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细胞外 ATP 独立地和与其他防御信号通路一起塑造防御相关的转录组。

Extracellular ATP Shapes a Defense-Related Transcriptome Both Independently and along with Other Defense Signaling Pathways.

机构信息

Department of Plant Pathology, Washington State University, Pullman, Washington 99164.

Molecular Plant Sciences Program, Washington State University, Pullman, Washington 99164.

出版信息

Plant Physiol. 2019 Mar;179(3):1144-1158. doi: 10.1104/pp.18.01301. Epub 2019 Jan 10.

Abstract

ATP is not only an essential metabolite of cellular biochemistry but also acts as a signal in the extracellular milieu. In plants, extracellular ATP is monitored by the purinergic receptor P2K1. Recent studies have revealed that extracellular ATP acts as a damage-associated molecular pattern in plants, and its signaling through P2K1 is important for mounting an effective defense response against various pathogenic microorganisms. Biotrophic and necrotrophic pathogens attack plants using different strategies, to which plants respond accordingly with salicylate-based or jasmonate/ethylene-based defensive signaling, respectively. Interestingly, defense mediated by P2K1 is effective against pathogens of both lifestyles, raising the question of the level of interplay between extracellular ATP signaling and that of jasmonate, ethylene, and salicylate. To address this issue, we analyzed ATP-induced transcriptomes in wild-type Arabidopsis () seedlings and mutant seedlings defective in essential components in the signaling pathways of jasmonate, ethylene, and salicylate (classic defense hormones) as well as a mutant and an overexpression line of the P2K1 receptor. We found that P2K1 function is crucial for faithful ATP-induced transcriptional changes and that a subset of genes is more responsive in the P2K1 overexpression line. We also found that more than half of the ATP-responsive genes required signaling by one or more of the pathways for the classical defense hormones, with the jasmonate-based signaling being more critical than others. By contrast, the other ATP-responsive genes were unaffected by deficiencies in signaling for any of the classical defense hormones. These ATP-responsive genes were highly enriched for defense-related Gene Ontology terms. We further tested the ATP-induced genes in knockout mutants of transcription factors, demonstrating that MYCs acting downstream of the jasmonate receptor complex and calmodulin-binding transcription activators are nuclear transducers of P2K1-mediated extracellular ATP signaling.

摘要

ATP 不仅是细胞生物化学的必需代谢物,而且在细胞外环境中充当信号。在植物中,细胞外 ATP 由嘌呤能受体 P2K1 监测。最近的研究表明,细胞外 ATP 在植物中充当损伤相关分子模式,其通过 P2K1 的信号传递对于对各种病原微生物产生有效的防御反应很重要。生物营养型和坏死型病原体使用不同的策略攻击植物,植物分别用基于水杨酸的或茉莉酸/乙烯的防御信号来应对。有趣的是,由 P2K1 介导的防御对两种生活方式的病原体都有效,这就提出了细胞外 ATP 信号与茉莉酸、乙烯和水杨酸信号之间相互作用程度的问题。为了解决这个问题,我们分析了野生型拟南芥()幼苗和在茉莉酸、乙烯和水杨酸(经典防御激素)信号通路的必需成分有缺陷的突变体幼苗以及 P2K1 受体的突变体和过表达系中 ATP 诱导的转录组。我们发现 P2K1 功能对于忠实的 ATP 诱导的转录变化至关重要,并且在 P2K1 过表达系中,一组基因的响应更为敏感。我们还发现,超过一半的 ATP 响应基因需要一种或多种经典防御激素的信号通路,而茉莉酸基信号比其他信号更为关键。相比之下,其他 ATP 响应基因不受任何经典防御激素信号通路缺陷的影响。这些 ATP 响应基因在防御相关的基因本体术语中高度富集。我们进一步在转录因子的敲除突变体中测试了 ATP 诱导的基因,证明茉莉酸受体复合物下游的 MYC 和钙调素结合转录激活因子是 P2K1 介导的细胞外 ATP 信号的核转导因子。

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