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光果甘草线粒体基因组的从头组装及由重复序列引起的两种同源重组构型的鉴定。

De novo assembly of the mitochondrial genome of Glycyrrhiza glabra and identification of two types of homologous recombination configurations caused by repeat sequences.

作者信息

Zhou Guowang, Qin Meiling, Liu Xiuli, Qi Yonghui, Ou Xiaobin, Tang Min

机构信息

College of Agronomy & Resources and Environment, Tianjin Agricultural University, Tianjin, 300384, China.

Gansu Key Laboratory of Protection and Utlization for Biological Resources and Ecological Restoration in Longdong, Longdong University, Qingyang, Gansu, 745000, China.

出版信息

BMC Genomics. 2025 Jan 6;26(1):13. doi: 10.1186/s12864-024-11190-5.

Abstract

BACKGROUND

Glycyrrhiza glabra, which is widely used in medicine and therapy, is known as the 'king of traditional Chinese medicine'. In this study, we successfully assembled and annotated the mitochondrial and chloroplast genomes of G. glabra via high-throughput sequencing technology, combining the advantages of short-read (Illumina) and long-read (Oxford Nanopore) sequencing.

RESULTS

We revealed the ring structure of the mitochondrial genome, which spans 421,293 bp with 45.1% GC content and 56 annotated genes. Notably, we identified 514 repetitive sequences, including 123 Simple sequence repeats (SRs), 3 Tndem sequence repeats (TSRs), and 388 Dispersed sequence repeats (DSRs). We identified 79 out of the 388 DSRs as potentially involved in homologous recombination. We identified five forward repeats and four palindromic repeats that facilitate homologous recombination and induce alterations in the mitochondrial genome structure. We corroborated this finding via polymerase chain reaction (PCR). Furthermore, we identified chloroplast-derived sequence fragments within the mitochondrial genome, offering novel insights into the evolutionary history of plant mitochondrial genomes. We predicted 460 potential RNA editing sites, primarily involving cytosine-to-uracil transitions. This study reveals the complexity of repetitive sequence-mediated homologous recombination in the mitochondrial genome of G. glabra and provides new insights into its structure, function, and evolution.

CONCLUSIONS

These findings have important implications for conservation biology, population genetics, and evolutionary studies, underscoring the role of repetitive sequences in genome dynamics and highlighting the need for further research on mitochondrial genome evolution and function in plants.

摘要

背景

光果甘草在医学和治疗中广泛应用,被誉为“中药之王”。在本研究中,我们通过高通量测序技术,结合短读长(Illumina)和长读长(Oxford Nanopore)测序的优势,成功组装并注释了光果甘草的线粒体和叶绿体基因组。

结果

我们揭示了线粒体基因组的环状结构,其跨度为421,293 bp,GC含量为45.1%,有56个注释基因。值得注意的是,我们鉴定出514个重复序列,包括123个简单序列重复(SRs)、3个串联序列重复(TSRs)和388个分散序列重复(DSRs)。我们在388个DSRs中鉴定出79个可能参与同源重组。我们鉴定出五个正向重复和四个回文重复,它们促进同源重组并诱导线粒体基因组结构的改变。我们通过聚合酶链反应(PCR)证实了这一发现。此外,我们在线粒体基因组中鉴定出叶绿体衍生的序列片段,为植物线粒体基因组的进化历史提供了新的见解。我们预测了460个潜在的RNA编辑位点,主要涉及胞嘧啶到尿嘧啶的转变。本研究揭示了光果甘草线粒体基因组中重复序列介导的同源重组的复杂性,并为其结构、功能和进化提供了新的见解。

结论

这些发现对保护生物学、群体遗传学和进化研究具有重要意义,强调了重复序列在基因组动态中的作用,并突出了对植物线粒体基因组进化和功能进行进一步研究的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b62/11705715/cd658281a72f/12864_2024_11190_Fig1_HTML.jpg

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