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首页> 外文期刊>Environmental and experimental botany >Flooded soybean metabolomic analysis reveals important primary and secondary metabolites involved in the hypoxia stress response and tolerance
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Flooded soybean metabolomic analysis reveals important primary and secondary metabolites involved in the hypoxia stress response and tolerance

机译:淹没的大豆代谢组分析揭示了缺氧应激响应和耐受的重要原发性和次生代谢物

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Flooded soils have reduced oxygen available for efficient ATP production through oxidative phosphorylation in plants. The effect of flooding stress on most commercial food crops, including soybeans, has not been widely studied. Here, metabolic identification was performed using H-1 NMR spectroscopy aiming at determining the differences between two soybean cultivars (namely, BR4 and Embrapa 45, which are sensitive and moderately tolerant, respectively, to flooding stress) by comparing the responses to flooding stress in roots and leaves. Soybean plants were cultivated in a growth chamber under ideal conditions until the V3 stage, when flooding stress was induced for 2, 7, and 12 days. Physiological parameters and the plant biomass accumulation were determined, and root and leaf samples were collected for metabolomic assays using H-1 NMR spectroscopy. The metabolomic data were supported by a gene expression analysis. Our results indicate that flooding stress strongly affects both the primary and secondary metabolism in soybean plants. Most of the altered compounds are involved in carbon and nitrogen metabolism as well as the phenylpropanoid pathway. Different responses were observed between the roots and leaves, as well as between flood-tolerant and flood-sensitive cultivars.
机译:通过植物中的氧化磷酸化,淹没的土壤可降低氧气可用于高效的ATP生产。洪水压力对大多数商业食物作物的影响尚未得到广泛研究。在此,使用H-1 NMR光谱进行代谢鉴定,其旨在通过比较对洪水应力的响应来确定两个大豆品种(即,BR4和BROBA 45的敏感和中度耐受抗漏胁迫)之间的差异根和叶子。在理想条件下在生长室中培养大豆植物直至V3阶段,当诱导2,7和12天诱导泛滥胁迫时。测定生理参数和植物生物质积累,使用H-1 NMR光谱收集用于代谢组分的根和叶样品。基因表达分析支持代谢组数据。我们的结果表明,洪水应力强烈影响大豆植物中的初级和次生新陈代谢。大多数改变的化合物参与碳和氮代谢以及苯基丙醇途径。根部和叶片之间观察到不同的反应,以及耐洪水和泛敏品种。

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