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植物激发子肽(Pep)信号传导与番茄中的病原体防御

Plant Elicitor Peptide (Pep) Signaling and Pathogen Defense in Tomato.

作者信息

Zelman Alice K, Berkowitz Gerald Alan

机构信息

Department of Plant Science and Landscape Architecture, University of Connecticut, Storrs, CT 06269, USA.

出版信息

Plants (Basel). 2023 Aug 3;12(15):2856. doi: 10.3390/plants12152856.

Abstract

Endogenous signaling compounds are intermediaries in signaling pathways that plants use to respond to the perception of harmful and beneficial organisms. The plant elicitor peptides (Peps) of plants are important endogenous signaling molecules that induce elements of defense responses such as hormone production, increased expression of defensive genes, the activation of phosphorelays, and the induction of cell secondary messenger synthesis. The processes by which Peps confer resistance to pathogenic microorganisms have been extensively studied in Arabidopsis but are less known in crop plants. Tomato and many other solanaceous plants have an endogenous signaling polypeptide, systemin, that is involved in the defense against herbivorous insects and necrotrophic pathogens. This paper explores the similarity of the effects and chemical properties of Pep and systemin in tomato. Additionally, the relationship of the Pep receptor and systemin receptors is explored, and the identification of a second tomato Pep receptor in the literature is called into question. We suggest future directions for research on Pep signaling in solanaceous crops during interactions with microbes.

摘要

内源性信号化合物是植物用于响应有害和有益生物体感知的信号通路中的中介物。植物的植物激发肽(Peps)是重要的内源性信号分子,可诱导防御反应的要素,如激素产生、防御基因表达增加、磷酸化中继激活以及细胞第二信使合成的诱导。在拟南芥中,Peps赋予对病原微生物抗性的过程已得到广泛研究,但在作物中却鲜为人知。番茄和许多其他茄科植物有一种内源性信号多肽——系统素,它参与对食草昆虫和坏死营养型病原体的防御。本文探讨了番茄中Pep和系统素在作用效果和化学性质上的相似性。此外,还探讨了Pep受体与系统素受体的关系,并对文献中第二个番茄Pep受体的鉴定提出了质疑。我们提出了茄科作物在与微生物相互作用过程中Pep信号研究的未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e37e/10421127/ae0a7aeec99c/plants-12-02856-g001.jpg

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