Department of Life Sciences, National Cheng Kung University, No. 1, University Road, Tainan, 701, Taiwan.
Faculty of Technology, The University of Danang-Campus in Kontum, The University of Danang, Kon Tum City, 580000, Vietnam.
Plant Mol Biol. 2023 Nov;113(4-5):143-155. doi: 10.1007/s11103-023-01379-9. Epub 2023 Nov 20.
Microbial volatile compounds (mVCs) may cause stomatal closure to limit pathogen invasion as part of plant innate immune response. However, the mechanisms of mVC-induced stomatal closure remain unclear. In this study, we co-cultured Enterobacter aerogenes with Arabidopsis (Arabidopsis thaliana) seedlings without direct contact to initiate stomatal closure. Experiments using the reactive oxygen species (ROS)-sensitive fluorescent dye, HDCF-DA, showed that mVCs from E. aerogenes enhanced ROS production in guard cells of wild-type plants. The involvement of ROS in stomatal closure was then demonstrated in an ROS production mutant (rbohD). In addition, we identified two stages of signal transduction during E. aerogenes VC-induced stomatal closure by comparing the response of wild-type Arabidopsis with a panel of mutants. In the early stage (3 h exposure), E. aerogenes VCs induced stomatal closure in wild-type and receptor-like kinase THESEUS1 mutant (the1-1) but not in rbohD, plant hormone-related mutants (nced3, erf4, jar1-1), or MAPK kinase mutants (mkk1 and mkk3). However, in the late stage (24 h exposure), E. aerogenes VCs induced stomatal closure in wild-type and rbohD but not in nced3, erf4, jar1-1, the1-1, mkk1 or mkk3. Taken together, our results suggest that E. aerogenes mVC-induced plant immune responses modulate stomatal closure in Arabidopsis by a multi-phase mechanism.
微生物挥发性化合物(mVCs)可能会关闭气孔以限制病原体入侵,作为植物先天免疫反应的一部分。然而,mVC 诱导气孔关闭的机制尚不清楚。在这项研究中,我们将产气肠杆菌与拟南芥(Arabidopsis thaliana)幼苗进行共培养而不直接接触,以启动气孔关闭。使用活性氧(ROS)敏感荧光染料 HDCF-DA 的实验表明,产气肠杆菌的 mVCs 增强了野生型植物保卫细胞中的 ROS 产生。然后在 ROS 产生突变体(rbohD)中证明了 ROS 在气孔关闭中的作用。此外,我们通过比较野生型拟南芥与一系列突变体的反应,鉴定了产气肠杆菌 VC 诱导气孔关闭过程中的两个信号转导阶段。在早期阶段(暴露 3 小时),产气肠杆菌 VCs 诱导野生型和受体样激酶 THESEUS1 突变体(the1-1)但不诱导 rbohD、植物激素相关突变体(nced3、erf4、jar1-1)或 MAPK 激酶突变体(mkk1 和 mkk3)的气孔关闭。然而,在晚期阶段(暴露 24 小时),产气肠杆菌 VCs 诱导野生型和 rbohD 但不诱导 nced3、erf4、jar1-1、the1-1、mkk1 或 mkk3 的气孔关闭。总之,我们的结果表明,产气肠杆菌 mVC 诱导的植物免疫反应通过多相机制调节拟南芥的气孔关闭。