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社会性昆虫抵御真菌感染的社会免疫机制。

The Mechanisms of Social Immunity Against Fungal Infections in Eusocial Insects.

机构信息

Hubei Insect Resources Utilization and Sustainable Pest Management Key Laboratory, Huazhong Agricultural University, Wuhan 430070, China.

Plant Protection College, Henan Agricultural University, Zhengzhou 450002, China.

出版信息

Toxins (Basel). 2019 Apr 29;11(5):244. doi: 10.3390/toxins11050244.

Abstract

Entomopathogenic fungus as well as their toxins is a natural threat surrounding social insect colonies. To defend against them, social insects have evolved a series of unique disease defenses at the colony level, which consists of behavioral and physiological adaptations. These colony-level defenses can reduce the infection and poisoning risk and improve the survival of societal members, and is known as social immunity. In this review, we discuss how social immunity enables the insect colony to avoid, resist and tolerate fungal pathogens. To understand the molecular basis of social immunity, we highlight several genetic elements and biochemical factors that drive the colony-level defense, which needs further verification. We discuss the chemosensory genes in regulating social behaviors, the antifungal secretions such as some insect venoms in external defense and the immune priming in internal defense. To conclude, we show the possible driving force of the fungal toxins for the evolution of social immunity. Throughout the review, we propose several questions involved in social immunity extended from some phenomena that have been reported. We hope our review about social 'host-fungal pathogen' interactions will help us further understand the mechanism of social immunity in eusocial insects.

摘要

昆虫病原真菌及其毒素是围群居昆虫群体的一种自然威胁。为了抵御它们,群居昆虫在群体层面上进化出了一系列独特的疾病防御机制,包括行为和生理适应。这些群体层面的防御机制可以降低感染和中毒的风险,提高社会性成员的存活率,被称为社会免疫。在这篇综述中,我们讨论了社会免疫如何使昆虫群体能够避免、抵抗和耐受真菌病原体。为了了解社会免疫的分子基础,我们强调了几个遗传因素和生化因素,这些因素驱动着群体层面的防御,这需要进一步验证。我们讨论了调节社会行为的化学感觉基因、外部防御中的一些昆虫毒液等抗真菌分泌物以及内部防御中的免疫启动。最后,我们展示了真菌毒素对社会免疫进化的可能驱动力。在整篇综述中,我们从一些已经报道的现象出发,提出了一些与社会免疫相关的问题。我们希望我们关于社会性“宿主-真菌病原体”相互作用的综述将有助于我们进一步理解真社会性昆虫的社会免疫机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4b8/6563085/03c9f7595654/toxins-11-00244-g001.jpg

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