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质体抗坏血酸过氧化物酶的冷调节作为一个启动枢纽,控制拟南芥中的活性氧信号传导。

Cold regulation of plastid ascorbate peroxidases serves as a priming hub controlling ROS signaling in Arabidopsis thaliana.

作者信息

van Buer Jörn, Cvetkovic Jelena, Baier Margarete

机构信息

Dahlem Center of Plant Sciences, Plant Physiology, Freie Universität Berlin, Königin-Luise-Straße 12-16, 14195, Berlin, Germany.

出版信息

BMC Plant Biol. 2016 Jul 20;16(1):163. doi: 10.1186/s12870-016-0856-7.

Abstract

BACKGROUND

Short cold periods comprise a challenge to plant growth and development. Series of cold stresses improve plant performance upon a future cold stress. This effect could be provoked by priming, training or acclimation dependent hardening. Here, we compared the effect of 24 h (short priming stimulus) and of 2 week long cold-pretreatment (long priming stimulus) on the response of Arabidopsis thaliana to a single 24 h cold stimulus (triggering) after a 5 day long lag-phase, to test Arabidopsis for cold primability.

RESULTS

Three types of pretreatment dependent responses were observed: (1) The CBF-regulon controlled gene COR15A was stronger activated only after long-term cold pretreatment. (2) The non-chloroplast specific stress markers PAL1 and CHS were more induced by cold after long-term and slightly stronger expressed after short-term cold priming. (3) The chloroplast ROS signaling marker genes ZAT10 and BAP1 were less activated by the triggering stimulus in primed plants. The effects on ZAT10 and BAP1 were more pronounced in 24 h cold-primed plants than in 14 day long cold-primed ones demonstrating independence of priming from induction and persistence of primary cold acclimation responses. Transcript and protein abundance analysis and studies in specific knock-out lines linked the priming-specific regulation of ZAT10 and BAP1 induction to the priming-induced long-term regulation of stromal and thylakoid-bound ascorbate peroxidase (sAPX and tAPX) expression.

CONCLUSION

The plastid antioxidant system, especially, plastid ascorbate peroxidase regulation, transmits information on a previous cold stress over time without the requirement of establishing cold-acclimation. We hypothesize that the plastid antioxidant system serves as a priming hub and that priming-dependent regulation of chloroplast-to-nucleus ROS signaling is a strategy to prepare plants under unstable environmental conditions against unpredictable stresses by supporting extra-plastidic stress protection.

摘要

背景

短暂的低温期对植物的生长发育构成挑战。一系列冷胁迫可提高植物对未来冷胁迫的耐受性。这种效应可能是由引发、训练或依赖驯化的硬化作用引起的。在此,我们比较了24小时(短引发刺激)和2周的冷预处理(长引发刺激)对拟南芥在5天滞后期后对单一24小时冷刺激(触发)的反应的影响,以测试拟南芥的冷引发能力。

结果

观察到三种类型的预处理依赖性反应:(1)CBF调控子控制的基因COR15A仅在长期冷预处理后被更强地激活。(2)非叶绿体特异性应激标记物PAL1和CHS在长期冷处理后更易被冷诱导,在短期冷引发后表达略强。(3)引发植物中,触发刺激对叶绿体ROS信号标记基因ZAT10和BAP1的激活作用较弱。对ZAT10和BAP1的影响在24小时冷引发的植物中比在14天冷引发的植物中更明显,表明引发与初级冷驯化反应的诱导和持续性无关。转录本和蛋白质丰度分析以及在特定敲除系中的研究将ZAT10和BAP1诱导的引发特异性调控与引发诱导的基质和类囊体结合抗坏血酸过氧化物酶(sAPX和tAPX)表达的长期调控联系起来。

结论

质体抗氧化系统,特别是质体抗坏血酸过氧化物酶调控,可随时间传递先前冷胁迫的信息,而无需建立冷驯化。我们假设质体抗氧化系统作为一个引发中心,并且叶绿体到细胞核ROS信号的引发依赖性调控是一种策略,通过支持质体外应激保护,使植物在不稳定的环境条件下抵御不可预测的胁迫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/885e/4955218/1d570a2f9021/12870_2016_856_Fig1_HTML.jpg

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