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The starch-debranching enzymes isoamylase and pullulanase are both involved in amylopectin biosynthesis in rice endosperm

机译:淀粉脱支酶异淀粉酶和支链淀粉酶均参与水稻胚乳中支链淀粉的生物合成

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The activities of the two types of starch debranching enzymes, isoamylase and pullulanase, were greatly reduced in endosperms of allelic sugary-1 mutants of rice (Oryza sativa), with the decrease more pronounced for isoamylase than for pullulanase. However, the decrease in isoamylase activity was not related to the magnitude of the sugary phenotype (the proportion of the phytoglycogen region of the endosperm), as observed with pullulanase. In the moderately mutated line EM-5, the pullulanase activity was markedly lower in the phytoglycogen region than in the starch region, and isoamylase activity was extremely low or completely lost in the whole endosperm tissue. These results suggest that both debranching enzymes are involved in amylopectin biosynthesis in rice endosperm. We presume that isoamylase plays a predominant role in amylopectin synthesis, but pullulanase is also essential or can compensate for the role of isoamylase in the construction of the amylopectin multiple-cluster structure. It is highly possible that isoamylase was modified in some sugary-1 mutants such as EM-273 and EM-5, since it was present in significant and trace amounts, respectively, in these mutants but was apparently inactive. The results show that the Sugary-1 gene encodes the isoamylase gene of the rice genome.
机译:水稻(Oryza sativa)等位基因糖基1突变体的胚乳中,两种淀粉脱支酶的异淀粉酶和支链淀粉酶的活性大大降低,异淀粉酶的降低幅度明显高于支链淀粉酶。但是,异淀粉酶活性的降低与支链淀粉酶所观察到的糖表型的大小(胚乳的植物糖原区域的比例)无关。在中度突变的品系EM-5中,在植物糖原区域的支链淀粉酶活性明显低于在淀粉区域的支链淀粉酶活性,并且在整个胚乳组织中异淀粉酶的活性极低或完全丧失。这些结果表明两种脱支酶均参与水稻胚乳中支链淀粉的生物合成。我们认为异淀粉酶在支链淀粉合成中起主要作用,但支链淀粉酶也很重要,或者可以补偿异淀粉酶在支链淀粉多簇结构构建中的作用。异淀粉酶极有可能在一些糖基1突变体(如EM-273和EM-5)中被修饰,因为它们分别以大量和痕量存在于这些突变体中,但显然没有活性。结果表明,Sugary-1基因编码水稻基因组的异淀粉酶基因。

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