Jongsun Park, Juhyeon Min, Yongsung Kim, Youngjae Chung
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引用次数: 24
Abstract
Chenopodium album sensu stricto belonging to C. album aggregate is an annual cosmopolitan weed displaying the diversity of morphologies. We completed the six chloroplast genomes of C. album s. str. collected in Korea to understand the relationship between the diversity of chloroplast genomes and their morphological variations. All six C. album chloroplast genomes have a typical quadripartite structure with length ranging from 151,906 bp to 152,199 bp, similar to the previously sequenced C. album chloroplast genome (NC_034950). In total, 56 single nucleotide polymorphisms (SNPs) and 26 insertion and deletion (INDEL) regions (308 bp in total) were identified from the six chloroplast genomes, presenting a low level of intraspecific variations in comparison to the other angiosperm species. 376 normal simple sequence repeats were identified in all seven C. album chloroplast genomes. The phylogenetic analysis based on all available complete Amaranthaceae chloroplast genomes presents phylogenetic positions of six C. album samples as well as correlation with one of C. album morphological features. Our results provide the way to investigate intraspecific features of C. album chloroplast genomes and also the insights of understanding various intraspecific characteristics including morphological features.
麻藜属麻藜总属,是一种形态多样的一年生世界性杂草。本研究完成了在韩国收集的6个C. album s. str.叶绿体基因组,以了解叶绿体基因组多样性与其形态变异之间的关系。6个C. album叶绿体基因组均具有典型的四分体结构,长度在151,906 ~ 152,199 bp之间,与之前测序的C. album叶绿体基因组(NC_034950)相似。从6个叶绿体基因组中共鉴定出56个单核苷酸多态性(snp)和26个插入和缺失(INDEL)区(总长度为308 bp),与其他被子植物物种相比,种内变异水平较低。结果表明,在7个克隆体基因组中共鉴定出376个正常简单重复序列。利用所有苋科植物叶绿体基因组进行系统发育分析,确定了6个苋属植物的系统发育位置,并与苋属植物的一个形态特征进行了相关性分析。我们的研究结果提供了一种新的研究方法,可以进一步深入地了解紫果叶绿体基因组的种内特征,以及包括形态特征在内的多种种内特征。
期刊介绍:
International Journal of Genomics is a peer-reviewed, Open Access journal that publishes research articles as well as review articles in all areas of genome-scale analysis. Topics covered by the journal include, but are not limited to: bioinformatics, clinical genomics, disease genomics, epigenomics, evolutionary genomics, functional genomics, genome engineering, and synthetic genomics.