Shu Lin-Jie, Kahlon Parvinderdeep S, Ranf Stefanie
Chair of Phytopathology, TUM School of Life Sciences, Technical University of Munich, 85354, Freising-Weihenstephan, Germany.
Department of Biology, University of Fribourg, 1700, Fribourg, Switzerland.
New Phytol. 2023 Nov;240(3):960-967. doi: 10.1111/nph.19148. Epub 2023 Jul 31.
The plant immune system features numerous immune receptors localized on the cell surface to monitor the apoplastic space for danger signals from a broad range of plant colonizers. Recent discoveries shed light on the enormous complexity of molecular signals sensed by these receptors, how they are generated and removed to maintain cellular homeostasis and immunocompetence, and how they are shaped by host-imposed evolutionary constraints. Fine-tuning receptor sensing mechanisms at the molecular, cellular and physiological level is critical for maintaining a robust but adaptive host barrier to commensal, pathogenic, and symbiotic colonizers alike. These receptors are at the core of any plant-colonizer interaction and hold great potential for engineering disease resistance and harnessing beneficial microbiota to keep crops healthy.
植物免疫系统具有众多位于细胞表面的免疫受体,用于监测质外体空间,以检测来自广泛植物定殖者的危险信号。最近的发现揭示了这些受体所感知的分子信号的巨大复杂性,它们如何产生和消除以维持细胞内稳态和免疫能力,以及它们如何受到宿主施加的进化限制的影响。在分子、细胞和生理水平上微调受体感知机制,对于维持对共生、致病和共生定殖者的强大但适应性的宿主屏障至关重要。这些受体是任何植物与定殖者相互作用的核心,在工程抗病性和利用有益微生物群保持作物健康方面具有巨大潜力。