Palasoon Ronnarong, Panasophonkul Sasiporn, Sretarugsa Prapee, Hanna Peter, Sobhon Prasert, Chavadej Jittipan
Department of Anatomy, Mahidol University, Bangkok, Thailand.
Invert Neurosci. 2011 Jun;11(1):29-42. doi: 10.1007/s10158-011-0115-4. Epub 2011 Apr 8.
Immunohistochemistry was used to identify the distribution of both APGWamide-like and RFamide-like peptides in the central nervous system (CNS) and ovary of the mature female giant freshwater prawn, Macrobrachium rosenbergii. APGWamide-like immunoreactivity (ALP-ir) was found only within the sinus gland (SG) of the eyestalk, in small- and medium-sized neurons of cluster 4, as well as their varicosed axons. RFamide-like immunoreactivity (RF-ir) was detected in neurons of all neuronal clusters of the eyestalk and CNS, except clusters 1 and 5 of the eyestalk, and dorsal clusters of the subesophageal, thoracic, and abdominal ganglia. The RF-ir was also found in all neuropils of the CNS and SG, except the lamina ganglionaris. These immunohistochemical locations of the APGWamide-like and RF-like peptides in the eyestalk indicate that these neuropeptides could modulate the release of the neurohormones in the sinus gland. The presence of RFamide-like peptides in the thoracic and abdominal ganglia suggests that it may act as a neurotransmitter which controls muscular contractions. In the ovary, RF-ir was found predominantly in late previtellogenic and early vitellogenic oocytes, and to a lesser degree in late vitellogenic oocytes. These RFs may be involved with oocyte development, but may also act with other neurohormones and/or neurotransmitters within the oocyte in an autocrine or paracrine manner.
免疫组织化学方法用于鉴定成熟雌性罗氏沼虾中枢神经系统(CNS)和卵巢中类APGWamide肽和类RFamide肽的分布。类APGWamide免疫反应性(ALP-ir)仅在眼柄的窦腺(SG)内、第4簇的中小型神经元及其曲张轴突中发现。类RFamide免疫反应性(RF-ir)在眼柄和中枢神经系统所有神经簇的神经元中均有检测到,但眼柄的第1和第5簇以及咽下神经节、胸神经节和腹神经节的背侧簇除外。RF-ir在中枢神经系统和窦腺的所有神经纤维网中也有发现,但神经节层除外。眼柄中类APGWamide肽和类RF肽的这些免疫组织化学定位表明,这些神经肽可能调节窦腺中神经激素的释放。胸神经节和腹神经节中类RFamide肽的存在表明,它可能作为一种控制肌肉收缩的神经递质。在卵巢中,RF-ir主要在卵黄发生前期晚期和卵黄发生早期的卵母细胞中发现,在卵黄发生晚期的卵母细胞中含量较少。这些RFs可能参与卵母细胞发育,但也可能以自分泌或旁分泌方式与卵母细胞内的其他神经激素和/或神经递质共同起作用。