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寄生虫的存在会引起蚂蚁宿主的基因表达变化,这些变化与免疫和寿命有关。

Parasite Presence Induces Gene Expression Changes in an Ant Host Related to Immunity and Longevity.

机构信息

Institute of Organismic and Molecular Evolution, Johannes Gutenberg University Mainz, 55128 Mainz, Germany.

Max Planck Institute for the Biology of Ageing, 50931 Cologne, Germany.

出版信息

Genes (Basel). 2021 Jan 13;12(1):95. doi: 10.3390/genes12010095.

Abstract

Most species are either parasites or exploited by parasites, making parasite-host interactions a driver of evolution. Parasites with complex life cycles often evolve strategies to facilitate transmission to the definitive host by manipulating their intermediate host. Such manipulations could explain phenotypic changes in the ant , the intermediate host of the cestode . In addition to behavioral and morphological alterations, infected workers exhibit prolonged lifespans, comparable to that of queens, which live up to two decades. We used transcriptomic data from cestodes and ants of different castes and infection status to investigate the molecular underpinnings of phenotypic alterations in infected workers and explored whether the extended lifespan of queens and infected workers has a common molecular basis. Infected workers and queens commonly upregulated only six genes, one of them with a known anti-aging function. Both groups overexpressed immune genes, although not the same ones. Our findings suggest that the lifespan extension of infected workers is not achieved via the expression of queen-specific genes. The analysis of the cestodes' transcriptome revealed dominant expression of genes of the mitochondrial respiratory transport chain, which indicates an active metabolism and shedding light on the physiology of the parasite in its cysticercoid stage.

摘要

大多数物种要么是寄生虫,要么被寄生虫利用,这使得寄生虫-宿主相互作用成为进化的驱动力。具有复杂生命周期的寄生虫通常会进化出一些策略,通过操纵中间宿主来促进向终宿主的传播。这种操纵可以解释绦虫的中间宿主蚂蚁的表型变化。除了行为和形态改变外,被感染的工蚁的寿命延长,与能活 20 年的蚁后相当。我们使用来自不同等级和感染状态的绦虫和蚂蚁的转录组数据,研究感染工蚁表型变化的分子基础,并探讨蚁后和感染工蚁的延长寿命是否具有共同的分子基础。被感染的工蚁和蚁后通常只上调了六个基因,其中一个具有已知的抗衰老功能。两组都过度表达了免疫基因,尽管不是相同的基因。我们的研究结果表明,被感染工蚁的寿命延长不是通过表达蚁后特异性基因来实现的。对绦虫转录组的分析显示线粒体呼吸转运链基因的表达占主导地位,这表明寄生虫在囊蚴阶段具有活跃的新陈代谢,并揭示了寄生虫的生理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7605/7828512/212b97f7847a/genes-12-00095-g001.jpg

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