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拟南芥叶片对丁香假单胞菌 pv.番茄超敏反应中次生代谢物的差异空间分布依赖于氧化爆发。

The differential spatial distribution of secondary metabolites in Arabidopsis leaves reacting hypersensitively to Pseudomonas syringae pv. tomato is dependent on the oxidative burst.

机构信息

Institut de Biologie des Plantes, CNRS-Université Paris-Sud 11, UMR 8618, Bâtiment 630, 91405 Orsay Cedex, France.

出版信息

J Exp Bot. 2010 Jul;61(12):3355-70. doi: 10.1093/jxb/erq157. Epub 2010 Jun 7.

DOI:10.1093/jxb/erq157
PMID:20530195
Abstract

Secondary metabolites (SMs) play key roles in pathogen responses, although knowledge of their precise functions is limited by insufficient characterization of their spatial response. The present study addressed this issue in Arabidopsis leaves by non-targeted and targeted metabolite profiling of Pseudomonas syringae pv. tomato (Pst-AvrRpm1) infected and adjacent uninfected leaf tissues. While overlap was observed between infected and uninfected areas, the non-targeted metabolite profiles of these regions differed quantitatively and clustering analysis underscores a differential distribution of SMs within distinct metabolic pathways. Targeted metabolite profiling revealed that infected tissues accumulate more salicylic acid and the characteristic phytoalexin of Arabidopsis, camalexin, than uninfected adjacent areas. On the contrary, the antioxidant coumarin derivative, scopoletin, was induced in infected tissues while its glucoside scopolin predominated in adjacent tissues. To elucidate the still unclear relationship between the accumulation of SMs and reactive oxygen species (ROS) accumulation and signalling, a catalase-deficient line (cat2) in which ROS signalling is up-regulated, was used. Metabolic analysis of cat2 suggests that some SMs have important interactions with ROS in redox homeostasis during the hypersensitive response to Pst-AvrRpm1. Overall, the study demonstrates that ROS availability influences both the amount and the pattern of infection-induced SM accumulation.

摘要

次生代谢物(SMs)在病原体反应中发挥着关键作用,尽管由于对其空间反应的特征描述不足,其确切功能的知识有限。本研究通过对感染和相邻未感染的拟南芥叶片组织进行非靶向和靶向代谢物分析,解决了这个问题。虽然在感染和未感染区域观察到重叠,但这些区域的非靶向代谢物图谱在数量上存在差异,聚类分析突出了 SMs 在不同代谢途径中的差异分布。靶向代谢物分析表明,感染组织积累的水杨酸和拟南芥特征性的植保素,如 camalexin,比未感染的相邻区域多。相反,在感染组织中诱导了抗氧化剂香豆素衍生物,东莨菪素,而其糖苷scopolin 则在相邻组织中占主导地位。为了阐明 SMs 积累与活性氧(ROS)积累和信号之间仍不清楚的关系,使用了一种过氧化物酶体缺陷型(cat2),其中 ROS 信号被上调。cat2 的代谢分析表明,在对 Pst-AvrRpm1 的过敏反应中,一些 SMs 在氧化还原稳态中与 ROS 有重要的相互作用。总的来说,这项研究表明,ROS 的可用性不仅影响感染诱导的 SM 积累的数量,还影响其模式。

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