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首页> 外文期刊>Parasites Vectors >Are fish immune systems really affected by parasites? an immunoecological study of common carp (Cyprinus carpio)
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Are fish immune systems really affected by parasites? an immunoecological study of common carp (Cyprinus carpio)

机译:鱼类免疫系统真的受到寄生虫的影响吗?鲤鱼(Cyprinus carpio)的免疫生态学研究

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Background The basic function of the immune system is to protect an organism against infection in order to minimize the fitness costs of being infected. According to life-history theory, energy resources are in a trade-off between the costly demands of immunity and other physiological demands. Concerning fish, both physiology and immunity are influenced by seasonal changes (i.e. temporal variation) associated to the changes of abiotic factors (such as primarily water temperature) and interactions with pathogens and parasites. In this study, we investigated the potential associations between the physiology and immunocompetence of common carp (Cyprinus carpio) collected during five different periods of a given year. Our sampling included the periods with temporal variability and thus, it presented a different level in exposure to parasites. We analyzed which of two factors, seasonality or parasitism, had the strongest impact on changes in fish physiology and immunity. Results We found that seasonal changes play a key role in affecting the analyzed measurements of physiology, immunity and parasitism. The correlation analysis revealed the relationships between the measures of overall host physiology, immunity and parasite load when temporal variability effect was removed. When analyzing separately parasite groups with different life-strategies, we found that fish with a worse condition status were infected more by monogeneans, representing the most abundant parasite group. The high infection by cestodes seems to activate the phagocytes. A weak relationship was found between spleen size and abundance of trematodes when taking into account seasonal changes. Conclusions Even if no direct trade-off between the measures of host immunity and physiology was confirmed when taking into account the seasonality, it seems that seasonal variability affects host immunity and physiology through energy allocation in a trade-off between life important functions, especially reproduction and fish condition. Host immunity measures were not found to be in a trade-off with the investigated physiological traits or functions, but we confirmed the immunosuppressive role of 11-ketotestosterone on fish immunity measured by complement activity. We suggest that the different parasite life-strategies influence different aspects of host physiology and activate the different immunity pathways.
机译:背景技术免疫系统的基本功能是保护生物体免受感染,从而最大程度地降低被感染的适应性成本。根据生活史理论,能源需要在免疫力的高昂需求与其他生理需求之间进行权衡。关于鱼类,生理和免疫力都受到与非生物因子(例如主要是水温)变化以及与病原体和寄生虫的相互作用有关的季节性变化(即时间变化)的影响。在这项研究中,我们调查了在给定年份的五个不同时期中采集的鲤鱼(Cyprinus carpio)的生理与免疫能力之间的潜在关联。我们的采样包括随时间变化的时期,因此,其暴露于寄生虫的水平有所不同。我们分析了季节性或寄生虫这两个因素中的哪一个对鱼类生理和免疫变化的影响最大。结果我们发现,季节性变化在影响所分析的生理,免疫和寄生性指标方面起着关键作用。相关分析揭示了去除时间变异性影响后,总体宿主生理指标,免疫力和寄生虫负荷之间的关系。当分别分析具有不同生活策略的寄生虫组时,我们发现状况较差的鱼被单基因菌感染的程度更高,代表了最丰富的寄生虫组。虫的高感染似乎激活了吞噬细胞。当考虑季节变化时,发现脾脏大小与吸虫的数量之间存在弱关系。结论即使考虑到季节因素,并未确定宿主免疫力和生理学指标之间的直接折衷,但似乎季节性变化会通过能量分配影响生命重要功能(尤其是生殖)之间的折衷,从而影响宿主免疫力和生理学。和鱼的状况。宿主免疫措施未发现与所研究的生理特征或功能有所折衷,但我们证实了11-酮睾酮对鱼类免疫的免疫抑制作用(通过补体活性来衡量)。我们建议,不同的寄生虫生命策略影响宿主生理的不同方面,并激活不同的免疫途径。

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