线粒体背景可以解释免疫部署的可变成本。

IF 2.1 3区 生物学 Q3 ECOLOGY
Megan A M Kutzer, Beth Cornish, Michael Jamieson, Olga Zawistowska, Katy M Monteith, Pedro F Vale
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引用次数: 0

摘要

生物的健康和生存取决于对感染做出有效免疫反应的能力。然而,免疫防御可能是需要能量的,如果对免疫功能的投资剥夺了其他生理过程的资源,就会导致健康成本。尽管有证据表明昂贵的免疫力会导致寿命和繁殖能力下降,但产生能量的线粒体对这些成本的大小所起的作用尚不清楚。在这里,我们采用了黑腹果蝇杂交系,将几种线粒体基因型(mitotypes)导入到单一的核基因背景上,以明确测试线粒体变异对免疫刺激成本的作用。我们将携带九种不同线粒体基因型之一的雌蝇暴露于良性、热杀灭的细菌病原体(刺激免疫调配,同时避免病变)或不育对照,并测量了寿命、繁殖力和运动活性。我们观察到了有丝分裂型特异性的免疫刺激成本,并确定了寿命与活体幼虫运动时间比例之间的正遗传相关性。我们的研究结果表明,免疫成本因线粒体基因组的不同而存在很大差异,这为越来越多的研究工作增添了新的内容,凸显了线粒体变异在宿主与病原体相互作用中的重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mitochondrial background can explain variable costs of immune deployment.

Organismal health and survival depend on the ability to mount an effective immune response against infection. Yet immune defence may be energy-demanding, resulting in fitness costs if investment in immune function deprives other physiological processes of resources. While evidence of costly immunity resulting in reduced longevity and reproduction is common, the role of energy-producing mitochondria on the magnitude of these costs is unknown. Here we employed Drosophila melanogaster cybrid lines, where several mitochondrial genotypes (mitotypes) were introgressed onto a single nuclear genetic background, to explicitly test the role of mitochondrial variation on the costs of immune stimulation. We exposed female flies carrying one of nine distinct mitotypes to either a benign, heat-killed bacterial pathogen (stimulating immune deployment while avoiding pathology) or a sterile control and measured lifespan, fecundity, and locomotor activity. We observed mitotype-specific costs of immune stimulation and identified a positive genetic correlation between life span and the proportion of time cybrids spent moving while alive. Our results suggest that costs of immunity are highly variable depending on the mitochondrial genome, adding to a growing body of work highlighting the important role of mitochondrial variation in host-pathogen interactions.

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来源期刊
Journal of Evolutionary Biology
Journal of Evolutionary Biology 生物-进化生物学
CiteScore
4.20
自引率
4.80%
发文量
152
审稿时长
3-6 weeks
期刊介绍: It covers both micro- and macro-evolution of all types of organisms. The aim of the Journal is to integrate perspectives across molecular and microbial evolution, behaviour, genetics, ecology, life histories, development, palaeontology, systematics and morphology.
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