Ślesak Ireneusz, Szechyńska-Hebda Magdalena, Fedak Halina, Sidoruk Natalia, Dąbrowska-Bronk Joanna, Witoń Damian, Rusaczonek Anna, Antczak Andrzej, Drożdżek Michał, Karpińska Barbara, Karpiński Stanisław
Department of Plant Genetics, Breeding and Biotechnology, Warsaw University of Life Sciences, 02-776, Warszawa, Poland.
The Franciszek Górski Institute of Plant Physiology, Polish Academy of Sciences, 30-239, Kraków, Poland.
Plant Cell Environ. 2015 Jul;38(7):1275-84. doi: 10.1111/pce.12388. Epub 2014 Jul 22.
The phytoalexin deficient 4 (PAD4) gene in Arabidopsis thaliana (AtPAD4) is involved in the regulation of plant--pathogen interactions. The role of PAD4 in woody plants is not known; therefore, we characterized its function in hybrid aspen and its role in reactive oxygen species (ROS)-dependent signalling and wood development. Three independent transgenic lines with different suppression levels of poplar PAD expression were generated. All these lines displayed deregulated ROS metabolism, which was manifested by an increased H2O2 level in the leaves and shoots, and higher activities of manganese superoxide dismutase (MnSOD) and catalase (CAT) in the leaves in comparison to the wild-type plants. However, no changes in non-photochemical quenching (NPQ) between the transgenic lines and wild type were observed in the leaves. Moreover, changes in the ROS metabolism in the pad4 transgenic lines positively correlated with wood formation. A higher rate of cell division, decreased tracheid average size and numbers, and increased cell wall thickness were observed. The results presented here suggest that the Populus tremula × tremuloides PAD gene might be involved in the regulation of cellular ROS homeostasis and in the cell division--cell death balance that is associated with wood development.
拟南芥中的植物抗毒素缺陷4(PAD4)基因(AtPAD4)参与植物与病原体相互作用的调控。PAD4在木本植物中的作用尚不清楚;因此,我们对其在杂种杨中的功能及其在活性氧(ROS)依赖性信号传导和木材发育中的作用进行了表征。我们构建了三个杨树PAD表达抑制水平不同的独立转基因株系。与野生型植株相比,所有这些株系均表现出ROS代谢失调,具体表现为叶片和嫩枝中的H2O2水平升高,以及叶片中锰超氧化物歧化酶(MnSOD)和过氧化氢酶(CAT)的活性更高。然而,在叶片中未观察到转基因株系与野生型之间的非光化学猝灭(NPQ)有变化。此外,pad4转基因株系中ROS代谢的变化与木材形成呈正相关。观察到细胞分裂速率更高、管胞平均大小和数量减少以及细胞壁厚度增加。此处给出的结果表明,欧洲山杨×美洲山杨的PAD基因可能参与细胞ROS稳态的调控以及与木材发育相关的细胞分裂 - 细胞死亡平衡的调控。