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Sssfh1 a Gene Encoding a Putative Component of the RSC Chromatin Remodeling Complex Is Involved in Hyphal Growth Reactive Oxygen Species Accumulation and Pathogenicity in Sclerotinia sclerotiorum

机译:Sssfh1编码RSC染色质重塑复合物的假定成分的基因参与菌丝菌核菌的菌丝生长活性氧的积累和致病性。

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摘要

SFH1 (for Snf5 homolog) protein, comprised in the RSC (Remodels Structure of Chromatin) chromatin remodeling complex, functions as a transcription factor (TF) to specifically regulate gene transcription and chromatin remodeling. As one of the well-conserved TFs in eukaryotic organisms, little is known about the roles of SFH1 protein in the filamentous fungi. In Sclerotinia sclerotiorum, one of the notorious plant fungal pathogens, there are nine proteins predicted to contain GATA-box domain according to GATA family TF classification, among which Sssfh1 (SS1G_01151) encodes a protein including a GATA-box domain and a SNF5 domain. Here, we characterized the roles of Sssfh1 in the developmental process and fungal pathogenicity by using RNA interference (RNAi)-based gene silencing in S. sclerotiorum. RNA-silenced strains with significantly reduced Sssfh1 RNA levels exhibited slower hyphal growth and decreased reactive oxygen species (ROS) accumulation in hyphae compared to the wild-type (WT) strain. Yeast two-hybrid (Y2H) and bimolecular fluorescence complementation (BiFC) assays demonstrated that SsSFH1 interacts with SsMSG5, a MAPK phosphatase in S. sclerotiorum. Furthermore, Sssfh1-silenced strains exhibited enhanced tolerance to NaCl and H2O2. Results of infection assays on soybean and common bean (Phaseolus vulgaris) leaves indicated that Sssfh1 is required for full virulence of S. sclerotiorum during infection in the susceptible host plants. Collectively, our results suggest that the TF SsSFH1 is involved in growth, ROS accumulation and virulence in S. sclerotiorum.
机译:包含在RSC(染色质的重塑结构)染色质重塑复合物中的SFH1(对于Snf5同源物)蛋白起转录因子(TF)的作用,专门调节基因转录和染色质重塑。作为真核生物中保存完好的TF之一,人们对SFH1蛋白在丝状真菌中的作用知之甚少。在臭名昭著的植物真菌病原体之一的菌核盘菌中,根据GATA家族TF分类,预测有9种蛋白质包含GATA-box结构域,其中Sssfh1(SS1G_01151)编码包含GATA-box结构域和SNF5结构域的蛋白质。在这里,我们通过使用S.sclerotiorum中基于RNA干扰(RNAi)的基因沉默来表征Sssfh1在发育过程和真菌致病性中的作用。与野生型(WT)菌株相比,Sssfh1 RNA水平显着降低的RNA沉默菌株表现出较慢的菌丝生长和减少的菌丝中活性氧(ROS)积累。酵母双杂交(Y2H)和双分子荧光互补(BiFC)分析表明,SsSFH1与S.MSG5(一种在葡萄球菌中的MAPK磷酸酶)相互作用。此外,Sssfh1沉默的菌株对NaCl和H2O2的耐受性增强。在大豆和菜豆(菜豆)叶片上的感染测定结果表明,在易感宿主植物感染期间,Sssfh1是核盘菌完全毒力所必需的。总体而言,我们的结果表明,TF SsSFH1参与了核盘菌的生长,ROS积累和毒力。

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