Wang Zhenhui, Fan Xuyuan, Li Zhen, Guo Liyuan, Ren Yuan, Li Qiang
College of Marine and Bioengineering, Yancheng Institute of Technology, Yancheng 224051, China.
College of Fisheries and Life Science, Dalian Ocean University, Dalian 116023, China.
Fish Shellfish Immunol Rep. 2022 Dec 29;4:100074. doi: 10.1016/j.fsirep.2022.100074. eCollection 2023 Dec.
The polian vesicle and coelom of sea cucumber were full of coelomic fluid in which many types of coelomocytes with different functions were suspended. Our previous work has indicated the differences of coelomocytes between two sites mainly in subtype proportion, non-specific immune enzymes activities and several immune-related genes expression levels in healthy . However, the functional similarities and differences of coelomic fluid in two sites including the coelom and polian vesicle after pathogenic infection still remain unclear. Here, we investigated the changes of the total coelomocyte density (TCD) and differential coelomocyte density (DCD) after pathogen infection by in coelom and polian vesicle. After infected by , the TCD in the coelom and polian vesicle rapidly declined at 12 h, and then the TCD in the coelom showed a stably ascending trend, while the TCD in the polian vesicle reached a peak at 24 h post infection (hpi), and then showed a continuously decline trend from 24 hpi to 72 hpi followed by a slow elevation until recovering the normal level from 72 hpi to 96 hpi. Then the activities of acidic phosphatase (ACP), alkaline phosphatase (AKP), catalase (CAT) and superoxide dismutase (SOD) were determined to evaluate the response of cell-free coelomic fluid to infection. The activities of ACP, AKP and CAT showed similar trends in the coelom and polian vesicle. The SOD activity significantly increased in the polian vesicle, whereas it exhibited a decreasing trend in the coelom. Finally, the expression profiles of nine immune-related genes including and were detected after challenge. The results suggested all the detected genes were significantly up-regulated both in the coelom and polian vesicle, and the expression levels of these genes in two sites shared similar trends except and . This research provides a new insight into the differentially immune roles of coelomic fluid and coelomocytes in polian vesicle and coelom response to bacterial infections and supplements comprehensive resources for better understanding the innate immune response of .
海参的波氏囊和体腔中充满了体腔液,其中悬浮着许多具有不同功能的体腔细胞。我们之前的工作表明,健康状态下两个部位的体腔细胞在亚型比例、非特异性免疫酶活性和几个免疫相关基因表达水平上存在差异。然而,在病原体感染后,两个部位(包括体腔和波氏囊)的体腔液在功能上的异同仍不清楚。在此,我们研究了病原体感染后体腔和波氏囊中总腔细胞密度(TCD)和差异腔细胞密度(DCD)的变化。感染后,体腔和波氏囊中的TCD在12小时时迅速下降,然后体腔中的TCD呈稳定上升趋势,而波氏囊中的TCD在感染后24小时(hpi)达到峰值,然后从24 hpi到72 hpi呈持续下降趋势,随后缓慢升高,直到从72 hpi到96 hpi恢复到正常水平。然后测定酸性磷酸酶(ACP)、碱性磷酸酶(AKP)、过氧化氢酶(CAT)和超氧化物歧化酶(SOD)的活性,以评估无细胞体腔液对感染的反应。ACP、AKP和CAT的活性在体腔和波氏囊中呈现相似的趋势。波氏囊中SOD活性显著增加,而在体腔中则呈下降趋势。最后,在挑战后检测了包括和在内的9个免疫相关基因的表达谱。结果表明,所有检测到的基因在体腔和波氏囊中均显著上调,除和外,这些基因在两个部位的表达水平具有相似的趋势。本研究为体腔液和体腔细胞在波氏囊和体腔对细菌感染反应中的差异免疫作用提供了新的见解,并为更好地理解的先天免疫反应补充了全面的资源。