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利用PacBio HiFi测序对番木瓜(Solanum muricatum)完整线粒体基因组进行从头组装:对结构、系统发育意义及RNA编辑的见解

De novo assembly of the complete mitochondrial genome of pepino (Solanum muricatum) using PacBio HiFi sequencing: insights into structure, phylogenetic implications, and RNA editing.

作者信息

Li Ziwei, Liu Jiaxun, Liang Mingtai, Guo Yanbing, Chen Xia, Wu Hongzhi, Jin Shoulin

机构信息

Yunnan Agricultural University, Kunming, Yunnan, 650201, China.

Horticultural Research Institute Yunnan Academy of Agricultural Sciences, Kunming, Yunnan, 650205, China.

出版信息

BMC Plant Biol. 2024 May 4;24(1):361. doi: 10.1186/s12870-024-04978-w.

Abstract

BACKGROUND

Solanum muricatum is an emerging horticultural fruit crop with rich nutritional and antioxidant properties. Although the chromosome-scale genome of this species has been sequenced, its mitochondrial genome sequence has not been reported to date.

RESULTS

PacBio HiFi sequencing was used to assemble the circular mitogenome of S. muricatum, which was 433,466 bp in length. In total, 38 protein-coding, 19 tRNA, and 3 rRNA genes were annotated. The reticulate mitochondrial conformations with multiple junctions were verified by polymerase chain reaction, and codon usage, sequence repeats, and gene migration from chloroplast to mitochondrial genome were determined. A collinearity analysis of eight Solanum mitogenomes revealed high structural variability. Overall, 585 RNA editing sites in protein coding genes were identified based on RNA-seq data. Among them, mttB was the most frequently edited (52 times), followed by ccmB (46 times). A phylogenetic analysis based on the S. muricatum mitogenome and those of 39 other taxa (including 25 Solanaceae species) revealed the evolutionary and taxonomic status of S. muricatum.

CONCLUSIONS

We provide the first report of the assembled and annotated S. muricatum mitogenome. This information will help to lay the groundwork for future research on the evolutionary biology of Solanaceae species. Furthermore, the results will assist the development of molecular breeding strategies for S. muricatum based on the most beneficial agronomic traits of this species.

摘要

背景

番荔枝茄是一种新兴的园艺水果作物,具有丰富的营养和抗氧化特性。尽管该物种的染色体级基因组已被测序,但其线粒体基因组序列至今尚未见报道。

结果

利用PacBio HiFi测序技术组装了番荔枝茄的环状线粒体基因组,其长度为433,466 bp。共注释了38个蛋白质编码基因、19个tRNA基因和3个rRNA基因。通过聚合酶链反应验证了具有多个连接点的网状线粒体构象,并确定了密码子使用情况、序列重复以及从叶绿体到线粒体基因组的基因迁移。对八个茄属线粒体基因组的共线性分析揭示了高度的结构变异性。总体而言,基于RNA-seq数据在蛋白质编码基因中鉴定出585个RNA编辑位点。其中,mttB编辑频率最高(52次),其次是ccmB(46次)。基于番荔枝茄线粒体基因组和其他39个分类单元(包括25个茄科物种)的系统发育分析揭示了番荔枝茄的进化和分类地位。

结论

我们首次报道了组装和注释的番荔枝茄线粒体基因组。这些信息将有助于为茄科物种进化生物学的未来研究奠定基础。此外,研究结果将有助于基于该物种最有益的农艺性状制定番荔枝茄的分子育种策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3d2/11069145/884df90147d8/12870_2024_4978_Fig1_HTML.jpg

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