The molecular mechanisms by which the phytohormone auxin coordinates cell division with cell growth and differentiation are largely unknown. Here, we show that in Arabidopsis thaliana E2FB, accumulation and stability are positively regulated by auxin. Coexpression of E2FB, but not of E2FA, with its dimerization partner A, stimulated cell proliferation in the absence of auxin in tobacco ( Nicotiana tabacum) Bright Yellow-2 cells. E2FB regulated the entry into both S- and M-phases, the latter corresponding to the activation of a plant-specific mitotic regulator, CDKB1; 1. Increased E2FB levels led to shortened cell cycle duration, elevated cell numbers, and extremely small cell sizes. In the absence of auxin, cells elongated with concomitant ...
Post-embryonic growth in plants depends on the continuous supply of undifferentiated cells within me...
Root growth depends on cell proliferation in the apices, which determines the root meristem size. Th...
Plant growth and development are sustained by meristems. Meristem activity is controlled by auxin an...
The molecular mechanisms by which the phytohormone auxin coordinates cell division with cell growth ...
International audienceCell cycle entry and quiescence are regulated by the E2F transcription factors...
Multicellular organisms depend on cell production, cell fate specification, and correct patterning t...
An emerging view of plant cell cycle regulators, including the E2F transcription factors, implicate...
Eukaryotic E2Fs are conserved transcription factors playing crucial and antagonistic roles in severa...
Cell cycle entry and quiescence are regulated by the E2F transcription factors in association with R...
Arabidopsis contains six E2F genes: E2Fa-E2Fc possess all the features of typical animal and plant E...
Multicellular organisms depend on cell production, cell fate specification, and correct patterning t...
Of the six AtE2F proteins found in Arabidopsis (Arabidopsis thaliana), only AtE2Fa and AtE2Fb have ...
New plant cells arise at the meristems, where they divide a few times before they leave the cell-cyc...
SummaryBackgroundIn the root apical meristem, which contains the stem cells that feed into root deve...
We report about ERF BUD ENHANCER (EBE; At5g61890), a transcription factor that affects cell prolifer...
Post-embryonic growth in plants depends on the continuous supply of undifferentiated cells within me...
Root growth depends on cell proliferation in the apices, which determines the root meristem size. Th...
Plant growth and development are sustained by meristems. Meristem activity is controlled by auxin an...
The molecular mechanisms by which the phytohormone auxin coordinates cell division with cell growth ...
International audienceCell cycle entry and quiescence are regulated by the E2F transcription factors...
Multicellular organisms depend on cell production, cell fate specification, and correct patterning t...
An emerging view of plant cell cycle regulators, including the E2F transcription factors, implicate...
Eukaryotic E2Fs are conserved transcription factors playing crucial and antagonistic roles in severa...
Cell cycle entry and quiescence are regulated by the E2F transcription factors in association with R...
Arabidopsis contains six E2F genes: E2Fa-E2Fc possess all the features of typical animal and plant E...
Multicellular organisms depend on cell production, cell fate specification, and correct patterning t...
Of the six AtE2F proteins found in Arabidopsis (Arabidopsis thaliana), only AtE2Fa and AtE2Fb have ...
New plant cells arise at the meristems, where they divide a few times before they leave the cell-cyc...
SummaryBackgroundIn the root apical meristem, which contains the stem cells that feed into root deve...
We report about ERF BUD ENHANCER (EBE; At5g61890), a transcription factor that affects cell prolifer...
Post-embryonic growth in plants depends on the continuous supply of undifferentiated cells within me...
Root growth depends on cell proliferation in the apices, which determines the root meristem size. Th...
Plant growth and development are sustained by meristems. Meristem activity is controlled by auxin an...