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Comparative genetic analysis of the 45S rDNA intergenic spacers from three Saccharum species

机译:三种蔗糖45S rDNA基因间隔区的比较遗传分析

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摘要

The 45S ribosomal DNA (rDNA) units are separated by an intergenic spacer (IGS) containing the signals for transcription and processing of rRNAs. For the first time, we sequenced and analyzed the entire IGS region from three original species within the genus Saccharum, including S. spontaneum, S. robustum, and S. officinarum in this study. We have compared the IGS organization within three original species of the genus Saccharum. The IGS of these three original species showed similar overall organizations comprised of putative functional elements needed for rRNA gene activity as well as a non-transcribed spacer (NTS), a promoter region, and an external transcribed spacer (ETS). The variability in length of the IGS sequences was assessed at the individual, intraspecies, and interspecies levels of the genus Saccharum, including S. spontaneum, S. robustum, and S. officinarum. The ETS had greater similarity than the NTS across species, but nevertheless exhibited variation in length. Within the IGS of the Saccharum species, base substitutions and copy number variation of sub-repeat were causes of the divergence in IGS sequences. We also identified a significant number of methylation sites. Furthermore, fluorescent in situ hybridization (FISH) co-localization of IGS and pTa71 probes was detected on all representative species of the genus Saccharum tested. Taken together, the results of this study provide a better insight into the structure and organization of the IGS in the genus Saccharum.
机译:45S核糖体DNA(rDNA)单元由基因间隔子(IGS)分隔,该间隔子包含用于rRNA转录和加工的信号。在本研究中,我们首次对来自蔗糖属的三个原始物种(包括S. spontaneum,S.robustum和S. officinarum)的整个IGS区域进行了测序和分析。我们比较了蔗糖属的三个原始物种中的IGS组织。这三个原始物种的IGS显示出类似的整体组织,包括rRNA基因活性所需的推定功能元件以及非转录间隔子(NTS),启动子区域和外部转录间隔子(ETS)。在蔗糖属,包括自发链球菌,强壮链球菌和厚皮链球菌的个体,种内和种间水平评估IGS序列长度的变异性。在各个物种中,ETS比NTS具有更大的相似性,但是在长度上却表现出差异。在糖种的IGS中,碱基重复和亚重复的拷贝数变化是IGS序列差异的原因。我们还鉴定出大量的甲基化位点。此外,在被测试的蔗糖属的所有代表性物种上都检测到了IGS和pTa71探针的荧光原位杂交(FISH)共定位。两者合计,这项研究的结果提供了一个更好的洞察力在糖类的IGS的结构和组织。

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