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萱草海水脅迫相關WRKY轉錄因子密碼子偏向性分析

Analysis of codon bias in WRKY transcription factors related to seawater stress in Hemerocallis fulva

  • 摘要: 在植物進化的過程中🦃,不同物種的基因具有特定的密碼子使用偏好性❤️‍🔥。WRKY基因家族在植物抗逆過程中扮演著重要角色。萱草是一種抗逆性極強的優秀園藝植物👏🏿。為了深入探究萱草WRKY基因的密碼子使用特征,采用CodonW和EMBOSS在線程序對海水脅迫誘導相關21條WRKY轉錄因子(HfWRKY)進行密碼子分析🍎。同時♈️,利用Excel和Rstudio軟件繪製中性分析圖、ENc-plot圖和PR2-plot圖🚴🏿‍♀️,旨在揭示HfWRKY基因的密碼子使用規律🧙🏻‍♀️。HfWRKY基因GC平均含量為48.31%,GC3平均含量為51.72%,這表明HfWRKY基因更傾向使用G/C結尾的密碼子✢,且其密碼子使用偏好性較弱。相對同義密碼子分析顯示,28個密碼子的RSCU值>1🥗🤲,其中13個以A或T結尾,15個以G或C結尾。此外🏌🏽‍♂️,有效密碼子數的取值範圍在46.54~59.64之間,密碼子適應指數範圍為0.158~0.274。通過中性分析、ENc-plot和PR2-plot圖發現HfWRKY基因的密碼子使用模式受到突變和自然選擇等因素的影響。最後,鑒定出10個HfWRKY基因家族的最優密碼子並證明其與抗性相關。本研究結果對於進一步挖掘HfWRKY基因家族在萱草在海水脅迫方面的作用和分子育種提供了理論依據💄。

     

    Abstract: During the process of plant evolution, genes of different species exhibit specific codon usage biases. The WRKY gene family plays an important role in plant stress resistance. Hemerocallis fulva is an excellent horticultural plant with strong stress resistance. To further explore the codon usage characteristics of Hemerocallis fulva WRKY (HfWRKY) genes, the CodonW and EMBOSS online programs were employed to analyze 21 WRKY transcription factors related to seawater stress induction. Additionally, Excel and Rstudio software were utilized to generate neutrality analysis charts, ENc-plot charts, and PR2-plot charts, aiming to reveal the codon usage patterns of HfWRKY genes. The results showed that the average GC content of HfWRKY genes was 48.31%, while the average GC3 content was 51.72%, indicating that HfWRKY genes tend to use G/C-ending codons with a relatively weak codon usage bias. Relative Synonymous Codon Usage (RSCU) analysis revealed that 28 codons had RSCU values greater than 1, with 13 ending in A or T and 15 ending in G or C. Furthermore, the effective number of codons ranged from 46.54 to 59.64, and the codon adaptation index ranged from 0.158 to 0.274. Through neutrality analysis, ENc-plot, and PR2-plot charts, it was found that the codon usage patterns of HfWRKY genes were influenced by factors such as mutation and natural selection. Finally, 10 optimal codons were identified in the HfWRKY gene family, demonstrating their association with resistance. The results of this study provide a theoretical basis for further exploring the role of the HfWRKY gene family in seawater stress resistance and molecular breeding in Hemerocallis fulva.

     

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