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Identification of mimp-associated effector genes in Fusarium oxysporum f. sp. cubense race 1 and race 4 and virulence confirmation of a candidate effector gene

机译:氧血管素F的MIMP相关效应基因的鉴定。 SP。 候选效应基因的立方体参数1和种族4和毒力确认

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Effectors secreted by microbes contribute to pathogen virulence and/or avirulence on host plants in the interaction of plants and microbes. Also, the effector repertoire determines the host specificity of a pathogen. Fusarium oxysporum f. sp. cubense (Foc) is the causal agent of banana wi however, knowledge about Foc effector genes is very limited. In this study, genome-wide effector gene identification was performed in Foc race 1 (Foc 1) and Foc race 4 (Foc 4) based on the context association between the effector genes and the transposable element mimp. A total of 20 candidate effector genes were identified, of which 3 were Foc 1-specific, 6 were Foc 4-specific, and 11 were present in both Foc 1 and Foc 4. Most genes (14 out of 20) showed a significant transcriptional burst in planta compared with in-culture conditions, from more than 10-fold to 1,617-fold, and at the highest 32,725-fold. In addition to Foc 1- and Foc 4-specific genes, the genes Foc 283, Foc 495, and Foc 594 also exhibited transcriptional race specificity. Sixteen of the twenty genes were predicted to have a signal peptide, nine genes might encode real effectors predicted by EffectorP 2.0, and eight genes had predicted motifs. To validate the pathogenicity of the candidate effector genes, we generated knockout mutant and complementants of the gene Foc 1324 and tested their virulence on banana plants. The results showed that Foc 1324 was a virulent factor and required for the pathogenicity of Foc 4.
机译:微生物分泌的效果导致植物和微生物相互作用的宿主植物的病原体毒力和/或血管毒动量。此外,效应器重量确定病原体的宿主特异性。 Fusarium oxysporum f。 SP。 Cumenst(Foc)是香蕉枯萎者的因果因子;然而,关于FoC效应基因的知识非常有限。在该研究中,基于效应基因和可转换元件MIMP之间的上下文结合,在FOC竞技1(FOC 1)中进行基因组静脉效应基因鉴定并基于效应基因和可转换元件MIMP之间的上下文结合进行FOC竞争4(FOC 4)。鉴定了总共20个候选效应基因,其中3个被归档1特异性,6个谱4个特异性,并且11个归档1和Foc 4中存在11个。大多数基因(其中20分中的14个)显示出显着的转录在Planta中爆裂与培养条件相比,从10倍到1,617倍,最高的32,725倍。除了CoF 1-和Foc 4特异性基因之外,基因FOC 283,FOC 495和FOC 594还表现出转录种族特异性。预计二十个基因的十六个具有信号肽,九种基因可能编码由effectorp 2.0预测的实际效果,8个基因已经预测了图案。为了验证候选效应基因的致病性,我们产生了基因Foc 1324的敲除突变体和稠胶,并在香蕉植物上进行了毒力。结果表明,Foc 1324是毒力因子,并且FOC 4的致病性所需的致病性。

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