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鱼类、鸟类和哺乳动物线粒体ND1基因的密码子使用偏好性及系统发育分析

Codon usage bias and phylogenetic analysis of mitochondrial ND1 gene in pisces, aves, and mammals.

作者信息

Uddin Arif, Choudhury Monisha Nath, Chakraborty Supriyo

机构信息

a Department of Zoology , Moinul Hoque Choudhury Memorial Science College , Algapur , India.

b Department of Biotechnology , Assam University , Silchar , India.

出版信息

Mitochondrial DNA A DNA Mapp Seq Anal. 2018 Jan;29(1):36-48. doi: 10.1080/24701394.2016.1233534. Epub 2016 Oct 24.

Abstract

The mitochondrially encoded NADH:ubiquinone oxidoreductase core subunit 1 (MT-ND1) gene is a subunit of the respiratory chain complex I and involved in the first step of the electron transport chain of oxidative phosphorylation (OXPHOS). To understand the pattern of compositional properties, codon usage and expression level of mitochondrial ND1 genes in pisces, aves, and mammals, we used bioinformatic approaches as no work was reported earlier. In this study, a perl script was used for calculating nucleotide contents and different codon usage bias parameters. The codon usage bias of MT-ND1 was low but the expression level was high as revealed from high ENC and CAI value. Correspondence analysis (COA) suggests that the pattern of codon usage for MT-ND1 gene is not same across species and that compositional constraint played an important role in codon usage pattern of this gene among pisces, aves, and mammals. From the regression equation of GC12 on GC3, it can be inferred that the natural selection might have played a dominant role while mutation pressure played a minor role in influencing the codon usage patterns. Further, ND1 gene has a discrepancy with cytochrome B (CYB) gene in preference of codons as evident from COA. The codon usage bias was low. It is influenced by nucleotide composition, natural selection, mutation pressure, length (number) of amino acids, and relative dinucleotide composition. This study helps in understanding the molecular biology, genetics, evolution of MT-ND1 gene, and also for designing a synthetic gene.

摘要

线粒体编码的NADH:泛醌氧化还原酶核心亚基1(MT-ND1)基因是呼吸链复合体I的一个亚基,参与氧化磷酸化(OXPHOS)电子传递链的第一步。由于此前没有相关研究报道,为了解鱼类、鸟类和哺乳动物中线粒体ND1基因的组成特性模式、密码子使用情况和表达水平,我们采用了生物信息学方法。在本研究中,使用了一个Perl脚本计算核苷酸含量和不同的密码子使用偏好参数。MT-ND1的密码子使用偏好较低,但从高ENC和CAI值可以看出其表达水平较高。对应分析(COA)表明,MT-ND1基因的密码子使用模式在不同物种间并不相同,并且组成性限制在该基因在鱼类、鸟类和哺乳动物中的密码子使用模式中发挥了重要作用。从GC12对GC3的回归方程可以推断,自然选择可能在影响密码子使用模式方面起主导作用,而突变压力起次要作用。此外,从COA可以明显看出,ND1基因在密码子偏好上与细胞色素B(CYB)基因存在差异。密码子使用偏好较低。它受到核苷酸组成、自然选择、突变压力、氨基酸长度(数量)和相对二核苷酸组成的影响。本研究有助于理解MT-ND1基因的分子生物学、遗传学、进化,也有助于设计合成基因。

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