Plant regeneration relies on extensive transcriptional reprogramming and epigenetic remodeling orchestrated by morphogenic regulators that modulate meristem identity, as well as cellular pluri- and totipotency.
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morphogenic regulators
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Evidence Snippets
the integration of morphogenic regulators and genotype-independent transformation platforms is beginning to circumvent long-standing obstacles in Capsicum genetic engineering
Supporting Sources
Linked Claims
Morphogenic regulators orchestrate transcriptional reprogramming and epigenetic remodeling that support meristem identity and cellular pluri- and totipotency during plant regeneration.
Efficient in vitro regeneration is a major constraint in wheat genetic transformation, genome editing, and molecular breeding.
Morphogenic factors emerge as central molecular tools for overcoming regeneration bottlenecks and enabling next-generation wheat improvement.
Integration of morphogenic regulators and genotype-independent transformation platforms is beginning to circumvent long-standing obstacles in Capsicum genetic engineering.
Quoted textsource-backed
the integration of morphogenic regulators and genotype-independent transformation platforms is beginning to circumvent long-standing obstacles in Capsicum genetic engineering