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首页> 外文期刊>G3: Genes, Genomes, Genetics >Plastome Sequence Determination and Comparative Analysis for Members of the Lolium-Festuca Grass Species Complex
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Plastome Sequence Determination and Comparative Analysis for Members of the Lolium-Festuca Grass Species Complex

机译:黑麦草-景天草种复合体成员的塑性组序列测定和比较分析

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摘要

Chloroplast genome sequences are of broad significance in plant biology, due to frequent use in molecular phylogenetics, comparative genomics, population genetics, and genetic modification studies. The present study used a second-generation sequencing approach to determine and assemble the plastid genomes (plastomes) of four representatives from the agriculturally important Lolium-Festuca species complex of pasture grasses ( Lolium multiflorum , Festuca pratensis , Festuca altissima , and Festuca ovina ). Total cellular DNA was extracted from either roots or leaves, was sequenced, and the output was filtered for plastome-related reads. A comparison between sources revealed fewer plastome-related reads from root-derived template but an increase in incidental bacterium-derived sequences. Plastome assembly and annotation indicated high levels of sequence identity and a conserved organization and gene content between species. However, frequent deletions within the F. ovina plastome appeared to contribute to a smaller plastid genome size. Comparative analysis with complete plastome sequences from other members of the Poaceae confirmed conservation of most grass-specific features. Detailed analysis of the rbcL – psaI intergenic region, however, revealed a “hot-spot” of variation characterized by independent deletion events. The evolutionary implications of this observation are discussed. The complete plastome sequences are anticipated to provide the basis for potential organelle-specific genetic modification of pasture grasses.
机译:叶绿体基因组序列在分子生物学,比较基因组学,种群遗传学和遗传修饰研究中得到广泛应用,在植物生物学中具有广泛的意义。本研究使用第二代测序方法来确定和组装来自草地上农业上重要的黑麦草-Festuca物种复合体(多花黑麦草,Festuca pratensis,Festuca altissima和Festuca ovina)的四个代表的质体基因组(质体组)。从根或叶中提取总细胞DNA,进行测序,并过滤输出物以进行质体组相关读取。来源之间的比较显示,根源模板的质体组相关读物较少,但细菌附带序列的增加。质体组装和注释表明物种之间的高度序列同一性和保守的组织和基因含量。但是,卵形卵母质体组内的频繁缺失似乎有助于较小的质体基因组大小。用禾本科其他成员的完整质体序列进行的比较分析证实了大多数草特有特征的保存。然而,对rbcL – psaI基因间区域的详细分析揭示了一个以独立缺失事件为特征的变异“热点”。讨论了这种观察的进化意义。完整的塑性组序列有望为牧场草的潜在细胞器特异性遗传修饰提供基础。

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