Gallus Lorenzo, Bottaro Massimiliano, Ferrando Sara, Girosi Laura, Ramoino Paola, Tagliafierro Grazia
Dipartimento per lo studio del Territorio e delle sue Risorse (DIPTERIS), Università di Genova, Corso Europa 26, I-16132, Italy.
Microsc Res Tech. 2006 Aug;69(8):636-41. doi: 10.1002/jemt.20333.
In this study, the presence and distribution of FMRFamide-like immunoreactivity in the alimentary tract of barnacle Balanus amphitrite were investigated. A net of nerve fibers strongly immunoreactive to FMRFamide-like molecules was localized in the posterior midgut and hindgut. Positive varicose nerve terminals were also localized close to the circular muscle cells and, in the hindgut, close to the radial muscular fibers. Besides this nerve fibers network, one pair of contralateral ganglia was localized in the hindgut, each of them constituted by two strongly FMRFamide-labeled neurons and one nonlabeled neuron. Their immunoreactive axons directed toward the hindgut and posterior midgut suggest an involvement of FMRFamide-like substances in adult B. amphitrite gut motility. The hindgut associated ganglia of barnacles seem to correspond to the terminal abdominal ganglia of the other crustaceans. Since they are the only residual gut ganglia in the barnacle's reduced nervous system, we can hypothesize that gut motility needs a nervous system regulation partially independent of the central nervous system.
在本研究中,对藤壶白脊藤壶消化道中类FMRF酰胺免疫反应性的存在和分布进行了研究。对类FMRF酰胺分子具有强免疫反应性的神经纤维网位于中肠后部和后肠。阳性曲张神经末梢也位于靠近环形肌细胞处,在后肠中则靠近放射状肌纤维。除了这个神经纤维网络外,在后肠中还定位有一对对侧神经节,每个神经节由两个强FMRF酰胺标记的神经元和一个未标记的神经元组成。它们的免疫反应性轴突指向后肠和中肠后部,这表明类FMRF酰胺物质参与了成年白脊藤壶的肠道运动。藤壶的后肠相关神经节似乎与其他甲壳类动物的腹部终末神经节相对应。由于它们是藤壶简化神经系统中仅存的肠道神经节,我们可以推测肠道运动需要部分独立于中枢神经系统的神经调节。