High-throughput phenotyping is highlighted as an enabling technology in the review. The abstract states that it is accelerating translational breeding in maize.
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high-throughput phenotyping
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High-throughput phenotyping, artificial intelligence, and nanoparticle-based gene delivery including in planta and transformation-free protocols are enabling technologies that are accelerating translational breeding.
Quoted textsource-backed
Furthermore, we highlight enabling technologies such as high-throughput phenotyping, artificial intelligence (AI), and nanoparticle-based gene delivery-including novel in planta and transformation-free protocols-that are accelerating translational breeding.
Technical breakthroughs in maize resilience biotechnology still face barriers including genotype-dependent transformation efficiency, regulatory landscapes, and implementation costs in resource-limited settings.
Quoted textsource-backed
Despite these technical breakthroughs, barriers such as genotype-dependent transformation efficiency, regulatory landscapes, and implementation costs in resource-limited settings remain.
Integrating molecular breakthroughs with practical deployment strategies offers a roadmap for developing sustainable, climate-resilient maize varieties.
Quoted textsource-backed
By integrating molecular breakthroughs with practical deployment strategies, this review offers a comprehensive roadmap for developing sustainable, climate-resilient maize varieties to meet future agricultural demands.