Spoel Steven H, Johnson Jessica S, Dong Xinnian
Department of Biology, Duke University, Durham, NC 27708, USA.
Proc Natl Acad Sci U S A. 2007 Nov 20;104(47):18842-7. doi: 10.1073/pnas.0708139104. Epub 2007 Nov 12.
Plants activate distinct defense responses depending on the lifestyle of the attacker encountered. In these responses, salicylic acid (SA) and jasmonic acid (JA) play important signaling roles. SA induces defense against biotrophic pathogens that feed and reproduce on live host cells, whereas JA activates defense against necrotrophic pathogens that kill host cells for nutrition and reproduction. Cross-talk between these defense signaling pathways has been shown to optimize the response against a single attacker. However, its role in defense against multiple pathogens with distinct lifestyles is unknown. Here we show that infection with biotrophic Pseudomonas syringae, which induces SA-mediated defense, rendered plants more susceptible to the necrotrophic pathogen Alternaria brassicicola by suppression of the JA signaling pathway. This process was partly dependent on the cross-talk modulator NPR1. Surprisingly, this tradeoff was restricted to tissues adjacent to the site of initial infection; A. brassicicola infection in systemic tissue was not affected. Even more surprisingly, tradeoff occurred only with the virulent Pseudomonas strain. Avirulent strains that induced programmed cell death (PCD), an effective plant-resistance mechanism against biotrophs, did not cause suppression of JA-dependent defense. This result might be advantageous to the plant by preventing necrotrophic pathogen growth in tissues undergoing PCD. Our findings show that plants tightly control cross-talk between SA- and JA-dependent defenses in a previously unrecognized spatial and pathogen type-specific fashion. This process allows them to prevent unfavorable signal interactions and maximize their ability to concomitantly fend off multiple pathogens.
植物会根据所遭遇攻击者的生活方式激活不同的防御反应。在这些反应中,水杨酸(SA)和茉莉酸(JA)发挥着重要的信号传导作用。SA诱导针对在活宿主细胞上取食和繁殖的活体营养型病原体的防御,而JA激活针对为获取营养和繁殖而杀死宿主细胞的坏死营养型病原体的防御。这些防御信号通路之间的相互作用已被证明可优化对单一攻击者的反应。然而,其在抵御具有不同生活方式的多种病原体方面的作用尚不清楚。在此我们表明,感染诱导SA介导防御的活体营养型丁香假单胞菌会通过抑制JA信号通路使植物更容易受到坏死营养型病原体芸苔链格孢的侵害。这一过程部分依赖于相互作用调节因子NPR1。令人惊讶的是,这种权衡仅限于初始感染部位附近的组织;系统组织中的芸苔链格孢感染不受影响。更令人惊讶的是,权衡仅发生在有毒力的假单胞菌菌株中。诱导程序性细胞死亡(PCD)(一种针对活体营养型病原体的有效植物抗性机制)的无毒力菌株不会导致JA依赖防御的抑制。这一结果可能通过防止坏死营养型病原体在经历PCD的组织中生长而对植物有利。我们的研究结果表明,植物以前所未认识到的空间和病原体类型特异性方式严格控制SA和JA依赖防御之间的相互作用。这一过程使它们能够防止不利的信号相互作用,并最大限度地提高其同时抵御多种病原体的能力。