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缺乏淀粉合酶 IIIa 和高表达粒状结合淀粉合酶 I 协同作用提高水稻胚乳中的表观直链淀粉含量。

Lack of starch synthase IIIa and high expression of granule-bound starch synthase I synergistically increase the apparent amylose content in rice endosperm.

机构信息

Department of Biological Production, Akita Prefectural University, 241-438 Kaidobata-Nishi, Nakano Shimoshinjo, Akita City, Akita 010-0195, Japan.

Graduate School of Science and Technology, Niigata University, 8050 Ikarashi 2-no-cho, Nishi-ku, Niigata 950-2181, Japan.

出版信息

Plant Sci. 2012 Sep;193-194:62-69. doi: 10.1016/j.plantsci.2012.05.006. Epub 2012 May 17.

Abstract

Rice endosperm starch is composed of 0-30% linear amylose, which is entirely synthesized by granule-bound starch synthase I (GBSSI: encoded by Waxy, Wx). The remainder consists of branched amylopectin and is elongated by multiple starch synthases (SS) including SSI, IIa and IIIa. Typical japonica rice lacks active SSIIa and contains a low expressing Wx(b) causing a low amylose content (ca. 20%). WAB2-3 (SS3a/Wx(a)) lines generated by the introduction of a dominant indica Wx(a) into a japonica waxy mutant (SS3a/wx) exhibit elevated GBSSI and amylose content (ca. 25%). The japonica ss3a mutant (ss3a/Wx(b)) shows a high amylose content (ca. 30%), decreased long chains of amylopectin and increased GBSSI levels. To investigate the functional relationship between the ss3a and Wx(a) genes, the ss3a/Wx(a) line was generated by crossing ss3a/Wx(b) with SS3a/Wx(a), and the starch properties of this line were examined. The results show that the apparent amylose content of the ss3a/Wx(a) line was increased (41.3%) compared to the parental lines. However, the GBSSI quantity did not increase compared to the SS3a/Wx(a) line. The amylopectin branch structures were similar to the ss3a/Wx(b) mutant. Therefore, Wx(a) and ss3a synergistically increase the apparent amylose content in rice endosperm, and the possible reasons for this increase are discussed.

摘要

稻米胚乳淀粉由 0-30%的线性直链淀粉组成,完全由颗粒结合型淀粉合成酶 I (GBSSI:由 Waxy,Wx 编码)合成。其余部分由分支的支链淀粉组成,由多个淀粉合成酶 (SS) 延伸,包括 SSI、IIa 和 IIIa。典型的粳稻缺乏活跃的 SSIIa,并且含有低表达的 Wx(b),导致直链淀粉含量低(约 20%)。通过将显性籼稻 Wx(a)引入粳稻蜡质突变体(SS3a/wx)中产生的 WAB2-3(SS3a/Wx(a))系表现出较高的 GBSSI 和直链淀粉含量(约 25%)。粳稻 ss3a 突变体(ss3a/Wx(b))表现出较高的直链淀粉含量(约 30%)、支链淀粉长链减少和 GBSSI 水平增加。为了研究 ss3a 和 Wx(a)基因之间的功能关系,通过将 ss3a/Wx(b)与 SS3a/Wx(a)杂交产生了 ss3a/Wx(a)系,并对该系的淀粉性质进行了研究。结果表明,与亲本系相比,ss3a/Wx(a)系的表观直链淀粉含量增加(41.3%)。然而,与 SS3a/Wx(a)系相比,GBSSI 数量没有增加。支链淀粉分支结构与 ss3a/Wx(b)突变体相似。因此,Wx(a)和 ss3a 协同增加稻米胚乳中的表观直链淀粉含量,并讨论了这种增加的可能原因。

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