首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Monitoring long-term evolutionary changes following Wolbachia introduction into a novel host: the Wolbachia popcorn infection in Drosophila simulans
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Monitoring long-term evolutionary changes following Wolbachia introduction into a novel host: the Wolbachia popcorn infection in Drosophila simulans

机译:监测将Wolbachia引入新型宿主后的长期进化变化:果蝇模拟物中的Wolbachia爆米花感染

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摘要

Wolbachia may act as a biological control agent for pest management; in particular, the Wolbachia variant wMelPop (popcorn) shortens host longevity and may be useful for dengue suppression. However, long-term changes in the host and Wolbachia genomes can alter Wolbachia spread and/or host effects that suppress disease. Here, we investigate the phenotypic effects of wMelPop in a non-native host, Drosophila simulans, following artificial transinfection approximately 200 generations ago. Long-term rearing and maintenance of the bacteria were at 19°C in the original I-102 genetic background that was transinfected with the popcorn strain. The bacteria were then introgressed into three massbred backgrounds, and tetracycline was used to create uninfected sublines. The effect of wMelPop on longevity in this species appears to have changed; longevity was no longer reduced at 25°C in some nuclear backgrounds, reflecting different geographical origin, selection or drift, although the reduction was still evident for flies held at 30°C. Wolbachia influenced productivity and viability, and development time in some host backgrounds. These findings suggest that long-term attenuation of Wolbachia effects may compromise the effectiveness of this bacterium in pest control. They also emphasize the importance of host nuclear background on Wolbachia phenotypic effects.
机译:沃尔巴克氏菌可以作为害虫管理的生物防治剂。特别是Wolbachia变体wMelPop(爆米花)可缩短宿主的寿命,并可能对抑制登革热有用。但是,宿主和Wolbachia基因组的长期变化会改变Wolbachia的传播和/或抑制疾病的宿主效应。在这里,我们研究了约200代前人工转染后wMelPop在非本地宿主Drosophila simulans中的表型效应。在最初的I-102遗传背景下,该细菌的长期饲养和维持温度为19°C,该遗传背景已被爆米花菌株转染。然后将细菌渗入三个杂种背景中,并使用四环素产生未感染的亚系。 wMelPop对这个物种寿命的影响似乎已经改变。在某些核背景下,寿命在25°C时不再降低,这反映了不同的地理起源,选择或漂移,尽管对于30°C的果蝇而言,寿命仍然明显降低。在某些宿主背景下,Wolbachia影响了生产力和生存能力以及开发时间。这些发现表明,Wolbachia效应的长期减弱可能会损害该细菌在害虫控制中的效力。他们还强调了宿​​主核背景对沃尔巴克表型效应的重要性。

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