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Starch-Branching Enzyme I-Deficient Mutation Specifically Affects the Structure and Properties of Starch in Rice Endosperm

机译:淀粉分支酶I缺失突变特别影响水稻胚乳淀粉的结构和特性

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摘要

We have isolated a starch mutant that was deficient in starch-branching enzyme I (BEI) from the endosperm mutant stocks of rice (Oryza sativa) induced by the treatment of fertilized egg cells with N-methyl-N-nitrosourea. The deficiency of BEI in this mutant was controlled by a single recessive gene, tentatively designated as starch-branching enzyme mutant 1 (sbe1). The mutant endosperm exhibited the normal phenotype and contained the same amount of starch as the wild type. However, the mutation apparently altered the fine structure of amylopectin. The mutant amylopectin was characterized by significant decrease in both long chains with degree of polymerization (DP) ≥ 37 and short chains with DP 12 to 21, marked increase in short chains with DP ≤ 10 (A chains), and slight increase in intermediate chains with DP 24 to 34, suggesting that BEI specifically synthesizes B1 and B2–3 chains. The endosperm starch from the sbe1 mutant had a lower onset concentration for urea gelatinization and a lower onset temperature for thermo-gelatinization compared with the wild type, indicating that the genetic modification of amylopectin fine structure is responsible for changes in physicochemical properties of sbe1 starch.
机译:我们从用N-甲基-N-亚硝基脲处理受精卵细胞诱导的水稻(Oryza sativa)的胚乳突变体原种中分离出了淀粉分支酶I(BEI)不足的淀粉突变体。该突变体中BEI的缺乏是由单个隐性基因控制的,该基因暂定为淀粉分支酶突变体1(sbe1)。突变的胚乳表现出正常的表型,并且含有与野生型相同数量的淀粉。但是,该突变显然改变了支链淀粉的精细结构。突变支链淀粉的特征在于,聚合度(DP)≥37的长链和DP 12至21的短链均显着减少,DP≤10的短链(A链)显着增加,中间链略有增加DP 24到34,表明BEI专门合成B1和B2-3链。与野生型相比,来自sbe1突变体的胚乳淀粉具有较低的尿素糊化起始浓度和较低的热糊化起始温度,这表明支链淀粉精细结构的遗传修饰是sbe1淀粉理化性质变化的原因。

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