高温胁迫对日本沼虾热休克蛋白基因的表达、抗氧化酶活力及组织结构的影响
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翟书华(1994–),女,硕士研究生,研究方向为水产动物抗逆育种.E-mail:zhaish018@163.com

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S961

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江苏现代农业产业技术体系建设专项 (JATS[2019]472); 江苏省农业重大新品种创制项目(PZCZ201745); 国家虾蟹产业技术体系建设专项(CARS-48)


Effects of high temperature on heat shock proteins, antioxidant enzyme activity, and histology of oriental river prawn Macrobrachium nipponense
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    摘要:

    为探究日本沼虾(Macrobrachium nipponense)应对高温胁迫的响应机制, 设置了水温对照组(20±0.5) ℃和高温组(30±0.5) ℃, 溶氧浓度(6.5±0.5) mg/L, 分别在高温胁迫 0 h、12 h、24 h、36 h、48 h 测定了日本沼虾肝胰腺和鳃组织中热休克蛋白 21 (heat shock protein 21, HSP21)、热休克蛋白 60 (heat shock protein 60, HSP60)、热休克同源蛋白 70-3 (heat shock protein cognate 70-3, HSC70-3)和热休克蛋白 90 (heat shock protein 90, HSP90)基因的表达, 相关抗氧化酶——超氧化物歧化酶(superoxide dismutase, SOD)、谷胱甘肽 S-转移酶(glutathione S-transferase, GST)、 谷胱甘肽过氧化物酶(glutathione peroxidase, GPX)和过氧化氢酶(catalase, CAT)活性以及组织结构的变化。结果表明, 高温胁迫下肝胰腺和鳃组织中的 4 个热休克蛋白基因均被诱导表达上升, 其中 HSC70-3 基因表达上升最为显著; 同时, 肝胰腺中的基因表达上升趋势比鳃中的基因表达趋势更为明显。高温胁迫下相关抗氧化酶活力均发生不同程度的变化, 肝胰腺中 SOD、GST 和 CAT 酶活力均有显著上升趋势, 而 GPX 酶活力仅有轻微变化; 鳃组织中的 SOD 酶活性显著低于对照组(P<0.05), GST、GPX 和 CAT 酶活性显著高于对照组(P<0.05)。肝胰腺和鳃组织结构均发生变化, 肝胰腺组织中分泌细胞及内部转运泡体积增大, 鳃组织结构层状上皮轻微弯曲, 血细胞排列紊乱等。综上所述, 高温胁迫激活了日本沼虾抗氧化系统, 并诱导了热休克蛋白基因的表达上升, 其中 HSC70-3 基因可能在日本沼虾的耐热性中起重要作用。高温胁迫下抗氧化酶活力的变化可能对于避免氧化损伤至关重要。本研究旨在通过了解日本沼虾应对高温胁迫的响应机制从而为日本沼虾的健康养殖提供参考。

    Abstract:

    To study the response mechanism of Macrobrachium nipponense to high-temperature stress, we set up a control (20±0.5) ℃ and high-temperature (30±0.5) ℃ groups. The dissolved oxygen concentration was (6.5±0.5) mg/L. The expression profiles of heat shock proteins 21 (MnHSP21), 60 (MnHSP60), 70-3 (MnHSC70-3), and 90 (MnHSP90) in M. nipponense hepatopancreas and gill tissues were measured at 0, 12, 24, 36, and 48 h under high-temperature stress. Then we measured the activities of superoxide dismutase (SOD), glutathione S-transferase (GST), glutathione peroxidase (GPX), and catalase (CAT), as well as tissue structure of M. nipponense under high-temperature stress. The results showed that four heat shock protein genes were induced in hepatopancreas and gill tissues. The expression of MnHSC70-3 gene was the most significant among the four heat shock protein genes, indicating that this gene is an important molecule for high-temperature stress response in M. nipponense. At the same time, expression trends of the four genes were more obvious in the hepatopancreas than in gill tissue, indicating that hepatopancreas is a more important organ for M. nipponense in terms of high-temperature stress response. Under high-temperature stress, the activity of all related antioxidant enzymes changed to varying degrees. The activity of SOD, GST, and CAT in the hepatopancreas increased significantly, while the activity of GPX changed only slightly. The SOD enzyme activity in gill tissue was significantly lower than in the control group (P<0.05), and the enzyme activity levels of GST, GPX, and CAT were significantly higher than in the control group (P<0.05). The structure of hepatopancreas and gill tissue changes under high-temperature stress. The secretory cells and internal transport vesicles in hepatopancreas increase in volume, while the layered epithelium of the gill tissue structure was slightly curved, and the arrangement of blood cells was disordered. Compared with 36 h, there was no obvious change in tissue structure after 48 h of stress. In summary, high-temperature stress activated the antioxidant system of M. nipponense and induced the expression of heat shock protein genes. The MnHSC70-3 gene may play an important role in the heat tolerance of M. nipponense. Changes in the activity of antioxidant enzymes under high-temperature stress may be essential to avoid oxidative damage. This study aimed to provide a reference for healthy farming by clarifying the response mechanism of M. nipponense to hightemperature stress.

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翟书华,傅洪拓,乔慧,张文宜,金舒博,蒋速飞,熊贻伟,许蕾,王亚冰,胡宇宁,龚永生,吴滟.高温胁迫对日本沼虾热休克蛋白基因的表达、抗氧化酶活力及组织结构的影响[J].中国水产科学,2022,29(5):684-695
ZHAI Shuhua, FU Hongtuo, QIAO Hui, ZHANG Wenyi, JIN Shubo, JIANG Sufei, XIONG Yiwei, XU Lei, WANG Yabing, HU Yuning, GONG Yongsheng, WU Yan. Effects of high temperature on heat shock proteins, antioxidant enzyme activity, and histology of oriental river prawn Macrobrachium nipponense[J]. Journal of Fishery Sciences of China,2022,29(5):684-695

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  • 在线发布日期: 2022-06-13
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