Generating Long-Read Sequences of Balsa (Ochroma pyramidale (Cav. ex Lam.) Urb.) Using Minion Oxford Nanopore Technology and Utilization for Phylogenetic Study

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Abstract

Balsa ( Ochroma pyramidale ) is fast-growing forest plant species introduced to Indonesia with limited genetic information. Genetic information can be obtained through molecular assessment which is now feasible due to sequencing technology development. This is supported by the third-generation sequencer technology, which has been developed using long-read sequencing technology. MinION Oxford Nanopore Technology is one of the long-read sequence-based sequencers with a real-time process and portable. This study aims to generate genomic data and analyze the phylogenetic relationship of balsa ( O. pyramidale ) based on long-read sequences with MinION Oxford Nanopore Technologies. Balsa long-read sequencing generated a partial chloroplast genome (cpDNA) sequence of 155,430 bp, which can be used for further DNA barcode-based phylogenetic analysis from the chloroplast genome. Phylogenetic analysis showed that the balsa species ( O. pyramidale ) was genetically grouped in one clade with other O. pyramidale species in phylogeny analysis based on rbcL , matK , and a combination of rbcL and matK genes indicated that those genes were a suitable marker for phylogenetic analysis in balsa species ( O. pyramidale ).
Balsa (Ochroma pyramidale, Cav.)长读序列的生成。前任Lam)。市区)。纳米孔技术及其在系统发育研究中的应用
Balsa (Ochroma pyramidale)是引进印度尼西亚的速生森林植物,遗传信息有限。通过分子评价获得遗传信息,随着测序技术的发展已成为可能。这得到了第三代测序仪技术的支持,该技术是使用长读测序技术开发的。MinION牛津纳米孔技术是一种基于长读序列的测序仪,具有实时过程和便携性。本研究旨在利用MinION Oxford Nanopore Technologies基于长读序列生成balsa (O. pyramidale)的基因组数据并分析其系统发育关系。Balsa长读测序获得了155,430 bp的部分叶绿体基因组(cpDNA)序列,该序列可用于叶绿体基因组的DNA条形码系统发育分析。系统发育分析表明,基于rbcL和matK基因的系统发育分析表明,圆木种(O. pyramidale)与其他圆木种(O. pyramidale)归为一个进化支,rbcL和matK基因的组合表明这两个基因是圆木种(O. pyramidale)系统发育分析的合适标记。
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