The correlation between proline/P5C cycle and the response to avirulent pathogen infection in Arabidopsis

IF 5.4 Q1 PLANT SCIENCES Current Plant Biology Pub Date : 2023-09-01 DOI:10.1016/j.cpb.2023.100293
Wenhan Ying , Rongchao Yang , Yuanyuan Cai , Jieyao Wang , Kongya Xing , Yueqin Zhang , Xuejun Hua
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Abstract

Proline/P5C cycle between mitochondria and cytosol, play important roles in energy supply and ROS (Reactive oxygen species) generation in mammalian cell. Recently, in plant, proline-dependent ROS via proline/P5C cycle was proposed to be involved in hypersensitive reaction during plant response to avirulent pathogens. However, much remains to be elucidated about the regulation of proline/P5C cycle upon pathogen infection. Here, we reported the isolation and characterization of an Arabidopsis mutant proline resistance 2 (pre2), with a single dominant mutation in a single gene. Our results showed that the proline resistance phenotype of pre2 is not due to decreased intracellular proline content, when treated with exogenous proline. Upon proline treatment, pre2 showed reduced induction of PDH transcript level and enhanced induction of that of P5CDH, accompanied by lower level of mitochondrial ROS, suggesting an attenuated proline/P5C cycle activity. Proline-induced SA (Salicylic acid) signaling was also less activated in pre2, as evidenced by reduced free SA content and PR1 transcript level, compared to the WT. On the other hand, SA activation on the proline/P5C activity is to a lesser extent in pre2 than in WT. Significantly, pre2 demonstrated increased susceptibility to infection by avirulent pathogen Pst. DC3000 (avrRps4), accompanied also by lesser induced proline/P5C cycle activity by the pathogen. Our results indicated that there is a correlation between proline/P5C cycle and plant response to avirulent pathogen.

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拟南芥脯氨酸/P5C循环与对无毒病原体感染反应的相关性
脯氨酸/P5C循环存在于线粒体和细胞质之间,在哺乳动物细胞能量供应和活性氧生成中起重要作用。近年来,在植物中,脯氨酸依赖性ROS通过脯氨酸/P5C循环参与植物对无毒病原体的超敏反应。然而,脯氨酸/P5C循环对病原体感染的调控仍有待阐明。本文报道了拟南芥脯氨酸抗性突变体2 (pre2)的分离和鉴定,该突变体在单个基因中具有单个显性突变。我们的研究结果表明,当外源脯氨酸处理时,pre2的脯氨酸抗性表型不是由于细胞内脯氨酸含量降低。脯氨酸处理后,pre2对PDH转录水平的诱导降低,对P5CDH转录水平的诱导增强,同时线粒体ROS水平降低,表明脯氨酸/P5C循环活性减弱。与WT相比,脯氨酸诱导的SA(水杨酸)信号在pre2中的激活程度也较低,这可以从游离SA含量和PR1转录物水平的降低中得到证明。另一方面,SA对脯氨酸/P5C活性的激活程度在pre2中低于WT。值得注意的是,pre2对无毒病原体Pst的感染表现出更高的易感性。DC3000 (avrRps4),病原菌诱导的脯氨酸/P5C循环活性也较低。结果表明,脯氨酸/P5C循环与植物对无毒病原菌的反应存在相关性。
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来源期刊
Current Plant Biology
Current Plant Biology Agricultural and Biological Sciences-Plant Science
CiteScore
10.90
自引率
1.90%
发文量
32
审稿时长
50 days
期刊介绍: Current Plant Biology aims to acknowledge and encourage interdisciplinary research in fundamental plant sciences with scope to address crop improvement, biodiversity, nutrition and human health. It publishes review articles, original research papers, method papers and short articles in plant research fields, such as systems biology, cell biology, genetics, epigenetics, mathematical modeling, signal transduction, plant-microbe interactions, synthetic biology, developmental biology, biochemistry, molecular biology, physiology, biotechnologies, bioinformatics and plant genomic resources.
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