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钩藤的线粒体基因组:基因组结构、特征及系统发育关系

Mitogenome of Uncaria rhynchophylla: genome structure, characterization, and phylogenetic relationships.

作者信息

Gui Lingjian, Zhang Zhanjiang, Song Lisha, Feng Changcun, Yu Haixia, Pan Limei, Fu Jine, Liang Wenjing, Huang Qiulan, El-Sappah Ahmed H, Shi Lijun, Wan Lingyun, Wei Shugen

机构信息

Guangxi Key Laboratory of High-Quality Formation and Utilization of Dao-di Herbs, Guangxi Botanical Garden of Medicinal Plants, Nanning, 530023, China.

Guangxi Traditional Chinese Medicine Breeding Technology Innovation Center, Guangxi Botanical Garden of Medicinal Plants, Nanning, 530023, China.

出版信息

BMC Genomics. 2025 Feb 26;26(1):199. doi: 10.1186/s12864-025-11372-9.

Abstract

BACKGROUND

Uncaria rhynchophylla is listed in the Chinese pharmacopoeia as one of the five botanical sources of the traditional medicine Gou-Teng, which has been utilized for the treatment of mental and cardiovascular disorders. This particular species is well-known in China for its hook-like structures originating from the leaf axils. Despite available reports on its chloroplast genome, there persists a notable lack of understanding concerning the structural variations and evolution of its mitochondrial genome. This knowledge gap hinders our ability to fully comprehend its genetic attributes.

RESULTS

We successfully assembled the mitochondrial genome of U. rhynchophylla by seamlessly integrating Illumina short reads with Nanopore long reads, resulting in a non-circular genome comprising 1 circular contig and 2 linear contigs. The total length of this genome is 421,660 bp, encompassing 36 PCGs. The identification of 4 distinct pairs of repeats has unveiled their pivotal role in repeat-mediated recombination. Of the 28 homologous fragments derived from chloroplasts, the majority were observed to have been transferred from the inverted repeat (IR) regions of the chloroplast genome to the mitochondrial genome. The mitochondrial DNA provides a distinctive resolution for the positioning of several species within the Gentianales phylogenetic framework, which remains unresolved by chloroplast DNA.

CONCLUSION

By utilizing a newly assembled, high-quality mitochondrial genome of U. rhynchophylla, we have elucidated its intricate genomic structure, distinctive sequence characteristics, and potential for phylogenetic analysis. These findings mark significant strides in advancing our comprehension of the genetics of Uncaria.

摘要

背景

钩藤被列入《中国药典》,是传统药物钩藤的五种植物来源之一,已被用于治疗精神和心血管疾病。该物种在中国因其叶腋处的钩状结构而闻名。尽管已有关于其叶绿体基因组的报道,但对于其线粒体基因组的结构变异和进化仍缺乏显著的了解。这一知识空白阻碍了我们全面理解其遗传特性的能力。

结果

我们通过将Illumina短读长与Nanopore长读长无缝整合,成功组装了钩藤的线粒体基因组,得到了一个由1个环状重叠群和2个线性重叠群组成的非环状基因组。该基因组全长421,660 bp,包含36个编码基因。鉴定出4对不同的重复序列,揭示了它们在重复介导的重组中的关键作用。在28个源自叶绿体的同源片段中,大多数被观察到是从叶绿体基因组的反向重复(IR)区域转移到线粒体基因组中的。线粒体DNA为龙胆目系统发育框架内几个物种的定位提供了独特的分辨率,而叶绿体DNA对此仍未解决。

结论

通过利用新组装的高质量钩藤线粒体基因组,我们阐明了其复杂的基因组结构、独特的序列特征以及系统发育分析的潜力。这些发现标志着在推进我们对钩藤遗传学的理解方面取得了重大进展。

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