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颗粒结合型淀粉合成酶I负责水稻中支链淀粉超长链的生物合成。

Granule-bound starch synthase I is responsible for biosynthesis of extra-long unit chains of amylopectin in rice.

作者信息

Hanashiro Isao, Itoh Kimiko, Kuratomi Yuki, Yamazaki Mina, Igarashi Toshinari, Matsugasako Jun-ichi, Takeda Yasuhito

机构信息

Faculty of Agriculture, Kagoshima University, Kagoshima 890-0065 Japan.

出版信息

Plant Cell Physiol. 2008 Jun;49(6):925-33. doi: 10.1093/pcp/pcn066. Epub 2008 Apr 22.

Abstract

A rice Wx gene encoding a granule-bound starch synthase I (GBSSI) was introduced into the null-mutant waxy (wx) rice, and its effect on endosperm starches was examined. The apparent amylose content was increased from undetectable amounts for the non-transgenic wx cultivars to 21.6-22.2% of starch weight for the transgenic lines. The increase was in part due to a significant amount of extra-long unit chains (ELCs) of amylopectin (7.5-8.4% of amylopectin weight), that were absent in the non-transgenic wx cultivars. Thus, actual amylose content was calculated to be 14.9-16.0% for the transgenic lines. Only slight differences were found in chain-length distribution for the chains other than ELCs, indicating that the major effect of the Wx transgene on amylopectin structure was ELC formation. ELCs isolated from debranched amylopectin exhibited structures distinct from amylose. Structures of amylose from the transgenic lines were slightly different from those of cv. Labelle (Wx(a)) in terms of a higher degree of branching and size distribution. The amylose and ELC content of starches of the transgenic lines resulted in the elevation of pasting temperature, a 50% decrease in peak viscosity, a large decrease in breakdown and an increase in setback. As yet undetermined factors other than the GBSSI activity are thought to be involved in the control of formation and/or the amount of ELCs. Structural analysis of the Wx gene suggested that the presence of a tyrosine residue at position 224 of GBSSI correlates with the formation of large amounts of ELCs in cultivars carrying Wx(a).

摘要

将一个编码颗粒结合淀粉合酶I(GBSSI)的水稻Wx基因导入糯性(wx)水稻突变体,并检测其对胚乳淀粉的影响。非转基因wx品种的表观直链淀粉含量不可检测,而转基因株系的表观直链淀粉含量增加到淀粉重量的21.6 - 22.2%。这种增加部分是由于支链淀粉中存在大量超长单位链(ELC)(占支链淀粉重量的7.5 - 8.4%),而在非转基因wx品种中不存在。因此,转基因株系的实际直链淀粉含量经计算为14.9 - 16.0%。除ELC外的其他链的链长分布仅发现轻微差异,表明Wx转基因对支链淀粉结构的主要影响是ELC的形成。从去分支的支链淀粉中分离出的ELC表现出与直链淀粉不同的结构。转基因株系的直链淀粉结构在分支程度和大小分布方面与Labelle品种(Wx(a))略有不同。转基因株系淀粉的直链淀粉和ELC含量导致糊化温度升高、峰值粘度降低50%、崩解度大幅下降和回生增加。除GBSSI活性外,其他尚未确定的因素被认为参与了ELC形成和/或数量的控制。对Wx基因的结构分析表明,GBSSI第224位存在酪氨酸残基与携带Wx(a)的品种中大量ELC的形成相关。

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