Towards a hierarchical gene regulatory network underlying somatic embryogenesis

FX Wang, GD Shang, JW Wang - Trends in Plant Science, 2022 - cell.com
Genome-editing technologies have advanced in recent years but designing future crops
remains limited by current methods of improving somatic embryogenesis (SE) capacity. In …

Towards a hierarchical gene regulatory network underlying somatic embryogenesis

FX Wang, GD Shang, JW Wang - Trends in plant science, 2022 - pubmed.ncbi.nlm.nih.gov
Genome-editing technologies have advanced in recent years but designing future crops
remains limited by current methods of improving somatic embryogenesis (SE) capacity. In …

Towards a hierarchical gene regulatory network underlying somatic embryogenesis

FX Wang, GD Shang, JW Wang - Trends in Plant Science, 2022 - Elsevier
HighlightsChromatin status influences cellular competence for somatic
embryogenesis.Auxin induces the acquisition of totipotency through altering chromatin …

Towards a hierarchical gene regulatory network underlying somatic embryogenesis.

FX Wang, GD Shang, JW Wang - 2022 - cabidigitallibrary.org
Genome-editing technologies have advanced in recent years but designing future crops
remains limited by current methods of improving somatic embryogenesis (SE) capacity. In …

Towards a hierarchical gene regulatory network underlying somatic embryogenesis.

FX Wang, GD Shang, JW Wang - Trends in Plant Science, 2022 - europepmc.org
Genome-editing technologies have advanced in recent years but designing future crops
remains limited by current methods of improving somatic embryogenesis (SE) capacity. In …

[引用][C] Towards a hierarchical gene regulatory network underlying somatic embryogenesis

FX Wang, GD Shang, JW Wang - 2022