首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Candidacy of a chitin-inducible gibberellin-responsive gene for a major locus affecting plant height in rice that is closely linked to Green Revolution gene sd1
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Candidacy of a chitin-inducible gibberellin-responsive gene for a major locus affecting plant height in rice that is closely linked to Green Revolution gene sd1

机译:与绿色革命基因sd1紧密相关的几丁质诱导型赤霉素响应基因对影响水稻株高的主要位点的候选资格

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Appropriate plant height is crucial for lodging resistance to improve the rice crop yield. The application of semi-dwarf 1 led to the green revolution in the 1960s, by predominantly increasing the rice yield. However, the frequent use of single sd1 gene sources may cause genetic vulnerability to pests and diseases. Identifying useful novel semi-dwarf genes is important for the genetic manipulation of plant architecture in practical rice breeding. In this study, introgression lines derived from two parents contrasting in plant height, Zhenshan 97 and Pokkali were employed to locate a gene with a large effect on plant height by the bulk segregant analysis method. A major gene, ph1, was mapped to a region closely linked to sd1 on chromosome 1; the additive effects of ph1 were more than 50 cm on the plant height and 2 days on the heading date in a BC4F2 population and its progeny. ph1 was then fine mapped to BAC AP003227. Gene annotation indicated that LOC_OS01g65990 encoding a chitin-inducible gibberellin-responsive protein (CIGR), which belongs to the GRAS family, might be the right candidate gene of ph1. Co-segregation analysis of the candidate gene-derived marker finally confirmed its identity as the candidate gene. A higher expression level of the CIGR was detected in all the tested tissues in tall plants compared to those of short plants, especially in the young leaf sheath containing elongating tissues, which indicated its importance role in regulating plant height. ph1 showed a tremendous genetic effect on plant height, which is distinct from sd1 and could be a new resource for breeding semi-dwarf varieties.
机译:适当的株高对于抗倒伏能力至关重要,以提高水稻作物的产量。半矮化1的应用通过显着提高水稻产量,在1960年代引发了绿色革命。但是,单个sd1基因来源的频繁使用可能会导致病虫害的遗传脆弱性。在实用的水稻育种中,鉴定有用的新型半矮基因对于植物结构的遗传操纵非常重要。在这项研究中,采用了两个亲本,在植株高度上形成对比的基因渗入系,分别采用振山97和Pokkali,通过本体分离分析法确定了对植株高度有较大影响的基因。一个主要基因ph1被定位到与1号染色体上sd1紧密相连的区域。在BC4F2群体及其后代中,ph1对植物高度的累加效应大于50 cm,而抽穗期则为2天。然后将ph1精细映射到BAC AP003227。基因注释表明,编码属于GRAS家族的几丁质诱导型赤霉素响应蛋白(CIGR)的LOC_OS01g65990可能是ph1的正确候选基因。候选基因衍生标记的共分离分析最终证实了其作为候选基因的身份。与短株植物相比,高株植物的所有受试组织中均检测到较高的CIGR表达水平,尤其是在含有伸长组织的幼叶鞘中,这表明其在调节株高中的重要作用。 ph1对植物高度显示出巨大的遗传效应,这与sd1不同,并且可能是育种半矮变种的新资源。

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