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Stress induced MAPK genes show distinct pattern of codon usage in Arabidopsis thaliana Glycine max and Oryza sativa

机译:胁迫诱导的MAPK基因在拟南芥最大大豆和水稻中显示出不同的密码子使用模式

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摘要

Mitogen activated protein kinase (MAPK) genes provide resistance to various biotic and abiotic stresses. Codon usage profiling of the genes reveals the characteristic features of the genes like nucleotide composition, gene expressivity, optimal codons etc. The present study is a comparative analysis of codon usage patterns for different MAPK genes in three organisms, viz. Arabidopsis thaliana, Glycine max (soybean) and Oryza sativa (rice). The study has revealed a high AT content in MAPK genes of Arabidopsis and soybean whereas in rice a balanced AT-GC content at the third synonymous position of codon. The genes show a low bias in codon usage profile as reflected in the higher values (50.83 to 56.55) of effective number of codons (Nc). The prediction of gene expression profile in the MAPK genes revealed that these genes might be under the selective pressure of translational optimization as reflected in the low codon adaptation index (CAI) values ranging from 0.147 to 0.208.
机译:丝裂原活化蛋白激酶(MAPK)基因可抵抗各种生物和非生物胁迫。基因的密码子使用概况揭示了该基因的特征特征,如核苷酸组成,基因表达性,最佳密码子等。本研究是对三种生物中不同MAPK基因的密码子使用方式的比较分析。拟南芥,最大大豆(大豆)和水稻(大米)。这项研究表明,拟南芥和大豆的MAPK基因中AT含量较高,而在水稻中,第三个密码子同义AT-GC含量较高。这些基因在有效密码子(Nc)的较高值(50.83至56.55)中反映了密码子使用情况的低偏差。 MAPK基因中基因表达谱的预测表明,这些基因可能处于翻译优化的选择性压力下,这反映在0.147至0.208的低密码子适应指数(CAI)值中。

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