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Analysis of transcriptome data reveals multifactor constraint on codon usage in Taenia multiceps

机译:转录组数据分析揭示了Ta虫多囊体密码子使用的多因素约束

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Background Codon usage bias (CUB) is an important evolutionary feature in genomes that has been widely observed in many organisms. However, the synonymous codon usage pattern in the genome of T. multiceps remains to be clarified. In this study, we analyzed the codon usage of T. multiceps based on the transcriptome data to reveal the constraint factors and to gain an improved understanding of the mechanisms that shape synonymous CUB. Results Analysis of a total of 8,620 annotated mRNA sequences from T. multiceps indicated only a weak codon bias, with mean GC and GC3 content values of 49.29% and 51.43%, respectively. Our analysis indicated that nucleotide composition, mutational pressure, natural selection, gene expression level, amino acids with grand average of hydropathicity (GRAVY) and aromaticity (Aromo) and the effective selection of amino-acids all contributed to the codon usage in T. multiceps . Among these factors, natural selection was implicated as the major factor affecting the codon usage variation in T. multiceps . The codon usage of ribosome genes was affected mainly by mutations, while the essential genes were affected mainly by selection. In addition, 21codons were identified as “optimal codons”. Overall, the optimal codons were GC-rich (GC:AU, 41:22), and ended with G or C (except CGU). Furthermore, different degrees of variation in codon usage were found between T. multiceps and Escherichia coli, yeast, Homo sapiens . However, little difference was found between T. multiceps and Taenia pisiformis . Conclusions In this study, the codon usage pattern of T. multiceps was analyzed systematically and factors affected CUB were also identified . This is the first study of codon biology in T. multiceps . Understanding the codon usage pattern in T. multiceps can be helpful for the discovery of new genes, molecular genetic engineering and evolutionary studies.
机译:背景密码子使用偏倚(CUB)是基因组中的重要进化特征,已在许多生物中广泛观察到。然而,多隐孢子虫的基因组中的同义密码子使用模式仍有待澄清。在这项研究中,我们基于转录组数据分析了多囊拟南芥的密码子用法,以揭示限制因素并加深对形成同义CUB的机制的了解。结果分析了来自多虫的8,620条带注释的mRNA序列,仅显示了弱密码子偏倚,平均GC和GC3含量分别为49.29%和51.43%。我们的分析表明,核苷酸组成,突变压力,自然选择,基因表达水平,具有亲水性(GRAVY)和芳香性(Aromo)均值的氨基酸以及氨基酸的有效选择均有助于多囊藻的密码子使用。 。在这些因素中,自然选择被认为是影响多囊拟南芥密码子使用变化的主要因素。核糖体基因的密码子使用主要受突变影响,而必需基因主要受选择影响。另外,鉴定出21个密码子为“最佳密码子”。总体而言,最佳密码子富含GC(GC:AU,41:22),并以G或C结尾(CGU除外)。此外,在多头T虫和大肠杆菌,酵母,智人之间发现了不同程度的密码子使用变化。然而,在多头。虫和皮氏Ta虫之间几乎没有发现差异。结论在本研究中,系统地分析了多囊T虫的密码子使用模式,并确定了影响CUB的因素。这是对多隐孢子虫密码子生物学的首次研究。了解多囊隐孢子虫的密码子使用模式可有助于发现新基因,分子遗传工程和进化研究。

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