Department of Entomology, Washington State University, Pullman, WA 99164, USA.
Arch Insect Biochem Physiol. 2013 Jan;82(1):43-57. doi: 10.1002/arch.21072. Epub 2012 Nov 7.
The insulin signaling pathway is the primary signaling pathway coupling growth with nutritional condition in all animals. Sensitivity to circulating levels of insulin has been shown to regulate the growth of specific traits in a dose-dependent manner in response to environmental conditions in a diversity of insect species. Alternative phenotypes in insects manifest in a variety of morphologies such as the sexually dimorphic and male dimorphic horned beetles. Large males of the sexually dimorphic dung beetle Onthophagus nigriventris develop a thoracic horn up to twice the length of the body whereas small males and females never develop this horn. The regulation of this dimorphism is known to be nutrition dependent for males. We focused on the insulin signaling pathway as a potential regulator of this dimorphism. We sequenced a full-length gene transcript encoding the O. nigriventris insulin receptor (OnInR), which is the receptor for circulating insulin and insulin-like peptides in animals. We show that the predicted OnInR protein is similar in overall amino acid identity to other insulin receptors (InRs) and is most closely related phylogenetically to insect InRs. Expression of the OnInR transcript was found during development of imaginal tissues in both males and females. However, expression of OnInR in the region where a horn would grow of small males and female was significantly higher than in the horn tissues of large males at the end of growth. This variation in OnInR expression between sexes and morphs indicates a role for the InR in polymorphic horn development.
胰岛素信号通路是连接所有动物生长和营养状况的主要信号通路。已经表明,对循环胰岛素水平的敏感性能够以剂量依赖的方式调节特定特征的生长,以响应不同昆虫物种的环境条件。昆虫的替代表型表现为多种形态,例如性二态和雄性二态角甲虫。性二态粪金龟 Onthophagus nigriventris 的大型雄性会发育出长达身体两倍长的胸部角,而小型雄性和雌性则从未发育出这种角。这种二态性的调节已知依赖于雄性的营养。我们将胰岛素信号通路作为调节这种二态性的潜在调节剂。我们对编码 O. nigriventris 胰岛素受体 (OnInR) 的全长基因转录本进行了测序,OnInR 是动物循环胰岛素和胰岛素样肽的受体。我们表明,预测的 OnInR 蛋白在整体氨基酸同一性上与其他胰岛素受体 (InRs) 相似,并且在系统发育上与昆虫 InRs 最为密切相关。OnInR 转录本的表达在雄性和雌性的 imaginal 组织发育过程中都有发现。然而,在小雄性和雌性中 horns 生长区域的 OnInR 表达显著高于生长结束时大型雄性 horns 组织中的表达。这种性别和形态之间的 OnInR 表达差异表明 InR 在多态性角发育中具有作用。