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Immunocytochemical localization of carbonic anhydrase in the pseudobranch tissue of the rainbow trout Oncorhynchus mykiss
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作者 S.M.RAHIM A.G.MAZLAN +2 位作者 K.D.SIMON J.P.DELAUNOY P.LAURENT 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2014年第2期194-200,共7页
Pseudobranch function has long interested scientists, but its role has yet to be elucidated. Several studies have suggested that pseudobranchs serve respiratory, osmoregulatory, and sensory functions. This work invest... Pseudobranch function has long interested scientists, but its role has yet to be elucidated. Several studies have suggested that pseudobranchs serve respiratory, osmoregulatory, and sensory functions. This work investigated the immunolocalization of pseudobranch carbonic anhydrase (CA) in the teleost fish species rainbow trout (Oncor- hynchus mykiss) to clarify its physiological function. CA was purified from rainbow trout gills O. mykiss and specific antibodies were raised. Immunoblotting between tissue homogenates of pseudobrench and gill CA antibodies showed specific immunostaining with only one band corresponding to CA in the pseudobranch homogenate. Results of im- munohistochemical technique revealed that CA was distributed within pseudobranch cells and more precisely in the apical parts (anti-vascular) of cells. The basal (vascular) parts of cells, tubular system, blood capillaries, and pillar cells were not immunostained. Immunocytochemistry confirmed these results and showed that some CA enzyme was cytoplasmic and the remainder was linked to membranous structures. The results also showed that the lacunar tissue tayers did not display immunoperoxidase activity. Our results indicated that pseudobranch CA may have a function related to the extracellular medium wherein CA intervenes with the mechanism of stimulation of afferent nerve fibers. 展开更多
关键词 pseudobranch Carbonic anhydrase Rainbow trout IMMUNOHISTOCHEMISTRY IMMUNOCYTOCHEMISTRY PHYSIOLOGY
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短盖巨脂鲤鳃、伪鳃和鳔胚后发育学研究 被引量:6
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作者 郭恩棉 张艳萍 王鑫 《海洋湖沼通报》 CSCD 北大核心 2005年第3期31-37,共7页
本文应用切片和显微技术,对短盖巨脂鲤鳃、伪鳃和鳔的胚后发育的组织形态学进行了研究.短盖巨脂鲤鳃的胚后发育可分为三个阶段:第一阶段(0~1日龄),原基期,鳃原基形成但未分化.第二阶段(2~10日龄),鳃结构发育、分化.第三阶段(11日龄之... 本文应用切片和显微技术,对短盖巨脂鲤鳃、伪鳃和鳔的胚后发育的组织形态学进行了研究.短盖巨脂鲤鳃的胚后发育可分为三个阶段:第一阶段(0~1日龄),原基期,鳃原基形成但未分化.第二阶段(2~10日龄),鳃结构发育、分化.第三阶段(11日龄之后),鳃的生长完善期.伪鳃由口腔壁分化出来,胚后发育分为三个阶段:第一阶段(0~2日龄),原基形成期.第二阶段(3~7日龄),发育分化期.第三阶段(8~21日龄),结构完善期.鳔的胚后发育可分成四个阶段:第一阶段(0~1日龄),原基形成期.第二阶段(2~5日龄),结构分化期.第三阶段(6~11日龄),充气期.第四阶段(13 天以后),完善与生长期. 展开更多
关键词 短盖巨脂鲤 伪鳃 胚后发育
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白鲢鳃部血管的研究 被引量:3
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作者 孟庆闻 樊恩源 《动物学报》 SCIE CAS CSCD 1990年第2期106-109,共4页
本文用甲基丙烯酸甲脂铸型技术,配合扫描电镜,研究白鲢鳃部血管的分布。鳃区具有双血液循环,动脉—动脉循环,主司血液与水体间气体交换;动脉—静脉循环主司鳃区营养交换。入鳃丝动脉上具有膨大的“血泡”结构,可能起“鳃心”作用,当鳃... 本文用甲基丙烯酸甲脂铸型技术,配合扫描电镜,研究白鲢鳃部血管的分布。鳃区具有双血液循环,动脉—动脉循环,主司血液与水体间气体交换;动脉—静脉循环主司鳃区营养交换。入鳃丝动脉上具有膨大的“血泡”结构,可能起“鳃心”作用,当鳃丝内收时将血液输送入入鳃动脉。伪鳃鳃小片彼此排列紧密,这种结构似不利于气体交换,可能没有什么呼吸功能。 展开更多
关键词 白鲢 血管
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