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病原体特异性社会免疫与蚂蚁个体免疫功能的侵蚀有关。

Pathogen-specific social immunity is associated with erosion of individual immune function in an ant.

机构信息

School of Biological Sciences, University of Bristol, Bristol, UK.

Villum Centre for Biodiversity Genomics, Section for Ecology and Evolution, Department of Biology, University of Copenhagen, Universitetsparken 15, Copenhagen, Denmark.

出版信息

Nat Commun. 2024 Oct 26;15(1):9260. doi: 10.1038/s41467-024-53527-4.

Abstract

Contagious diseases are a major threat to societies in which individuals live in close contact. Social insects have evolved collective defense behaviors, such as social care or isolation of infected workers, that prevent outbreaks of pathogens. It has thus been suggested that individual immunity is reduced in species with such 'social immunity'. However, this hypothesis has not been tested functionally. Here, we characterize the immune response of the ant Lasius niger using a combination of genomic analysis, experimental infections, gene expression quantification, behavioural observations and pathogen quantifications. We uncover a striking specialization of immune responses towards different pathogens. Systemic individual immunity is effective against opportunistic bacterial infections, which are not covered by social immunity, but is not elicited upon fungal infections, which are effectively controlled by social immunity. This specialization suggests that immune layers have evolved complementary functions predicted to ensure the most cost-effective response against a wide range of pathogens.

摘要

传染病是个人密切接触的社会的主要威胁。社会昆虫已经进化出集体防御行为,例如社会关怀或隔离受感染的工人,以防止病原体爆发。因此,有人认为具有这种“社会免疫力”的物种的个体免疫力会降低。然而,这一假设尚未得到功能验证。在这里,我们使用基因组分析、实验感染、基因表达定量、行为观察和病原体定量相结合的方法,描述了黑蚁的免疫反应。我们发现,针对不同病原体的免疫反应存在惊人的特异性。系统性个体免疫对机会性细菌感染有效,而这些感染不受社会免疫的保护,但不会引发真菌感染,真菌感染会被社会免疫有效地控制。这种特异性表明,免疫层已经进化出互补功能,有望针对广泛的病原体实现最具成本效益的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0df7/11513022/e5ddba515bc7/41467_2024_53527_Fig1_HTML.jpg

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