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Norepinephrine (NE) and phenylephrine (Phe) were employed to study the ionic requirements for alpha adrenoceptor activation in the teleost Poecilia reticulata melanophores. As expected the beta adrenoceptor blocker, propranolol, increased the sensitivity of the preparation to NE (5.8 times), and was therefore employed in all the experimental procedures. Neither cocaine (a neuronal uptake blocker) nor dexamethasone (an extraneuronal uptake blocker) enhanced the sensitivity of the preparation to NE, suggesting that these inactivating mechanisms would not play a role in P. reticulata pigmentary system. However, in the absence of calcium, the dose-response curve (DRC) to NE was displaced to the left about 3.5 times, whereas the DRC to Phe was not affected. These results indicate that a neuronal uptake is active, but was not demonstrated by the classical pharmacological tools, probably due to an assymmetric display of the nervous endings. The DRC to NE was rightward displaced (14.1 times) in the presence of the calcium channel blocker Verapamil, whereas the DRC to Phe was not affected. These data suggest that P. reticulata melanophores possess a mixed population of alpha1 and alpha2 adrenoceptors, the activation of the latter eliciting an extracellular calcium influx. In sodium-free saline, the DRC to NE was rightward shifted (6.6 times) and the response to Phe was impaired in such a way that the maximal response was not achieved. The DRC to both NE and Phe were rightward displaced (7.9 and 2.7 times respectively) in the presence of the sodium channel blocker tetrodotoxin (TTX) 10?7M. In potassium-free saline, the melanophore sensitivity to Phe was increased, whereas the responses to NE were not affected, suggesting a differential sensitivity of the two alpha adrenoceptor subtypes to the resulting membrane hyperpolarization. Based on the literature and on our data we propose that P. reticulata melanophores possess a mixed population of alpha1 and alpha2 receptors. The activation of both subtypes of alpha adrenoceptors elicits a Na+ ion influx through TTX-sensitive sodium channels. The stimulation of alpha2 adrenoceptors also requires an extracellular calcium influx, through the opening of slow calcium channels.  相似文献   
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ABSTRACT. The SSUrDNA and the ITS of different microsporidia from eight fishes, four insects and a shrimp were amplified and digested with restriction enzymes. The generated riboprints suggest a close evolutionary relationship between Glugea americanus and Spraguea lophii suggesting that Glugea americanus should be renamed Spraguea americanus and that the tissue infected and host origin should be considered of greater taxonomic importance for defining a genus than previously considered. Phylogenetic analysis of the riboprints demonstrates an unidentified microsporidium from a bumper fish ( Chloroscombrus chrysurus ) is related although not identical to Microgemma oviodea , a parasite from red band fish. We were also able to distinguish between Glugea anomala and Glugea atherinae and Glugea stephani but were not able to differenciate among the latter two. Insects isolates, Nosema costelytrae, N. bombycis, N. trichoplusiae, Nosema sp. and a shrimp isolate, Agmasoma penaei , are not related to the fish isolates.  相似文献   
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Some integrated patterns of behavior have been studied in coloniesof Veretillum cynomorium, whose various parts often act as ifthey were those of an individual consisting of the whole colony.The entire colony is involved in slow rhythmical movements,in which phases of contraction alternate with expansion. Thisbehavior corresponds to a permanent reciprocity (or duality)between the zooid-bearing rachis and the peduncle; overall behavioris determined by the number of "functionally active units" whicheither contains at any given time. This number is influencedby the excitatory or restraining effects of external factorssuch as light intensity or the entry of water. In this way,when contraction proceeds, activity of the rachis predominates,whereas during swelling of the colony, activity of the peduncleprevails. Observations on intact colonies and on specimens without peduncles,experiments using light and electrical stimuli, and the studyof peristalsis, all suggest that the mutually reciprocal natureof activity in the rachis and peduncle may be attributed tothe differential influence of external factors on the functionalstate of centers of spontaneous activity or of conduction pathwaysin the colony. Zooids present on the rachis are responsibleboth for the reciprocal activity of the colony and for its morphologicalpolarity.  相似文献   
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