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CO2 响应型 CCT 蛋白刺激特定淀粉生物合成相关酶的异位表达,从而显著改变水稻叶片鞘中的淀粉结构。

CO2-Responsive CCT Protein Stimulates the Ectopic Expression of Particular Starch Biosynthesis-Related Enzymes, Which Markedly Change the Structure of Starch in the Leaf Sheaths of Rice.

机构信息

Laboratory of Tropical Crop Science, Graduate School of Agricultural Science, Kobe University, Kobe, Japan.

Research Fellow of the Japan Society for the Promotion of Science, Tokyo, Japan.

出版信息

Plant Cell Physiol. 2019 May 1;60(5):961-972. doi: 10.1093/pcp/pcz008.

Abstract

CO2-responsive CCT protein (CRCT) is suggested to be a positive regulator of starch biosynthesis in the leaf sheaths of rice, regulating the expression levels of starch biosynthesis-related genes. In this study, the effects of CRCT expression levels on the expression of starch biosynthesis-related enzymes and the quality of starch were studied. Using native-PAGE/activity staining and immunoblotting, we found that the protein levels of starch synthase I, branching enzyme I, branching enzyme IIa, isoamylase 1 and phosphorylase 1 were largely correlated with the CRCT expression levels in the leaf sheaths of CRCT transgenic lines. In contrast, the CRCT expression levels largely did not affect the expression levels and/or activities of starch biosynthesis-related enzymes in the leaf blades and endosperm tissues. The analysis of the chain-length distribution of starch in the leaf sheaths showed that short chains with a degree of polymerization from 5 to 14 were increased in the overexpression lines but decreased in the knockdown lines. The amylose content of starch in the leaf sheath was greatly increased in the overexpression lines. In contrast, the molecular weight of the amylopectin of starch in the leaf sheath of overexpression lines did not change compared with those of the non-transgenic rice. These results suggest that CRCT can control the quality and the quantity of starch in the leaf sheath by regulating the expression of particular starch biosynthesis-related enzymes.

摘要

CO2 响应 CCT 蛋白(CRCT)被认为是水稻叶鞘中淀粉生物合成的正调控因子,调节淀粉生物合成相关基因的表达水平。在这项研究中,研究了 CRCT 表达水平对淀粉生物合成相关酶的表达和淀粉质量的影响。通过天然聚丙烯酰胺凝胶电泳/活性染色和免疫印迹,我们发现淀粉合酶 I、分支酶 I、分支酶 IIa、异淀粉酶 1 和磷酸化酶 1 的蛋白水平与 CRCT 转基因系叶鞘中的 CRCT 表达水平密切相关。相比之下,CRCT 表达水平对叶片和胚乳组织中淀粉生物合成相关酶的表达水平和/或活性影响不大。对叶鞘中淀粉链长分布的分析表明,在过表达系中,聚合度从 5 到 14 的短链增加,而在敲低系中则减少。过表达系中淀粉的直链淀粉含量大大增加。相比之下,过表达系叶鞘中淀粉的支链淀粉分子量与非转基因水稻相比没有变化。这些结果表明,CRCT 可以通过调节特定的淀粉生物合成相关酶的表达来控制叶鞘中淀粉的质量和数量。

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