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低毒力壶菌的存在可能保护欧洲两栖动物免受更致命菌株的侵害。

Presence of low virulence chytrid fungi could protect European amphibians from more deadly strains.

机构信息

Wildlife Health Ghent, Department of Pathology, Bacteriology and Avian Diseases, Faculty of Veterinary Medicine, Ghent University, B-9820, Merelbeke, Belgium.

Institute of Evolutionary Biology (CSIC-UPF), 08003, Barcelona, Spain.

出版信息

Nat Commun. 2020 Oct 26;11(1):5393. doi: 10.1038/s41467-020-19241-7.

Abstract

Wildlife diseases are contributing to the current Earth's sixth mass extinction; one disease, chytridiomycosis, has caused mass amphibian die-offs. While global spread of a hypervirulent lineage of the fungus Batrachochytrium dendrobatidis (BdGPL) causes unprecedented loss of vertebrate diversity by decimating amphibian populations, its impact on amphibian communities is highly variable across regions. Here, we combine field data with in vitro and in vivo trials that demonstrate the presence of a markedly diverse variety of low virulence isolates of BdGPL in northern European amphibian communities. Pre-exposure to some of these low virulence isolates protects against disease following subsequent exposure to highly virulent BdGPL in midwife toads (Alytes obstetricans) and alters infection dynamics of its sister species B. salamandrivorans in newts (Triturus marmoratus), but not in salamanders (Salamandra salamandra). The key role of pathogen virulence in the complex host-pathogen-environment interaction supports efforts to limit pathogen pollution in a globalized world.

摘要

野生动物疾病是导致当前地球第六次大灭绝的原因之一;有一种疾病,叫做壶菌病,已经导致大量两栖动物死亡。虽然真菌蛙壶菌(Batrachochytrium dendrobatidis,BdGPL)的一种高毒力谱系在全球范围内传播,通过大量消灭两栖动物种群,对脊椎动物多样性造成了前所未有的损失,但它对两栖动物群落的影响在不同地区差异很大。在这里,我们结合野外数据以及体外和体内试验,证明了在北欧的两栖动物群落中存在着明显多样的低毒力 BdGPL 分离株。在中鼻甲(Alytes obstetricans)中,预先接触这些低毒力分离株可以在随后接触高毒力 BdGPL 时预防疾病,并且改变了其姐妹种 B. salamandrivorans 在蝾螈(Triturus marmoratus)中的感染动态,但在蝾螈(Salamandra salamandra)中则没有。病原体毒力在复杂的宿主-病原体-环境相互作用中的关键作用支持了在全球化世界中限制病原体污染的努力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4493/7589487/784394c81d3e/41467_2020_19241_Fig1_HTML.jpg

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