Departments of Biological Sciences and Cell and Systems Biology, University of Toronto Scarborough, 1265 Military Trail, Toronto, Ontario, Canada M1C 1A4.
Plant Cell Environ. 2013 Mar;36(3):721-32. doi: 10.1111/pce.12009. Epub 2012 Oct 11.
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.
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。