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An RNA symbiont enhances heat tolerance and secondary homothallism in the oomycete Phytophthora infestans

机译:RNA Symbiont增强了oomycete植物植物症infestans中的耐热性和次要的次生形式

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Some strains of Phytophthora infestans, the potato late blight pathogen, harbour a small extrachromosomal RNA called PiERE1. A previous study reported that this RNA symbiont does not noticeably affect its host. Here it is revealed that PiERE1 exerts subtle effects on P. infestans, which result in greater thermotolerance during growth and an increase in secondary homothallism, i.e. oospore formation in the absence of the opposite mating type. The interaction can be considered mutualistic since these traits may increase the fitness of P. infestans in nature. Assays of biomarkers for cellular stress revealed that an Hsp70 chaperone was upregulated by PiERE1. A genome-wide search for more members of the Hsp70 family identified ten belonging to the DnaK subfamily, one in the Hsp110/SSE subfamily, and pseudogenes. Four DnaK subfamily genes encoding predicted cytoplasmic or endoplasmic reticulum proteins were upregulated in strains harbouring PiERE1. This may explain the greater thermotolerance conferred by the RNA element, and suggests that Hsp70 may be a useful biomarker for testing organisms for the cellular effects of symbiotic elements.
机译:一些植物植物嗜睡症,马铃薯晚疫病原体,涉及一个叫做piere1的小面套瘤rna。先前的研究报告称,这种RNA共生没有明显影响其宿主。在这里,Piere1对P. infestans发挥了微妙的影响,这导致在生长期间导致更大的热能和次要的次生型,即在没有相反配合类型的情况下形成Ospore形成。相互作用可以被认为是相互互动的,因为这些特征可以增加P. Infestans的适应性。用于细胞应激的生物标志物的测定表明,通过Piere1上调Hsp70伴侣酮。关于更多HSP70系列的基因组搜索鉴定了DNAK亚家族的10个属于DNAK亚家族,其中一个在HSP110 / SSE亚家族和伪原中。编码预测的细胞质或内质网蛋白的四个DNAK亚家族基因在含Piere1的菌株中升高。这可以解释RNA元素赋予的较大的热能,并表明HSP70可以是用于测试共生元素细胞效应的生物体的有用生物标志物。

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