Hassan Asmaa H, Mokhtar Morad M, El Allali Achraf
Bioinformatics Laboratory, College of Computing, Mohammed VI Polytechnic University, Ben Guerir, Morocco.
Agricultural Genetic Engineering Research Institute, Agriculture Research Center, Giza, Egypt.
Front Plant Sci. 2024 Jan 4;14:1330127. doi: 10.3389/fpls.2023.1330127. eCollection 2023.
Transposable elements (TEs) are indispensable components of eukaryotic genomes that play diverse roles in gene regulation, recombination, and environmental adaptation. Their ability to mobilize within the genome leads to gene expression and DNA structure changes. TEs serve as valuable markers for genetic and evolutionary studies and facilitate genetic mapping and phylogenetic analysis. They also provide insight into how organisms adapt to a changing environment by promoting gene rearrangements that lead to new gene combinations. These repetitive sequences significantly impact genome structure, function and evolution. This review takes a comprehensive look at TEs and their applications in biotechnology, particularly in the context of plant biology, where they are now considered "genomic gold" due to their extensive functionalities. The article addresses various aspects of TEs in plant development, including their structure, epigenetic regulation, evolutionary patterns, and their use in gene editing and plant molecular markers. The goal is to systematically understand TEs and shed light on their diverse roles in plant biology.
转座元件(TEs)是真核生物基因组中不可或缺的组成部分,在基因调控、重组和环境适应中发挥着多种作用。它们在基因组内移动的能力会导致基因表达和DNA结构的变化。转座元件是遗传和进化研究的重要标记,有助于基因定位和系统发育分析。它们还通过促进导致新基因组合的基因重排,为生物体如何适应不断变化的环境提供了见解。这些重复序列对基因组结构、功能和进化有重大影响。本综述全面探讨了转座元件及其在生物技术中的应用,特别是在植物生物学领域,由于其广泛的功能,它们现在被视为“基因组黄金”。文章阐述了转座元件在植物发育中的各个方面,包括其结构、表观遗传调控、进化模式,以及它们在基因编辑和植物分子标记中的应用。目的是系统地了解转座元件,并阐明它们在植物生物学中的多种作用。