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Genetic and molecular characterization of maize starch debranching enzymes.

机译:玉米淀粉脱支酶的遗传和分子表征。

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摘要

Starch is the primary carbohydrate reserve of plants, a significant source of food in the human diet, and an important industrial raw material. The arrangement of linear chains and branch linkages within amylopectin is responsible for the highly conserved architecture of the starch granule. This structure allows for efficient packaging of glucose and results in the unique functional properties of starch. It is known that starch synthases and branching enzymes catalyze α(1→4) chain elongation and introduction of α(1→6) branch linkages, respectively, but studies in several species suggests that starch debranching enzymes (DBE) are also involved in the process of starch synthesis. The overall goal of this research is to determine the role played in maize starch metabolism by each individual DBE. DBEs are broadly classified as either isoamylase- or pullulanase-type based upon their substrate specificity and sequence similarity to defined bacterial proteins. To determine the function(s) of the isoamylase-type DBE, an allelic series of mutations in the gene Su1 was characterized. The molecular defects of the su1-alleles were associated with accumulation of phytoglycogen at the expense of granular starch. The phenotypic severity was also correlated to an alteration in the fine structure of the residual amylopectin. Thus, the SU1 isoamylase-type DBE functions directly in starch synthesis by removing branches from an amylopectin precursor. cDNAs coding for two other isoamylase-type DBE genes, ZmIso2 and ZmIso3, were cloned and characterized with respect to mRNA transcript accumulation. This analysis indicated metabolic specialization for some DBE isoforms either during starch catabolism or anabolism. To investigate the function(s) of the pullulanase-type DBE, reverse genetics was used to identify a transposable element insertion in the maize Zpu1 gene. Characterization of this mutation demonstrated that pullulanase-type DBE is important for degradation of both leaf and endosperm starch. ZPU1 also acts during starch synthesis significantly reducing phytoglycogen accumulation in some genetic backgrounds. This suggests that the biosynthetic function of ZPU1 partially overlaps with the biosynthetic function of SU1. Together, these data indicate that isoamylase- and pullulanase-type DBEs are each involved in aspects of both starch synthesis and degradation.
机译:淀粉是植物的主要碳水化合物储备,是人类饮食中重要的食物来源,也是重要的工业原料。支链淀粉内的线性链和支链的排列是淀粉颗粒高度保守的结构的原因。这种结构允许葡萄糖的有效包装,并导致淀粉独特的功能特性。众所周知,淀粉合酶和支化酶分别催化α(1→4)链延长和α(1→6)分支键的引入,但对几种物种的研究表明,淀粉脱支酶(DBE)也参与其中。淀粉合成过程。这项研究的总体目标是确定每个DBE在玉米淀粉代谢中发挥的作用。基于它们的底物特异性和与确定的细菌蛋白的序列相似性,DBE被广泛地分为异淀粉酶或支链淀粉酶类型。为了确定异淀粉酶型DBE的功能,对 Su1 基因的等位基因系列突变进行了表征。 su1 等位基因的分子缺陷与植物糖原的积累有关,但以颗粒淀粉为代价。表型的严重程度也与残余支链淀粉的精细结构的改变有关。因此,SU1异淀粉酶型DBE通过从支链淀粉前体上除去分支而直接在淀粉合成中起作用。克隆了编码其他两个异淀粉酶型DBE基因 ZmIso2 ZmIso3 的cDNA,并就mRNA转录物的积累进行了表征。该分析表明在淀粉分解代谢或合成代谢期间某些DBE亚型的代谢专一性。为了研究支链淀粉酶型DBE的功能,使用反向遗传学鉴定了玉米中 Zpu1 基因中的转座子插入。此突变的特征表明,支链淀粉酶型DBE对叶片和胚乳淀粉的降解都很重要。 ZPU1在淀粉合成期间也起作用,在某些遗传背景下可显着减少植物糖原的积累。这表明ZPU1的生物合成功能与SU1的生物合成功能部分重叠。总之,这些数据表明异淀粉酶和支链淀粉酶类型的DBE均参与淀粉合成和降解的各个方面。

著录项

  • 作者

    Dinges, Jason Robert.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Biology Genetics.; Biology Plant Physiology.; Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 197 p.
  • 总页数 197
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;植物学;生物化学;
  • 关键词

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