415, School of Life Science, Jawaharlal Nehru University, New Delhi, 110067, India.
J Plant Res. 2020 May;133(3):409-417. doi: 10.1007/s10265-020-01183-2. Epub 2020 Mar 29.
To fine tune defense response output, plants recruit both positive and negative regulators. Here we report Arabidopsis DORMANCY/AUXIN ASSOCIATED FAMILY PROTEIN 2(DAP2) gene as a negative regulator of basal defense against virulent bacterial pathogens. Expression of DAP2 enhances upon pathogen inoculation. Our experiments show that DAP2 suppressed resistance against virulent strains of bacterial pathogens, pathogen-induced callose deposition, and ROS accumulation; however, it did not influence effector-triggered immunity. In addition, DAP2 negatively regulated systemic acquired resistance (SAR). DAP2 expression was enhanced in the pathogen-free systemic tissues of SAR-induced plants. Previously, Arabidopsis Flowering locus D (FLD) gene has been shown to be essential for SAR but not for local resistance. We show here that FLD function is necessary for SAR-induced expression of DAP2, suggesting DAP2 as a target of FLD for activation of SAR in Arabidopsis.
为了微调防御反应输出,植物招募了正向和负向调节剂。在这里,我们报告拟南芥休眠/生长素相关家族蛋白 2(DAP2)基因作为对毒力细菌病原体基本防御的负向调节剂。DAP2 的表达在病原体接种后增强。我们的实验表明,DAP2 抑制了对毒力菌株的细菌病原体、病原体诱导的胼胝质沉积和 ROS 积累的抗性;然而,它并不影响效应物触发的免疫。此外,DAP2 负调控系统获得性抗性(SAR)。在诱导 SAR 的植物无病原体的系统组织中,DAP2 的表达增强。以前,已经表明拟南芥 Flowering locus D (FLD) 基因对于 SAR 但不是对于局部抗性是必需的。我们在这里表明,FLD 功能对于 DAP2 的 SAR 诱导表达是必需的,这表明 DAP2 是 FLD 用于激活拟南芥 SAR 的一个靶标。