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Cucumber Mildew Resistance Locus O Interacts with Calmodulin and Regulates Plant Cell Death Associated with Plant Immunity

机译:黄瓜防霉位点O与钙调蛋白相互作用并调节与植物免疫相关的植物细胞死亡

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摘要

Pathogen-induced cell death is closely related to plant disease susceptibility and resistance. The cucumber (Cucumis sativus L.) mildew resistance locus O (CsMLO1) and calmodulin (CsCaM3) genes, as molecular components, are linked to nonhost resistance and hypersensitive cell death. In this study, we demonstrate that CsMLO1 interacts with CsCaM3 via yeast two-hybrid, firefly luciferase (LUC) complementation and bimolecular fluorescence complementation (BiFC) experiments. A subcellular localization analysis of green fluorescent protein (GFP) fusion reveals that CsCaM3 is transferred from the cytoplasm to the plasma membrane in Nicotiana benthamiana, and CsCaM3 green fluorescence is significantly attenuated via the coexpression of CsMLO1 and CsCaM3. CsMLO1 negatively regulates CsCaM3 expression in transiently transformed cucumbers, and hypersensitive cell death is disrupted by CsCaM3 and/or CsMLO1 expression under Corynespora cassiicola infection. Additionally, CsMLO1 silencing significantly enhances the expression of reactive oxygen species (ROS)-related genes (CsPO1, CsRbohD, and CsRbohF), defense marker genes (CsPR1 and CsPR3) and callose deposition-related gene (CsGSL) in infected cucumbers. These results suggest that the interaction of CsMLO1 with CsCaM3 may act as a cell death regulator associated with plant immunity and disease.
机译:病原体诱导的细胞死亡与植物病害的敏感性和抗性密切相关。黄瓜(Cucumis sativus L.)霉菌抗性基因座O(CsMLO1)和钙调蛋白(CsCaM3)基因作为分子成分,与非寄主抗性和超敏细胞死亡有关。在这项研究中,我们证明了CsMLO1通过酵母双杂交,萤火虫荧光素酶(LUC)互补和双分子荧光互补(BiFC)实验与CsCaM3相互作用。绿色荧光蛋白(GFP)融合的亚细胞定位分析表明,CsCaM3已从本氏烟草的细胞质转移到质膜,并且CsCaM3绿色荧光通过CsMLO1和CsCaM3的共表达而显着减弱。 CsMLO1负调控瞬时转化黄瓜中CsCaM3的表达,并且在卡尼氏菌感染下,CsCaM3和/或CsMLO1的表达破坏了超敏细胞的死亡。此外,CsMLO1沉默可显着增强活性氧(ROS)相关基因(CsPO1,CsRbohD和CsRbohF),防御标记基因(CsPR1和CsPR3)和call质沉积相关基因( CsGSL )放在受感染的黄瓜中。这些结果表明CsMLO1与CsCaM3的相互作用可能充当与植物免疫力和疾病相关的细胞死亡调节剂。

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