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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >Changes in the behavioral and immunological parameters of the mollusk Biomphalaria tenagophila induced by disruption of the circadian cycle as a consequence of continuous illumination
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Changes in the behavioral and immunological parameters of the mollusk Biomphalaria tenagophila induced by disruption of the circadian cycle as a consequence of continuous illumination

机译:连续光照导致昼夜节律紊乱导致软体动物伯氏疟原虫的行为和免疫学参数发生变化

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In the present investigation we studied some behavioral and immunological parameters of adult gastropod mollusk, Biomphalaria tenagophila, which have been reproducing for several generations under laboratory conditions. One group of gastropods was kept on a 14-h light/10-h dark cycle, corresponding to a regular circadian cycle, and another group was exposed to continuous light for 48 h. Animals were studied along (behavioral groups) or immediately after (immunological groups) 48 h of regular circadian cycle or continuous light conditions. Stopping/floating, dragging and sliding were the behavioral aspects considered (N = 20 for regular cycle; N = 20 for continuous illumination) and number of hemocytes/μl hemolymph was the immunological parameter studied (N = 15 for regular cycle, N = 14 for continuous illumination). Animals under continuous illumination were more active (sliding = 33 episodes, dragging = 48 episodes) and displayed a lower number of hemocytes (78.0 ± 24.27/μl) when compared with mollusks kept on a regular circadian cycle (sliding = 18 episodes, dragging = 27 episodes; hemocytes = 157.6 ± 53.27/μl). The data are discussed in terms of neural circuits and neuroimmunological relations with the possible stressful effect of continuous illumination.
机译:在本研究中,我们研究了成年腹足纲软体动物伯氏疟原虫的一些行为和免疫学参数,这些参数在实验室条件下已繁殖了几代。一组腹足动物保持在14小时光照/ 10小时黑暗周期中,这与规则的昼夜节律周期相对应,另一组腹足动物暴露于连续光照48小时。在规律的昼夜节律周期或连续光照条件下48小时(行为组)或紧接着(免疫组)研究动物。停止/浮动,拖动和滑动是考虑的行为方面(常规循环为N = 20;连续照明为N = 20),血细胞数/μl血淋巴是所研究的免疫学参数(常规循环为N = 15,N = 14用于连续照明)。与以规则的昼夜节律周期饲养的软体动物(滑动= 18次,拖拉=)相比,在连续光照下的动物更活跃(滑动= 33次,拖拉= 48次),并显示出较少的血细胞数量(78.0±24.27 /μl)。 27集;血细胞= 157.6±53.27 /μl)。讨论了神经回路和神经免疫学关系以及连续照明可能产生的压力效应。

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