Itoh Yuuki, Crofts Naoko, Abe Misato, F Oitome Naoko, Fujita Naoko
1 Laboratory of Plant Physiology, Department of Biological Production, Faculty of Bioresource Sciences, Akita Prefectural University.
J Appl Glycosci (1999). 2016 Feb 20;63(1):27-30. doi: 10.5458/jag.jag.JAG-2015_022. eCollection 2016.
The structure and properties of starch reserves in rice seeds are strongly affected by deficiencies in specific starch biosynthetic enzymes, which are highly expressed in storage tissues. Rice lines with unique seed starches should be utilized for food and industrial applications in the near future. We are currently developing novel rice mutant lines with distinct starch properties by introducing specific genes from different cultivars into mutant lines and by producing multiple combinations of single mutant lines. Obtaining the homozygous genotypes of the target genes is necessary during the screening process of these materials. In this study, we developed an effective, accurate screening method for identifying rice lines with novel starch composition. Specifically, we produced a novel mutant line in which we introduced genes encoding starch synthase IIa (SSIIa) and granule-bound starch synthase I (GBSSI) from indica cultivar into a starch branching enzyme IIb (BEIIb)-deficient mutant line.
水稻种子中淀粉储备的结构和特性受到特定淀粉生物合成酶缺乏的强烈影响,这些酶在储存组织中高度表达。具有独特种子淀粉的水稻品系在不久的将来应被用于食品和工业应用。我们目前正在通过将不同品种的特定基因导入突变品系,并通过产生单突变品系的多种组合,来开发具有独特淀粉特性的新型水稻突变品系。在这些材料的筛选过程中,获得目标基因的纯合基因型是必要的。在本研究中,我们开发了一种有效、准确的筛选方法,用于鉴定具有新型淀粉组成的水稻品系。具体来说,我们构建了一个新型突变品系,即将来自籼稻品种的编码淀粉合酶IIa(SSIIa)和颗粒结合淀粉合酶I(GBSSI)的基因导入淀粉分支酶IIb(BEIIb)缺陷型突变品系中。