首页> 外文OA文献 >Functional analysis of a Wheat Homeodomain protein, TaR1, reveals that host chromatin remodelling influences the dynamics of the switch to necrotrophic growth in the phytopathogenic fungus Zymoseptoria tritici.
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Functional analysis of a Wheat Homeodomain protein, TaR1, reveals that host chromatin remodelling influences the dynamics of the switch to necrotrophic growth in the phytopathogenic fungus Zymoseptoria tritici.

机译:小麦同源结构域蛋白TaR1的功能分析表明,宿主染色质重塑会影响植物致病性真菌小麦僵菌(Zymoseptoria tritici)向坏死型生长的转换动力学。

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摘要

A distinguishing feature of Septoria leaf blotch disease in wheat is the long symptomless growth of the fungus amongst host cells followed by a rapid transition to necrotrophic growth resulting in disease lesions. Global reprogramming of host transcription marks this switch to necrotrophic growth. However no information exists on the components that bring about host transcriptional reprogramming.\udGene-silencing, confocal-imaging and protein–protein interaction assays where employed to identify a plant homeodomain (PHD) protein, TaR1 in wheat that plays a critical role during the transition from symptomless to necrotrophic growth of Septoria.\udTaR1-silenced wheat show earlier symptom development upon Septoria infection but reduced fungal sporulation indicating that TaR1 is key for prolonging the symptomless phase and facilitating Septoria asexual reproduction. TaR1 is localized to the nucleus and binds to wheat Histone 3. Trimethylation of Histone 3 at lysine 4 (H3K4) and lysine 36 (H3K36) are found on open chromatin with actively transcribed genes, whereas methylation of H3K27 and H3K9 are associated with repressed loci. TaR1 specifically recognizes dimethylated and trimethylated H3K4 peptides suggesting that it regulates transcriptional activation at open chromatin.\udWe conclude that TaR1 is an important component for the pathogen life cycle in wheat that promotes successful colonization by Septoria.
机译:小麦的Septoria叶斑病的一个显着特征是真菌在宿主细胞中长期无症状生长,然后迅速过渡到坏死性生长,从而导致病害。宿主转录的整体重编程标志着这种向坏死性生长的转变。但是,尚无有关导致宿主转录重新编程的成分的信息。\ ud基因沉默,共聚焦成像和蛋白质-蛋白质相互作用测定法被用于鉴定小麦中的植物同源域(PHD)蛋白质TaR1,该蛋白质在小麦中起着至关重要的作用。 \ udTaR1沉默的小麦在感染Septoria后表现出较早的症状发展,但真菌孢子形成减少,表明TaR1是延长无症状阶段并促进Septoria无性繁殖的关键。 TaR1定位于核,并与小麦组蛋白3结合。在带有活跃转录基因的开放染色质上发现组蛋白3在赖氨酸4(H3K4)和赖氨酸36(H3K36)的三甲基化,而H3K27和H3K9的甲基化与基因座受抑制有关。 TaR1特异性识别二甲基化和三甲基化的H3K4肽,表明它调节开放染色质的转录激活。\ ud我们得出结论,TaR1是小麦病原体生命周期的重要组成部分,可促进Septoria成功定居。

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