首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification of the blast resistance gene Pit in rice cultivars using functional markers
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Identification of the blast resistance gene Pit in rice cultivars using functional markers

机译:利用功能标记鉴定稻瘟病抗性基因Pit

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摘要

DNA markers that allow for identification of resistance genes in rice germplasm have a great advantage in resistance breeding because they can assess the existence of the genes without laborious inoculation tests. Functional markers (FMs), which are designed from functional polymorphisms within the sequence of genes, are unaffected by nonfunctional allelic variation and make it possible to identify an individual gene. We previously showed that the resistance function of the rice blast resistance gene Pit in a resistant cultivar, K59, was mainly acquired by up-regulated promoter activity through the insertion of a long terminal repeat (LTR) retrotransposon upstream of Pit. Here, we developed PCR-based DNA markers derived from the LTR-retrotransposon sequence and used these markers to screen worldwide accessions of rice germplasm. We identified 5 cultivars with the LTR-retrotransposon insertion out of 68 rice accessions. The sequence and expression pattern of Pit in the five cultivars were the same as those in K59 and all showed Pit-mediated blast resistance. The results suggest that the functional Pit identified using the markers was derived from a common progenitor. Additionally, comparison of the Pit coding sequences between K59 and susceptible cultivars revealed that one nucleotide polymorphism, which caused an amino acid substitution, offered another target for a FM. These results indicate that our DNA markers should enhance prediction of Pit function and be applicable to a range of rice varieties/landraces cultivated in various regions worldwide and belonging to the temperate japonica, tropical japonica, and indica groups.
机译:可以鉴定水稻种质中抗性基因的DNA标记在抗性育种中具有很大优势,因为它们无需费力的接种测试即可评估基因的存在。由基因序列内的功能多态性设计的功能标记(FMs)不受非功能性等位基因变异的影响,并可以鉴定单个基因。我们先前显示,稻瘟病抗性基因Pit在抗性品种K59中的抗性功能主要是通过在Pit上游插入长末端重复序列(LTR)反转录转座子来上调启动子活性而获得的。在这里,我们开发了基于LTR-反转录转座子序列的基于PCR的DNA标记,并使用这些标记来筛选全球水稻种质。我们从68个水稻品种中鉴定出5个具有LTR-反转录转座子的品种。 5个品种中Pit的序列和表达方式与K59相同,均表现出Pit介导的抗病性。结果表明,使用标记物鉴定出的功能性Pit来源于共同的祖细胞。此外,比较K59和易感品种之间的Pit编码序列,发现一个导致核苷酸置换的核苷酸多态性为FM提供了另一个靶标。这些结果表明,我们的DNA标记应增强对Pit功能的预测,并适用于在全球不同地区种植的,属于温带粳稻,热带粳稻和in稻组的一系列水稻品种/地方品种。

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