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Selection and molecular characterization of a high tocopherol accumulation rice mutant line induced by gamma irradiation

机译:γ射线诱导的高生育酚积累水稻突变株的选育及分子特性

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Tocopherols are micronutrients with antioxidant properties. They are synthesized by photosynthetic bacteria and plants, and play important roles in animal and human nutrition. In this study, we isolated a new rice mutant line with elevated tocopherol content (MRXII) from an in vitro mutagenized population induced by gamma irradiation. The mutant exhibited greater seed longevity than the control, indicating a crucial role for tocopherols in maintaining viability during quiescence, and displayed faster seedling growth during the early growth stage. To study the molecular mechanism underlying vitamin E biosynthesis, we examined the expression patterns of seven rice genes encoding vitamin E biosynthetic enzymes. Accumulation levels of the OsVTE2 transcript and OsVTE2 protein in the MRXII mutant were significantly higher than in the control. Sequence analysis revealed that the MRXII mutant harbored a point mutation in the OsVTE2 promoter region, which resulted in the generation of MYB transcription factor-binding cis-element. These results help identify the promoter regions that regulate OsVTE2 transcription, and offer insights into the regulation of tocopherol content.
机译:生育酚是具有抗氧化特性的微量营养素。它们由光合细菌和植物合成,在动物和人类营养中起重要作用。在这项研究中,我们从γ射线诱导的体外诱变种群中分离了生育酚含量升高的新水稻突变株(MRXII)。该突变体比对照具有更大的种子寿命,表明生育酚在静止过程中维持生命力中起着关键作用,并且在早期生长阶段显示出更快的幼苗生长。为了研究维生素E生物合成的分子机制,我们检查了7个编码维生素E生物合成酶的水稻基因的表达模式。 MRXII突变体中OsVTE2转录本和OsVTE2蛋白的积累水平显着高于对照。序列分析表明,MRXII突变体在OsVTE2启动子区域中具有点突变,这导致了MYB转录因子结合顺式元件的产生。这些结果有助于鉴定调节OsVTE2转录的启动子区域,并提供对生育酚含量调节的见解。

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