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Accumulation of multiple-repeat starch-binding domains (SBD2–SBD5) does not reduce amylose content of potato starch granules

机译:多次重复淀粉结合域(SBD2-SBD5)的积累不会降低马铃薯淀粉颗粒的直链淀粉含量

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摘要

This study investigates whether it is possible to produce an amylose-free potato starch by displacing the amylose enzyme, granule-bound starch synthase I (GBSSI), from the starch granule by engineered, high-affinity, multiple-repeat family 20 starch-binding domains (SBD2, SBD3, SBD4, and SBD5). The constructs were introduced in the amylose-containing potato cultivar (cv. Kardal), and the starches of the resulting transformants were compared with those of SBD2-expressing amylose-free (amf) potato clones. It is shown that a correctly sized protein accumulated in the starch granules of the various transformants. The amount of SBD accumulated in starch increased progressively from SBD to SBD3; however, it seemed as if less SBD4 and SBD5 was accumulated. A reduction in amylose content was not achieved in any of the transformants. However, it is shown that SBDn expression can affect physical processes underlying granule assembly, in both genetic potato backgrounds, without altering the primary structure of the constituent starch polymers and the granule melting temperature. Granule size distribution of the starches obtained from transgenic Kardal plants were similar to those from untransformed controls, irrespective of the amount of SBDn accumulated. In the amf background, granule size is severely affected. In both the Kardal and amf background, apparently normal oval-shaped starch granules were composed of multiple smaller ones, as evidenced from the many “Maltese crosses” within these granules. The results are discussed in terms of different binding modes of SBD.
机译:这项研究调查了是否有可能通过设计,高亲和力,多重复的20族淀粉结合物从淀粉颗粒中取代直链淀粉颗粒结合的淀粉合酶I(GBSSI),生产无直链淀粉的马铃薯淀粉。域(SBD2,SBD3,SBD4和SBD5)。将所述构建体引入含直链淀粉的马铃薯栽培种(cv.Kardal)中,并将所得转化体的淀粉与表达SBD2的无直链淀粉(amf)马铃薯克隆的淀粉进行比较。结果表明,正确大小的蛋白质积累在各种转化子的淀粉颗粒中。淀粉中积累的SBD量从SBD逐渐增加到SBD3。但是,似乎累积了更少的SBD4和SBD5。在任何转化体中都没有实现直链淀粉含量的降低。然而,显示出在两种遗传马铃薯背景中,SBDn表达都可以影响颗粒组装的物理过程,而不会改变组成淀粉聚合物的初级结构和颗粒熔化温度。无论积累的SBDn量如何,从转基因Kardal植物获得的淀粉的粒度分布与从未转化的对照相似。在amf背景下,颗粒大小受到严重影响。在Kardal和amf背景中,显然正常的椭圆形淀粉颗粒由多个较小的淀粉颗粒组成,这些颗粒中的许多“马耳他十字”证明了这一点。根据SBD的不同结合方式讨论了结果。

著录项

  • 来源
    《Planta》 |2007年第4期|919-933|共15页
  • 作者单位

    Graduate School Experimental Plant Sciences Laboratory of Plant Breeding Wageningen University P.O. Box 386 6700 AJ Wageningen The Netherlands;

    Graduate School Experimental Plant Sciences Laboratory of Plant Breeding Wageningen University P.O. Box 386 6700 AJ Wageningen The Netherlands;

    Graduate School Experimental Plant Sciences Laboratory of Plant Breeding Wageningen University P.O. Box 386 6700 AJ Wageningen The Netherlands;

    Graduate School Experimental Plant Sciences Laboratory of Plant Breeding Wageningen University P.O. Box 386 6700 AJ Wageningen The Netherlands;

    Laboratoire de Physico-chimie des Macromolécules Institut National de la Recherche Agronomique BP 71627 44316 Nantes Cedex 3 France;

    Graduate School Experimental Plant Sciences Laboratory of Plant Breeding Wageningen University P.O. Box 386 6700 AJ Wageningen The Netherlands;

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

    Amylose; Granule-bound starch synthase; Starch-binding domain; Starch biosynthesis; Transgenic potato plant;

    机译:直链淀粉颗粒结合淀粉合酶淀粉结合域淀粉生物合成转基因马铃薯;

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