Analysis of codon usage bias in Ziziphi Spinosae Semen based on transcriptome data

Author:

Zhao Mengwei1,Wang Jiemin1,Liu Yuting1,Yan Yuping1,Li Si1,Wang Wei2,Sun HuiGai1,Ma DongLai1

Affiliation:

1. Hebei University of Chinese Medicine

2. Hebei lvyi Agricultural Technology Co., Ltd

Abstract

Abstract The characteristics of codon usage and the influencing factors of the transcriptomic coding sequence in Ziziphi Spinosae Semen were investigated. The optimal codon was determined by analyzing 5,045 CDS samples using the Perl program and Codon W 1.4.2 software. The average content of GC, GC1, GC2 and GC3 of CDS ranged from 38.53–48.82%. The ENC-plot, bias, and neutral analyses showed that the codon preference is affected by mutation under selection. A total of 28 optimal codons were obtained, including UCC, UGC, UCG, etc. These were identified by the gene high expression screening codon methods, most of which end with C and G, and only CGU ends with U. Selection pressure has a great impact on the codon usage preference in Ziziphi Spinosae Semen CDS, and the mutation pressure also has some effects. The results of this study will provide a theoretical basis for the carrier selection for saponins and flavonoid synthesis and the evolution and contribution to the increased production of this medicinal plant species.

Publisher

Research Square Platform LLC

Reference45 articles.

1. Zizyphus lotus (L.) physico-chemical and phytochemical characterization of moroccan wild jujube fruit crude extract and fractions;Cadi H;Molecules,2020

2. Analysis of codon usage bias of chloroplast genes in Oryza species: Codon usage of chloroplast genes in Oryza species;Chakraborty S;Planta,2020

3. Research progress on the diversity of germplasm resources and genuineness of medicinal plant Zizipus Jujuba var. Spinosa;Ding W;World Chinese Medicine,2022

4. Processing of Ziziphi Spinosae Semen: evolution and research progress;Du CH;China Journal of Chinese Materia Medica,2022

5. Comprehensive analysis of codon usage patterns in Chinese Porcine Circoviruses based on their major protein-coding sequences;Feng H;Viruses,2022

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