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红耳龟(Trachemys scripta)固有和适应性免疫的季节性模式变化。

Variation in the seasonal patterns of innate and adaptive immunity in the red-eared slider (Trachemys scripta).

机构信息

School of Biological Sciences, Illinois State University, Normal, IL 61790-4120, USA.

出版信息

J Exp Biol. 2010 May;213(Pt 9):1477-83. doi: 10.1242/jeb.037770.

Abstract

The primary function of the immune system is to protect the organism from invading pathogens. In vertebrates, this has resulted in a multifaceted system comprised of both innate and adaptive components. The immune system of all jawed vertebrates is complex, but unlike the endothermic vertebrates, relatively little is known about the functioning of the ectothermic vertebrate immune system, especially the reptilian system. Because turtles are long-lived ectotherms, factors such as temperature and age may affect their immune response, but comprehensive studies are lacking. We investigated variation in immune responses of adult male and female red-eared sliders (Trachemys scripta) across the entire active season. We characterized seasonal variation in innate, cell-mediated and humoral components via bactericidal capacity of plasma, delayed-type hypersensitivity and total immunoglobulin levels, respectively. Results indicate that all immune measures varied significantly across the active season, but each measure had a different pattern of variation. Interestingly, temperature alone does not explain the observed seasonal variation. Immune measures did not vary between males and females, but immunoglobulin levels did vary with age. This study demonstrates the highly dynamic nature of the reptilian immune system, and provides information on how biotic and abiotic factors influence the immune system of a long-lived ectotherm.

摘要

免疫系统的主要功能是保护机体免受入侵病原体的侵害。在脊椎动物中,这导致了一个由先天和适应性成分组成的多方面系统。所有有颌脊椎动物的免疫系统都很复杂,但与温血脊椎动物不同,关于冷血脊椎动物免疫系统的功能,特别是爬行动物系统的功能,人们知之甚少。由于海龟是长寿的冷血动物,温度和年龄等因素可能会影响它们的免疫反应,但缺乏全面的研究。我们研究了整个活动季节成年雄性和雌性红耳龟(Trachemys scripta)的免疫反应变化。我们通过血浆杀菌能力、迟发型超敏反应和总免疫球蛋白水平分别表征了先天、细胞介导和体液成分的季节性变化。结果表明,所有免疫措施在整个活跃季节都有显著变化,但每种措施的变化模式都不同。有趣的是,仅仅温度并不能解释观察到的季节性变化。免疫措施在雄性和雌性之间没有差异,但免疫球蛋白水平随年龄而变化。这项研究表明了爬行动物免疫系统的高度动态性质,并提供了关于生物和非生物因素如何影响长寿冷血动物免疫系统的信息。

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