Saddique Muhammad Abu Bakar, Guan Ge, Hu Beibei, Khan Mudassir, Amjad Muhammad Dawood, Abbas Sana, Hussain Zahid, Maqsood Muhammad Faizan Khurram, Luo Xiumei, Ren Maozhi
Institute of Urban Agriculture, Chinese Academy of Agricultural Sciences, Chengdu National Agricultural2Science and Technology Center, Chengdu, 610213, China.
Department of Plant Biotechnology, National University of Sciences and Technology, Islamabad, Pakistan.
Proteome Sci. 2024 Oct 25;22(1):10. doi: 10.1186/s12953-024-00233-0.
Dirigent (DIR) genes play 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. They are required to produce lignans, which are a unique and widely distributed family of plant secondary metabolites with intriguing pharmacological characteristics and potential role in plant development. DIR genes are implicated in the process of lignification and protect plants from environmental stresses, including biotic and abiotic stresses. Nevertheless, no research has been performed on the DIR gene family in Solanum lycopersicum. This study provides detailed information on the DIR gene family in S. lycopersicum.
The conserved domain analysis, phylogenetic analysis, evolutionary adaptation, cis-acting elements, proteomic analysis, signal peptide detection, transmembrane potential analysis, sequence identity and similarity analysis, gene assembly, genomic localization, duplication of gene analysis, and evolutionary linkage of 31 potential DIR genes were studied. All these analyses provide a deep understanding of DIR genes in the S. lycopersicum genome that will provide a useful reference for further functional analysis of the DIR genes in S. lycopersicum.
This research provides an in-depth and comprehensive explanation of the detailed process and structural characterization of DIR genes in the genome of S. lycopersicum, laying the groundwork for future plant genetic engineering and crop development exploration. This work will provide valuable information for identifying DIR genes in higher plants and support future research on the DIR gene family.
定向蛋白(DIR)基因在植物有机产物的合成中起着关键作用。它们通过大多已为人所知的过程,对缺乏立体选择性和区域选择性的过程施加构象影响。它们参与木脂素的合成,木脂素是一类独特且广泛分布的植物次生代谢产物家族,具有引人关注的药理学特性及在植物发育中的潜在作用。DIR基因与木质化过程有关,并保护植物免受包括生物和非生物胁迫在内的环境压力影响。然而,尚未对番茄中的DIR基因家族进行研究。本研究提供了关于番茄DIR基因家族的详细信息。
对31个潜在的DIR基因进行了保守结构域分析、系统发育分析、进化适应性分析、顺式作用元件分析、蛋白质组分析、信号肽检测、跨膜电位分析、序列同一性和相似性分析、基因组装、基因组定位、基因重复分析以及进化关联研究。所有这些分析有助于深入了解番茄基因组中的DIR基因,为进一步对番茄DIR基因进行功能分析提供有用参考。
本研究对番茄基因组中DIR基因的详细过程和结构特征进行了深入且全面的阐释,为未来植物基因工程和作物发育探索奠定了基础。这项工作将为鉴定高等植物中的DIR基因提供有价值的信息,并支持未来对DIR基因家族的研究。