Dipartimento di Agraria, Università degli Studi di Napoli Federico II, Via Università 100, 80055, Portici, NA, Italy.
Istituto per la Protezione Sostenibile delle Piante, CNR, Via Università 133, Portici, NA, Italy.
Sci Rep. 2017 Nov 14;7(1):15522. doi: 10.1038/s41598-017-15481-8.
Plants actively respond to herbivory by inducing various defense mechanisms in both damaged (locally) and non-damaged tissues (systemically). In addition, it is currently widely accepted that plant-to-plant communication allows specific neighbors to be warned of likely incoming stress (defense priming). Systemin is a plant peptide hormone promoting the systemic response to herbivory in tomato. This 18-aa peptide is also able to induce the release of bioactive Volatile Organic Compounds, thus also promoting the interaction between the tomato and the third trophic level (e.g. predators and parasitoids of insect pests). In this work, using a combination of gene expression (RNA-Seq and qRT-PCR), behavioral and chemical approaches, we demonstrate that systemin triggers metabolic changes of the plant that are capable of inducing a primed state in neighboring unchallenged plants. At the molecular level, the primed state is mainly associated with an elevated transcription of pattern -recognition receptors, signaling enzymes and transcription factors. Compared to naïve plants, systemin-primed plants were significantly more resistant to herbivorous pests, more attractive to parasitoids and showed an increased response to wounding. Small peptides are nowadays considered fundamental signaling molecules in many plant processes and this work extends the range of downstream effects of this class of molecules to intraspecific plant-to-plant communication.
植物通过在受损(局部)和未受损组织(系统)中诱导各种防御机制来主动应对食草性。此外,目前人们广泛认为,植物间的通讯可以提醒特定的邻居即将发生的压力(防御预备)。系统素是一种促进番茄对草食性系统反应的植物肽激素。这种 18 个氨基酸的肽还能够诱导生物活性挥发性有机化合物的释放,从而促进番茄与第三营养级(如害虫的捕食者和寄生蜂)之间的相互作用。在这项工作中,我们使用基因表达(RNA-Seq 和 qRT-PCR)、行为和化学方法的组合,证明系统素触发了植物的代谢变化,从而能够在相邻的未受挑战的植物中诱导预备状态。在分子水平上,预备状态主要与模式识别受体、信号酶和转录因子的转录水平升高有关。与未受刺激的植物相比,系统素刺激的植物对草食性害虫的抗性明显增强,对寄生蜂的吸引力增加,对受伤的反应增强。如今,小肽被认为是许多植物过程中的基本信号分子,这项工作将这类分子的下游效应范围扩展到种内植物间的通讯。