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1.
赵峰  杨刚  张涛  王妤  庄平 《海洋渔业》2016,(1):35-41
为了探讨中华鲟幼鱼进入长江口半咸水环境后,渗透压适应调节过程中鳃上皮泌氯细胞的适应性变化,将幼鱼在淡水(盐度0)和半咸水(盐度15)两种条件下驯养60 d,利用光镜和扫描电镜技术对比分析鳃上皮泌氯细胞的形态、分布与数量特征。结果表明:幼鱼鳃上皮泌氯细胞主要集中分布于鳃小片基部和鳃小片之间的鳃丝上,细胞略呈椭圆形。半咸水条件下,幼鱼鳃丝上皮泌氯细胞数量和大小显著增加,鳃小片上皮泌氯细胞数量则未发生改变,但细胞大小显著增加;而鳃丝和鳃小片上皮泌氯细胞的形态在淡水和半咸水中均未发生显著变化。扫描电镜观察发现,鳃丝上皮泌氯细胞顶膜开口的形态分为3种类型:Ⅰ型,突起型;Ⅱ型,凹陷型;Ⅲ型,深洞型。淡水条件下,顶膜开口形态多为Ⅰ型和Ⅱ型,未发现Ⅲ型存在;而半咸水条件下,顶膜开口形态以Ⅲ型为主,Ⅰ型与Ⅱ型也有少量分布。  相似文献   

2.
不同盐度和驯养时间中华鲟子二代幼鱼鳃的显微结构变化   总被引:1,自引:0,他引:1  
采用光学显微镜和组织切片方法,研究了不同盐度和驯养时间中华鲟幼鱼鳃及鳃中泌氯细胞的结构变化特征。试验用鱼为1+龄中华鲟子二代,平均全长50.7 cm,平均体重约441.9 g。试验前在养殖池中暂养1周。试验设2个盐度梯度(10、15)组和1个对照组(淡水)。盐度驯养为将中华鲟子二代从暂养池转入盐度10海水中驯养,分别取驯养1、3、6、9、12、24、48、72、96、120、144、168、192、216、240和264 h的幼鱼各1尾用于试验;将剩下的鱼再转入盐度15海水中驯养,分别取驯养24、48、72 h的幼鱼各1尾用于试验。结果显示,在淡水组中,中华鲟子二代幼鱼鳃丝发达,细胞饱满,鳃小片宽且长。鳃丝上皮的泌氯细胞数量较少,通常靠近鳃小片基部,呈近椭圆状。与淡水组相比,盐度10组的幼鱼鳃丝主干部明显变窄,鳃小片基部区域及鳃小片上泌氯细胞的数量略有增加,胞体变大,且随驯养时间的延长,出现了明显的细胞膜间隙。幼鱼在盐度15组中鳃丝主干明显变窄变短,鳃小片也显著缩短,鳃泌氯细胞数量显著增加,主要分布在鳃小片基部,有明显的分泌腔。中华鲟子二代幼鱼能够快速适应外界水体盐度的变化,这与鳃及鳃上皮中调节渗透压功能细胞的数量和结构变化相适应。  相似文献   

3.
马氏珠母贝精子的超低温保存   总被引:7,自引:2,他引:7  
王梅芳 《水产学报》2006,30(3):316-322
采用光镜和透射电镜方法,研究了不同盐度驯化下施氏鲟幼鱼鳃中泌氯细胞的分布和结构特征。结果显示,在淡水中,施氏鲟幼鱼鳃中的泌氯细胞数量较少,且主要分布在近鳃小片基部,胞体与核均较大而明显,胞内含大量线粒体;泌氯细胞中有网管和囊管,但网管欠发达,囊管分布面积小,细胞表面有顶隐窝。表现为典型的淡水型泌氯细胞(freshwater-type chloride cells)特征。与淡水组相比,盐度10组鳃泌氯细胞的分布和结构变化均不明显,仅数量略有增加,胞体变大。幼鱼在盐度25海水中驯化65d,鳃丝和鳃小片上泌氯细胞数量明显增加,泌氯细胞集中分布在鳃小片基部;超微结构显示,细胞内线粒体数量明显增加,胞质中网管颇为发达,囊管丰富,顶隐窝扩大,表面有微绒毛,表现为α-型(α-subtype)泌氯细胞特征。泌氯细胞具有分泌体内过多Na^+、Cl-以及调节体液渗透平衡的功能,其数量和结构变化与幼鱼所处的高渗环境相适应。  相似文献   

