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引用本文:宋林生,苏建国,崔朝霞,方敏,蔡中华,丁茂昌,杨公社.中华绒螯蟹( Eriocheir sinensis) 幼蟹上岸病的免疫学研究.海洋与湖沼,2002,33(6):657-662.
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中华绒螯蟹( Eriocheir sinensis) 幼蟹上岸病的免疫学研究
宋林生1, 苏建国2, 崔朝霞1, 方敏1, 蔡中华1, 丁茂昌3, 杨公社2
1.中国科学院海洋研究所;2.西北农林科技大学;3.山东中华绒螯蟹繁育有限公司
摘要:
对患上岸病幼蟹和正常幼蟹体内的超氧化物歧化酶( SOD) 、过氧化氢酶( CAT) 、溶菌酶活性及丙二醛含量等几项免疫学指标的测定和比较, 探讨幼蟹上岸死亡疾病的病因。结果表明, 患病幼蟹自由基的代谢出现紊乱, 清除自由基的能力较正常幼蟹显著下降, 其中超氧化物歧化酶及过氧化氢酶的活性极显著低于正常幼蟹( P < 0.01) 。而在反映自由基损伤程度的丙二醛含量上, 患病幼蟹极显著高于正常幼蟹( P < 0.01) ; 患病幼蟹的溶菌酶活性显著低于对照组( P < 0.05) 。研究表明, 大量自由基的积累对幼蟹的组织或器官造成了损伤, 同时也降低了机体的免疫能力, 从而导致了幼蟹上岸病的发生。
关键词:  中华绒螯蟹, 幼蟹上岸病, 超氧化物歧化酶, 过氧化氢酶, 丙二醛, 溶菌酶
DOI:
分类号:
基金项目:国家重点基础研究发展规划项目, G1999012007 号
附件
IMMUNOLOGICAL STUDIES ON THE DISEMBARKATION SYNDROME OF JUVENILE CHINESE MITTEN-HANDED CRAB ERIOCHEIR SINENSIS
SONG Lin-Sheng1, SU Jian-Guo2, CUI Zhao-Xia1, FNAG Min1, CAI Zhong-Hua1, DING Mao-Chang3, YANG Gong-She2
1.Institute of Oceanology, The Chinese Academy of Sciences;2.Northwest Sci-Tech, University of Agriculture and Forestry;3.Shandong Limited Company of Freshwater Crab Breeding
Abstract:
Immunological approaches were used to measure the enzyme activity such as Superoxide dismutase ( SOD) , Catalase ( CAT) and Lysozyme ( LSZ) , and the content of Malondiadehyde (MDA) in the disembarkation syndrome juvenile and the normal juvenile of Chinese mitten-handed crab, Eriocheir sinensis. Maladjustment of free radicals metabolism was obvious in the disembarkation syndrome juvenile, and the ability of eliminating free radicals in the disembarkation syndrome juvenile decreased greatly. SOD and CAT, reflecting the ability of eliminating free radicals in the body, were both greatly significantly lower than those of the control group ( P< 0.01) ; the content of MDA, reflecting free radicals damnification degree in the body, was greatly significantly higher than that in the control group ( P< 0.01) . The activity of LSZ in the disembarkation syndrome juvenile was significantly lower than that of the control group ( P < 0.05) . The results indicated that the free radicals played an important role in the break out of the juvenile disembarkation syndrome and resulted in immunity declining and physiological damage.
Key words:  Eriocheir sinensis, Juvenile disembarkation syndrome, Superoxide dismutase, Catalase, Malondiadehyde, Lysozyme
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