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大连海洋大学学报  2021, Vol. 36 Issue (2): 241-247    DOI: 10.16535/j.cnki.dlhyxb.2020-240
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黑嘴病病原菌人工感染对中间球海胆吞噬作用相关免疫指标的影响
王中,张伟杰,刘雷,冷晓飞,高洪涛,江会杰,常亚青
1.大连海洋大学 农业农村部北方海水增养殖重点实验室,辽宁 大连 116023; 2.大连海宝渔业有限公司,辽宁 大连 116045
Effects of artificial challenge of black mouth disease pathogen on phagocytosis related immune parameters in sea urchin Strongylocentrotus intermedius
WANG Zhong1, ZHANG Weijie1, LIU Lei1, LENG Xiaofei2, GAO Hongtao2, JIANG Huijie1, CHANG Yaqing1*
1.Key Laboratory of Mariculture & Stock Enhancement in North China’s Sea, Ministry of Agriculture and Rural Affairs, Dalian Ocean University, Dalian 116023, China; 2.Dalian Haibao Fisheries Limited Company, Dalian 116045, China
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摘要 In order to investigate the effect of black mouth disease pathogen infection on phagocytosis of sea urchin Strongylocentrotus intermedius, the coelomocytes density, apoptosis rate, cell necrosis rate and phagocytosis related immune indices, including acid phosphatase activity (ACP), reactive oxygen species (ROS), total antioxidant capacity (T-AOC) and phagocytosis related immune gene expression were determined 0, 1, 6, 12, 24 and 48 h post pathogen stress in the sea urchin damaged by piercing the mouth membrane with a needle into the body cavity and then exposed to black mouth disease pathogen fluid (102 CFU/mL). The single phagocyte contribution value of several immune parameters was calculated by using the proportion of effective phagocyte. The density of phagocytes in coelomic fluid was shown to be decreased by 80%, and the apoptosis rate of phagocytes to be increased to 60.92% 1 h post stress. There were different relative trends of ACP activity, ROS level and TAC in coelomocytes after stress. However, the average contribution of single phagocyte showed a consistent trend of first increase and then decrease, with the maximal expression level of C3-pre and Clec4g genes at 1 h post stress, increased by 3 times, 6 times, 7 times, 4 times and 7 times, respectively. The apoptosis rate showed a downward trend, and the necrosis rate gradually was increased to 63.98%. C3-pre and Clec4g genes, as well as the single phagocytemean relative expression of ACP, ROS and T-AOC was decreased to the level before stress from 6 h to 24 h post stress, although the density of phagocytes gradually recovered. The maximal expression level of Caspase-8, as about 2 times as that at 0 h stress, was observed at 48 h post stress. It was found that the phagocytosis of the sea urchin was enhanced by the increase in ACP activity, ROS, T-AOC, and up regulation of phagocytic related immune genes at the beginning of infection. Meanwhile up-regulation of apoptosis rate of phagocytes and cell regeneration were also found to maintain the number of phagocytes. At the late stage of the invasion of pathogens, phagocytes failed to clear all the pathogen, the above phagocytosis related indices gradually were decreased, and the necrosis rate of phagocytes so significantly increased that the sea urchin became diseased.
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王中
张伟杰
刘雷
冷晓飞
高洪涛
江会杰
常亚青
关键词:  中间球海胆  黑嘴病  吞噬细胞  免疫指标  基因表达    
Abstract: In order to investigate the effect of black mouth disease pathogen infection on phagocytosis of sea urchin Strongylocentrotus intermedius, the coelomocytes density, apoptosis rate, cell necrosis rate and phagocytosis related immune indices, including acid phosphatase activity (ACP), reactive oxygen species (ROS), total antioxidant capacity (T-AOC) and phagocytosis related immune gene expression were determined 0, 1, 6, 12, 24 and 48 h post pathogen stress in the sea urchin damaged by piercing the mouth membrane with a needle into the body cavity and then exposed to black mouth disease pathogen fluid (102 CFU/mL). The single phagocyte contribution value of several immune parameters was calculated by using the proportion of effective phagocyte. The density of phagocytes in coelomic fluid was shown to be decreased by 80%, and the apoptosis rate of phagocytes to be increased to 60.92% 1 h post stress. There were different relative trends of ACP activity, ROS level and TAC in coelomocytes after stress. However, the average contribution of single phagocyte showed a consistent trend of first increase and then decrease, with the maximal expression level of C3-pre and Clec4g genes at 1 h post stress, increased by 3 times, 6 times, 7 times, 4 times and 7 times, respectively. The apoptosis rate showed a downward trend, and the necrosis rate gradually was increased to 63.98%. C3-pre and Clec4g genes, as well as the single phagocytemean relative expression of ACP, ROS and T-AOC was decreased to the level before stress from 6 h to 24 h post stress, although the density of phagocytes gradually recovered. The maximal expression level of Caspase-8, as about 2 times as that at 0 h stress, was observed at 48 h post stress. It was found that the phagocytosis of the sea urchin was enhanced by the increase in ACP activity, ROS, T-AOC, and up regulation of phagocytic related immune genes at the beginning of infection. Meanwhile up-regulation of apoptosis rate of phagocytes and cell regeneration were also found to maintain the number of phagocytes. At the late stage of the invasion of pathogens, phagocytes failed to clear all the pathogen, the above phagocytosis related indices gradually were decreased, and the necrosis rate of phagocytes so significantly increased that the sea urchin became diseased.
Key words:  Strongylocentrotus intermedius    black mouth disease    phagocyte    immune parameter    gene expression
                    发布日期:  2021-04-21      期的出版日期:  2021-04-21
中图分类号:  S 947.9  
基金资助: 国家重点研发计划项目(2018YFD0901601);国家自然科学基金(31672652);农业农村部农业科研杰出人才及创新团队项目
引用本文:    
王中, 张伟杰, 刘雷, 冷晓飞, 高洪涛, 江会杰, 常亚青. 黑嘴病病原菌人工感染对中间球海胆吞噬作用相关免疫指标的影响[J]. 大连海洋大学学报, 2021, 36(2): 241-247.
WANG Zhong, ZHANG Weijie, LIU Lei, LENG Xiaofei, GAO Hongtao, JIANG Huijie, CHANG Yaqing. Effects of artificial challenge of black mouth disease pathogen on phagocytosis related immune parameters in sea urchin Strongylocentrotus intermedius. Journal of Dalian Ocean University, 2021, 36(2): 241-247.
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https://xuebao.dlou.edu.cn/CN/10.16535/j.cnki.dlhyxb.2020-240  或          https://xuebao.dlou.edu.cn/CN/Y2021/V36/I2/241
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