A LBD transcription factor from moso bamboo, PheLBD12, regulates plant height in transgenic rice
The regulation mechanism of bamboo height growth has always been one of the hotspots in developmental biology. In the preliminary work of this project, the function of LBD transcription factor regulating height growth was firstly studied. Here, a gene PheLBD12 regulating height growth was screened....
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Veröffentlicht in: | Plant molecular biology 2024-10, Vol.114 (5), p.95, Article 95 |
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Sprache: | eng |
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Zusammenfassung: | The regulation mechanism of bamboo height growth has always been one of the hotspots in developmental biology. In the preliminary work of this project, the function of LBD transcription factor regulating height growth was firstly studied. Here, a gene
PheLBD12
regulating height growth was screened.
PheLBD12-
overexpressing transgenic rice had shorter internodes, less bioactive gibberellic acid (GA3), and were more sensitive to GA3 than wild-type (WT) plants, which implied that
PheLBD12
involve in gibberellin (GA) pathway. The transcript levels of
OsGA2ox3
, that encoding GAs deactivated enzyme, was significantly enhanced in
PheLBD12-
overexpressing transgenic rice. The transcript levels of
OsAP2-39
, that directly regulating the expression of EUI1 to reduce GA levels, was also significantly enhanced in
PheLBD12-
overexpressing transgenic rice. Expectedly, yeast one-hybrid assays, Dual-luciferase reporter assay and EMSAs suggested that PheLBD12 directly interacted with the promoter of
OsGA2ox3
and
OsAP2-39
. Together, our results reveal that
PheLBD12
regulates plant height growth by modulating GA catabolism. Through the research of this topic, it enriches the research content of LBD transcription factors and it will theoretically enrich the research content of height growth regulation.
Key message
We investigated the functions in height growth of
PheLBD12
, encoding a LBD transcription factor in moso bamboo.
PheLBD12
regulates plant height growth by modulating GA catabolism. |
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ISSN: | 0167-4412 1573-5028 1573-5028 |
DOI: | 10.1007/s11103-024-01487-0 |