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首页> 外文期刊>Planta: An International Journal of Plant Biology >Biochemical analysis of a new sugary-type rice mutant, Hemisugary1, carrying a novel allele of the sugary-1 gene
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Biochemical analysis of a new sugary-type rice mutant, Hemisugary1, carrying a novel allele of the sugary-1 gene

机译:新型含幼儿稻突变体的生化分析Hemisugary1,携带糖尿病 - 1基因的新等位基因

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摘要

A new sugary rice variety with an improved seed appearance has been isolated and designated Hemisugary1. This mutant, which was derived from Japonica-type cultivar Tsugaruroman treated with sodium azide, has about half the isoamylase activity of seeds in the original Tsugaruroman. The mutant also accumulates significant phytoglycogen, albeit approximately 40% of the total phytoglycogen in the existing sugary cultivar Ayunohikari which is defective in its most isoamylase activity. The site of mutation was identified using a re-sequence of the whole genome and a cleaved amplified polymorphic sequence (CAPS) marker. The hemisugary phenotypes of the F-2 progeny were entirely consistent with the results of genotyping using the CAPS marker. Segregation analysis of the F-2 population showed that the hemisugary phenotype was controlled by a single recessive gene, which was produced by a G -> A single nucleotide polymorphism in the sugary-1 gene, resulting in a missense mutation from glycine to aspartic acid at amino acid position 333. Zymogram showed that this amino acid replacement resulted in a decrease in isoamylase activity with a concomitant reduction in the formation of isoamylase complexes. Phytoglycogen molecules from Hemisugary1 seeds were 3.5 times larger and contained more short glucan chains than did Ayunohikari seeds. Our data provide new insights into the relationship between isoamylase structure and phytoglycogen formation.
机译:一种新的含有种子外观的新含早稻品种已被隔离和指定Hemisugary1。该突变体来自含氧化钠处理的粳稻型Tsugaruroman,在原来Tsugaruroman中具有大约一半的种子的异淀粉酶活性。突变体还积累了显着的植物糖基因,尽管存在于现有的含糖品种Ayunohari中的总植物糖基因的40%,其在其最常见的异戊酰基酶活性上有缺陷。使用全基因组的重新序列和切割的扩增多晶序列(盖子)标记鉴定突变部位。 F-2后代的半古表型与使用帽标记的基因分型结果完全一致。 F-2人群的分离分析表明,半古性表型由单个隐性基因控制,该基因由糖醛-1基因中的单核苷酸多态性产生,导致来自甘氨酸至天冬氨酸的畸形突变在氨基酸位置333. Zymogram表明,该氨基酸置换使得异淀粉酶活性降低,同时伴随着形成异淀粉酶复合物的形成。来自Hemisugary1种子的植物生成型分子比Ayunohikari种子更大3.5倍,含有更短的葡聚糖链。我们的数据为Isoamylase结构和植物糖苷形成之间的关系提供了新的见解。

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