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Mutations Affecting Starch Synthase III in Arabidopsis Alter Leaf Starch Structure and Increase the Rate of Starch Synthesis

机译:影响拟南芥淀粉合酶III的突变改变叶片淀粉结构并提高淀粉合成速率

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摘要

The role of starch synthase (SS) III (SSIII) in the synthesis of transient starch in Arabidopsis (Arabidopsis thaliana) was investigated by characterizing the effects of two insertion mutations at the AtSS3 gene locus. Both mutations, termed Atss3-1 and Atss3-2, condition complete loss of SSIII activity and prevent normal gene expression at both the mRNA and protein levels. The mutations cause a starch excess phenotype in leaves during the light period of the growth cycle due to an apparent increase in the rate of starch synthesis. In addition, both mutations alter the physical structure of leaf starch. Significant increases were noted in the mutants in the frequency of linear chains in amylopectin with a degree of polymerization greater than approximately 60, and relatively small changes were observed in chains of degree of polymerization 4 to 50. Furthermore, starch in the Atss3-1 and Atss3-2 mutants has a higher phosphate content, approximately two times that of wild-type leaf starch. Total SS activity is increased in both Atss3 mutants and a specific SS activity appears to be up-regulated. The data indicate that, in addition to its expected direct role in starch assembly, SSIII also has a negative regulatory function in the biosynthesis of transient starch in Arabidopsis.
机译:通过表征AtSS3基因位点的两个插入突变的影响,研究了淀粉合酶(SS)III(SSIII)在拟南芥(Arabidopsis thaliana)瞬时淀粉合成中的作用。这两个突变,分别称为Atss3-1和Atss3-2,可调节SSIII活性的完全丧失,并阻止mRNA和蛋白水平的正常基因表达。由于淀粉合成速率的明显增加,这种突变会在生长周期的较轻时期导致叶片中的淀粉过量表型。另外,两种突变都改变了叶淀粉的物理结构。在支链淀粉中,聚合度大于大约60的突变体的线性链频率显着增加,并且在聚合度为4至50的链中观察到相对较小的变化。此外,Atss3-1和Atss3-2突变体的磷酸盐含量较高,约为野生型叶淀粉的两倍。在两个Atss3突变体中,总SS活性均增加,并且特定的SS活性似乎被上调。数据表明,除了预期的直接在淀粉组装中的作用外,SSIII在拟南芥中瞬时淀粉的生物合成中也具有负调控功能。

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