首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Fine mapping of qSTV11 (TQ) , a major gene conferring resistance to rice stripe disease
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Fine mapping of qSTV11 (TQ) , a major gene conferring resistance to rice stripe disease

机译:qSTV11(TQ)的精细定位,qSTV11是赋予水稻条纹病抗性的主要基因

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The indica rice cultivar, Teqing, shows a high level of resistance to rice stripe virus (RSV). It is believed that this resistance is controlled by the gene, qSTV11 (TQ) . For positional cloning of the resistance gene, a set of chromosome single segment substitution lines (CSSSLs) was constructed, all of which had the genetic background of the susceptible japonica cultivar, Lemont, with different single substituted segments of Teqing on chromosome 11. By identifying the resistance of the CSSSLs-2006 in a field within a heavily diseased area, the resistance gene qSTV11 (TQ) was mapped between the markers Indel7 and RM229. Furthermore, in that region, six new markers were developed and 52 subregion CSSSLs (CSSSLs-2007) were constructed. The natural infection experiment was conducted again at different sites, with two replicates used in each site in order to identify the resistance phenotypes of the CSSSLs-2007 and resistant/susceptible controls in 2007. Through the results of 2007, qSTV11 (TQ) was localized in a region defined by the markers, CAPs1 and Indel4. In order to further confirm the position of qSTV11 (TQ) , another set of subregion CSSSLs (CSSSLs-2009) was constructed. Finally, qSTV11 (TQ) was localized to a 55.7 kb region containing nine annotated genes according to the genome sequence of japonica Nipponbare. The relationship between qSTV11 (TQ) and Stvb-i (Hayano-Saito et al. in Theor Appl Genet 101:59-63, 2000) and the reliability of the markers used on both sides of qSTV11 (TQ) for marker-assisted breeding of resistance to rice stripe disease are discussed.
机译:Te稻特清种对水稻条纹病毒(RSV)表现出很高的抗性。据信这种抗性由基因qSTV11(TQ)控制。为了进行抗性基因的位置克隆,构建了一组染色体单节替换系(CSSSLs),所有这些都具有易感粳稻Lemont的遗传背景,在11号染色体上具有特庆的不同单取代节。由于CSSSLs-2006在一个重病地区的田间具有抗性,因此抗性基因qSTV11(TQ)被定位在标记Indel7和RM229之间。此外,在该区域,开发了六个新标记,并构建了52个次区域CSSSL(CSSSLs-2007)。再次在不同地点进行了自然感染实验,每个地点重复使用两次,以鉴定CSSSLs-2007的耐药表型和2007年的耐药/易感对照。通过2007年的结果,qSTV11(TQ)得以本地化在由标记CAPs1和Indel4定义的区域中。为了进一步确定qSTV11(TQ)的位置,构建了另一组子区域CSSSL(CSSSLs-2009)。最终,根据粳稻日本晴的基因组序列,将qSTV11(TQ)定位到包含9个带注释基因的55.7 kb区域。 qSTV11(TQ)和Stvb-i(Hayano-Saito等人在Theor Appl Genet 101:59-63,2000)之间的关系以及qSTV11(TQ)两侧用于标记辅助育种的标记的可靠性对水稻条纹病的抗性进行了讨论。

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