4.
本研究以淡水养殖中华鲟(Acipenser sinensis)幼鱼为研究对象,采用连续升盐的方式实施海水驯化实验,对驯化过程中不同盐度下中华鲟幼鱼渗透调节器官鳃、肾和肠组织结构进行比较研究,以期了解各器官在渗透调节过程中的适应性变化。结果显示,中华鲟幼鱼在海水条件下存活率达100%;海水驯化过程中,随着盐度的升高,中华鲟幼鱼鳃小片宽度显著减小(P<0.05),相邻鳃小片间距、泌氯细胞直径显著增加(P<0.05),表明中华鲟幼鱼从淡水环境逐渐向海水环境适应过程中,通过改变鳃小片宽度及相邻间距,加快机体与外界水氧交换量,增加泌氯细胞大小,提高细胞代谢水平,以应对海水环境的高渗透压。同时,中华鲟幼鱼肾小球长径在海水驯化过程中显著减小(P<0.05),同时数量也略有减少,表明中华鲟幼鱼通过降低肾脏的滤过功能减少机体水分丧失,以适应外界环境渗透压的变化。肠道组织结构未观察到明显变化。研究表明,中华鲟幼鱼具有较强的海水适应能力,渗透调节器官主要通过改变鳃小片宽度和间距、泌氯细胞大小及肾小球大小和数量来适应海水盐度变化。  相似文献   

5.
随着养殖密度的增加,过量投喂产生的残饵和大量代谢废物在水中积累,并通过氨化作用转化为氨态氮在水体中富集,对鱼类的抗氧化系统、呼吸及神经系统均存在较大的危害。本研究以6月龄淇河鲫()幼鱼[体重(15±2)g]为实验对象,研究水体中过量氨氮(50 mg/L、100 mg/L、150 mg/L、200 mg/L、250 mg/L、300 mg/L)对淇河鲫脑、鳃、肝、肾的组织学损害。结果发现,淇河鲫安全养殖的氨氮浓度为16.6 mg/L,超过安全浓度后随着氨氮浓度的升高及氨氮胁迫时间的延长,脑神经纤维结构被破坏的程度增大,神经细胞体出现不同程度坏死;鳃小片也出现不同程度的萎缩聚拢,鳃丝基部充血肿大,鳃丝间隔增大,上皮细胞排列紊乱,泌氯细胞和上皮细胞出现不同程度的空泡化,超显微观察发现,鳃小片出现萎缩,上皮细胞脱落,细胞表面分泌物增多;肝组织中心静脉周围肝细胞排列出现不同程度的紊乱,肝小叶轮廓模糊不清且间距增大,肝细胞排列疏松,细胞核出现不同程度的偏移、溶解,细胞表面粗糙且分泌物增多;肾组织出现淋巴细胞浸润和扩散、肾小囊腔膨大、肾小管腔缩小的现象,甚至出现了肾小球坏死。以上结果表明高浓度氨氮对淇河鲫幼鱼的神经、呼吸及代谢相关器官均存在不同程度的损害。因而,在淇河鲫大规模养殖过程中,应严格监测水体中氨氮浓度,践行绿色、健康养殖模式。  相似文献   

6.
本研究运用光学显微镜、扫描电镜以及透射电镜技术研究了南海北部黄鳍金枪鱼(Thunnus albacares)幼鱼和成鱼鳃的显微组织结构、鳃表面超微结构和鳃小片内部超微结构特点。结果表明, 黄鳍金枪鱼鳃丝顶端弯曲, 鳃弓、 鳃丝和鳃耙表面具有不同类型的细胞。表面超微结构研究显示黄鳍金枪鱼的鳃具有高的片层密度、独特的斜向血流模式以及鳃的融合特性, 幼鱼和成鱼鳃结构之间存在显著不同。鳃小片内部超微结构研究显示鳃扁平上皮细胞覆盖于鳃丝和鳃小片表面, 顶端存在微绒毛或微脊结构, 相对幼鱼, 成鱼具有高的细胞质密度; 离子细胞主要分布于鳃小片以及鳃小片基部, 幼鱼离子细胞顶端开口为微绒毛, 成鱼为小坑状。本研究阐明了黄鳍金枪鱼幼鱼和成鱼鳃的组织结构, 丰富了黄鳍金枪鱼鳃的基础生物学资料, 为研究高速游泳鱼类鳃的形态特征与其高速游泳习性之间的关系提供了参考。  相似文献   

