Synthetic biology and artificial intelligence in crop improvement We propose the development of SMART (self-monitoring, adapted, and responsive technology) crops through AI-empowered synthetic biotechnology Finally, we address challenges associated with the development of synthetic biology and offer potential solutions for crop improvement
CRISPR–Cas applications in agriculture and plant research We then discuss how promoter editing and chromosome engineering are used in crop breeding for trait engineering and fixation, and important applications of CRISPR–Cas in crop improvement, such
Synthetic biology and opportunities within agricultural crops There are many SynBio tools and techniques suitable for application in agricultural settings (Table 1) with the potential to develop novel agricultural products and significantly improve agricultural management, productivity and sustainability
Plant Transformation and Genome Editing for Precise Synthetic Biology . . . To fully harness the potential of these rapidly evolving genome editing technologies, it is essential to integrate them into robust synthetic biology frameworks that emphasize engineering principles and leverage efficient plant transformation platforms
Progress and challenges of synthetic biology in agriculture Synthetic biology has the potential to enhance crop photosynthesis, optimize nitrogen fixation mechanisms, improve biological stress tolerance, increase crop yields, and optimize nutritional quality, thereby promoting sustainable agricultural and ecological development
Epigenetic Modifications and Synthetic Biology Approaches for Crop . . . Innovative methods, including synthetic biology (SynBio) and epigenetic modifications, offer promising solutions for developing desirable agronomic traits in current crop varieties, supporting future food and feed demands