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沙漠蝗神经肽 F 对摄食的调节。

Regulation of feeding by Neuropeptide F in the desert locust, Schistocerca gregaria.

机构信息

Molecular Developmental Physiology and Signal Transduction, Department of Animal Physiology and Neurobiology, Zoological Institute, K.U. Leuven, Naamsestraat 59, B-3000 Leuven, Belgium.

出版信息

Insect Biochem Mol Biol. 2013 Jan;43(1):102-14. doi: 10.1016/j.ibmb.2012.10.002. Epub 2012 Oct 24.

Abstract

Our knowledge on the physiological function of the insect Neuropeptide F (NPF) mostly comes from studies in the fruit fly, Drosophila melanogaster, where NPF was shown to regulate diverse processes, such as feeding, learning and responding to stress. In the desert locust, Schistocerca gregaria, only a truncated form of the "full-length" NPF (the biologically active "trNPF") has been isolated. In this study, we investigated whether this peptide is involved in the regulation of feeding in this orthopteran species. In the S. gregaria EST-database, an NPF-precursor encoding transcript was found. Alignment with other insect NPF-precursors showed relatively highest sequence conservation within the trNPF region (and the flanking dibasic cleavage site), as compared to other regions of the NPF-precursor. Quantitative real-time RT-PCR revealed that the Schgr-NPF-precursor encoding transcript occurs throughout the central nervous system with relatively high transcript levels in the brain, optic lobes and suboesophageal ganglion. It was also detected at relatively high levels in the midgut, which suggests that the encoded peptide also functions in the digestive system. Moreover, Schgr-NPF-transcript levels were notably higher in starved animals than in animals fed ad libitum, while transcript levels were also shown to be regulated after the consumption of a meal. Injection of locust trNPF in adults stimulated food intake, while RNAi knockdown reduced food intake. Furthermore, injection of trNPF in adults stimulated weight increase, while RNAi knockdown reduced weight gain. This effect of trNPF on body weight gain may result from its stimulatory effect on food intake. Taken together, we provide clear evidence for an important role of trNPF in the regulation of feeding in the desert locust, S. gregaria.

摘要

我们对昆虫神经肽 F(NPF)的生理功能的了解主要来自于对果蝇的研究,在果蝇中,NPF 被证明调节多种过程,如进食、学习和应激反应。在沙漠蝗中,只分离到了“全长”NPF 的截断形式(具有生物活性的“trNPF”)。在本研究中,我们研究了这种肽是否参与了这种直翅目物种的进食调节。在 S. gregaria EST 数据库中,发现了一个 NPF 前体编码转录本。与其他昆虫 NPF 前体的比对显示,与 NPF 前体的其他区域相比,trNPF 区域(和侧翼的双碱性切割位点)具有相对较高的序列保守性。定量实时 RT-PCR 显示,Schgr-NPF 前体编码转录本存在于整个中枢神经系统中,在大脑、视叶和食管下神经节中具有相对较高的转录水平。它在中肠中也被检测到相对较高的水平,这表明编码的肽也在消化系统中发挥作用。此外,饥饿动物的 Schgr-NPF 转录本水平明显高于自由采食动物,而在进食后,转录本水平也显示出可调节性。在成虫中注射蝗虫 trNPF 刺激进食,而 RNAi 敲低则减少进食。此外,在成虫中注射 trNPF 可刺激体重增加,而 RNAi 敲低则减少体重增加。trNPF 对体重增加的这种影响可能是由于其对食物摄入的刺激作用。综上所述,我们为 trNPF 在沙漠蝗 S. gregaria 的进食调节中发挥重要作用提供了明确的证据。

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