作者
Michael Hartmann, Tatyana Zeier, Friederike Bernsdorff, Vanessa Reichel-Deland, Denis Kim, Michele Hohmann, Nicola Scholten, Stefan Schuck, Andrea Bräutigam, Torsten Hölzel, Christian Ganter, Jürgen Zeier
发表日期
2018/4/5
期刊
Cell
卷号
173
期号
2
页码范围
456-469. e16
出版商
Elsevier
简介
Following a previous microbial inoculation, plants can induce broad-spectrum immunity to pathogen infection, a phenomenon known as systemic acquired resistance (SAR). SAR establishment in Arabidopsis thaliana is regulated by the Lys catabolite pipecolic acid (Pip) and flavin-dependent-monooxygenase1 (FMO1). Here, we show that elevated Pip is sufficient to induce an FMO1-dependent transcriptional reprogramming of leaves that is reminiscent of SAR. In planta and in vitro analyses demonstrate that FMO1 functions as a pipecolate N-hydroxylase, catalyzing the biochemical conversion of Pip to N-hydroxypipecolic acid (NHP). NHP systemically accumulates in plants after microbial attack. When exogenously applied, it overrides the defect of NHP-deficient fmo1 in acquired resistance and acts as a potent inducer of plant immunity to bacterial and oomycete infection. Our work has identified a pathogen …
引用总数
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