Department of Entomology, Texas A&M University, College Station, TX 77843-2475, USA.
Insect Mol Biol. 2011 Oct;20(5):637-49. doi: 10.1111/j.1365-2583.2011.01094.x. Epub 2011 Jul 29.
The insulin and insulin-like growth factor (IGF) signalling (IIS) pathway in the honey bee (Apis mellifera) is linked to reproductive division of labour and foraging behaviour. Two insulin receptor genes are present in the released genomes of other social hymenopterans. Limited information is available on the IIS pathway role in ants. The predicted insulin receptor sequences from the recently released draft genome of the fire ant Solenopsis invicta (Hymenoptera: Formicidae) are incomplete and biologically significant data are also lacking. To elucidate the role of the IIS pathway in the fire ant, two putative insulin receptors (SiInR-1 and SiInR-2) were cloned; the first InR cDNAs cloned from social insects. Analyses of putative post-translational modification sites in SiInRs revealed the potential for differential regulation. We investigated the transcriptional expression of both receptors at different developmental stages, castes and queen tissues. In last instar larvae and pharate pupae of workers and reproductive, transcriptional abundance of both receptors was negatively correlated with body size and nutritional status. The expression level of both receptors in different queen tissues appears to correlate with requirements for queen reproductive physiology and behaviours. This study contributes new information to the understanding of social insects because in fire ants juvenile hormone acts as a gonadotropin and workers are fully sterile, contrary to honey bees.
在蜜蜂(Apis mellifera)中,胰岛素和胰岛素样生长因子(IGF)信号通路与生殖劳动分工和觅食行为有关。其他社会性膜翅目昆虫的释放基因组中存在两种胰岛素受体基因。关于蚂蚁中 IIS 途径的作用,信息有限。最近发布的红火蚁(Solenopsis invicta)(膜翅目:蚁科)草案基因组中的预测胰岛素受体序列不完整,也缺乏有生物学意义的数据。为了阐明 IIS 途径在红火蚁中的作用,我们克隆了两个假定的胰岛素受体(SiInR-1 和 SiInR-2);这是首次从社会性昆虫中克隆的 InR cDNA。对 SiInRs 中假定的翻译后修饰位点的分析表明,存在差异调节的潜力。我们在不同的发育阶段、性别和蜂王组织中研究了两个受体的转录表达。在工蜂的末龄幼虫和假蛹以及生殖期,两个受体的转录丰度与体型和营养状况呈负相关。不同蜂王组织中两个受体的表达水平似乎与蜂王生殖生理学和行为的要求相关。这项研究为理解社会性昆虫提供了新的信息,因为在红火蚁中,保幼激素充当促性腺激素,而工蜂是完全不育的,这与蜜蜂不同。