TIPPo: A User-Friendly Tool for De Novo Assembly of Organellar Genomes with High-Fidelity Data.

IF 5.3 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular biology and evolution Pub Date : 2025-01-06 DOI:10.1093/molbev/msae247
Wenfei Xian, Ilja Bezrukov, Zhigui Bao, Sebastian Vorbrugg, Anupam Gautam, Detlef Weigel
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Abstract

Plant cells have two major organelles with their own genomes: chloroplasts and mitochondria. While chloroplast genomes tend to be structurally conserved, the mitochondrial genomes of plants, which are much larger than those of animals, are characterized by complex structural variation. We introduce TIPPo, a user-friendly, reference-free assembly tool that uses PacBio high-fidelity long-read data and that does not rely on genomes from related species or nuclear genome information for the assembly of organellar genomes. TIPPo employs a deep learning model for initial read classification and leverages k-mer counting for further refinement, significantly reducing the impact of nuclear insertions of organellar DNA on the assembly process. We used TIPPo to completely assemble a set of 54 complete chloroplast genomes. No other tool was able to completely assemble this set. TIPPo is comparable with PMAT in assembling mitochondrial genomes from most species but does achieve even higher completeness for several species. We also used the assembled organelle genomes to identify instances of nuclear plastid DNA (NUPTs) and nuclear mitochondrial DNA (NUMTs) insertions. The cumulative length of NUPTs/NUMTs positively correlates with the size of the nuclear genome, suggesting that insertions occur stochastically. NUPTs/NUMTs show predominantly C:G to T:A changes, with the mutated cytosines typically found in CG and CHG contexts, suggesting that degradation of NUPT and NUMT sequences is driven by the known elevated mutation rate of methylated cytosines. Small interfering RNA loci are enriched in NUPTs and NUMTs, consistent with the RdDM pathway mediating DNA methylation in these sequences.

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TIPPo:一个用户友好的工具从头组装与高保真数据的有机基因组。
植物细胞有两个主要的细胞器,它们有自己的基因组:叶绿体和线粒体。叶绿体基因组在结构上趋于保守,而植物线粒体基因组结构复杂,比动物线粒体基因组大得多。我们介绍了TIPPo,一个用户友好的,无参考的组装工具,使用PacBio高保真长读数据,不依赖于相关物种的基因组或核基因组信息来组装细胞器基因组。TIPPo采用深度学习模型进行初始读取分类,并利用k-mer计数进行进一步优化,显著降低了细胞器DNA的核插入对组装过程的影响。我们使用TIPPo完全组装了一套54个完整的叶绿体基因组。没有其他工具能够完全组装这个集合。TIPPo在组装大多数物种的线粒体基因组方面与PMAT相当,但在某些物种中确实实现了更高的完整性。我们还使用组装的细胞器基因组来鉴定核质体DNA (NUPTs)和核线粒体DNA (NUMTs)插入的实例。nupt / numt的累积长度与核基因组的大小正相关,表明插入是随机发生的。NUPT /NUMT主要表现为C:G到T:A的变化,突变的胞嘧啶通常在CG和CHG环境中发现,这表明NUPT和NUMT序列的降解是由已知的甲基化胞嘧啶突变率升高驱动的。小干扰RNA位点在nupt和numt中富集,与RdDM通路介导这些序列的DNA甲基化一致。
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来源期刊
Molecular biology and evolution
Molecular biology and evolution 生物-进化生物学
CiteScore
19.70
自引率
3.70%
发文量
257
审稿时长
1 months
期刊介绍: Molecular Biology and Evolution Journal Overview: Publishes research at the interface of molecular (including genomics) and evolutionary biology Considers manuscripts containing patterns, processes, and predictions at all levels of organization: population, taxonomic, functional, and phenotypic Interested in fundamental discoveries, new and improved methods, resources, technologies, and theories advancing evolutionary research Publishes balanced reviews of recent developments in genome evolution and forward-looking perspectives suggesting future directions in molecular evolution applications.
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