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Different Cell Types Affect the Transition from Juvenile to Mature Phase in Citrus Plants Regenerated through Somatic Embryogenesis.


ABSTRACT: Robust protocols for the regeneration of somatic embryos in vitro are essential for the efficient use of the most modern biotechnologies. Unfortunately, in perennial trees such as Citrus, plants regenerated from juvenile tissues usually exhibit strong, undesirable juvenile characters such as thorny habit and delayed flowering and fruit production. In this work, we tested whether the cell types (nucellar and stigma/style) used to regenerate Citrus plants through somatic embryogenesis affected the transition from the juvenile to mature phase. The results show that regenerants from nucellar cells presented persistent juvenile characters, whereas plants originating from stigma/style explants transited to the mature phase more rapidly. Our observations support the hypothesis that the totipotent cells originated from different cell types are not equivalent, possibly by maintaining memory of their previously differentiated state.

SUBMITTER: Catalano C 

PROVIDER: S-EPMC9323018 | biostudies-literature | 2022 Jul

REPOSITORIES: biostudies-literature

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Different Cell Types Affect the Transition from Juvenile to Mature Phase in Citrus Plants Regenerated through Somatic Embryogenesis.

Catalano Caterina C   Abbate Loredana L   Fatta Del Bosco Sergio S   Motisi Antonio A   Carimi Francesco F   De Michele Roberto R   Mercati Francesco F   D'Onghia Anna Maria AM   Carra Angela A  

Plants (Basel, Switzerland) 20220708 14


Robust protocols for the regeneration of somatic embryos in vitro are essential for the efficient use of the most modern biotechnologies. Unfortunately, in perennial trees such as <i>Citrus</i>, plants regenerated from juvenile tissues usually exhibit strong, undesirable juvenile characters such as thorny habit and delayed flowering and fruit production. In this work, we tested whether the cell types (nucellar and stigma/style) used to regenerate <i>Citrus</i> plants through somatic embryogenesi  ...[more]

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