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Function and Characterization of Starch Synthase I Using Mutants in Rice

机译:水稻突变体中淀粉合酶I的功能及表征

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摘要

Four starch synthase I (SSI)-deficient rice (Oryza sativa) mutant lines were generated using retrotransposon Tos17 insertion. The mutants exhibited different levels of SSI activities and produced significantly lower amounts of SSI protein ranging from 0% to 20% of the wild type. The mutant endosperm amylopectin showed a decrease in chains with degree of polymerization (DP) 8 to 12 and an increase in chains with DP 6 to 7 and DP 16 to 19. The degree of change in amylopectin chain-length distribution was positively correlated with the extent of decrease in SSI activity in the mutants. The structural changes in the amylopectin increased the gelatinization temperature of endosperm starch. Chain-length analysis of amylopectin in the SSI band excised from native-polyacrylamide gel electrophoresis/SS activity staining gel showed that SSI preferentially synthesized DP 7 to 11 chains by elongating DP 4 to 7 short chains of glycogen or amylopectin. These results show that SSI distinctly generates DP 8 to 12 chains from short DP 6 to 7 chains emerging from the branch point in the A or B1 chain of amylopectin. SSI seemingly functions from the very early through the late stage of endosperm development. Yet, the complete absence of SSI, despite being a major SS isozyme in the developing endosperm, had no effect on the size and shape of seeds and starch granules and the crystallinity of endosperm starch, suggesting that other SS enzymes are probably capable of partly compensating SSI function. In summary, this study strongly suggested that amylopectin chains are synthesized by the coordinated actions of SSI, SSIIa, and SSIIIa isoforms.
机译:使用逆转座子Tos17插入产生了四个淀粉合酶I(SSI)缺陷型水稻(Oryza sativa)突变株。突变体表现出不同水平的SSI活性,并且产生的SSI蛋白量明显较低,介于野生型的0%到20%之间。突变型胚乳支链淀粉的链数随聚合度(DP)8至12的降低而减少,而随DP 6至7和DP 16至19的链数增加。支链淀粉的链长分布变化程度与C呈正相关。突变体中SSI活性降低的程度。支链淀粉的结构变化增加了胚乳淀粉的糊化温度。从天然聚丙烯酰胺凝胶电泳/ SS活性染色凝胶切下的SSI条带中支链淀粉的链长分析表明,SSI通过延长糖原或支链淀粉的DP 4至7短链,优先合成DP 7至11链。这些结果表明,SSI从支链淀粉的A或B1链中的分支点出现的短DP 6至7链中明显地产生DP 8至12链。 SSI似乎从胚乳发育的早期到晚期都起作用。然而,尽管是发育中的胚乳中主要的SS同工酶,但完全不存在SSI对种子和淀粉颗粒的大小和形状以及胚乳淀粉的结晶度没有影响,这表明其他SS酶可能能够部分补偿SSI功能。总而言之,这项研究强烈建议支链淀粉链是通过SSI,SSIIa和SSIIIa亚型的协同作用合成的。

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  • 来源
    《Plant Physiology》 |2006年第3期|p.1070-1084|共15页
  • 作者单位

    Department of Biological Production, Akita Prefectural University, Akita City, Akita 010–0195, Japan (N.F., M.Y., N.A., T.O., Y.N.);

    Core Research for Evolutional Science and Technology, Japan Science and Technology, Kawaguchi, Saitama 332–0012, Japan (N.F., M.Y., T.O., Y.N.);

    and National Institute of Agrobiological Sciences, Tsukuba, Ibaraki 305–8602, Japan (A.M., H.H.);

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