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Mutants of Arabidopsis Lacking a Chloroplastic Isoamylase Accumulate Phytoglycogen and an Abnormal Form of Amylopectin

机译:缺乏叶绿素异淀粉酶的拟南芥突变体积累植物糖原和支链淀粉的异常形式。

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Mutant lines defective for each of the four starch debranching enzyme (DBE) genes (AtISA1, AtISA2, AtISA3, and AtPU1) detected in the nuclear genome of Arabidopsis (Arabidopsis thaliana) were produced and analyzed. Our results indicate that both AtISA1 and AtISA2 are required for the production of a functional isoamylase-type of DBE named Iso1, the major isoamylase activity found in leaves. The absence of Iso1 leads to an 80% decrease in the starch content in both lines and to the accumulation of water-soluble polysaccharides whose structure is similar to glycogen. In addition, the residual amylopectin structure in the corresponding mutant lines displays a strong modification when compared to the wild type, suggesting a direct, rather than an indirect, function of Iso1 during the synthesis of amylopectin. Mutant lines carrying a defect in AtISA3 display a strong starch-excess phenotype at the end of both the light and the dark phases accompanied by a small modification of the amylopectin structure. This result suggests that this isoamylase-type of DBE plays a major role during starch mobilization. The analysis of the Atpu1 single-mutant lines did not lead to a distinctive phenotype. However, Atisa2/Atpu1 double-mutant lines display a 92% decrease in starch content. This suggests that the function of pullulanase partly overlaps that of Iso1, although its implication remains negligible when Iso1 is present within the cell.
机译:产生并分析了在拟南芥(Arabidopsis thaliana)核基因组中检测到的四个淀粉脱支酶(DBE)基因(AtISA1,AtISA2,AtISA3和AtPU1)中的每一个缺陷的突变株。我们的结果表明,AtISA1和AtISA2都是产生功能性异淀粉酶类型的DBE(称为Iso1)所必需的,ISO1是叶中发现的主要异淀粉酶活性。 Iso1的缺失会导致两条品系中的淀粉含量降低80%,并导致结构类似于糖原的水溶性多糖积聚。此外,与野生型相比,相应突变株中残留的支链淀粉结构显示出强烈的修饰,表明支链淀粉在合成过程中具有Iso1的直接而非间接功能。携带AtISA3缺陷的突变体品系在亮相和暗相结束时均显示强淀粉过量表型,同时支链淀粉结构略有修饰。该结果表明,这种异淀粉酶型的DBE在淀粉动员过程中起主要作用。 Atpu1单突变株的分析未导致明显的表型。但是,Atisa2 / Atpu1双突变株显示出淀粉含量降低了92%。这表明支链淀粉酶的功能与Iso1的功能部分重叠,尽管当细胞中存在Iso1时,其影响仍可忽略不计。

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