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植物微生物群通过一般非自我反应基因的剂量反应性表达产生反馈。

Plant microbiota feedbacks through dose-responsive expression of general non-self response genes.

作者信息

Keppler Andreas, Roulier Michelle, Pfeilmeier Sebastian, Petti Gabriella C, Sintsova Anna, Maier Benjamin A, Bortfeld-Miller Miriam, Sunagawa Shinichi, Zipfel Cyril, Vorholt Julia A

机构信息

Institute of Microbiology, ETH Zurich, Zurich, Switzerland.

Institute of Plant and Microbial Biology, Zurich-Basel Plant Science Center, University of Zurich, Zurich, Switzerland.

出版信息

Nat Plants. 2025 Jan;11(1):74-89. doi: 10.1038/s41477-024-01856-z. Epub 2024 Dec 3.

Abstract

The ability of plants to perceive and react to biotic and abiotic stresses is critical for their health. We recently identified a core set of genes consistently induced by members of the leaf microbiota, termed general non-self response (GNSR) genes. Here we show that GNSR components conversely impact leaf microbiota composition. Specific strains that benefited from this altered assembly triggered strong plant responses, suggesting that the GNSR is a dynamic system that modulates colonization by certain strains. Examination of the GNSR to live and inactivated bacteria revealed that bacterial abundance, cellular composition and exposure time collectively determine the extent of the host response. We link the GNSR to pattern-triggered immunity, as diverse microbe- or danger-associated molecular patterns cause dynamic GNSR gene expression. Our findings suggest that the GNSR is the result of a dose-responsive perception and signalling system that feeds back to the leaf microbiota and contributes to the intricate balance of plant-microbiome interactions.

摘要

植物感知并应对生物和非生物胁迫的能力对其健康至关重要。我们最近鉴定出了一组核心基因,这些基因始终会被叶片微生物群的成员诱导表达,称为一般非自我反应(GNSR)基因。在此我们表明,GNSR的组成部分反过来会影响叶片微生物群的组成。受益于这种改变后的组合的特定菌株引发了强烈的植物反应,这表明GNSR是一个动态系统,可调节某些菌株的定殖。对活细菌和灭活细菌的GNSR检测表明,细菌丰度、细胞组成和暴露时间共同决定了宿主反应的程度。我们将GNSR与模式触发免疫联系起来,因为多种微生物或危险相关分子模式会导致GNSR基因动态表达。我们的研究结果表明,GNSR是一种剂量反应性感知和信号系统的结果,该系统会反馈到叶片微生物群,并有助于植物与微生物组相互作用的复杂平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d405/11757152/a6c8ef9e12cb/41477_2024_1856_Fig1_HTML.jpg

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