颠茄属植物叶绿体基因组编码序列模式及其与茄科其他相关植物基因组的比较分析。

Q2 Agricultural and Biological Sciences
Satyabrata Sahoo, Ria Rakshit
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引用次数: 0

摘要

颠茄是一种有价值的药用植物,也是一种商业来源的莨菪烷生物碱,经常用于治疗实践。本研究采用生物信息学方法研究颠茄和其他茄属植物叶绿体基因组中密码子使用偏倚的编码序列模式和影响因素。叶绿体工程是现代生物技术的一个有发展前景的领域,叶绿体基因组的表征具有十分重要的意义。结果表明,烟草、番茄茄、辣椒、曼陀罗、枸杞、龙葵和龙葵的叶绿体基因组具有相似的密码子使用模式。在这些叶绿体基因组中,我们观察到弱密码子使用偏差。根据对应分析,这些叶绿体基因密码子偏倚的发生可能与自然选择、定向突变压力等因素有关。GC12与GC3S无显著相关。进一步的研究表明,自然选择主要塑造了颠茄和其他茄属植物基因组中密码子的使用,以提高翻译效率。通过对这些叶绿体基因组的回文序列和反向重复序列的分析,对这些叶绿体基因组的测序特性进行了研究,为今后药用植物的研究提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The pattern of coding sequences in the chloroplast genome of Atropa belladonna and a comparative analysis with other related genomes in the nightshade family.

The pattern of coding sequences in the chloroplast genome of Atropa belladonna and a comparative analysis with other related genomes in the nightshade family.

The pattern of coding sequences in the chloroplast genome of Atropa belladonna and a comparative analysis with other related genomes in the nightshade family.

The pattern of coding sequences in the chloroplast genome of Atropa belladonna and a comparative analysis with other related genomes in the nightshade family.

Atropa belladonna is a valuable medicinal plant and a commercial source of tropane alkaloids, which are frequently utilized in therapeutic practice. In this study, bioinformaticmethodologies were used to examine the pattern of coding sequences and the factors thatmight influence codon usage bias in the chloroplast genome of Atropa belladonna andother nightshade genomes. The chloroplast engineering being a promising field in modernbiotechnology, the characterization of chloroplast genome is very important. The resultsrevealed that the chloroplast genomes of Nicotiana tabacum, Solanum lycopersicum, Capsicum frutescens, Datura stramonium, Lyciumbarbarum, Solanum melongena, and Solanumtuberosum exhibited comparable codon usage patterns. In these chloroplast genomes, weobserved a weak codon usage bias. According to the correspondence analysis, the genesisof the codon use bias in these chloroplast genes might be explained by natural selection,directed mutational pressure, and other factors. GC12 and GC3S were shown to have nomeaningful relationship. Further research revealed that natural selection primarily shapedthe codon usage in A. belladonna and other nightshade genomes for translational efficiency. The sequencing properties of these chloroplast genomes were also investigated by investing the occurrences of palindromes and inverted repeats, which would be useful forfuture research on medicinal plants.

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来源期刊
Genomics and Informatics
Genomics and Informatics Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
1.90
自引率
0.00%
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审稿时长
12 weeks
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