7.
苏氏鲢鲶鳃超微结构观察   总被引:10,自引:0,他引:10  
对苏氏鲢鲶鳃结构进行扫描和透射电镜观察.鲢鲶鳃丝末端膨大呈杓状结构,每一鳃丝两侧具许多呈褶状的鳃小片,相邻两鳃丝上的鳃小片紧密镶嵌排列.鳃弓和鳃耙表面分布众多味蕾.鳃丝呼吸面上皮细胞薄,高度血管化,形成呼吸面隆起;非呼吸面由微脊细胞彼此相连,间缝具分泌细胞开口.鳃小片由单层或数层外上皮细胞和由基膜相隔的柱状细胞及其围在血管腔的凸缘构成,氯细胞多分布在鳃小片基部,并有开口通外.还探讨了鲢鲶鳃丝和鳃小片特殊的结构与功能.  相似文献   

8.
在水温22~25℃的条件下,研究不同盐度、碱度水体对大鳞(Barbus capito)幼鱼生长、摄食和鳃组织的影鲃响,探索了幼鱼生长的最适条件.单因素盐度梯度值设置为0(对照组)、2.0、4.0、6.1、7.8、10.0和11.9,实验结果表明,当盐度高于6.1时,大鳞幼鱼的体长和体质量受到显著影响(P<0.05);盐度2.0时幼鱼的终末体质量值最鲃大;盐度4.0时体质量特定增长率和饵料转化效率最高,盐度11.9时均降至最低;盐度到达7.8时对幼鱼生长有抑制作用,依据理论公式推算,幼鱼的最适生长盐度应为1.88.单因素碱度梯度值为10.00、15.83、25.10、39.80和63.12 mmol/L,碱度高于25.10 mmol/L时对幼鱼的体质量、饵料转化效率及总摄食量均有显著影响(P<0.05);碱度15.83 mmol/L时幼鱼的终末体质量、体质量生长率和饵料转化效率值最高,碱度63.12 mmol/L时最低.碱度到达39.80 mmol/L时对幼鱼生长有抑制作用,依据理论公式推算,幼鱼的最适生长碱度为20.57 mmol/L.从鳃组织的显微结构观察结果来看,随着盐度和碱度的升高,鳃小片上皮细胞出现肿胀、脱落和坏死的现象,泌氯细胞的体积膨胀,从而影响了幼鱼的生长.综上所述,大鳞幼鱼期,养殖盐度不宜超过6.1,碱度不超过25.10 mmol/L.鲃  相似文献   

9.
黄鳍鲷和尼罗罗非鱼鳃丝表面结构扫描电镜观察   总被引:3,自引:0,他引:3  
黄鳍鲷Sarus latus和尼罗罗非鱼Oreochromis nilotica鳃丝和鳃小片表面都具有规则或不规则分布的环形微嵴、沟状或坑状凹陷及孔洞等结构.黄鳍鲷的鳃丝表面一部分鳃丝表皮凹凸不平,另一部分鳃丝表皮较为平坦.黄鳍鲷和尼罗罗非鱼鳃上皮几种细胞的形态结构及数量分布存在细微的差异.黄鳍鲷的扁平上皮细胞表面观以不规则的六边形为主,或类似菱形的四边形,细胞间界限清楚,而尼罗罗非鱼鳃丝细胞表面的微嵴以形成密集指纹状回路,隆起的微嵴两侧有细小的横突,扁平上皮细胞间排列凹凸不平,形成深沟或凹坑,成为细胞间明确的界线.黄鳍鲷鳃丝表面的氯细胞和粘液细胞数量较多,尼罗罗非鱼鳃丝表面基本上没有观察到氯细胞,粘液细胞很少.黄鳍鲷鳃小片的厚度比尼罗罗非鱼鳃小片的厚.  相似文献   

