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快速热免疫驯化在普通麝香龟(Sternotherus odoratus)中。

Rapid thermal immune acclimation in common musk turtles (Sternotherus odoratus).

机构信息

Department of Biological Sciences, Auburn University, Auburn, Alabama.

Biology Department, Auburn University at Montgomery, Montgomery, Alabama.

出版信息

J Exp Zool A Ecol Integr Physiol. 2019 Mar;331(3):185-191. doi: 10.1002/jez.2252. Epub 2019 Jan 12.

Abstract

As infectious diseases in ectothermic vertebrates increasingly threaten wild populations, understanding how host immune systems are affected by the environment is key to understanding the process of infection. In this study, we investigated how temperature change and simulated bacterial infection (via lipopolysaccharide [LPS] injection) interacted to regulate innate immunity, as measured by bactericidal ability (BA), phagocytosis rate, and heterophil:lymphocyte ratio (HLR) in common musk turtles (Sternotherus odoratus). We found that LPS stimulated an acute immune response, as measured by an increase in BA, phagocytosis rate, and HLR. When exposed to a 5 or 10°C temperature change for 48 hr, turtles rapidly acclimated to the new temperature by adjusting their immune output. This acclimation was compensatory as seen by elevated rates of immune output in colder animals and decreased rates of immune output in warmer animals. These results indicate that while temperature change may be a constraint on some animals, S. odoratus have the ability to rapidly adjust immunity to match environmental thermal demand. This rapid ability to adjust immunity may be related to the broad geographic distribution of musk turtles. Future research should focus on how immune acclimation in ectotherms varies both intraspecifically and interspecifically across regional scales and geographic distributions.

摘要

随着变温动物传染病对野生动物种群的威胁日益增加,了解宿主免疫系统如何受到环境的影响是理解感染过程的关键。在这项研究中,我们调查了温度变化和模拟细菌感染(通过注射脂多糖 [LPS])如何相互作用来调节先天免疫,通过杀菌能力 (BA)、吞噬率和嗜中性粒细胞:淋巴细胞比值 (HLR) 来衡量。我们发现 LPS 刺激了急性免疫反应,表现为 BA、吞噬率和 HLR 的增加。当暴露于 5 或 10°C 的温度变化 48 小时时,乌龟通过调整免疫输出迅速适应新的温度。这种适应是补偿性的,因为较冷动物的免疫输出率升高,而较暖动物的免疫输出率降低。这些结果表明,虽然温度变化可能是对某些动物的限制,但麝香龟有能力迅速调整免疫以适应环境热需求。这种快速调节免疫的能力可能与麝香龟广泛的地理分布有关。未来的研究应侧重于研究变温动物的免疫适应如何在种内和种间以及区域尺度和地理分布上发生变化。

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