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首页> 外文期刊>Frontiers in Marine Science >Organellar genome variation and genetic diversity of Chinese Pyropia yezoensis
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Organellar genome variation and genetic diversity of Chinese Pyropia yezoensis

机译:中国斑竹拟南芥的细胞器基因组变异和遗传多样性

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摘要

Pyropia yezoensis is an economically important marine algae crop that, due to its large economic value, has generated considerable interest in the development of breeding programs to improve its production rates. Here, we sequenced the complete mitochondrial and plastid genomes of the P. yezoensis strain RZ-58 using PacBio RS II sequencing technology. The mitochondrial genome (mtDNA) is 41,692 bp in size with an overall GC content of 32.72%, and the plastid genome (ptDNA) is 191,977 bp with a GC content of 33.09%. The complete mitochondrial and plastid genomes of 53 individuals from 3 geographical populations were then resequenced using NGS technology to characterize their molecular features. When compared, the plastid genomes displayed similar genomic lengths and conserved gene synteny. However, mitochondrial genomes were quite different in length, which was mainly due to the different patterns of intron distributions. Single nucleotide polymorphisms (SNPs) were examined to evaluate the genetic diversity of different geographical populations. High diversity was observed across the whole collection with moderate genetic variation between populations. In total, there were 463 and 366 high-quality SNPs detected in the mtDNA and ptDNA, respectively. The Qingdao wild group has the highest diversity with a mean pi of 0.00348 for mtDNA and 0.000388 for ptDNA, while the Yantai group had the lowest diversity. Cluster based grouping and principal component analysis revealed three subpopulations in the whole collections. However, a genetic break of organellar DNA was observed in populations at sympatric localities, which was inferred as the result of historic biogeographic events. Our findings provide important information to guide the marker-assisted selective breeding of Chinese P. yezoensis in the future.
机译:yezoensis是一种经济上重要的海藻作物,由于其巨大的经济价值,对开发育种计划以提高其生产率产生了极大的兴趣。在这里,我们使用PacBio RS II测序技术对yezoensis菌株RZ-58的完整线粒体和质体基因组进行了测序。线粒体基因组(mtDNA)大小为41,692 bp,总GC含量为32.72%,质体基因组(ptDNA)为191,977 bp,GC含量为33.09%。然后使用NGS技术对来自3个地理种群的53个个体的完整线粒体和质体基因组进行重新测序,以表征其分子特征。当比较时,质体基因组显示相似的基因组长度和保守的基因连续性。然而,线粒体基因组的长度差异很大,这主要是由于内含子分布模式的不同。检查了单核苷酸多态性(SNP),以评估不同地理种群的遗传多样性。在整个收集物中观察到高度多样性,种群之间的遗传变异适中。总共在mtDNA和ptDNA中检测到463和366个高质量SNP。青岛野生群的多样性最高,mtDNA的平均pi为0.00348,ptDNA的平均pi为0.000388,而烟台群的pi最低。基于聚类的分组和主成分分析揭示了整个集合中的三个子群体。但是,在同胞地方的人群中观察到了细胞器DNA的遗传断裂,这是历史生物地理事件的结果。我们的研究结果为指导今后中国斑节对虾的标记辅助选育提供重要信息。

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