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首页> 外文期刊>Comparative clinical pathology >Visceral and serum lysozyme activities in some freshwater fish (three catfish and two carps)
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Visceral and serum lysozyme activities in some freshwater fish (three catfish and two carps)

机译:一些淡水鱼(三鲶鱼和两只鲤鱼)的内脏和血清溶菌酶活动

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摘要

The lysozyme activities were investigated in three catfish: hybrid catfish [Clarias macrocephalus (Günther 1864) x Clarias gariepinus (Burchell 1822)], Hemibagrus filamentus (Fang and Chaux 1949), and Kryptopterus apogon (Bleeker 1851) and two carps: Oreochromis niloticus (Linnaeus 1758) and Channa striata (Bloch 1793). Fish samples used in this study were from two sites of Chiang Mai province; C. macrocephalus x C. gariepinus and O. niloticus were from Ton Payom Market, Amphoe Muang. H. filamentus, K. apogon, and C. striata were from Doi Tao Lake, Amphoe Doi Tao. The serum, brain, liver, and kidney of the catfish and carps from both sites were spectrophotometri-cally measured at 450 nm by ELISA reader. C. macrocephalus x C. gariepinus and H. filamentus showed the highest lysozyme activity in the serum, followed by the kidney, brain, and liver, respectively, while the highest lysozyme activity was observed in the brain of K. apogon, and the least one was observed in the liver. Among the catfish, lysozyme activities of K. apogon were significantly higher than those of the other fish (P < 0.01). However, no significant difference in lysozyme activity from the three investigated visceral organs was found. In carps, O. niloticus had the highest lysozyme activity in the serum, followed by the kidney, brain, and liver, respectively. Meanwhile, the highest lysozyme activity in C. striata was recorded in the serum, followed by the liver, brain, and kidney. However, there was no significant difference in lysozyme activity from the serum and the internal organs in these two fish. In conclusion, the innate immunity arms in these five fish species encompassed the similar function pattern, although they were differently present in their organs. The data will be used as reference ranks for these species to evaluate health status when they are exposed to some pathogens or chemical contamination in streams and reservoirs.
机译:溶菌酶活性在三个鲶鱼中进行了研究:杂交鲶[Clarias Macrocephalus(Günther1864)X Clarias Gariepinus(Burchell 1822)],Hemibagrus filamentus(Fang和Chaux 1949),和Kryptopterus apogon(Bleeker 1851)和两个鲤鱼:oreochromis niloticus( Linnaeus 1758)和Channa Striata(Bloch 1793)。本研究中使用的鱼类样品来自清迈省的两个地点; C. macrocephalus x C. gariepinus和O. niloticus来自吨Payom市场,Amphoe Muang。 H.Filamentus,K. apogon和C. Striata来自Doi Tao Lake,Amphoe Doi Tao。鲶鱼和鲤鱼的血清,脑,肝脏和肾脏来自两个位点的分光光度术,由ELISA读者测量450nm。 C. macrocephalus X C.Gariepinus和H.Filamentus在血清中显示出最高的溶菌酶活性,其次是肾,脑和肝脏,而在K. apogon的大脑中观察到最高的溶菌酶活性,并且最少在肝脏中观察到一个。在鲶鱼中,K的溶菌酶活性显着高于其他鱼(P <0.01)。然而,发现来自三个研究的内脏器官的溶菌酶活性没有显着差异。在鲤鱼中,O. niloticus在血清中具有最高的溶菌酶活性,其次是肾,脑和肝脏。同时,在血清中记录了C. Striata中最高的溶菌酶活性,其次是肝脏,脑和肾脏。然而,从血清和这两种鱼中的内脏的溶菌酶活性没有显着差异。总之,这五种鱼类中的先天免疫臂包含了类似的功能模式,尽管它们在其器官中不同地存在。数据将用作这些物种的参考等级,以评估健康状况,当它们暴露于溪流和水库中的一些病原体或化学污染时。

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