Literature DB >> 16027975

Essential amino acids of starch synthase IIa differentiate amylopectin structure and starch quality between japonica and indica rice varieties.

Yasunori Nakamura1, Perigio B Francisco, Yuko Hosaka, Aya Sato, Takayuki Sawada, Akiko Kubo, Naoko Fujita.   

Abstract

Four amino acids were variable between the 'active' indica-type and 'inactive' japonica-type soluble starch synthase IIa (SSIIa) of rice plants; Glu-88 and Gly-604 in SSIIa of indica-cultivars IR36 and Kasalath were replaced by Asp-88 and Ser-604, respectively, in both japonica cultivars Nipponbare and Kinmaze SSIIa, whereas Val-737 and Leu-781 in indica SSIIa were replaced by Met-737 in cv. Nipponbare and Phe-781 in cv. Kinmaze SSIIa, respectively. The SSIIa gene fragments shuffling experiments revealed that Val-737 and Leu-781 are essential not only for the optimal SSIIa activity, but also for the capacity to synthesize indica-type amylopectin. Surprisingly, however, a combination of Phe-781 and Gly-604 could restore about 44% of the SSIIa activity provided that Val-737 was conserved. The introduction of the 'active' indica-type SSIIa gene enabled the japonica-type cv. Kinmaze to synthesize indica-type amylopectin. The starch in the transformed japonica rice plants exhibited gelatinization-resistant properties that are characteristic of indica-rice starch. Transformed lines expressing different levels of the IR36 SSIIa protein produced a variety of starches with amylopectin chain-length distribution patterns that correlated well with their onset temperatures of gelatinization. The present study confirmed that the SSIIa activity determines the type of amylopectin structure of rice starch to be either the typical indica-type or japonica-type, by playing a specific role in the synthesis of the long B(1) chains by elongating short A and B(1) chains, notwithstanding the presence of functional two additional SSII genes, a single SSI gene, two SSIII genes, and two SSIV genes in rice plants.

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Year:  2005        PMID: 16027975     DOI: 10.1007/s11103-005-6507-2

Source DB:  PubMed          Journal:  Plant Mol Biol        ISSN: 0167-4412            Impact factor:   4.076


  29 in total

1.  Mutations in the gene encoding starch synthase II profoundly alter amylopectin structure in pea embryos.

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Journal:  Plant Cell       Date:  1998-03       Impact factor: 11.277

2.  Chain-length specificities of maize starch synthase I enzyme: studies of glucan affinity and catalytic properties.

Authors:  P D Commuri; P L Keeling
Journal:  Plant J       Date:  2001-03       Impact factor: 6.417

3.  Biochemical and genetic analysis of the effects of amylose-extender mutation in rice endosperm.

Authors:  A Nishi; Y Nakamura; N Tanaka; H Satoh
Journal:  Plant Physiol       Date:  2001-10       Impact factor: 8.340

4.  Characterization of dull1, a maize gene coding for a novel starch synthase.

Authors:  M Gao; J Wanat; P S Stinard; M G James; A M Myers
Journal:  Plant Cell       Date:  1998-03       Impact factor: 11.277

5.  Involvement of conserved aspartate and glutamate residues in the catalysis and substrate binding of maize starch synthase.

Authors:  D J Nichols; P L Keeling; M Spalding; H Guan
Journal:  Biochemistry       Date:  2000-07-04       Impact factor: 3.162

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Authors:  Martha G James; Kay Denyer; Alan M Myers
Journal:  Curr Opin Plant Biol       Date:  2003-06       Impact factor: 7.834

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9.  Molecular cloning and expression analysis of three genes encoding starch synthase II in rice.

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Review 10.  Towards a better understanding of the metabolic system for amylopectin biosynthesis in plants: rice endosperm as a model tissue.

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Journal:  Plant Cell Physiol       Date:  2002-07       Impact factor: 4.927

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  77 in total

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3.  The different effects of starch synthase IIa mutations or variation on endosperm amylose content of barley, wheat and rice are determined by the distribution of starch synthase I and starch branching enzyme IIb between the starch granule and amyloplast stroma.

Authors:  Jixun Luo; Regina Ahmed; Behjat Kosar-Hashemi; Oscar Larroque; Vito M Butardo; Greg J Tanner; Michelle L Colgrave; Narayana M Upadhyaya; Ian J Tetlow; Michael J Emes; Anthony Millar; Stephen A Jobling; Matthew K Morell; Zhongyi Li
Journal:  Theor Appl Genet       Date:  2015-04-19       Impact factor: 5.699

Review 4.  Designing climate-resilient rice with ideal grain quality suited for high-temperature stress.

Authors:  Nese Sreenivasulu; Vito M Butardo; Gopal Misra; Rosa Paula Cuevas; Roslen Anacleto; Polavarpu B Kavi Kishor
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5.  Differences in specificity and compensatory functions among three major starch synthases determine the structure of amylopectin in rice endosperm.

Authors:  Naoko Crofts; Kyohei Sugimoto; Naoko F Oitome; Yasunori Nakamura; Naoko Fujita
Journal:  Plant Mol Biol       Date:  2017-05-02       Impact factor: 4.076

6.  CRISPR/Cas9-induced monoallelic mutations in the cytosolic AGPase large subunit gene APL2 induce the ectopic expression of APL2 and the corresponding small subunit gene APS2b in rice leaves.

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7.  Gradually Decreasing Starch Branching Enzyme Expression Is Responsible for the Formation of Heterogeneous Starch Granules.

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Journal:  Plant Physiol       Date:  2017-11-13       Impact factor: 8.340

8.  Identification and characterization of a novel Waxy allele from a Yunnan rice landrace.

Authors:  Linglong Liu; Xiaodong Ma; Shijia Liu; Changlan Zhu; Ling Jiang; Yihua Wang; Yi Shen; Yulong Ren; Hui Dong; Liangming Chen; Xi Liu; Zhigang Zhao; Huqu Zhai; Jianmin Wan
Journal:  Plant Mol Biol       Date:  2009-09-17       Impact factor: 4.076

9.  Deficiency of Starch Synthase IIIa and IVb Alters Starch Granule Morphology from Polyhedral to Spherical in Rice Endosperm.

Authors:  Yoshiko Toyosawa; Yasushi Kawagoe; Ryo Matsushima; Naoko Crofts; Masahiro Ogawa; Masako Fukuda; Toshihiro Kumamaru; Yozo Okazaki; Miyako Kusano; Kazuki Saito; Kiminori Toyooka; Mayuko Sato; Yongfeng Ai; Jay-Lin Jane; Yasunori Nakamura; Naoko Fujita
Journal:  Plant Physiol       Date:  2016-01-08       Impact factor: 8.340

10.  Mutation of the plastidial alpha-glucan phosphorylase gene in rice affects the synthesis and structure of starch in the endosperm.

Authors:  Hikaru Satoh; Kensuke Shibahara; Takashi Tokunaga; Aiko Nishi; Mikako Tasaki; Seon-Kap Hwang; Thomas W Okita; Nanae Kaneko; Naoko Fujita; Mayumi Yoshida; Yuko Hosaka; Aya Sato; Yoshinori Utsumi; Takashi Ohdan; Yasunori Nakamura
Journal:  Plant Cell       Date:  2008-07-11       Impact factor: 11.277

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