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首页> 外文期刊>Journal of Applied Glycoscience >Increased Amylose Content and Altered Molecular Structures of Wheat Starch by SGP-1 Null Mutation
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Increased Amylose Content and Altered Molecular Structures of Wheat Starch by SGP-1 Null Mutation

机译:SGP-1空突变增加小麦淀粉的直链淀粉含量和改变的分子结构

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摘要

Amylose content and molecular structures of starch from a mutant of wheat(Triticum aestivum L.)that lacks a starch granule bound protein,SGP-1,have been compared with those from normal wheat(cv.Chinese Spring).Actual amylose contents,calculated by taking iodine affinity of amylopectin into consideration,for the mutant(SGP-1 null)and normal wheat starches were 34 and 26%,respectively.The amylopec-tins from SGP-1 null and normal starches had number-average degree of polymerization(DPn)of 4200 and 4700,respectively.Three molecular species of amylopectin with different size were observed by fluorescent la-beling/GPC.Number-average chain length(CLn)of the amylopectins was close(~21)but their CL distributions were significantly different.SGP-1 null amylopectin contained 9.5% by weight of long unit-chains having CL of > 100 while such long chains were absent in amylopectin from the normal starch.Molar ratio of A chains increased slightly and that of B_1 chains conversely decreased in the mutant,and the molar ratio of(A+B_1)/(B_2+B_3)was 13.8 and 13.1 for the mutant and normal amylopectins,respectively.DPn of amylose from SGP-1 null(~800)was lower than that for the normal(~1000).DP distribution of the amyloses on molar and weight bases showed the ratio of smaller amyloses was higher for the mutant than the normal starch.Branched molecules of amylose consisted of 24 and 23% by mole and had average number of chains of branched molecules(NCs)13.1 and 7.5,respectively.The above structural data on a molar basis also revealed that the mutation caused the increase in number of amylose molecules but had no effect on the number of amylopectin molecules.
机译:比较了一个没有淀粉颗粒结合蛋白SGP-1的小麦突变体(普通小麦)的淀粉的直链淀粉含量和分子结构。考虑到支链淀粉的碘亲和力,突变体(SGP-1无效)和正常小麦淀粉分别为34%和26%.SGP-1无效和正常淀粉中的淀粉淀粉素具有数均聚合度( DPn)分别为4200和4700.通过荧光labeling / GPC观察到三种分子大小不同的支链淀粉。支链淀粉的数均链长(CLn)接近(〜21),但其CL分布显着SGP-1无效支链淀粉含有9.5%的CL大于100的长链,而正常淀粉中无支链淀粉.A链的摩尔比略有增加,而B_1链的摩尔比则有所下降。突变nt,突变体和正常支链淀粉的(A + B_1)/(B_2 + B_3)摩尔比分别为13.8和13.1.SGP-1 null(〜800)的直链淀粉的DPn低于正常支链淀粉。 (〜1000)。直链淀粉在摩尔和重量基础上的DP分布表明突变体中较小直链淀粉的比例高于正常淀粉,直链淀粉的支链分子由24%和23%摩尔组成,平均链数为上述分子结构的数据也显示,突变引起直链淀粉分子数量的增加,但对支链淀粉分子的数量没有影响。

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