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首页> 外文期刊>Electronic Journal of Biotechnology >Cloning and analysis of a NBS-LRR disease resistance gene candidate PnAG1 from peanut (Arachis hypogaea L.)
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Cloning and analysis of a NBS-LRR disease resistance gene candidate PnAG1 from peanut (Arachis hypogaea L.)

机译:花生NBS-LRR抗病基因候选基因PnAG1的克隆与分析

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摘要

Background: Based on the conserved sequences of a known NBS resistance gene, a pair of degenerate primers was designed to amplify the NBS-LRR resistance gene from peanut using PCR and RACE methods. Results: Analyzing the amino acid sequence by BLAST on NCBI, which was deduced from the 1088bp-long gene named PnAG1-2, showed that it had a certain homology with some resistance proteins, among which Arachis cardenasii resistance protein gene had the highest homology (66%). Relative quantification PCR analysis indicated that PnAG1-2 gene expresses more in J11 (an A. flavus-resistant variety) than in JH1012 (an A. flavus-susceptible variety) when the harvest time was coming. Conclusions: In this study, the NBS-LRR resistance sequence was successfully cloned from peanut and prokaryotic expression was done on the gene, which provided a foundation for cultivating anti-A. flavus peanut varieties.
机译:背景:基于已知的NBS抗性基因的保守序列,设计了一对简并引物,使用PCR和RACE方法从花生中扩增NBS-LRR抗性基因。结果:通过BLAST在NCBI上的氨基酸序列进行分析,该序列由1088bp长的基因PnAG1-2推导而来,表明它与某些抗性蛋白具有一定的同源性,其中Arachis cardenasii抗性蛋白基因具有最高的同源性( 66%)。相对定量PCR分析表明,当收获时间到来时,PnAG1-2基因在J11(抗黄曲霉易感品种)中的表达要比JH1012(抗黄曲霉易感品种)的表达更多。结论:本研究成功地从花生中克隆了NBS-LRR抗性序列,并在该基因上进行了原核表达,为抗A的培养奠定了基础。黄麻花生品种。

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