Identification, genetic characterization, GA response and molecular mapping of Sdt97: a dominant mutant gene conferring semi-dwarfism in rice (Oryza sativa L.).

Ji-Ping Tong, Xue-Jun Liu, Shi-Yong Zhang, Shao-Qing Li, Xiao-Jue Peng, Jing Yang, Ying-Guo Zhu
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引用次数: 14

Abstract

Semi-dwarfism is an important agronomic trait in rice breeding programmes. sd-1, termed the 'Green Revolution gene', confers semi-dwarf stature, increases harvest index, improves lodging resistance, and is associated with increased responsiveness to nitrogen fertilizer. It has contributed substantially to the significant increase in rice production. In this paper, a novel semi-dwarf mutant in rice is reported. Genetic analysis revealed that only a single dominant gene locus non-allelic to sd-1, temporarily designated Sdt97, is involved in the control of semi-dwarfism of the mutant. The semi-dwarfism of the mutant could be partly restored to the tall wild-type by application of exogenous GA3, suggesting that the mutant gene Sdt97 may be involved in the gibberellin (GA) synthesis pathway and not the GA response pathway in rice. A residual heterozygous line (RHL) population derived from a recombinant inbred line (RIL) was developed. Simple sequence repeat (SSR) and bulked segregation analysis (BSA) combined with recessive class analysis (RCA) techniques were used to map Sdt97 to the long arm of chromosome 6 at the interval between two STS markers, N6 and TX5, with a genetic distance of 0.2 cM and 0.8 cM, respectively. A contig map was constructed based on the reference sequence aligned by the Sdt97 linked markers. The physical map of the Sdt97 locus was defined to a 118 kb interval, and 19 candidate genes were detected in the target region. This is the first time that a dominant semi-dwarf gene has been reported in rice. Cloning and functional analysis of gene Sdt97 will help us to learn more about molecular mechanism of rice semi-dwarfism.

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水稻半矮化显性突变基因Sdt97的鉴定、遗传特性、GA响应及分子定位。
半矮化是水稻育种中一个重要的农艺性状。sd-1,被称为“绿色革命基因”,赋予半矮秆身材,增加收获指数,提高抗倒伏能力,并与对氮肥的反应性增加有关。它对水稻产量的显著增加作出了重大贡献。本文报道了一个新的水稻半矮秆突变体。遗传分析表明,只有一个与sd-1非等位基因的显性基因位点(暂称为Sdt97)参与控制该突变体的半侏儒症。外源GA3可使该突变体部分恢复到高野生型,说明突变体Sdt97可能参与水稻赤霉素合成途径而非赤霉素响应途径。从一个重组自交系(RIL)衍生出一个残余杂合系(RHL)群体。利用简单序列重复(SSR)和群体分离分析(BSA)结合隐性类分析(RCA)技术,将Sdt97定位在6号染色体长臂上,遗传距离分别为0.2 cM和0.8 cM,位于两个STS标记N6和TX5之间。利用Sdt97连锁标记对参考序列进行比对,构建contig图谱。Sdt97位点的物理图谱以118 kb为间隔,在靶区检测到19个候选基因。这是首次在水稻中发现显性半矮秆基因。Sdt97基因的克隆和功能分析将有助于我们进一步了解水稻半矮化的分子机制。
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