Kaurilind Eve, Brosché Mikael
Institute of Ecology and Earth Sciences, University of Tartu, Tartu, Estonia.
Institute of Agricultural and Environmental Sciences, Estonian University of Life Sciences, Tartu, Estonia.
PLoS One. 2017 Jan 20;12(1):e0170532. doi: 10.1371/journal.pone.0170532. eCollection 2017.
Plants are exposed to abiotic and biotic stress conditions throughout their lifespans that activates various defense programs. Programmed cell death (PCD) is an extreme defense strategy the plant uses to manage unfavorable environments as well as during developmentally induced senescence. Here we investigated the role of leaf age on the regulation of defense gene expression in Arabidopsis thaliana. Two lesion mimic mutants with misregulated cell death, catalase2 (cat2) and defense no death1 (dnd1) were used together with several double mutants to dissect signaling pathways regulating defense gene expression associated with cell death and leaf age. PCD marker genes showed leaf age dependent expression, with the highest expression in old leaves. The salicylic acid (SA) biosynthesis mutant salicylic acid induction deficient2 (sid2) had reduced expression of PCD marker genes in the cat2 sid2 double mutant demonstrating the importance of SA biosynthesis in regulation of defense gene expression. While the auxin- and jasmonic acid (JA)- insensitive auxin resistant1 (axr1) double mutant cat2 axr1 also led to decreased expression of PCD markers; the expression of several marker genes for SA signaling (ISOCHORISMATE SYNTHASE 1, PR1 and PR2) were additionally decreased in cat2 axr1 compared to cat2. The reduced expression of these SA markers genes in cat2 axr1 implicates AXR1 as a regulator of SA signaling in addition to its known role in auxin and JA signaling. Overall, the current study reinforces the important role of SA signaling in regulation of leaf age-related transcript signatures.
植物在其整个生命周期中都会面临非生物和生物胁迫条件,这些胁迫会激活各种防御程序。程序性细胞死亡(PCD)是植物用来应对不利环境以及发育诱导衰老过程的一种极端防御策略。在这里,我们研究了叶龄对拟南芥防御基因表达调控的作用。使用了两个细胞死亡调控异常的类病斑突变体,过氧化氢酶2(cat2)和防御无死亡1(dnd1),以及几个双突变体,来剖析与细胞死亡和叶龄相关的防御基因表达调控信号通路。PCD标记基因的表达呈现叶龄依赖性,在老叶中表达最高。水杨酸(SA)生物合成突变体水杨酸诱导缺陷2(sid2)在cat2 sid2双突变体中PCD标记基因的表达降低,这表明SA生物合成在防御基因表达调控中具有重要作用。虽然生长素和茉莉酸(JA)不敏感的生长素抗性1(axr1)双突变体cat2 axr1也导致PCD标记物的表达降低;但与cat2相比,cat2 axr1中几个SA信号标记基因(异分支酸合成酶1、PR1和PR2)的表达进一步降低。cat2 axr1中这些SA标记基因表达的降低表明,除了其在生长素和JA信号传导中的已知作用外,AXR1还是SA信号传导的调节因子。总体而言,当前研究强化了SA信号传导在叶龄相关转录特征调控中的重要作用。