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Regulation of flowering time in chrysanthemum by the R2R3 MYB transcription factor CmMYB2 is associated with changes in gibberellin metabolism.


ABSTRACT: The switch from vegetative growth to reproductive growth is a key event in the development of a plant. Here, the product of the chrysanthemum gene CmMYB2, an R2R3 MYB transcription factor that is localized in the nucleus, was shown to be a component of the switching mechanism. Plants engineered to overexpress CmMYB2 flowered earlier than did wild-type plants, while those in which CmMYB2 was suppressed flowered later. In both the overexpression and RNAi knockdown plants, a number of genes encoding proteins involved in gibberellin synthesis or signaling, as well as in the response to photoperiod, were transcribed at a level that differed from that in the wild type. Both yeast two-hybrid and bimolecular fluorescence complementation assays revealed that CmMYB2 interacts with CmBBX24, a zinc-finger transcription factor known to regulate flowering by its influence on gibberellin synthesis.

SUBMITTER: Zhu L 

PROVIDER: S-EPMC7326907 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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Regulation of flowering time in chrysanthemum by the R2R3 MYB transcription factor <i>CmMYB2</i> is associated with changes in gibberellin metabolism.

Zhu Lu L   Guan Yunxiao Y   Liu Yanan Y   Zhang Zhaohe Z   Jaffar Muhammad Abuzar MA   Song Aiping A   Chen Sumei S   Jiang Jiafu J   Chen Fadi F  

Horticulture research 20200701


The switch from vegetative growth to reproductive growth is a key event in the development of a plant. Here, the product of the chrysanthemum gene <i>CmMYB2</i>, an R2R3 MYB transcription factor that is localized in the nucleus, was shown to be a component of the switching mechanism. Plants engineered to overexpress <i>CmMYB2</i> flowered earlier than did wild-type plants, while those in which <i>CmMYB2</i> was suppressed flowered later. In both the overexpression and RNAi knockdown plants, a nu  ...[more]

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