Division of Life Science, Graduate School of Natural Science and Technology, Kanazawa University, Kanazawa 920-1192, Japan.
Biology Education Department, Faculty of Teacher Training and Education, Universitas Muhammadiyah Surakarta, Kartasura 57162, Indonesia.
Int J Mol Sci. 2022 Oct 12;23(20):12171. doi: 10.3390/ijms232012171.
The plant epidermis is the first line of plant defense against pathogen invasion, and likely contains important regulatory proteins related to the plant-pathogen interaction. This study aims to identify the candidates of these regulatory proteins expressed in the plant epidermis. We performed comparative proteomic studies to identify rapidly and locally expressed proteins in the leaf epidermis inoculated with fungal phytopathogen. The conidia solutions were dropped onto the Arabidopsis leaf surface, and then, we collected the epidermal tissues from inoculated and mock-treated leaves at 4 and 24 hpi. The label-free quantification methods showed that expressions of Arabidopsis proteins, which are related to defense signals, such as BAK1, MKK5, receptor-like protein kinases, transcription factors, and stomatal functions, were rapidly induced in the epidermal tissues of inoculated leaves. In contrast, most of them were not differentially regulated by fugal inoculation in the whole leaves. These findings clearly indicate that epidermal proteomics can monitor locally expressed proteins in inoculated areas of plant tissues. We also identified the 61 fungal proteins, including effector-like proteins specifically expressed on the Arabidopsis epidermis. Our new findings suggested that epidermal proteomics is useful for understanding the local expressions of plant and fungal proteins related to their interactions.
植物表皮是植物抵御病原体入侵的第一道防线,可能含有与植物-病原体相互作用相关的重要调节蛋白。本研究旨在鉴定在表皮组织中表达的这些调节蛋白的候选蛋白。我们进行了比较蛋白质组学研究,以鉴定用真菌植物病原体接种的叶片表皮中快速和局部表达的蛋白质。将分生孢子溶液滴在拟南芥叶片表面,然后在接种和模拟处理的叶片 4 和 24 hpi 时收集表皮组织。无标记定量方法表明,与防御信号相关的拟南芥蛋白(如 BAK1、MKK5、类受体蛋白激酶、转录因子和气孔功能)在接种叶片的表皮组织中迅速诱导表达。相比之下,它们中的大多数在整个叶片中不受真菌接种的差异调节。这些发现清楚地表明,表皮蛋白质组学可以监测植物组织接种区域中局部表达的蛋白质。我们还鉴定了 61 种真菌蛋白,包括在拟南芥表皮上特异性表达的效应子样蛋白。我们的新发现表明,表皮蛋白质组学有助于理解与植物和真菌相互作用相关的植物和真菌蛋白的局部表达。