10.
采用组织切片和透射电镜技术对人工培育四指马鲅(Eleutheronema tetradactylum)鳃结构及其早期(1—35日龄)发育进行观察。结果显示,鳃耙列齿状,鳃丝梳状排列在鳃弓上,鳃小片排列在鳃丝两边。透射电镜下鳃小片主要由线粒体丰富细胞(Ⅰ型和Ⅱ型)、扁平上皮细胞、柱细胞、血细胞、黏液细胞和未分化细胞组成。四指马鲅鳃早期发育显示,1日龄鳃原基形成;3日龄出现鳃弓,有扁平上皮细胞和血细胞;5日龄出现鳃小片,鳃小片上有柱细胞,基部有线粒体丰富细胞;18日龄鳃小片增多,鳃结构完善;35日龄鳃结构基本和成鱼一致。根据发育特点将其分为3个阶段:第1阶段(0—3日龄)为原基期,鳃原基形成但未分化,仔鱼主要靠鳍褶、皮肤和卵黄囊上的微血管进行呼吸;第2阶段(4—17日龄)为鳃结构分化、发育期,鳃耙、鳃弓、鳃丝、鳃小片逐渐形成,具备鳃基本的结构特点;第3阶段(18—35日龄)为鳃结构完善期,鳃组织发育主要体现在数量和形状的变化。  相似文献   

11.
为探究不同盐度对斜带石斑鱼幼鱼血清离子浓度和激素水平的影响及其与鳃线粒体丰富细胞(MRCs)渗透调节功能关系,实验将暂养于盐度为30的水体中的斜带石斑鱼幼鱼直接转移至盐度分别为5、10、20和30(对照组)的水体中,于7和15 d分别检测血清Na~+、K~+、Cl~–浓度和血清皮质醇(COR)水平,并于第15天观察幼鱼鳃MRCs分布和结构的变化。结果显示,随盐度升高,幼鱼血清Na~+、Cl~–浓度显著上升,而K~+浓度无显著变化;COR水平在盐度5和10实验组显著高于盐度20和对照组;随盐度上升,鳃MRCs体积增大,数量增多,且盐度20和对照组鳃MRCs体积显著大于盐度5和10实验组;鳃MRCs表面存在一个特殊的顶膜结构,在不同盐度下呈现不同形态:盐度5和10实验组中鳃MRCs顶膜开口较大,且其表面存在大量的微绒,而盐度20实验组和对照组中鳃MRCs的顶膜向内深陷形成了一个顶隐窝,开口较小,且其表面没有微绒毛。研究表明,斜带石斑鱼幼鱼鳃MRCs在盐度5的水体中可以很好地发挥渗透调节功能,使幼鱼在盐度5的水体中存活。  相似文献   

12.
运用石蜡切片技术和扫描电镜技术对稀有鮈鲫(Gobiocypris rarus)鳃结构进行观察,并采用浓度为2 mg/L的Cd Cl_2水溶液对稀有鮈鲫进行急性毒理实验。结果显示:稀有鮈鲫具4对鳃,由鳃耙、鳃弓、鳃丝及鳃小片组成。鳃的各个部位表面均有上皮细胞覆盖;鳃耙和鳃弓具味蕾,鳃弓上还具不同类型的黏液细胞;相邻鳃小片的上皮细胞间也分布有黏液细胞,在鳃小片基部有氯细胞着生。鳃丝表面有不规则凹陷和微嵴,具沟、坑、孔等结构;鳃小片两面均呈凹凸状。在2 mg/L的Cd Cl_2水溶液暴露下,鳃受到损伤,发生鳃小片充血呈球状,鳃上皮水肿、脱落,黏液细胞增多等现象;并随时间延长受损程度加重。  相似文献   

