Department of Molecular Biotechnology, Konkuk University, Seoul, Korea.
Plant Biol (Stuttg). 2014 Mar;16(2):428-39. doi: 10.1111/plb.12069. Epub 2013 Aug 14.
We have isolated a severe dwarf mutant derived from a Ds (Dissociation) insertion mutant rice (Oryza sativa var. japonica c.v. Dongjin). This severe dwarf phenotype, has short and dark green leaves, reduced shoot growth early in the seedling stage, and later severe dwarfism with failure to initiate flowering. When treated with bioactive GA3 , mutants are restored to the normal wild-type phenotype. Reverse transcription PCR analyses of 22 candidate genes related to the gibberellin (GA) biosynthesis pathway revealed that among 22 candidate genes tested, a dwarf mutant transcript was not expressed only in one OsKS2 gene. Genetic analysis revealed that the severe dwarf phenotype was controlled by recessive mutation of a single nuclear gene. The putative OsKS2 gene was a chromosome 4-located ent-kaurene synthase (KS), encoding the enzyme that catalyses an early step of the GA biosynthesis pathway. Sequence analysis revealed that osks2 carried a 1-bp deletion in the ORF region of OsKS2, which led to a loss-of-function mutation. The expression pattern of OsKS2 in wild-type cv Dongjin, showed that it is expressed in all organs, most prominently in the stem and floral organs. Morphological characteristics of the dwarf mutant showed dramatic modifications in internal structure and external morphology. We propose that dwarfism in this mutant is caused by a point mutation in OsKS2, which plays a significant role in growth and development of higher plants. Further investigation on OsKS2 and other OsKS-like proteins is underway and may yield better understanding of the putative role of OsKS in severe dwarf mutants.
我们从一个 Ds(解离)插入突变体水稻(Oryza sativa var. japonica c.v. Dongjin)中分离出一个严重矮化突变体。这个严重矮化表型具有短而深绿色的叶子,在幼苗期早期生长受阻,后期严重矮化,无法启动开花。用生物活性 GA3 处理时,突变体恢复到正常野生型表型。对 22 个与赤霉素(GA)生物合成途径相关的候选基因进行反转录 PCR 分析,在测试的 22 个候选基因中,一个矮化突变体转录本仅在一个 OsKS2 基因中不表达。遗传分析表明,严重矮化表型受单个核基因隐性突变控制。假定的 OsKS2 基因是一个位于第 4 号染色体的 ent-贝壳杉烯合酶(KS),编码催化 GA 生物合成途径早期步骤的酶。序列分析表明,osks2 在 ORF 区域携带一个 1-bp 缺失,导致功能丧失突变。OsKS2 在野生型 cv Dongjin 中的表达模式表明,它在所有器官中表达,在茎和花器官中表达最明显。矮化突变体的形态特征显示出内部结构和外部形态的显著改变。我们提出,该突变体的矮化是由于 OsKS2 中的点突变引起的,该突变在高等植物的生长和发育中起着重要作用。正在对 OsKS2 和其他 OsKS 样蛋白进行进一步研究,可能会更好地理解 OsKS 在严重矮化突变体中的作用。