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首页> 外文期刊>BMC Genomics >Chloroplast genome sequence of the moss Tortula ruralis: gene content, polymorphism, and structural arrangement relative to other green plant chloroplast genomes
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Chloroplast genome sequence of the moss Tortula ruralis: gene content, polymorphism, and structural arrangement relative to other green plant chloroplast genomes

机译:青苔Tortula Ruralis的叶绿体基因组序列:相对于其他绿色植物叶绿体基因组的基因含量,多态性和结构安排

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Background Tortula ruralis, a widely distributed species in the moss family Pottiaceae, is increasingly used as a model organism for the study of desiccation tolerance and mechanisms of cellular repair. In this paper, we present the chloroplast genome sequence of T. ruralis, only the second published chloroplast genome for a moss, and the first for a vegetatively desiccation-tolerant plant. Results The Tortula chloroplast genome is ~123,500 bp, and differs in a number of ways from that of Physcomitrella patens, the first published moss chloroplast genome. For example, Tortula lacks the ~71 kb inversion found in the large single copy region of the Physcomitrella genome and other members of the Funariales. Also, the Tortula chloroplast genome lacks petN, a gene found in all known land plant plastid genomes. In addition, an unusual case of nucleotide polymorphism was discovered. Conclusions Although the chloroplast genome of Tortula ruralis differs from that of the only other sequenced moss, Physcomitrella patens, we have yet to determine the biological significance of the differences. The polymorphisms we have uncovered in the sequencing of the genome offer a rare possibility (for mosses) of the generation of DNA markers for fine-level phylogenetic studies, or to investigate individual variation within populations.
机译:背景技术农村苔藓植物(Tortula Ruralis)是一种在苔藓植物盆科中广泛分布的物种,被越来越多地用作研究干燥耐性和细胞修复机制的模型生物。在本文中,我们介绍了T. Ruralis的叶绿体基因组序列,仅是第二个已发表的苔藓叶绿体基因组序列,以及一个植物生长耐旱植物的叶绿体基因组序列。结果Tortula叶绿体基因组大约为123,500 bp,与Physcomitrella patens(最早出版的苔藓叶绿体基因组)有很多不同。例如,玉米粉圆饼缺少在小立碗藓基因组和the子属其他成员的大单拷贝区中发现的〜71 kb的倒位。而且,玉米粉圆茎叶绿体基因组缺少petN,petN是在所有已知的陆地植物质体基因组中发现的基因。另外,发现了核苷酸多态性的异常情况。结论尽管农村的Tortula的叶绿体基因组与唯一的其他测序苔藓Physcomitrella patens的叶绿体基因组不同,但我们尚未确定这些差异的生物学意义。我们在基因组测序中发现的多态性为精细水平的系统发育研究或研究种群内的个体变异提供了极少的可能性(对于苔藓而言)。

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