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Farsetia hamiltonii Royle 叶绿体基因组、系统发育分析及与芸薹族 C 分支其他成员的比较研究。

The chloroplast genome of Farsetia hamiltonii Royle, phylogenetic analysis, and comparative study with other members of Clade C of Brassicaceae.

机构信息

Department of Botany, The Islamia University, Bahawalpur, Pakistan.

Jamil-ur-Rahman Center for Genome Research, Dr. Panjwani Center for Molecular Medicine and Drug Research, International Center for Chemical and Biological Sciences University of Karachi, Karachi, 75270, Pakistan.

出版信息

BMC Plant Biol. 2022 Aug 2;22(1):384. doi: 10.1186/s12870-022-03750-2.

Abstract

BACKGROUND

Farsetia hamiltonii Royle is a medicinally important annual plant from the Cholistan desert that belongs to the tribe Anastaticeae and clade C of the Brassicaceae family. We provide the entire chloroplast sequence of F.hamiltonii, obtained using the Illumina HiSeq2500 and paired-end sequencing. We compared F. hamiltonii to nine other clade C species, including Farsetia occidentalis, Lobularia libyca, Notoceras bicorne, Parolinia ornata, Morettia canescens, Cochlearia borzaeana, Megacarpaea polyandra, Biscutella laevigata, and Iberis amara. We conducted phylogenetic research on the 22 Brassicaceae species, which included members from 17 tribes and six clades.

RESULTS

The chloroplast genome sequence of F.hamiltonii of 154,802 bp sizes with 36.30% GC content and have a typical structure comprised of a Large Single Copy (LSC) of 83,906 bp, a Small Single Copy (SSC) of 17,988 bp, and two copies of Inverted Repeats (IRs) of 26,454 bp. The genomes of F. hamiltonii and F. occidentalis show shared amino acid frequencies and codon use, RNA editing sites, simple sequence repeats, and oligonucleotide repeats. The maximum likelihood tree revealed Farsetia as a monophyletic genus, closely linked to Morettia, with a bootstrap score of 100. The rate of transversion substitutions (Tv) was higher than the rate of transition substitutions (Ts), resulting in Ts/Tv less than one in all comparisons with F. hamiltonii, indicating that the species are closely related. The rate of synonymous substitutions (Ks) was greater than non-synonymous substitutions (Ka) in all comparisons with F. hamiltonii, with a Ka/Ks ratio smaller than one, indicating that genes underwent purifying selection. Low nucleotide diversity values range from 0.00085 to 0.08516, and IR regions comprise comparable genes on junctions with minimal change, supporting the conserved status of the selected chloroplast genomes of the clade C of the Brassicaceae family. We identified ten polymorphic regions, including rps8-rpl14, rps15-ycf1, ndhG-ndhI, psbK-psbI, ccsA-ndhD, rpl36-rps8, petA-psbJ, ndhF-rpl32, psaJ-rpl3, and ycf1 that might be exploited to construct genuine and inexpensive to solve taxonomic discrepancy and understand phylogenetic relationship amongst Brassicaceae species.

CONCLUSION

The entire chloroplast sequencing of F. hamiltonii sheds light on the divergence of genic chloroplast sequences among members of the clade C. When other Farsetia species are sequenced in the future, the full F. hamiltonii chloroplast will be used as a source for comprehensive taxonomical investigations of the genus. The comparison of F. hamiltonii and other clade C species adds new information to the phylogenetic data and evolutionary processes of the clade. The results of this study will also provide further molecular uses of clade C chloroplasts for possible plant genetic modifications and will help recognise more Brassicaceae family species.

摘要

背景

Farsetia hamiltonii Royle 是来自 Cholistan 沙漠的一种药用重要的一年生植物,属于 Anastaticeae 族和 Brassicaceae 科 C 分支。我们提供了 F.hamiltonii 的完整叶绿体序列,使用 Illumina HiSeq2500 和配对末端测序获得。我们将 F. hamiltonii 与包括 Farsetia occidentalis、Lobularia libyca、Notoceras bicorne、Parolinia ornata、Morettia canescens、Cochlearia borzaeana、Megacarpaea polyandra、Biscutella laevigata 和 Iberis amara 在内的其他九个 C 分支物种进行了比较。我们对包括 17 个族和 6 个分支的 22 个 Brassicaceae 物种进行了系统发育研究。

结果

F.hamiltonii 的叶绿体基因组序列大小为 154802bp,GC 含量为 36.30%,具有典型的结构,包括 83906bp 的大单拷贝(LSC)、17988bp 的小单拷贝(SSC)和 26454bp 的两个反向重复(IRs)。F. hamiltonii 和 F. occidentalis 的基因组显示共享的氨基酸频率和密码子使用、RNA 编辑位点、简单序列重复和寡核苷酸重复。最大似然树显示 Farsetia 是一个单系属,与 Morettia 密切相关,支持分数为 100。转换取代率(Tv)高于颠换取代率(Ts),导致与 F. hamiltonii 的所有比较中 Ts/Tv 均小于 1,表明物种密切相关。所有与 F. hamiltonii 的比较中,同义取代率(Ks)均大于非同义取代率(Ka),Ka/Ks 比值均小于 1,表明基因经历了纯化选择。低核苷酸多样性值范围为 0.00085 至 0.08516,IR 区域包含在交界处具有最小变化的可比基因,支持 Brassicaceae 科 C 分支的所选叶绿体基因组的保守状态。我们鉴定了 10 个多态性区域,包括 rps8-rpl14、rps15-ycf1、ndhG-ndhI、psbK-psbI、ccsA-ndhD、rpl36-rps8、petA-psbJ、ndhF-rpl32、psaJ-rpl3 和 ycf1,这些区域可能被用来构建真正的和廉价的解决分类学差异并理解 Brassicaceae 物种的系统发育关系。

结论

F. hamiltonii 的完整叶绿体测序揭示了 C 分支成员之间基因叶绿体序列的分化。当未来对其他 Farsetia 物种进行测序时,将使用完整的 F. hamiltonii 叶绿体作为该属全面分类学研究的来源。F. hamiltonii 与其他 C 分支物种的比较为该分支的系统发育数据和进化过程提供了新信息。本研究的结果还将为可能的植物基因改造提供 C 分支叶绿体的进一步分子用途,并有助于识别更多的 Brassicaceae 科物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5611/9344719/59b7abcd3267/12870_2022_3750_Fig1_HTML.jpg

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