首页> 外文期刊>Journal of Applied Glycoscience >Structure and Properties of Starch in Rice Double Mutants Lacking Starch Synthase (SS) Ⅱa and Starch Branching Enzyme (BE) Ⅱb
【24h】

Structure and Properties of Starch in Rice Double Mutants Lacking Starch Synthase (SS) Ⅱa and Starch Branching Enzyme (BE) Ⅱb

机译:缺少淀粉合酶(SS)和淀粉分支酶的水稻双突变体中淀粉的结构与性质(BES)ⅡB

获取原文
获取原文并翻译 | 示例
           

摘要

Starch biosynthetic enzymes form multi-protein complexes consisting of starch synthase (SS) Ⅰ, SSⅡa, and starch branching enzyme (BE) Ⅱb, which synthesize amylopectin clusters. This study analyzed the starch properties in two double mutant rice lines lacking SSⅡa and BEⅡb, one of which expressed an inactive BEⅡb protein. The ss2a be2b lines showed similar or greater seed weight than the be2b lines, and plant growth was not affected. The ss2a line showed increased short amylopectin chains resulting in a lower gelatinization temperature. Starch granule morphology and A-type crystallinity were similar between the ss2a line and the wild type, except for a mild chalky seed phenotype in the ss2a line. However, the starch phenotype of the ss2a be2b lines, which was similar to that of be2b but not ss2a, was characterized by increased long amylopectin chains, abnormal starch granules, and B-type crystallinity. The similarity in phenotype between the ss2a be2b and be2b lines may be attributed to the inability of the be2b mutants to generate short amylopectin branches, which serve as primers for SSⅡa. Therefore, the presence or absence of SSⅡa hardly affected the amylopectin structure under the be2b background. The amylose content was significantly higher in the ss2a be2b lines than in the be2b lines. Starch crystallinity was greater in ss2a be2b lines than in be2b lines, despite the fact that starch crystallinity is generally negatively correlated with amylose content. This suggests that the formation of a double helix between long amylopectin chains and amylose affects starch crystallinity in the ss2a be2b mutants.
机译:淀粉生物合成酶形成由淀粉合酶(SS)Ⅰ,SSⅡA和淀粉分支酶(BE)ⅡB组成的多蛋白质复合物,其合成支链淀粉蛋白簇。该研究分析了两种双突变稻系中缺乏SSⅡA和ⅡB的淀粉特性,其中一项表达了不活性的ⅡB蛋白。 SS2A BE2B系显示比BE2B线相似或更大的种子重,并且植物生长不受影响。 SS2A线显示出增加的短链淀粉链,导致凝胶化温度较低。除了SS2A线中的温和粉状种子表型外,SS2A线和野生型在SS2A线和野生型之间具有相似的淀粉颗粒形态和型结晶度。然而,SS2A BE2B线的淀粉表型类似于BE2B但不是SS2A的线,其特征在于增加的长支链淀粉链,异常淀粉颗粒和B型结晶度。 SS2A BE2B和BE2B线之间的表型中的相似性可归因于BE2B突变体不能产生短链淀粉分支,其用作SSⅡA的引物。因此,SSⅡA的存在或不存在几乎不会影响BE2B背景下的支链淀粉结构。 SS2A BE2B线的直链淀粉含量显着高于Be2b线。尽管淀粉结晶度通常与直链淀粉含量通常与淀粉结晶度呈负相关的事实,但淀粉结晶度大于BE2B线。这表明长子化链链和淀粉糖之间的双螺旋形成了SS2A BE 2B突变体中的淀粉结晶度。

著录项

  • 来源
    《Journal of Applied Glycoscience》 |2021年第2期|31-39|共9页
  • 作者单位

    Laboratory of Plant Physiology Department of Biological Production Faculty of Bioresource Sciences Akita Prefectural University (241-438 Kaidobata-nishi Shimoshinjo-nakano Akita 010-0195 Japan);

    Laboratory of Plant Physiology Department of Biological Production Faculty of Bioresource Sciences Akita Prefectural University (241-438 Kaidobata-nishi Shimoshinjo-nakano Akita 010-0195 Japan);

    Laboratory of Plant Physiology Department of Biological Production Faculty of Bioresource Sciences Akita Prefectural University (241-438 Kaidobata-nishi Shimoshinjo-nakano Akita 010-0195 Japan);

    Institute of Plant Science and Resources Okayama University (2-20-1 Chuo Kurashiki Okayama 710-0046 Japan);

    Laboratory of Plant Physiology Department of Biological Production Faculty of Bioresource Sciences Akita Prefectural University (241-438 Kaidobata-nishi Shimoshinjo-nakano Akita 010-0195 Japan);

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    starch synthase; branching enzyme; starch structure; X-ray diffraction; rice endosperm;

    机译:淀粉合成酶;分支酶;淀粉结构;X射线衍射;米饭胚乳;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号