International Center for Plant Molecular Genetics, School of Life Science, Shanxi Normal University, Linfen, PR China.
School of Chemical Engineering and Technology, Tianjin University, Tianjin, PR China.
PLoS One. 2019 Dec 19;14(12):e0226543. doi: 10.1371/journal.pone.0226543. eCollection 2019.
Reactive oxygen species (ROS) are produced by plants. Hydrogen peroxide (H2O2) is one important component of ROS and able to modulate plant growth and development at low level and damage plant cells at high concentrations. Ascorbate peroxidase (APX) shows high affinity towards H2O2 and plays vital roles in H2O2-scavenging. In order to explore the differences of APXs from selected plant species, bioinformatics methods and public databases were used to evaluate the physicochemical properties, conserved motifs, potential modifications and cis-elements in all the APXs, and protein-protein network and expression profiles of rice APXs. The results suggested that APXs in the selected plant species showed high evolutionary conservation and were able to divide into seven groups, group I to VII. Members in the groups contained abundant phosphorylation sites. Interestingly, group I and VII had only PKC site. Additionally, promoters of the APXs contained abundant stress-related cis-elements. APXs in rice plant were able to interact with dehydroascorbate reductase 2. The eight APXs expressed differently in root, leaf, panicle, anther, pistil and seed. Drought, Pi-free, Cd and Xanthomonas oryzae pv. oryzicola B8-12 treatments were able to significantly alter the expression profiles of rice APXs. This study increases our knowledge to further explore functions and mechanisms of APXs and also guides their applications.
活性氧(ROS)是由植物产生的。过氧化氢(H2O2)是 ROS 的重要组成部分,能够在低浓度下调节植物的生长和发育,而在高浓度下则会损害植物细胞。抗坏血酸过氧化物酶(APX)对 H2O2 具有高亲和力,在 H2O2 清除中发挥重要作用。为了探索所选植物物种中 APX 的差异,使用生物信息学方法和公共数据库来评估所有 APX 的理化性质、保守基序、潜在修饰和顺式元件,以及水稻 APX 的蛋白质-蛋白质网络和表达谱。结果表明,所选植物物种中的 APX 具有高度的进化保守性,能够分为七个组,即 I 组到 VII 组。组内成员含有丰富的磷酸化位点。有趣的是,I 组和 VII 组仅含有 PKC 位点。此外,APX 的启动子含有丰富的与应激相关的顺式元件。水稻中的 APX 能够与脱氢抗坏血酸还原酶 2 相互作用。在根、叶、穗、花药、雌蕊和种子中,8 个 APX 的表达不同。干旱、无磷、Cd 和稻黄单胞菌 pv.oryzicola B8-12 处理能够显著改变水稻 APX 的表达谱。本研究增加了我们对进一步探索 APX 功能和机制的认识,并为其应用提供了指导。