首页> 外文期刊>Journal of Plant Studies >Analysis of the rrl3 Mutants Reveals the Importance of Arginine Biosynthesis in the Maintenance of Root Apical Meristem in Rice
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Analysis of the rrl3 Mutants Reveals the Importance of Arginine Biosynthesis in the Maintenance of Root Apical Meristem in Rice

机译:rrl3突变体的分析揭示了精氨酸生物合成在维持水稻根尖分生组织中的重要性

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We characterized reduced root length3(rrl3) mutantsof rice that exhibit a short-root phenotype under conditions producing mechanical impediments to growth, such as aerated water culture medium. The mutants were not able to maintain the quiescent center (QC) identity and produced disorganized root apical meristem (RAM) under aeration because of impaired cell division. A map-based cloning approach showed that RRL3 encodes carbamoyl phosphate synthetase (CPS) which is thought to be required for the conversion of ornithine into citrulline during arginine biosynthesis. The RRL3 gene is expressed highly at the root tip area that includes the root cap and division zone. The RRL3 gene expression level was greatly affected by aeration treatment, indicating that the spatiotemporal expression of the RRL3 gene with respect to the aeration is important for the maintenance of RAM. Furthermore, the application of citrulline and arginine could rescue the root phenotype, which implied that arginine biosynthesis was impaired in the rrl3-1 mutant. These results suggest that the RRL3 regulated arginine biosynthesis is important for the maintenance of RAM organization in the presence of mechanical impediments.?
机译:我们表征了降低的水稻根长3(rrl3)突变体,该突变体在产生机械障碍的条件下表现出短根表型,例如充气水培养基。由于细胞分裂受损,这些突变体无法维持静态中心(QC)身份,并在通气条件下产生杂乱的根尖分生组织(RAM)。基于图的克隆方法表明,RRL3编码氨基甲酰磷酸合成酶(CPS),这被认为是精氨酸生物合成过程中将鸟氨酸转化为瓜氨酸所必需的。 RRL3基因在包括根冠和分裂区的根尖区域高表达。 RRL3基因表达水平受通气处理的影响很大,表明RRL3基因相对于通气的时空表达对于维持RAM至关重要。此外,瓜氨酸和精氨酸的应用可以挽救根表型,这暗示rrl3-1突变体中精氨酸的生物合成受到损害。这些结果表明,在存在机械障碍的情况下,RRL3调控的精氨酸生物合成对于维持RAM组织至关重要。

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