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通过实时 PCR 监测植物附生菌 Methylobacterium extorquens DSM 21961 及其对草莓风味的影响。

Monitoring the plant epiphyte Methylobacterium extorquens DSM 21961 by real-time PCR and its influence on the strawberry flavor.

机构信息

Institute of Environmental Biotechnology, Graz University of Technology, Graz, Austria.

出版信息

FEMS Microbiol Ecol. 2010 Oct;74(1):136-45. doi: 10.1111/j.1574-6941.2010.00942.x. Epub 2010 Jul 20.

Abstract

Besides its influence on plant growth and health, plant-associated bacteria exert an impact on fruit quality. Methylotrophic bacteria can enhance the biosynthesis of strawberry flavor compounds, especially the two furanoid compounds 2,5-dimethyl-4-hydroxy-2H-furanone (DMHF) and 2,5-dimethyl-4-methoxy-2H-furanone in vitro. Here, we report the selection and characterization of Methylobacterium extorquens DSM 21961, a strain that was able to enhance the furanone content ad planta under greenhouse conditions. For monitoring the colonization of strawberry plants, a strain-specific quantification system for M. extorquens DSM 21961 was developed. Specificity, linear range and quantitative limit of the system were shown, and successful application was demonstrated in a monitoring experiment of M. extorquens DSM 21961 on strawberry leaves under greenhouse conditions. Furthermore, the quantification of DMHF in strawberry fruits via GC indicated an increased biosynthesis of this compound in strawberry plants. The colonization behavior analyzed by confocal laser scanning microscopy using GFP-tagged cells revealed high colonization of the upper and the lower leaf surfaces, with a specific accumulation of bacterial cells on trichomes. The results support a biotechnological application of this promising flavor-stimulating agent.

摘要

除了对植物生长和健康的影响外,植物相关细菌还会影响水果的质量。甲基营养细菌可以增强草莓风味化合物的生物合成,特别是体外的两种呋喃类化合物 2,5-二甲基-4-羟基-2H-呋喃酮(DMHF)和 2,5-二甲基-4-甲氧基-2H-呋喃酮。在这里,我们报告了甲基杆菌 DSM 21961 的选择和特性,该菌株能够在温室条件下增强呋喃酮的含量。为了监测草莓植物的定殖,开发了一种针对 M. extorquens DSM 21961 的菌株特异性定量系统。展示了该系统的特异性、线性范围和定量限,并在温室条件下对草莓叶片上 DSM 21961 的监测实验中成功应用。此外,通过 GC 对草莓果实中 DMHF 的定量分析表明,该化合物在草莓植物中的生物合成增加。使用 GFP 标记细胞进行共聚焦激光扫描显微镜分析的定殖行为表明,上叶和下叶表面的定殖率很高,细菌细胞在毛状体上特异性积累。这些结果支持将这种有前途的风味刺激剂进行生物技术应用。

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