13.
The physiological responses to different environmental salinities were assessed in juveniles of large yellow croaker Pseudosciaena crocea. This species shows a good capacity to adapt to comparatively low environmental salinities by evaluating some physiological responses, i.e. superoxide dismutase (SOD), acid phosphatase (ACP), alkaline phosphatase (AKP) and lysozyme (LZM) in the liver, spleen, gill and kidney respectively. Growth and survival at salinity 5‰, 10‰ and 25‰ were better than those at salinity 15‰ and 20‰. No significant differences in ACP, AKP, SOD and LZM in the liver were observed among different salinity treatments; SOD, AKP and LZM in the spleen among different treatments only showed significant differences at the beginning or the 2nd week; in the gill, no significant difference of AKP and LZM were observed during the whole experiment, SOD among different treatments showed significant difference at the beginning and the 8th week, and ACP only showed significant difference at the end of the experiment; in the kidney, significant differences in ACP, AKP and SOD among different salinities were merely observed at the end of experiment, and LZM showed significant difference among different treatments at the 2nd week. Overall, some slight stress responses were observed, but few significant differences were observed between low salinity and normal salinity, especially the growth and physiological functions were not influenced by low salinity, i.e. 5‰ and 10‰. We conclude that juvenile large yellow croaker is tolerant to low salinity and shows a potential for low salinity culture.  相似文献   

14.
The present study was conducted to elucidate the osmoregulatory ability of the fish pearl spot (Etroplus suratensis) to know the scope of this species for aquaculture under various salinities. Juvenile pearl spot were divided into three groups and acclimated to freshwater (FW), brackish water (BW) or seawater (SW) for 15 days. The fish exhibited effective salinity tolerance under osmotic challenges. Although the plasma osmolality and Na+, K+ and Cl? levels increased with the increasing salinities, the parameters remained within the physiological range. The muscle water contents were constant among FW-, BW- and SW-acclimated fish. Two Na+/K+-ATPase α-isoforms (NKA α) were expressed in gills during acclimation in FW, BW and SW. Abundance of one isoform was up-regulated in response to seawater acclimation, suggesting its role in ion secretion similar to NKA α1b, while expression of another isoform was simultaneously up-regulated in response to both FW and SW acclimation, suggesting the presence of isoforms switching phenomenon during acclimation to different salinities. Nevertheless, NKA enzyme activities in the gills of the SW and FW individuals were higher (p < 0.05) than in BW counterparts. Immunohistochemistry revealed that Na+/K+-ATPase immunoreactive (NKA-IR) cells were mainly distributed in the interlamellar region of the gill filaments in FW groups and in the apical portion of the filaments in BW and SW groups. The number of NKA-IR cells in the gills of the FW-acclimated fish was almost similar to that of SW individuals, which exceeded that of the BW individuals. The NKA-IR cells of BW and SW were bigger in size than their FW counterparts. Besides, the relative abundance of branchial Na+/K+/2Cl? co-transporter showed stronger evidence in favor of involvement of this protein in hypo-osmoregulation, requiring ion secretion by the chloride cells. To the best of our knowledge, this is the first study reporting the wide salinity tolerance of E. suratensis involving differential activation of ion transporters and thereby suggesting its potential as candidate for fish farming under different external salinities.  相似文献   

15.
为研究盐度对大鳞副泥鳅(Paramisgurnusdabryanus)Na+-K+-ATP酶(NKA)、抗氧化酶活性及组织结构的影响,试验设置4、8、12共3个盐度组和一个淡水组(对照),以全长(17.60±0.69)cm,体质量(35.51±5.30)g的大鳞副泥鳅进行14 d胁迫试验。结果表明:盐度升高使鳃Na+-K+-ATP酶活力上升,第7 d 时3个试验组Na+-K+-ATP酶活性均达到峰值且盐度8和12组显著高于淡水组(P<0.05)。肝脏SOD和CAT活性均表现为先上升后下降的趋势,且分别于胁迫12 h和2 d时达到最大值;3个盐度组的GSH-PX酶活性在6 h和12 h均有所升高,且盐度12组显著高于淡水组(P<0.05)。盐度4、8和12组肝脏MDA含量分别在第1 d和7 d达到最大值且显著高于淡水组(P<0.05)。组织切片结果显示,盐度12组的鳃小片变窄,鳃小片间距变大,泌氯细胞数量增多;肝细胞空泡化严重,血窦扩张范围增大,并出现细胞轮廓模糊、细胞核偏移、细胞核溶解。上述结果表明,盐度胁迫对大鳞副泥鳅的Na+-K+-ATP酶、抗氧化酶活性具有显著的诱导作用,并对其鳃和肝组织造成损伤。  相似文献   

