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MADS-Box Transcription Factor VdMcm1 Regulates Conidiation Microsclerotia Formation Pathogenicity and Secondary Metabolism of Verticillium dahliae

机译:MADS框转录因子VdMcm1调节黄萎病的分生小菌核形成致病性和次生代谢。

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摘要

Verticillium dahliae, a notorious phytopathogenic fungus, causes vascular wilt diseases in many plant species resulting in devastating yield losses worldwide. Due to its ability to colonize plant xylem and form microsclerotia, V. dahliae is highly persistent and difficult to control. In this study, we show that the MADS-box transcription factor VdMcm1 is a key regulator of conidiation, microsclerotia formation, virulence, and secondary metabolism of V. dahliae. In addition, our findings suggest that VdMcm1 is involved in cell wall integrity. Finally, comparative RNA-Seq analysis reveals 823 significantly downregulated genes in the VdMcm1 deletion mutant, with diverse biological functions in transcriptional regulation, plant infection, cell adhesion, secondary metabolism, transmembrane transport activity, and cell secretion. When taken together, these data suggest that VdMcm1 performs pleiotropic functions in V. dahliae.
机译:黄萎病菌(Verticillium dahliae)是一种臭名昭著的植物病原真菌,在许多植物中引起维管束枯萎病,导致全球范围内毁灭性的产量损失。由于其能够定殖植物木质部并形成微菌核的能力,所以大丽花弧菌具有高度持久性且难以控制。在这项研究中,我们表明,MADS框转录因子VdMcm1是大孢菌的分生,微菌核形成,毒力和次级代谢的关键调节剂。此外,我们的发现表明VdMcm1参与细胞壁完整性。最后,比较性RNA-Seq分析揭示了VdMcm1缺失突变体中的823个显着下调的基因,在转录调控,植物感染,细胞粘附,次级代谢,跨膜转运活性和细胞分泌方面具有多种生物学功能。综上所述,这些数据表明VdMcm1在V. dahliae中具有多效性功能。

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