首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Non-Targeted Metabolomics Reveals Sorghum Rhizosphere-Associated Exudates are Influenced by the Belowground Interaction of Substrate and Sorghum Genotype
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Non-Targeted Metabolomics Reveals Sorghum Rhizosphere-Associated Exudates are Influenced by the Belowground Interaction of Substrate and Sorghum Genotype

机译:非靶向代谢组学揭示了高粱根际相关的分泌物受底物与高粱基因型的地下相互作用的影响

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摘要

Root exudation is an important plant process by which roots release small molecules into the rhizosphere that serve in overall plant functioning. Yet, there is a major gap in our knowledge in translating plant root exudation in artificial systems (i.e., hydroponics, sterile media) to crops, specifically for soils expected in field conditions. Sorghum (Sorghum bicolor L. Moench) root exudation was determined using both ultra-performance liquid chromatography and gas chromatography mass spectrometry-based non-targeted metabolomics to evaluate variation in exudate composition of two sorghum genotypes among three substrates (sand, clay, and soil). Above and belowground plant traits were measured to determine the interaction between sorghum genotype and belowground substrate. Plant growth and quantitative exudate composition were found to vary largely by substrate. Two types of changes to rhizosphere metabolites were observed: rhizosphere-enhanced metabolites (REMs) and rhizosphere-abated metabolites (RAMs). More REMs and RAMs were detected in sand and clay substrates compared to the soil substrate. This study demonstrates that belowground substrate influences the root exudate profile in sorghum, and that two sorghum genotypes exuded metabolites at different magnitudes. However, metabolite identification remains a major bottleneck in non-targeted metabolite profiling of the rhizosphere.
机译:根系渗出是重要的植物过程,根系通过该过程将小分子释放到根际中,从而起到植物整体功能的作用。然而,我们在将人工系统(即水培法,无菌介质)中的植物根系分泌物转化为作物(特别是针对田间条件下预期的土壤)的知识方面存在很大差距。使用超高效液相色谱和基于气相色谱质谱的非目标代谢组学方法测定高粱(Sorghum bicolor L. Moench)的根系分泌物,以评估三种底物(沙子,粘土和土壤)中两种高粱基因型的分泌物组成变化。 )。测量了地上和地下植物的性状,以确定高粱基因型与地下基质之间的相互作用。发现植物的生长和定量的分泌液组成因底物而有很大差异。观察到根际代谢物的两种变化:根际增强代谢物(REM)和根际减弱代谢物(RAM)。与土壤基质相比,在沙子和粘土基质中检测到更多的REM和RAM。这项研究表明,地下基质会影响高粱根系分泌物的分布,并且两种高粱基因型以不同的幅度分泌代谢产物。但是,代谢物鉴定仍是根际非靶向代谢物谱分析的主要瓶颈。

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