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Published on: June 25, 2015
Molecular Mechanisms of Plant Regeneration
Momoko Ikeuchi1, David S Favero1, Yuki Sakamoto1,2
1RIKEN Center for Sustainable Resource Science, Yokohama, Kanagawa 230-0045, Japan; email: momoko.ikeuchi@riken.jp , david.favero@riken.jp , yuki.sakamoto.zu@riken.jp , akira.iwase@riken.jp , duncan.coleman@riken.jp , bart.rymen@riken.jp , keiko.sugimoto@riken.jp.
Abstract:
Plants reprogram somatic cells following injury and regenerate new tissues and organs. Upon perception of inductive cues, somatic cells often dedifferentiate, proliferate, and acquire new fates to repair damaged tissues or develop new organs from wound sites. Wound stress activates transcriptional cascades to promote cell fate reprogramming and initiate new developmental programs. Wounding also modulates endogenous hormonal responses by triggering their biosynthesis and/or directional transport. Auxin and cytokinin play pivotal roles in determining cell fates in regenerating tissues and organs. Exogenous application of these plant hormones enhances regenerative responses in vitro by facilitating the activation of specific developmental programs. Many reprogramming regulators are epigenetically silenced during normal development but are activated by wound stress and/or hormonal cues.
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