Cui Chuang, Liang Qianrong, Tang Xiaoqian, Xing Jing, Sheng Xiuzhen, Zhan Wenbin
Laboratory of Pathology and Immunology of Aquatic Animals, KLMME, Ocean University of China, Qingdao, China.
Laboratory for Marine Fisheries Science and Food Production Processes, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.
Front Immunol. 2020 Dec 7;11:594390. doi: 10.3389/fimmu.2020.594390. eCollection 2020.
The apoptosis of hemocytes plays an essential function in shrimp immune defense against pathogen invasions. In order to further elucidate the differential apoptotic responses of the granulocytes and the hyalinocytes in post WSSV infection, the characteristics of apoptotic dynamics and viral proliferation in total hemocytes and hemocyte subpopulations were respectively investigated in the present work. The results showed that the apoptotic rate of hemocytes changed significantly, and the apoptosis-related genes also showed significantly differential expression responses during WSSV infection. Interestingly, we found that the apoptotic rate of virus-negative hemocytes was significantly higher than that of virus-positive hemocytes in the early stage of WSSV infection, while it was significantly lower than that of virus-positive cells in the middle and late infection stages. The difference of apoptosis between virus-positive and virus-negative hemocytes seems to be an important way for the WSSV to destroy the host's immune system and facilitate the virus spread at different infection stages. It was further found that the apoptosis rate of granulocytes was always significantly higher than that of hyalinocytes during WSSV infection, indicating that granulocytes have a stronger apoptotic response to WSSV infection. Moreover, a higher viral load was detected in granulocytes, and the density of granulocytes decreased more rapidly post WSSV infection, indicating that the granulocytes are more susceptible and vulnerable to WSSV infection compared with the hyalinocytes. These results collectively demonstrated that the apoptotic response in shrimp hemocytes was significantly influenced by the WSSV infection, and the differential apoptotic response of granulocytes and hyalinocytes to WSSV indicated the differences of antiviral mechanisms between the two hemocyte subpopulations.
血细胞凋亡在对虾抵御病原体入侵的免疫防御中发挥着重要作用。为了进一步阐明白斑综合征病毒(WSSV)感染后粒细胞和透明细胞的凋亡差异反应,本研究分别考察了总血细胞和血细胞亚群中凋亡动力学特征及病毒增殖情况。结果表明,在WSSV感染期间,血细胞凋亡率发生显著变化,凋亡相关基因也呈现出明显的差异表达反应。有趣的是,我们发现,在WSSV感染早期,病毒阴性血细胞的凋亡率显著高于病毒阳性血细胞,而在感染中晚期则显著低于病毒阳性细胞。病毒阳性和病毒阴性血细胞之间的凋亡差异似乎是WSSV在不同感染阶段破坏宿主免疫系统并促进病毒传播的重要方式。进一步研究发现,在WSSV感染期间,粒细胞的凋亡率始终显著高于透明细胞,这表明粒细胞对WSSV感染具有更强的凋亡反应。此外,在粒细胞中检测到更高的病毒载量,且WSSV感染后粒细胞密度下降更快,这表明与透明细胞相比,粒细胞对WSSV感染更敏感且更易受其影响。这些结果共同表明,对虾血细胞的凋亡反应受WSSV感染的显著影响,粒细胞和透明细胞对WSSV的凋亡差异反应表明这两种血细胞亚群在抗病毒机制上存在差异。