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免疫激活和幼虫饮食对成年免疫功能、生长和发育的独立和交互作用在大蜡螟(Galleria mellonella)中。

Independent and interactive effects of immune activation and larval diet on adult immune function, growth and development in the greater wax moth (Galleria mellonella).

机构信息

Section of Ecology, Department of Biology, University of Turku, Turku, Finland.

Department of Environmental and Biological Sciences, University of Eastern Finland, Kuopio, Finland.

出版信息

J Evol Biol. 2018 Oct;31(10):1485-1497. doi: 10.1111/jeb.13345. Epub 2018 Jul 25.

Abstract

Organisms in the wild are likely to face multiple immune challenges as well as additional ecological stressors, yet their interactive effects on immune function are poorly understood. Insects are found to respond to cues of increased infection risk by enhancing their immune capacity. However, such adaptive plasticity in immune function may be limited by physiological and environmental constraints. Here, we investigated the effects of two environmental stressors - poor larval diet and an artificial parasite-like immune challenge at the pupal stage - on adult immune function, growth and development in the greater wax moth (Galleria mellonella). Males whose immune system was activated with an artificial parasite-like immune challenge had weaker immune response - measured as strength of encapsulation response - as adults compared to the control groups, but only when reared on high-nutrition larval diet. Immune activation did not negatively affect adult immune response in males reared on low-nutrition larval diet, indicating that poor larval diet improved the capacity of the insects to respond to repeated immune challenges. Low-nutrition larval diet also had a positive independent effect on immune capacity in females, yet it negatively affected development time and adult body mass in both sexes. As in the nature immune challenges are rarely isolated, and adverse nutritional environment may indicate an elevated risk of infection, resilience to repeated immune challenges as a response to poor nutritional conditions could provide a significant fitness advantage. This study highlights the importance of considering environmental context when investigating the effects of immune activation in insects.

摘要

在野外,生物可能会面临多种免疫挑战以及其他生态胁迫,但它们对免疫功能的相互作用知之甚少。昆虫被发现会通过增强免疫能力来应对感染风险增加的信号。然而,这种免疫功能的适应性可塑性可能受到生理和环境限制的限制。在这里,我们研究了两种环境胁迫 - 幼虫期营养不良和蛹期类似寄生虫的免疫挑战 - 对成年大蜡螟(Galleria mellonella)免疫功能、生长和发育的影响。与对照组相比,用类似寄生虫的免疫挑战激活免疫系统的雄性成虫的免疫反应 - 以包封反应的强度衡量 - 较弱,但仅在高营养幼虫期饲养时。免疫激活不会对在低营养幼虫期饲养的雄性成虫的成年免疫反应产生负面影响,这表明低营养幼虫期提高了昆虫对重复免疫挑战的反应能力。低营养幼虫期也对雌性的免疫能力有积极的独立影响,但它对两性的发育时间和成虫体重都有负面影响。因为在自然界中,免疫挑战很少是孤立的,而不良的营养环境可能表明感染风险增加,因此对重复免疫挑战的适应能力作为对营养不良条件的反应可能会提供显著的适应优势。这项研究强调了在研究昆虫免疫激活的影响时考虑环境背景的重要性。

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