Devanathan Sriram, Erban Alexander, Perez-Torres Rodolfo, Kopka Joachim, Makaroff Christopher A
Department of Chemistry and Biochemistry, Miami University, Oxford, Ohio, United States of America.
Max Planck Institute of Molecular Plant Physiology, Potsdam-Golm, Germany.
PLoS One. 2014 Apr 23;9(4):e95971. doi: 10.1371/journal.pone.0095971. eCollection 2014.
The glyoxalase pathway, which consists of the two enzymes, GLYOXALASE 1 (GLX 1) (E.C.: 4.4.1.5) and 2 (E.C.3.1.2.6), has a vital role in chemical detoxification. In Arabidopsis thaliana there are at least four different isoforms of glyoxalase 2, two of which, GLX2-1 and GLX2-4 have not been characterized in detail. Here, the functional role of Arabidopsis thaliana GLX2-1 is investigated. Glx2-1 loss-of-function mutants and plants that constitutively over-express GLX2-1 resemble wild-type plants under normal growth conditions. Insilico analysis of publicly available microarray datasets with ATTEDII, Mapman and Genevestigator indicate potential role(s) in stress response and acclimation. Results presented here demonstrate that GLX2-1 gene expression is up-regulated in wild type Arabidopsis thaliana by salt and anoxia stress, and by excess L-Threonine. Additionally, a mutation in GLX2-1 inhibits growth and survival during abiotic stresses. Metabolic profiling studies show alterations in the levels of sugars and amino acids during threonine stress in the plants. Elevated levels of polyamines, which are known stress markers, are also observed. Overall our results suggest that Arabidopsis thaliana GLX2-1 is not essential during normal plant life, but is required during specific stress conditions.
乙二醛酶途径由两种酶组成,即乙二醛酶1(GLX 1)(酶编号:4.4.1.5)和乙二醛酶2(酶编号:3.1.2.6),在化学解毒过程中起着至关重要的作用。在拟南芥中,乙二醛酶2至少有四种不同的同工型,其中两种,即GLX2 - 1和GLX2 - 4尚未得到详细表征。在此,对拟南芥GLX2 - 1的功能作用进行了研究。在正常生长条件下,GLX2 - 1功能缺失突变体和组成型过表达GLX2 - 1的植株与野生型植株相似。使用ATTEDII、Mapman和Genevestigator对公开可用的微阵列数据集进行的电子分析表明其在应激反应和适应过程中具有潜在作用。此处给出的结果表明,在野生型拟南芥中,盐胁迫、缺氧胁迫以及过量L - 苏氨酸会使GLX2 - 1基因表达上调。此外,GLX2 - 1中的一个突变会抑制非生物胁迫期间的生长和存活。代谢谱分析研究表明,在苏氨酸胁迫期间,植物体内糖和氨基酸水平发生了变化。同时也观察到作为已知应激标志物的多胺水平升高。总体而言,我们的结果表明,拟南芥GLX2 - 1在正常植物生命过程中并非必需,但在特定胁迫条件下是必需的。