16.
Chub mackerel (Scomber japonicus Houttuyn) is one of the most commercially important scombroid fish used as a food resource. Recently, there has been a demand for efficient rearing methods of this fish for a full‐life cycle aquaculture. In the present study, we evaluated the physiological responses in the juvenile S. japonicus to different ambient salinities. A significantly higher gain of the body mass was observed in the juveniles reared in 24 g/L and 13 g/L seawater than in those reared in natural seawater (34 g/L) within 40 days of the experimental period without affecting mortality. A principal enzyme for osmoregulation, Na+/K+‐ATPase, was expressed in the ionocytes located in the gill filaments of the juveniles. The number and the cell size of ionocytes and the enzymatic activity of Na+/K+‐ATPase in the gills decreased within 10 days after the low‐salinity challenge, which implies the reduction of the energy‐consuming active ion secretion under the low‐salinity environment. The physiological capacity for adaptation to low‐salinity seawater in chub mackerel could be basic knowledge to carry out culturing of these fish in coastal sea pens where ambient salinity fluctuates. The improvement of the growth performance by rearing in low‐salinity seawater will contribute to the efficient production of the seed juveniles for aquaculture.  相似文献   

17.
以1.0×106CFU·m L~(-1)拟态弧菌(Vibrio mimicus)浸浴感染黄颡鱼(Pelteobagrus fulvidraco),于第0、第4、第8、第16、第24、第36、第48、第60、第72小时剖杀取样,研究病理损伤及病原菌的体内动态分布。结果显示,皮肤肌肉、鳃、肠道出现病变最早,其中皮肤肌肉损伤最严重。第16小时表皮变性、坏死,鳃上皮肿胀,肠绒毛水肿;第24~第48小时表皮坏死、脱落,真皮严重出血,肌纤维变性、坏死,鳃出血,上皮局部坏死,肠上皮变性与灶性坏死;第48~第72小时皮肤肌肉坏死更严重,形成溃疡灶,鳃灶性坏死。肾、肝、脾与心36 h后相继出现不同程度的淤血、出血,变性和灶性坏死。q PCR检测发现,第4小时即在鳃、肠、皮肤肌肉检出病菌,细菌含量分别为1.3×102CFU·mg~(-1)、2.6×102CFU·mg~(-1)、4.7×102CFU·mg~(-1);鳃与皮肤肌肉中菌量随时间延长而增加,第72小时皮肤肌肉中菌量达到4.5×107CFU·mg~(-1);第24小时后相继在肾、肝、脾、心检出病菌,菌量介于1.9×10~4.7×102CFU·mg~(-1)之间。结果表明皮肤、鳃和肠道是病菌的入侵位点,并在体内多组织、器官分布。  相似文献   

18.
The osmoregulatory responses of 20 days of acclimation to environmental salinities of 5‰, 15‰, 25‰, 35‰ and 55‰ were assessed in juveniles of wedge sole ( Dicologoglossa cuneata Moreau, 1881). This sole shows a good capacity to adapt to this range of environmental salinities. A direct linear relationship between environmental salinity and plasma osmolality was observed, with a calculated isosmotic point of 10.4‰ (284 mOsm kg−1). Na+, K+-ATPase activity in the gills followed a 'U-shaped' relationship with environmental salinity, and a direct linear relationship in kidney tissue. Plasma cortisol levels were elevated in fish held in extreme salinities, and glucose levels were higher only in the group maintained at the highest environmental salinity. In the liver, a decrease in glycogen, lactate and amino acid contents was observed in specimens acclimated to extreme salinities (5‰ and 55‰), suggesting mobilization of liver metabolites. Metabolite levels in white muscle showed a pattern similar to the liver, with lower values in specimens acclimated to extreme salinities. We conclude that wedge sole is strongly euryhaline, but acclimation to extreme salinities comes with an energetic cost.  相似文献   

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