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水杨酸相关的植物-微生物相互作用吸引有益的黄杆菌属细菌定殖于拟南芥叶际。

A salicylic acid-associated plant-microbe interaction attracts beneficial Flavobacterium sp. to the Arabidopsis thaliana phyllosphere.

作者信息

Sommer Anna, Wenig Marion, Knappe Claudia, Kublik Susanne, Foesel Bärbel U, Schloter Michael, Vlot A Corina

机构信息

Faculty of Life Sciences: Food, Nutrition and Health, Chair of Crop Plant Genetics, University of Bayreuth, Kulmbach, Germany.

Helmholtz Zentrum Muenchen, Institute of Biochemical Plant Pathology, Neuherberg, Germany.

出版信息

Physiol Plant. 2024 Jul-Aug;176(4):e14483. doi: 10.1111/ppl.14483.

Abstract

Both above- and below-ground parts of plants are constantly challenged with microbes and interact closely with them. Many plant-growth-promoting rhizobacteria, mostly interacting with the plant's root system, enhance the immunity of plants in a process described as induced systemic resistance (ISR). Here, we characterized local induced resistance (IR) triggered by the model PGPR Pseudomonas simiae WCS417r (WCS417) in Arabidopsis thaliana. Hydroponic application of WCS417 to Arabidopsis roots resulted in propagation of WCS417 in/on leaves and the establishment of local IR. WCS417-triggered local IR was dependent on salicylic acid (SA) biosynthesis and signalling and on functional biosynthesis of pipecolic acid and monoterpenes, which are classically associated with systemic acquired resistance (SAR). WCS417-triggered local IR was further associated with a priming of gene expression changes related to SA signalling and SAR. A metabarcoding approach applied to the leaf microbiome revealed a significant local IR-associated enrichment of Flavobacterium sp.. Co-inoculation experiments using WCS417 and At-LSPHERE Flavobacterium sp. Leaf82 suggest that the proliferation of these bacteria is influenced by both microbial and immunity-related, plant-derived factors. Furthermore, application of Flavobacterium Leaf82 to Arabidopsis leaves induced SAR in an NPR1-dependent manner, suggesting that recruitment of this bacterium to the phyllosphere resulted in propagation of IR. Together, the data highlight the importance of plant-microbe-microbe interactions in the phyllosphere and reveal Flavobacterium sp. Leaf82 as a new beneficial promoter of plant health.

摘要

植物的地上和地下部分都不断受到微生物的挑战,并与它们密切相互作用。许多促进植物生长的根际细菌,大多与植物根系相互作用,在一个被称为诱导系统抗性(ISR)的过程中增强植物的免疫力。在这里,我们对拟南芥中由模式植物促生根际细菌西米亚假单胞菌WCS417r(WCS417)触发的局部诱导抗性(IR)进行了表征。将WCS417水培应用于拟南芥根部导致WCS417在叶片中/上繁殖并建立局部IR。WCS417触发的局部IR依赖于水杨酸(SA)的生物合成和信号传导以及哌啶酸和单萜的功能性生物合成,这些通常与系统获得性抗性(SAR)相关。WCS417触发的局部IR还与与SA信号传导和SAR相关的基因表达变化的引发有关。应用于叶片微生物组的元条形码方法揭示了黄杆菌属的显著局部IR相关富集。使用WCS417和拟南芥叶源黄杆菌属Leaf82的共接种实验表明,这些细菌的增殖受微生物和与免疫相关的植物衍生因子的影响。此外,将黄杆菌属Leaf82应用于拟南芥叶片以NPR1依赖的方式诱导SAR,表明这种细菌在叶际的募集导致IR的传播。总之,这些数据突出了叶际中植物-微生物-微生物相互作用的重要性,并揭示黄杆菌属Leaf82是植物健康的一种新的有益促进者。

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