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完整质体和线粒体基因组为毒芹(伞形科)核-细胞器DNA整合提供的见解。

Insights into the nuclear-organelle DNA integration in Cicuta virosa (Apiaceae) provided by complete plastid and mitochondrial genomes.

作者信息

Park Seongjun, Hwang Yong, Kim Heesoo, Choi KyoungSu

机构信息

Institute of Natural Science, Yeungnam University, Gyeongsan, Gyeongbuk, 38541, South Korea.

Biological Specimen Conservation Division, Diversity Conservation Research Department, Nakdonggang National Institute of Biological Resources, Sangju, Gyeongbuk, 37242, South Korea.

出版信息

BMC Genomics. 2025 Feb 3;26(1):102. doi: 10.1186/s12864-025-11230-8.

Abstract

BACKGROUND

Gene transfer between the organelles and the nucleus plays a central role in shaping plant genome evolution. The identification and analysis of nuclear DNA of plastid (NUPTs) and mitochondrial (NUMTs) origins are important for exploring the extent of intracellular DNA transfer in genomes.

RESULTS

We report the complete plastid and mitochondrial genomes (plastome and mitogenome) of Cicuta virosa (Apiaceae) as well as a draft nuclear genome using high-fidelity (HiFi) PacBio sequencing technologies. The C. virosa plastome (154,449 bp) is highly conserved, with a quadripartite structure, whereas the mitogenome (406,112 bp) exhibits two chromosomes (352,718 bp and 53,394 bp). The mitochondrial-encoded genes (rpl2, rps14, rps19, and sdh3) were successfully transferred to the nuclear genome. Our findings revealed extensive DNA transfer from organelles to the nucleus, with 6,686 NUPTs and 6,237 NUMTs detected, covering nearly the entire plastome (99.93%) and a substantial portion of the mitogenome (77.04%). These transfers exhibit a range of sequence identities (80-100%), suggesting multiple transfer events over evolutionary timescales. Recent DNA transfer between organelles and the nucleus is more frequent in mitochondria than that in plastids.

CONCLUSIONS

This study contributes to the understanding of ongoing genome evolution in C. virosa and underscores the significance of the organelle-nuclear genome interplay in plant species. Our findings provide valuable insights into the evolutionary processes that shape organelle genomes in Apiaceae, with implications for broader plant genome evolution.

摘要

背景

细胞器与细胞核之间的基因转移在塑造植物基因组进化过程中起着核心作用。鉴定和分析质体来源的核DNA(NUPTs)和线粒体来源的核DNA(NUMTs)对于探索基因组中细胞内DNA转移的程度至关重要。

结果

我们使用高保真(HiFi)PacBio测序技术报告了毒芹(伞形科)完整的质体和线粒体基因组(质体基因组和线粒体基因组)以及核基因组草图。毒芹质体基因组(154,449 bp)高度保守,具有四分体结构,而线粒体基因组(406,112 bp)呈现两条染色体(352,718 bp和53,394 bp)。线粒体编码基因(rpl2、rps14、rps19和sdh3)成功转移到了核基因组中。我们的研究结果揭示了从细胞器到细胞核的广泛DNA转移,检测到6,686个NUPTs和6,237个NUMTs,几乎覆盖了整个质体基因组(99.93%)和线粒体基因组的很大一部分(77.04%)。这些转移表现出一系列的序列同一性(80 - 100%),表明在进化时间尺度上发生了多次转移事件。细胞器与细胞核之间最近的DNA转移在线粒体中比在质体中更频繁。

结论

本研究有助于理解毒芹正在进行的基因组进化,并强调了细胞器 - 核基因组相互作用在植物物种中的重要性。我们的研究结果为塑造伞形科细胞器基因组的进化过程提供了有价值的见解,对更广泛的植物基因组进化具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c649/11792336/3eea00be6e4e/12864_2025_11230_Fig1_HTML.jpg

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