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首页> 外文期刊>G3: Genes, Genomes, Genetics >Scanning the Effects of Ethyl Methanesulfonate on the Whole Genome of Lotus japonicus Using Second-Generation Sequencing Analysis
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Scanning the Effects of Ethyl Methanesulfonate on the Whole Genome of Lotus japonicus Using Second-Generation Sequencing Analysis

机译:使用第二代测序分析扫描甲磺酸乙酯对莲j全基因组的影响

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Genetic structure can be altered by chemical mutagenesis, which is a common method applied in molecular biology and genetics. Second-generation sequencing provides a platform to reveal base alterations occurring in the whole genome due to mutagenesis. A model legume, Lotus japonicus ecotype Miyakojima , was chemically mutated with alkylating ethyl methanesulfonate (EMS) for the scanning of DNA lesions throughout the genome. Using second-generation sequencing, two individually mutated third-generation progeny (M3, named AM and AS) were sequenced and analyzed to identify single nucleotide polymorphisms and reveal the effects of EMS on nucleotide sequences in these mutant genomes. Single-nucleotide polymorphisms were found in every 208 kb (AS) and 202 kb (AM) with a bias mutation of G/C-to-A/T changes at low percentage. Most mutations were intergenic. The mutation spectrum of the genomes was comparable in their individual chromosomes; however, each mutated genome has unique alterations, which are useful to identify causal mutations for their phenotypic changes. The data obtained demonstrate that whole genomic sequencing is applicable as a high-throughput tool to investigate genomic changes due to mutagenesis. The identification of these single-point mutations will facilitate the identification of phenotypically causative mutations in EMS-mutated germplasm.
机译:可以通过化学诱变改变遗传结构,化学诱变是分子生物学和遗传学中常用的方法。第二代测序提供了一个平台,可揭示由于诱变而在整个基因组中发生的碱基改变。用烷基化的甲磺酸乙酯(EMS)化学诱变了一种模型豆科植物-日本莲的日本生态型宫古岛,以扫描整个基因组中的DNA损伤。使用第二代测序,对两个单独突变的第三代后代(M3,分别称为AM和AS)进行了测序和分析,以鉴定单核苷酸多态性,并揭示了EMS对这些突变基因组中核苷酸序列的影响。在每208 kb(AS)和202 kb(AM)中发现单核苷酸多态性,G / C到A / T的偏向突变发生率低。大多数突变是基因间的。基因组的突变谱在它们各自的染色体上是可比的;但是,每个突变的基因组都有独特的变化,这对于识别其表型变化的因果突变很有用。所获得的数据表明,整个基因组测序可作为一种高通量工具来研究由于诱变引起的基因组变化。这些单点突变的鉴定将有助于鉴定EMS突变种质中表型致病突变。

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