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一种环磷酸腺苷磷酸二酯酶对于菌核形成和毒力至关重要。

A cAMP phosphodiesterase is essential for sclerotia formation and virulence in .

作者信息

Xu Yan, Qiu Yilan, Zhang Yuelin, Li Xin

机构信息

Michael Smith Laboratories, University of British Columbia, Vancouver, BC, Canada.

Department of Botany, University of British Columbia, Vancouver, BC, Canada.

出版信息

Front Plant Sci. 2023 May 31;14:1175552. doi: 10.3389/fpls.2023.1175552. eCollection 2023.

Abstract

is a plant pathogenic fungus that causes white mold or stem rot diseases. It affects mostly dicotyledonous crops, resulting in significant economic losses worldwide. Sclerotia formation is a special feature of , allowing its survival in soil for extended periods and facilitates the spread of the pathogen. However, the detailed molecular mechanisms of how sclerotia are formed and how virulence is achieved in are not fully understood. Here, we report the identification of a mutant that cannot form sclerotia using a forward genetics approach. Next-generation sequencing of the mutant's whole genome revealed candidate genes. Through knockout experiments, the causal gene was found to encode a cAMP phosphodiesterase (SsPDE2). From mutant phenotypic examinations, we found that SsPDE2 plays essential roles not only in sclerotia formation, but also in the regulation of oxalic acid accumulation, infection cushion functionality and virulence. Downregulation of transcripts in mutants revealed that these morphological defects are likely caused by cAMP-dependent inhibition of MAPK signaling. Moreover, when we introduced HIGS construct targeting in , largely compromised virulence was observed against . Taken together, SsPDE2 is indispensable for key biological processes of and can potentially serve as a HIGS target to control stem rot in the field.

摘要

是一种引起白霉病或茎腐病的植物病原真菌。它主要影响双子叶作物,在全球范围内造成重大经济损失。菌核形成是其一个特殊特征,使其能够在土壤中长期存活并促进病原体传播。然而,关于菌核如何形成以及在其中如何实现毒力的详细分子机制尚未完全了解。在此,我们报告使用正向遗传学方法鉴定出一个不能形成菌核的突变体。对该突变体全基因组进行的二代测序揭示了候选基因。通过基因敲除实验,发现致病基因编码一种环磷酸腺苷磷酸二酯酶(SsPDE2)。从突变体表型检查中,我们发现SsPDE2不仅在菌核形成中起关键作用,而且在草酸积累调节、侵染垫功能和毒力方面也起关键作用。突变体中转录本的下调表明这些形态缺陷可能是由环磷酸腺苷对丝裂原活化蛋白激酶信号通路的依赖性抑制引起的。此外,当我们在中引入靶向的寄主诱导基因沉默构建体时,观察到对的毒力大大降低。综上所述,SsPDE2对于的关键生物学过程是不可或缺的,并且有可能作为田间控制茎腐病的寄主诱导基因沉默靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8ca/10264682/de81f8a53e57/fpls-14-1175552-g001.jpg

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