the sucrose responsiveness of foragers, while its absence enhances their sucrose responsiveness. Lastly, we determined that ame-miR-279a directly target the mRNA of Mblk-1. These findings suggest that ame-miR-279a plays important roles in regulating honey bee division of labour.

摘要

越来越多的证据表明,微小RNA(miRNA)在动物行为的调节中起着重要作用。蜜蜂(西方蜜蜂)是群居昆虫,蜜蜂工蜂表现出与年龄相关的行为成熟。许多不同的miRNA与蜜蜂行为的变化有关,先前研究表明ame-miR-279a在哺育蜂头部的表达高于采集蜂。然而,尚不清楚这种表达差异是与年龄还是任务表现相关。在这里,我们表明,无论年龄大小,ame-miR-279a在哺育蜂大脑中的表达相对于采集蜂均显著更高,并且ame-miR-279a主要定位于采集蜂和哺育蜂蘑菇体的肯扬细胞中。过表达ame-miR-279a会减弱采集蜂对蔗糖的反应能力,而缺失ame-miR-279a则会增强它们对蔗糖的反应能力。最后,我们确定ame-miR-279a直接靶向Mblk-1的mRNA。这些发现表明ame-miR-279a在调节蜜蜂劳动分工中起重要作用。

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