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Genome-wide identification of candidate phosphate starvation responsive genes and the development of intron length polymorphism markers in maize

机译:全基因组候选磷酸盐饥饿反应基因的鉴定和玉米内含子长度多态性标记的发展

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摘要

To develop genetic markers associated with tolerance to low phosphorus, we identified candidate phosphate starvation responsive (PSR) genes and developed their intron length polymorphism (ILP) markers in maize on a genome-wide scale. Based on the known plant PSR genes, 161 candidate PSR genes were identified. Of these genes, 138 genes contained at least one intron and were then used to develop 606 PSR-ILP markers by designing PCR primers to the intron-flanking exonic regions. PCR evaluation was performed on 43 randomly selected PSR-ILP markers in 30 maize inbred lines. Of the primers, 88.4% amplified stable and pure products in all maize inbred lines, and 53.5% of the markers showed ILP, with PIC values ranging from 0.06 to 0.80. The result of clustering analysis of the 30 maize inbred lines, based on the polymorphism of 23 ILP markers, suggests that the ILP markers developed in this study are not only efficient for genetic diversity analysis but also potentially useful for marker assisted selection for tolerance to low phosphorus.
机译:为了发展与低磷耐受性相关的遗传标记,我们鉴定了候选磷酸盐饥饿响应(PSR)基因,并在全基因组范围内开发了玉米中内含子长度多态性(ILP)标记。基于已知的植物PSR基因,鉴定了161个候选PSR基因。在这些基因中,有138个基因包含至少一个内含子,然后通过设计内含子侧翼外显子区的PCR引物来开发606个PSR-ILP标记。对30个玉米自交系中的43个随机选择的PSR-ILP标记进行PCR评估。在所有玉米近交系中,有88.4%的引物扩增出稳定和纯净的产物,而53.5%的标记物显示ILP,PIC值介于0.06至0.80之间。基于23个ILP标记的多态性,对30个玉米自交系进行聚类分析的结果表明,本研究开发的ILP标记不仅对遗传多样性分析有效,而且对标记辅助选择低耐性有潜在的帮助磷。

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