有益根瘤菌和病毒感染会调节大豆代谢组并影响病毒载体 Epilachna varivestis 的取食偏好。

Hannier Pulido, Consuelo M De Moraes, Kerry Mauck, Mark C Mescher
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摘要

越来越多的证据表明,植物微生物共生体通过调节基因表达和新陈代谢来影响植物与其他生物的相互作用。然而,介导这种效应的详细机制尚不十分清楚,尤其是在植物同时与多种共生体和拮抗剂相互作用的系统中。在本研究中,我们采用了多因素设计,探讨了两种对植物有益的根瘤菌(Delftia acidovorans 和 Bradyrhizobium japonicum)和一种病原体(豆荚斑驳病毒:BPMV)对大豆植物基因表达和代谢产物产生的单独和联合影响,以及对植物与 BPMV Epilachna varivestis 的甲虫载体相互作用的下游影响。我们的研究结果证明了微生物对基础代谢和防御途径的影响,导致初级代谢物水平的提高和次级代谢物的减少。这些变化与观察到的甲虫对根瘤菌接种植物和病毒感染植物的取食偏好是一致的。总之,我们的研究结果表明,BPMV 感染和根瘤菌定殖会导致植物营养和防御相关代谢物发生巨大变化,从而对具有重要农业意义的病原系统产生重大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beneficial rhizobacteria and virus infection modulate the soybean metabolome and influence the feeding preferences of the virus vector Epilachna varivestis.
There is growing evidence that microbial plant symbionts shape interactions between plants and other organisms by modulating gene expression and metabolism. However, the detailed mechanisms mediating such effects are not well understood, particularly in systems where plants interact simultaneously with multiple symbionts and antagonists. In this study, we employed a multi-factorial design to explore the individual and combined effects of two plant-beneficial rhizobacteria (Delftia acidovorans and Bradyrhizobium japonicum) and a pathogen (Bean pod mottle virus: BPMV) on gene expression and metabolite production by soybean plants, as well as downstream effects on plant interactions with a beetle vector of BPMV Epilachna varivestis. Our results document microbial effects on basic metabolism and defense pathways, resulting in increased levels of primary metabolites and depletion of secondary metabolites. These changes are consistent with the observed feeding preferences of beetles for rhizobia-inoculated and virus-infected plants. Together, our results indicate that BPMV infection and rhizobacteria colonization cause dramatic changes in plant metabolites related to nutrition and defense, with significant consequences for an agriculturally important pathosystem.
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