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交替氧化酶通过影响线粒体活性氧的产生来影响植物对生物胁迫的反应。

Alternative oxidase impacts the plant response to biotic stress by influencing the mitochondrial generation of reactive oxygen species.

机构信息

Departments of Biological Sciences and Cell and Systems Biology, University of Toronto Scarborough, 1265 Military Trail, Toronto, Ontario, Canada M1C 1A4.

出版信息

Plant Cell Environ. 2013 Mar;36(3):721-32. doi: 10.1111/pce.12009. Epub 2012 Oct 11.

Abstract

Previously, we showed that inoculation of tobacco with Pseudomonas syringae incompatible pv. maculicola results in a rapid and persistent burst of superoxide (O(2) (-) ) from mitochondria, no change in amount of mitochondrial alternative oxidase (AOX) and induction of the hypersensitive response (HR). However, inoculation with incompatible pv. phaseolicola resulted in increased AOX, no O(2) (-) burst and no HR. Here, we show that in transgenic plants unable to induce AOX in response to pv. phaseolicola, there is now a strong mitochondrial O(2) (-) burst, similar to that normally seen only with pv. maculicola. This interaction did not however result in a HR. This indicates that AOX amount is a key determinant of the mitochondrial O(2) (-) burst but also that the burst itself is not sufficient to induce the HR. Surprisingly, the O(2) (-) burst normally seen towards pv. maculicola is delayed in plants lacking AOX. This delay is associated with a delayed HR, suggesting that the burst does promote the HR. A O(2) (-) burst can also be induced by the complex III inhibitor antimycin A (AA), but is again delayed in plants lacking AOX. The similar mitochondrial response induced by pv. maculicola and AA suggests that electron transport is a target during HR-inducing biotic interactions.

摘要

先前,我们发现接种非亲和性丁香假单胞菌 pv. 斑点致病型和 pv. 菜豆致病型会导致线粒体中活性氧(O2(-))迅速且持续地爆发,线粒体交替氧化酶(AOX)的含量没有变化,并诱导过敏反应(HR)。然而,接种非亲和性 pv. 菜豆致病型会导致 AOX 增加,O2(-)爆发和 HR 缺失。在这里,我们发现对于不能响应 pv. 菜豆致病型诱导 AOX 的转基因植物,现在会有一个强烈的线粒体 O2(-)爆发,类似于通常仅在 pv. 斑点致病型中观察到的情况。然而,这种相互作用并没有导致 HR。这表明 AOX 含量是线粒体 O2(-)爆发的关键决定因素,但爆发本身不足以诱导 HR。令人惊讶的是,缺乏 AOX 的植物中通常观察到的 pv. 斑点致病型的 O2(-)爆发被延迟。这种延迟与延迟的 HR 相关,表明爆发确实促进了 HR。复合物 III 抑制剂安密妥(AA)也可以诱导 O2(-)爆发,但在缺乏 AOX 的植物中再次被延迟。pv. 斑点致病型和 AA 诱导的类似线粒体反应表明,在诱导生物相互作用的 HR 过程中,电子传递是一个靶标。

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