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Effects of OsCDPK1 on the Structure and Physicochemical Properties of Starch in Developing Rice Seeds.


ABSTRACT: Overexpression of a constitutively active truncated form of OsCDPK1 (OEtr) in rice produced smaller seeds, but a double-stranded RNA gene-silenced form of OsCDPK1 (Ri) yielded larger seeds, suggesting that OsCDPK1 plays a functional role in rice seed development. In the study presented here, we propose a model in which OsCDPK1 plays key roles in negatively controlling the grain size, amylose content, and endosperm appearance, and also affects the physicochemical properties of the starch. The dehulled transgenic OEtr grains were smaller than the dehulled wild-type grains, and the OEtr endosperm was opaque and had a low amylose content and numerous small loosely packed polyhedral starch granules. However, the OEtr grain sizes and endosperm appearances were not affected by temperature, which ranged from low (22 °C) to high (31 °C) during the grain-filling phase. In contrast, the transgenic Ri grains were larger, had higher amylose content, and had more transparent endosperms filled with tightly packed polyhedral starch granules. This demonstrates that OsCDPK1 plays a novel functional role in starch biosynthesis during seed development and affects the transparent appearance of the endosperm. These results improve our understanding of the molecular mechanisms through which the grain-filling process occurs in rice.

SUBMITTER: Jiang JZ 

PROVIDER: S-EPMC6214144 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Effects of <i>OsCDPK1</i> on the Structure and Physicochemical Properties of Starch in Developing Rice Seeds.

Jiang Jian-Zhi JZ   Kuo Chun-Hsiang CH   Chen Bo-Hong BH   Chen Mao-Kei MK   Lin Choun-Sea CS   Ho Shin-Lon SL  

International journal of molecular sciences 20181019 10


Overexpression of a constitutively active truncated form of <i>OsCDPK1</i> (<i>OEtr</i>) in rice produced smaller seeds, but a double-stranded RNA gene-silenced form of <i>OsCDPK1</i> (<i>Ri</i>) yielded larger seeds, suggesting that <i>OsCDPK1</i> plays a functional role in rice seed development. In the study presented here, we propose a model in which <i>OsCDPK1</i> plays key roles in negatively controlling the grain size, amylose content, and endosperm appearance, and also affects the physico  ...[more]

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