Department of Anatomy, Faculty of Sciences, Mahidol University, Rachathewi, Bangkok, 10400, Thailand.
Faculty of Allied Health Sciences, Burapha University, Long-Hard Road, Bangsaen, Mueang District, Saen Suk, Chonburi, 20131, Thailand.
Cell Tissue Res. 2019 Jun;376(3):471-484. doi: 10.1007/s00441-019-02999-8. Epub 2019 Feb 19.
Neuropeptide F in invertebrates is a homolog of neuropeptide Y in mammals and it is a member of FMRFamide-related peptides. In arthropods, such as insects, there are two types of neuropeptide F comprising long neuropeptide F (NPF) and short neuropeptide F (sNPF). Both NPFs are known to play a crucial role in the regulations of foraging, feeding-related behaviors, circadian rhythm, stress responses, aggression and reproduction in invertebrates. We have earlier found that in the giant freshwater prawn, Macrobrachium rosenbergii, there are three isoforms of NPF and four isoforms of sNPF and that NPFs are expressed in the eyestalks and brain. In the present study, we investigate further the tissue distribution of NPF-I in the ventral nerve cord (VNC) and its role in the development of testes in small male (SM) Macrobrachium rosenbergii. By immunolocalization, using the rabbit polyclonal antibody against NPF-I as a probe, we could detect NPF-I immunoreactivity in the neuropils and neuronal clusters of the subesophageal ganglia (SEG), thoracic ganglia (TG) and abdominal ganglia (AG) of the SM prawns. In functional assays, the administrations of synthetic NPF-I (KPDPTQLAAMADALKYLQELDKYYSQVSRPRFamide) and sNPF (APALRLRFamide) peptides significantly increased the growth rates of SM prawns and significantly increased the gonadosomatic index (GSI) and proliferations of early germ cells in the seminiferous tubules of their testes. It is, therefore, suggestive that NPFs may play critical roles in energy homeostasis towards promoting growth as well as testicular development in prawns that could be applied in the aquaculture of this species.
神经肽 F 在无脊椎动物中是哺乳动物神经肽 Y 的同源物,它是 FMRF 酰胺相关肽的成员。在节肢动物,如昆虫中,有两种类型的神经肽 F,包括长神经肽 F(NPF)和短神经肽 F(sNPF)。已知两者都在觅食、摄食相关行为、昼夜节律、应激反应、攻击性和无脊椎动物的生殖调节中发挥关键作用。我们之前发现,在巨型淡水虾Macrobrachium rosenbergii中,有三种 NPF 同工型和四种 sNPF 同工型,并且 NPF 在眼柄和脑中表达。在本研究中,我们进一步研究了 NPF-I 在腹神经索(VNC)中的组织分布及其在小型雄性Macrobrachium rosenbergii 睾丸发育中的作用。通过免疫定位,使用针对 NPF-I 的兔多克隆抗体作为探针,我们可以检测到 NPF-I 免疫反应性在 SM 虾的食管下神经节(SEG)、胸神经节(TG)和腹神经节(AG)的神经节和神经元簇中。在功能测定中,合成 NPF-I(KPDPTQLAAMADALKYLQELDKYYSQVSRPRFamide)和 sNPF(APALRLRFamide)肽的给药显著提高了 SM 虾的生长速度,显著提高了其睾丸的性腺指数(GSI)和精小管中早期生殖细胞的增殖。因此,提示 NPF 可能在能量平衡中发挥关键作用,促进生长以及虾类的睾丸发育,这可能应用于该物种的水产养殖。