利用基于 matK、rpoC1、rbcL 和 nrDNA 标记的系统发育分析对鹅掌楸属植物进行 DNA 条形编码的硅学方法

Q4 Agricultural and Biological Sciences Journal of Tropical Biodiversity and Biotechnology Pub Date : 2023-10-02 DOI:10.22146/jtbb.73130
Apriliana Pratiwi, Anggiresti Kinasih, Maura Indria Meidianing, F. Y. Kurniawan, E. Semiarti
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引用次数: 0

摘要

硅学生物学被认为是开展各种研究(如生物多样性分类保护)的有效而适用的方法。对兰花物种进行系统发育分析时使用的硅学分类方法可以提供遗传多样性和进化关系方面的数据。在分类学研究中,DNA 条形码是一种可用于评估基因位点特定目标的特殊方法。本研究使用 matK、rbcL、rpoC1 和 nrDNA 标记来确定具体的目标位点基因,通过系统发生学分析的方法确定蟠龙属 DNA 条形码的目标位点基因。所有标记序列均从 NCBI 网站上收集,并使用多种软件和方法进行分析,其中 Clustal X 用于样本序列比对,MEGA 11 用于系统发生树的构建和分析。结果表明,Coelogyne 推荐的基因位点是 nrDNA 基因位点。系统进化分析表明,利用 nrDNA 基因位点能够将 17 个蟠桃属物种与两个外群物种(即蕙兰和香草)区分开来,然后再利用核酮糖-1、5-二磷酸羧化酶/氧化酶大亚基(rbcL),而其他基因位点,即成熟酶 K(matK)和聚合酶 beta'亚基(rpoC1),则提供了一棵可视的系统发生树,在这棵树中,两个外群物种与蟠桃属物种同属一个支系。因此,本研究的结果可作为支持鹅掌楸育种和保护计划的参考。
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In Silico Approach for DNA Barcoding using Phylogenetic Analysis of Coelogyne spp. based on the matK, rpoC1, rbcL and nrDNA Markers
In silico biology is considered as an effective and applicable approach to initiate various research, such as biodiversity taxonomical conservation. Phylogenetic analysis using in silico taxonomy method for orchid species can provide data on genetic diversity and evolutionary relationships. One particular method that can be used to evaluate specific targets of gene loci in the taxonomic study is DNA barcoding. This research was conducted to determine the specific target locus gene using matK, rbcL, rpoC1, and nrDNA markers for DNA barcoding of the Coelogyne genus with in silico approach using phylogenetic analysis. All marker sequences were collected from the NCBI website and analysed using several softwares and methods, namely Clustal X for sample sequence alignment and MEGA 11 for phylogenetic tree construction and analysis. The results showed that the gene locus in Coelogyne recommended was the nrDNA gene locus. Phylogenetic analysis revealed that the use of the nrDNA gene locus was able to separate 17 Coelogyne species with two outgroup species, namely Cymbidium and Vanilla, then followed with ribulose-1,5-bisphosphate carboxylase/oxygenase large subunit (rbcL) while the other gene loci, namely maturase K (matK) and polymerase beta' subunit (rpoC1) provided a visual phylogenetic tree in which the two outgroup species entered into the same clade as the Coelogyne species. Thus, the results of this study can be used as a reference to support the Coelogyne breeding and conservation program.
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来源期刊
Journal of Tropical Biodiversity and Biotechnology
Journal of Tropical Biodiversity and Biotechnology Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
1.10
自引率
0.00%
发文量
40
审稿时长
12 weeks
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