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首页> 外文期刊>Molecular Microbiology >A MADS‐box transcription factor regulates a central step in sporulation of the oomycete Phytophthora infestans Phytophthora infestans
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A MADS‐box transcription factor regulates a central step in sporulation of the oomycete Phytophthora infestans Phytophthora infestans

机译:疯狂箱转录因子调节植物植物植物植物植物植物植物植物植物植物植物植物的核心步伐

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摘要

Summary MADS‐box transcription factors play significant roles in eukaryotes, but have not yet been characterized in oomycetes. Here, we describe a MADS‐box protein from Phytophthora infestans , which causes late blight of potato. P. infestans and most other oomycetes express a single MADS‐box gene. PiMADS is not transcribed during vegetative growth, but is induced early during asexual sporulation. Its mRNA levels oscillate in response to light, which suppresses sporulation. The protein was not detected in nonsporulating mycelia, but was found in sporulating mycelia and spores. Both mRNA and protein levels decline upon spore germination. A similar expression pattern as well as nuclear localization was observed when the protein was expressed with a fluorescent tag from the native promoter. Gene silencing triggered by a construct expressing 478 nt of MADS sequences indicated that PiMADS is required for sporulation but not hyphal growth or plant colonization. A comparison of wild type to a silenced strain by RNA‐seq indicated that PiMADS regulates about 3000 sporulation‐associated genes, and acts before other genes previously shown to regulate sporulation . Analysis of the silenced strain also indicated that the native gene was not transcribed while the transgene was still expressed, which contradicts current models for homology‐dependent silencing in oomycetes.
机译:摘要Mads-Box转录因子在真核生物中发挥重要作用,但尚未在oomycetes中表征。在这里,我们描述了来自植物博士生的疯子盒蛋白质,导致马铃薯枯萎。 P. infestans和大多数其他oomycetes表达了一个疯狂的盒子基因。 Pimads在营养生长期间未转录,但在无性孢子症期间诱导。其mRNA水平响应光而振荡,抑制孢子率。蛋白质未在孢子菌丝体中检测到,但在孢子菌丝体和孢子中发现。孢子萌发后mRNA和蛋白质水平都会下降。当蛋白质与来自天然启动子的荧光标签表达时,观察到类似的表达模式以及核定位。由表达478nt的MAD序列的构建体引发的基因沉默表明孢子需要孢子,但不是亚酚醛生长或植物定植。通过RNA-SEQ对野生型与沉默菌株的比较表明,PIMADS调节约3000个孢子形相关基因,并在先前示出调节孢子的其他基因之前起作用。沉默菌株的分析还表明,在仍然表达转基因时未转录天然基因,这与oomycetes中的同源依赖性沉默的电流模型相矛盾。

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