首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Haplotype Detection from Next-Generation Sequencing in High-Ploidy-Level Species: 45S rDNA Gene Copies in the Hexaploid Spartina maritima
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Haplotype Detection from Next-Generation Sequencing in High-Ploidy-Level Species: 45S rDNA Gene Copies in the Hexaploid Spartina maritima

机译:从高倍性水平物种的下一代测序的单倍型检测:六倍体Spartina maritima中的45S rDNA基因副本。

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摘要

Gene and whole-genome duplications are widespread in plant nuclear genomes, resulting in sequence heterogeneity. Identification of duplicated genes may be particularly challenging in highly redundant genomes, especially when there are no diploid parents as a reference. Here, we developed a pipeline to detect the different copies in the ribosomal RNA gene family in the hexaploid grass Spartina maritima from next-generation sequencing (Roche-454) reads. The heterogeneity of the different domains of the highly repeated 45S unit was explored by identifying single nucleotide polymorphisms (SNPs) and assembling reads based on shared polymorphisms. SNPs were validated using comparisons with Illumina sequence data sets and by cloning and Sanger (re)sequencing. Using this approach, 29 validated polymorphisms and 11 validated haplotypes were reported (out of 34 and 20, respectively, that were initially predicted by our program). The rDNA domains of S. maritima have similar lengths as those found in other Poaceae, apart from the 5′-ETS, which is approximately two-times longer in S. maritima. Sequence homogeneity was encountered in coding regions and both internal transcribed spacers (ITS), whereas high intragenomic variability was detected in the intergenic spacer (IGS) and the external transcribed spacer (ETS). Molecular cytogenetic analysis by fluorescent in situ hybridization (FISH) revealed the presence of one pair of 45S rDNA signals on the chromosomes of S. maritima instead of three expected pairs for a hexaploid genome, indicating loss of duplicated homeologous loci through the diploidization process. The procedure developed here may be used at any ploidy level and using different sequencing technologies.
机译:基因和全基因组重复在植物核基因组中很普遍,导致序列异质性。在高度冗余的基因组中,特别是在没有二倍体亲本作为参考的情况下,鉴定重复的基因可能特别具有挑战性。在这里,我们开发了一条管线,用于从下一代测序(Roche-454)读取的六倍体草海草Spartina maritima中检测核糖体RNA基因家族中的不同拷贝。通过鉴定单核苷酸多态性(SNP)并基于共享的多态性组装读段,探索了高度重复的45S单元不同域的异质性。使用与Illumina序列数据集的比较以及克隆和Sanger(重)测序验证了SNP。使用这种方法,报告了29个经过验证的多态性和11个经过验证的单倍型(分别在我们的程序最初预测的34和20个中)。除5'-ETS外,海链球菌的rDNA结构域的长度与其他禾本科中发现的rDNA结构域相似,后者的长度约为海链球菌的两倍。在编码区和两个内部转录间隔区(ITS)中都遇到序列同质性,而在基因间隔区(IGS)和外部转录间隔区(ETS)中检测到高的基因组内变异性。通过荧光原位杂交(FISH)进行的分子细胞遗传学分析显示,在海链球菌的染色体上存在一对45S rDNA信号,而不是六倍体基因组的三个预期对,这表明通过二倍体化过程损失了重复的同源位点。这里开发的程序可以在任何倍性水平上使用,也可以使用不同的测序技术。

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