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A high-throughput assay for rapid and simultaneous analysis of perfect markers for important quality and agronomic traits in rice using multiplexed MALDI-TOF mass spectrometry

机译:使用多重MALDI-TOF质谱技术的高通量分析方法,可快速,同时分析水稻重要品质和农艺性状的完美标记

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摘要

The application of single nucleotide polymorphisms (SNPs) in plant breeding involves the analysis of a large number of samples, and therefore requires rapid, inexpensive and highly automated multiplex methods to genotype the sequence variants. We have optimized a high-throughput multiplexed SNP assay for eight polymorphisms which explain two agronomic and three grain quality traits in rice. Gene fragments coding for the agronomic traits plant height (semi-dwarf, sd-1) and blast disease resistance (Pi-ta) and the quality traits amylose content (waxy), gelatinization temperature (alk) and fragrance (fgr) were amplified in a multiplex polymerase chain reaction. A single base extension reaction carried out at the polymorphism responsible for each of these phenotypes within these genes generated extension products which were quantified by a matrix-assisted laser desorption ionization-time of flight system. The assay detects both SNPs and indels and is co-dominant, simultaneously detecting both homozygous and heterozygous samples in a multiplex system. This assay analyses eight functional polymorphisms in one 5 µL reaction, demonstrating the high-throughput and cost-effective capability of this system. At this conservative level of multiplexing, 3072 assays can be performed in a single 384-well microtitre plate, allowing the rapid production of valuable information for selection in rice breeding.
机译:单核苷酸多态性(SNPs)在植物育种中的应用涉及对大量样品的分析,因此需要快速,廉价且高度自动化的多重方法对序列变体进行基因分型。我们优化了八种多态性的高通量多重SNP分析方法,这些多态性可解释水稻的两个农艺和三个谷物品质性状。扩增了编码农艺性状株高(半矮,sd-1)和稻瘟病抗性(Pi-ta)以及品质性状直链淀粉含量(蜡质),糊化温度(alk)和香气(fgr)的基因片段。多重聚合酶链反应。在负责这些基因内每种表型的多态性上进行的单碱基延伸反应产生了延伸产物,这些延伸产物通过基质辅助激光解吸电离飞行时间系统进行了定量。该测定法同时检测SNP和插入缺失,并且是共显性的,同时在多重系统中同时检测纯合和杂合样品。该测定法在一个5 µL反应中分析了8个功能多态性,证明了该系统的高通量和高性价比。在这种保守的多重水平下,可以在单个384孔微量滴定板中进行3072次测定,从而快速产生有价值的信息,供水稻育种中选择。

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