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杀手的气味:致命酵母如何增强其传播能力?

Scent of a killer: How could killer yeast boost its dispersal?

作者信息

Buser Claudia C, Jokela Jukka, Martin Oliver Y

机构信息

Institute of Integrative Biology ETH Zürich Zürich Switzerland.

Department of Aquatic Ecology Eawag Dübendorf Switzerland.

出版信息

Ecol Evol. 2021 May 1;11(11):5809-5814. doi: 10.1002/ece3.7534. eCollection 2021 Jun.

Abstract

Vector-borne parasites often manipulate hosts to attract uninfected vectors. For example, parasites causing malaria alter host odor to attract mosquitoes. Here, we discuss the ecology and evolution of fruit-colonizing yeast in a tripartite symbiosis-the so-called "killer yeast" system. "Killer yeast" consists of yeast hosting two double-stranded RNA viruses (M satellite dsRNAs, L-A dsRNA helper virus). When both dsRNA viruses occur in a yeast cell, the yeast converts to lethal toxin‑producing "killer yeast" phenotype that kills uninfected yeasts. Yeasts on ephemeral fruits attract insect vectors to colonize new habitats. As the viruses have no extracellular stage, they depend on the same insect vectors as yeast for their dispersal. Viruses also benefit from yeast dispersal as this promotes yeast to reproduce sexually, which is how viruses can transmit to uninfected yeast strains. We tested whether insect vectors are more attracted to killer yeasts than to non‑killer yeasts. In our field experiment, we found that killer yeasts were more attractive to than non-killer yeasts. This suggests that vectors foraging on yeast are more likely to transmit yeast with a killer phenotype, allowing the viruses to colonize those uninfected yeast strains that engage in sexual reproduction with the killer yeast. Beyond insights into the basic ecology of the killer yeast system, our results suggest that viruses could increase transmission success by manipulating the insect vectors of their host.

摘要

媒介传播的寄生虫常常操控宿主以吸引未感染的媒介。例如,导致疟疾的寄生虫会改变宿主气味以吸引蚊子。在此,我们讨论水果定殖酵母在三方共生关系(即所谓的“杀手酵母”系统)中的生态学和进化。“杀手酵母”由寄生于两种双链RNA病毒(M卫星双链RNA、L-A双链RNA辅助病毒)的酵母组成。当两种双链RNA病毒同时存在于酵母细胞中时,酵母会转变为产生致死毒素的“杀手酵母”表型,从而杀死未感染的酵母。短暂水果上的酵母吸引昆虫媒介去定殖新的栖息地。由于病毒没有细胞外阶段,它们依靠与酵母相同的昆虫媒介进行传播。病毒也从酵母传播中受益,因为这会促进酵母进行有性繁殖,而这正是病毒传播到未感染酵母菌株的方式。我们测试了昆虫媒介是否对杀手酵母的吸引力大于非杀手酵母。在我们的田间实验中,我们发现杀手酵母比非杀手酵母更具吸引力。这表明在酵母上觅食的媒介更有可能传播具有杀手表型的酵母,从而使病毒能够定殖那些与杀手酵母进行有性繁殖的未感染酵母菌株。除了对杀手酵母系统基本生态学的深入了解外,我们的结果表明病毒可以通过操控其宿主的昆虫媒介来提高传播成功率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8418/8207343/26487ebb8ca2/ECE3-11-5809-g002.jpg

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