Genome-wide Computational Analysis of DIR Genes inSolanum lycopersicum
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CC-BY-4.0
Abstract
Background: Extensive Dirigent proteins impart a key role in the development of organic products in plants. They confer conformational influence on processes that lack stereoselectivity and regioselectivity through processes that are mostly understood. Dirrigent proteins are required to produce lignans, a unique and widely distributed family of plant secondary metabolites with intriguing pharmacological characteristics and potential use in plant development as well. The dirigent (DIR) proteins, which are implicated in the process of lignification, also protect plants from environmental stresses including Biotic and Abiotic. Nevertheless, there is no research have been done so far on the DIR proteins in Solanum lycopersicum . This study provides a detailed information of DIRs protein in the in tomato. Results: : The Conserved Domain analysis, Phylogeny, Evolutionary Adaptation, cis-acting Elements, Proteomic analysis, Transmembrane Potential Analysis, Sequence Identity and Similarity Analysis, gene assembly, genomic localization, duplication of gene analysis, and evolutionary linkage of all 31 potential dirigent genes (SlDIRs) were revealed in this investigation. Conclusion: This research provides an in - depth and comprehensive explanation of the detailed molecular process and structural characterization of SlDIR genes in the genome of Solanum lycopersicum, laying the groundwork for future plant genetic engineering and crop development exploration. This study will aid future research on the DIR gene family and give helpful information for enabling appropriate DIRs genes in higher plants.
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- last seen: 2026-05-19T01:45:01.086888+00:00
- unpaywall
- last seen: 2026-06-05T02:00:03.366016+00:00
License: CC-BY-4.0