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鉴定刺龙虾(Panulirus argus)中假定的神经肽信号系统。

Identification of putative neuropeptidergic signaling systems in the spiny lobster, Panulirus argus.

机构信息

Békésy Laboratory of Neurobiology, Pacific Biosciences Research Center, School of Ocean and Earth Science and Technology, University of Hawaii at Manoa, 1993 East-West Road, Honolulu, HI, 96822, USA.

出版信息

Invert Neurosci. 2020 Jan 24;20(1):2. doi: 10.1007/s10158-020-0235-9.

Abstract

Members of the decapod infraorder Achelata, specifically species from the genus Panulirus, have storied histories as models for investigating the basic principles governing the generation, maintenance, and modulation of rhythmic motor behavior, including modulation by locally released and circulating peptides. Despite their contributions to our understanding of peptidergic neuromodulation, little is known about the identity of the native neuropeptides and neuronal peptide receptors present in these crustaceans. Here, a Panulirus argus nervous system-specific transcriptome was used to help fill this void, providing insight into the neuropeptidome and neuronal peptide receptome of this species. A neuropeptidome consisting of 266 distinct peptides was predicted using the P. argus assembly, 128 having structures placing them into a generally recognized arthropod peptide family: agatoxin-like peptide, allatostatin A (AST-A), allatostatin B, allatostatin C, bursicon, CCHamide, crustacean cardioactive peptide, crustacean hyperglycemic hormone/molt-inhibiting hormone, diuretic hormone 31 (DH31), ecdysis-triggering hormone (ETH), FMRFamide-like peptide (FLP), glycoprotein hormone (GPH), GSEFLamide, inotocin, leucokinin, myosuppressin, natalisin, neuroparsin, neuropeptide F, orcokinin, orcomyotropin, periviscerokinin, pigment-dispersing hormone, pyrokinin, red pigment-concentrating hormone, RYamide, short neuropeptide F (sNPF), SIFamide, sulfakinin, tachykinin-related peptide (TRP), and trissin. Twenty-five putative neuronal receptors, encompassing 15 peptide groups, were also identified from the P. argus transcriptome: AST-A, bursicon, CCHamide, DH31, diuretic hormone 44, ETH, FLP, GPH, inotocin, insulin-like peptide, myosuppressin, natalisin, periviscerokinin, sNPF, and TRP. Collectively, the reported data provide a powerful resource for expanding studies of neuropeptidergic control of physiology and behavior in members of the genus Panulirus specifically, and decapods generally.

摘要

十足目下的 Achelata 亚目成员,特别是十足目龙虾属的物种,有着悠久的历史,是研究控制节律性运动行为产生、维持和调节的基本原理的模型,包括局部释放和循环肽的调节。尽管它们为我们了解肽能神经调节做出了贡献,但对于这些甲壳类动物中存在的天然神经肽和神经元肽受体的了解甚少。在这里,使用 Panulirus argus 神经系统特异性转录组来帮助填补这一空白,深入了解该物种的神经肽组和神经元肽受体组。使用 P. argus 组装预测了一个由 266 种不同肽组成的神经肽组,其中 128 种具有将它们归入一般公认的节肢动物肽家族的结构:阿加托辛样肽、脑激素 A(AST-A)、脑激素 B、脑激素 C、膨体激素、CCH 酰胺、甲壳动物心活肽、甲壳动物高血糖激素/蜕皮抑制激素、利尿激素 31(DH31)、蜕皮激素触发激素(ETH)、FMRFamide 样肽(FLP)、糖蛋白激素(GPH)、GSEFLamide、心因肽、白细胞抑制素、肌抑制素、纳塔辛、神经肽 F、章鱼催产素、章鱼促黑素、围脏神经肽、色素分散激素、吡咯菌素、红色色素浓缩激素、RYamide、短神经肽 F(sNPF)、SIFamide、磺基促黑素、促速激肽相关肽(TRP)和三肽。还从 P. argus 转录组中鉴定出 25 种假定的神经元受体,涵盖 15 种肽组:AST-A、膨体激素、CCH 酰胺、DH31、利尿激素 44、ETH、FLP、GPH、心因肽、胰岛素样肽、白细胞抑制素、肌抑制素、纳塔辛、围脏神经肽、sNPF 和 TRP。总的来说,所报道的数据为研究 Panulirus 属成员,特别是十足目动物的生理学和行为的神经肽控制提供了强大的资源。

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