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Growth stage-based metabolite profiling of drought-tolerant transgenic rice under well-watered and deficit conditions

机译:干旱和干旱条件下耐旱转基因水稻基于生长阶段的代谢产物分析

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Metabolite profiling of transgenic crops is useful when evaluating the intended and unintended effects of genetic modifications. Our study objective was to investigate variations in metabolites from drought-tolerant transgenic rice (Oryza sativa L.) that over-expresses AtCYP78A7, a gene encoding cytochrome P450 protein. Two transgenic Lines, ‘10B-5’ and ‘18A-4’, plus the wild-type ‘Hwayoung’, were cultivated under either well-watered or water-deficit conditions in a rainout shelter. Their shoots were collected at the tillering, heading, and ripening stages and polar extracts were subsequently analyzed by 1H-NMR and GC-MS. Principal component analysis revealed that the metabolite profiles could be clearly distinguished during those stages. Soil-water conditions also contributed to the variation in profiles. However, a marked discrimination of metabolites between transgenic and non-transgenic rice was apparent only under water-deficit conditions at the heading stage. This was mainly a result of differences in the sugar-related NMR profiles among genotypes. Our data suggested that the genetic contribution to metabolite profiles is constrained by growth stage and water status. In addition, sugar content is of great importance when separating metabolite profiles in shoots from rice plants that over-express AtCYP78A7.
机译:当评估遗传修饰的预期和非预期效果时,转基因作物的代谢产物谱分析非常有用。我们的研究目标是研究耐旱转基因水稻(Oryza sativa L.)过表达AtCYP78A7(编码细胞色素P450蛋白的基因)的代谢物变异。在防雨棚中,在水源充足或缺水的条件下种植了两个转基因品系“ 10B-5”和“ 18A-4”,再加上野生型“ Hwayoung”。在分till,抽穗和成熟期收集它们的芽,随后通过1 H-NMR和GC-MS分析极性提取物。主成分分析表明,在这些阶段可以清楚地区分代谢产物。土壤水条件也导致剖面变化。但是,只有在抽穗期缺水的条件下,转基因和非转基因水稻之间的代谢物才有明显区别。这主要是基因型之间糖相关的NMR谱差异的结果。我们的数据表明,对代谢产物谱的遗传贡献受生长阶段和水分状况的限制。此外,当从过量表达AtCYP78A7的水稻植株的芽中分离代谢产物时,糖含量也非常重要。

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