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Characterization of SSIIIa-Deficient Mutants of Rice: The Function of SSIIIa and Pleiotropic Effects by SSIIIa Deficiency in the Rice Endosperm

机译:水稻SSIIIa缺失突变体的表征:水稻胚乳中SSIIIa的功能和SSIIIa缺乏对多效性的影响

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摘要

Starch synthase IIIa (SSIIIa)-deficient rice (Oryza sativa) mutants were generated using retrotransposon insertion and chemical mutagenesis. The lowest migrating SS activity bands on glycogen-containing native polyacrylamide gel, which were identified to be those for SSIIIa, were completely absent in these mutants, indicating that they are SSIIIa null mutants. The amylopectin B2 to B4 chains with degree of polymerization (DP) ≥ 30 and the Mr of amylopectin in the mutant were reduced to about 60% and 70% of the wild-type values, respectively, suggesting that SSIIIa plays an important part in the elongation of amylopectin B2 to B4 chains. Chains with DP 6 to 9 and DP 16 to 19 decreased while chains with DP 10 to 15 and DP 20 to 25 increased in the mutants amylopectin. These changes in the SSIIIa mutants are almost opposite images of those of SSI-deficient rice mutant and were caused by 1.3- to 1.7-fold increase of the amount of SSI in the mutants endosperm. Furthermore, the amylose content and the extralong chains (DP ≥ 500) of amylopectin were increased by 1.3- and 12-fold, respectively. These changes in the composition in the mutants starch were caused by 1.4- to 1.7-fold increase in amounts of granules-bound starch synthase (GBSSI). The starch granules of the mutants were smaller with round shape, and were less crystalline. Thus, deficiency in SSIIIa, the second major SS isozyme in developing rice endosperm affected the structure of amylopectin, amylase content, and physicochemical properties of starch granules in two ways: directly by the SSIIIa deficiency itself and indirectly by the enhancement of both SSI and GBSSI gene transcripts.
机译:使用逆转座子插入和化学诱变产生了淀粉合酶IIIa(SSIIIa)缺陷型水稻(Oryza sativa)突变体。在这些突变体中,完全没有含糖原的天然聚丙烯酰胺凝胶上最低的迁移SS活性谱带(被确定为SSIIIa的迁移谱带),这表明它们是SSIIIa无效突变体。聚合度(DP)≥30的支链淀粉B2至B4链和突变型支链淀粉的Mr分别降低至野生型值的60%和70%,这表明SSIIIa在突变中起重要作用。支链淀粉B2延伸至B4链。在突变支链淀粉中,具有DP 6至9和DP 16至19的链减少,而具有DP 10至15和DP 20至25的链增加。 SSIIIa突变体中的这些变化几乎与SSI缺陷型水稻突变体的变化相反,并且是由突变体胚乳中SSI量增加1.3到1.7倍引起的。此外,支链淀粉的直链淀粉含量和超长链(DP≥500)分别增加了1.3倍和12倍。突变体淀粉中组成的这些变化是由颗粒结合淀粉合酶(GBSSI)的量增加1.4到1.7倍引起的。突变体的淀粉颗粒较小,呈圆形,结晶度较小。因此,水稻胚乳中第二主要的SS同工酶SSIIIa的缺乏会以两种方式影响支链淀粉的结构,淀粉酶含量和淀粉颗粒的理化特性:直接由SSIIIa自身缺乏和间接地由SSI和GBSSI的增强引起基因转录本。

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