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Coevolution between a Family of Parasite Virulence Effectors and a Class of LINE-1 Retrotransposons

机译:一类寄生虫毒力效应因子和一类LINE-1逆转座子之间的共同进化

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摘要

Parasites are able to evolve rapidly and overcome host defense mechanisms, but the molecular basis of this adaptation is poorly understood. Powdery mildew fungi (Erysiphales, Ascomycota) are obligate biotrophic parasites infecting nearly 10,000 plant genera. They obtain their nutrients from host plants through specialized feeding structures known as haustoria. We previously identified the AVR k1 powdery mildew-specific gene family encoding effectors that contribute to the successful establishment of haustoria. Here, we report the extensive proliferation of the AVR k1 gene family throughout the genome of B. graminis, with sequences diverging in formae speciales adapted to infect different hosts. Also, importantly, we have discovered that the effectors have coevolved with a particular family of LINE-1 retrotransposons, named TE1a. The coevolution of these two entities indicates a mutual benefit to the association, which could ultimately contribute to parasite adaptation and success. We propose that the association would benefit 1) the powdery mildew fungus, by providing a mechanism for amplifying and diversifying effectors and 2) the associated retrotransposons, by providing a basis for their maintenance through selection in the fungal genome.
机译:寄生虫能够迅速进化并克服宿主防御机制,但是这种适应的分子基础却知之甚少。白粉病真菌(Erysiphales,Ascomycota)是专性的生物营养性寄生虫,感染了近10,000个植物属。它们通过称为haustoria的专门饲养结构从寄主植物中获取营养。我们之前确定了AVR k1白粉病特异性基因家族编码效应子,这些因子有助于成功建立haustoria。在这里,我们报告了整个B. graminis基因组中AVR k1基因家族的广泛增殖,其中序列在适应感染不同宿主的福尔摩斯专业中有所不同。同样,重要的是,我们发现效应子已经与名为TE1a的LINE-1逆转座子的特定家族共同进化。这两个实体的共同发展表明该协会互惠互利,最终可能有助于寄生虫适应和成功。我们建议该协会将有利于1)白粉病真菌,通过提供一种放大和多样化效应子的机制,以及2)相关的逆转座子,通过在真菌基因组中的选择提供它们维持的基础。

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