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Comparative study of neuropeptide signaling systems in Hemiptera

机译:半翅目神经肽信号转导系统的比较研究

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摘要

Numerous physiological processes in insects are tightly regulated by neuropeptides and their receptors. Although they form an ancient signaling system, there is still a great deal of variety in neuropeptides and their receptors among different species within the same order. Neuropeptides and their receptors have been documented in many hemipteran insects, but the differences among them have been poorly characterized. Commercial grapevines worldwide are plagued by the bug Daktulosphaira vitifoliae (Hemiptera: Sternorrhyncha). Here, 33 neuropeptide precursors and 48 putative neuropeptide G protein-coupled receptor (GPCR) genes were identified in D. vitifoliae. Their expression profiles at the probe and feeding stages reflected potential regulatory roles in probe behavior. By comparison, we found that the Releasing Hormone-Related Peptides (GnRHs) system of Sternorrhyncha was differentiated from those of the other 2 suborders in Hemiptera. Independent secondary losses of the adipokinetic hormone/corazonin-related peptide receptor (ACP) and corazonin (CRZ) occurred during the evolution of Sternorrhyncha. Additionally, we discovered that the neuropeptide signaling systems of Sternorrhyncha were very different from those of Heteroptera and Auchenorrhyncha, which was consistent with Sternorrhyncha's phylogenetic position at the base of the order. This research provides more knowledge on neuropeptide systems and sets the groundwork for the creation of novel D. vitifoliae management strategies that specifically target these signaling pathways.
机译:昆虫的许多生理过程都受到神经肽及其受体的严格调控。尽管它们形成了一个古老的信号系统,但在同一目内的不同物种中,神经肽及其受体仍然存在很大的多样性。神经肽及其受体已在许多半翅目昆虫中记录,但它们之间的差异特征很差。全世界的商业葡萄藤都受到虫子Daktulosphaira vitifoliae(半翅目:Sternorrhyncha)的困扰。在这里,在葡萄树中鉴定了 33 个神经肽前体和 48 个推定的神经肽 G 蛋白偶联受体 (GPCR) 基因。它们在探针和喂养阶段的表达谱反映了探针行为中的潜在调控作用。通过比较,我们发现胸骨科的释放激素相关肽(GnRHs)系统与半翅目其他2个亚目不同。脂肪动力激素/香唑宁相关肽受体 (ACP) 和香唑宁 (CRZ) 的独立继发性丢失发生在胸骨鼻的进化过程中。此外,我们发现Sternorrhyncha的神经肽信号系统与Heteroptera和Auchenorrhyncha的神经肽信号系统有很大不同,这与Sternorrhyncha在目底部的系统发育位置一致。这项研究提供了更多关于神经肽系统的知识,并为创造新型D奠定了基础。专门针对这些信号通路的葡萄叶管理策略。

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