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Environmental-Dependent Acceleration of a Developmental Switch: The Floral Transition
Science Signaling, 2000The transition from vegetative growth to reproductive growth in plants in which flowers are produced requires the activation of specific genes. Simpson and Dean discuss two recent reports that characterize the FLOWERING LOCUS T ( FT ) gene in Arabidopsis , which is ...
G G, Simpson, C, Dean
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Epigenetic regulation of floral transition: pathways and players
Plant Cell ReportsThe epigenetic mechanisms that regulate the DNA-histone contacts and the chromatin-based control of transcription provide an essential link between various signaling pathways in plants. The developmental process controlling the transition from vegetative to reproductive meristem and flowering time in plants represents a crucial and complex interlinked ...
Nibedita Chakraborty +3 more
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Physiological analysis of the floral transition
1998EC project BIO4 CT97-2231; Interuniversity Attraction Poles Programme P4/15.
Bernier, Georges +4 more
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Epigenetic insight into floral transition and seed development in plants
Plant ScienceSeasonal changes are crucial in shifting the developmental stages from the vegetative phase to the reproductive phase in plants, enabling them to flower under optimal conditions. Plants grown at different latitudes sense and interpret these seasonal variations, such as changes in day length (photoperiod) and exposure to cold winter temperatures ...
Tahir Mahmood +8 more
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OsMADS22 interacts with OsMADS50 to regulate floral transition in rice
Biochemical and Biophysical Research CommunicationsAppropriate flowering time is critical for reproductive transition and is closely related to crop yield. In Arabidopsis, SVP, MADS-box containing proteins, interact with FLC to form a repressor complex to repress the expression level of SOC1 and FT to control flowering time. OsMADS22, one of three SVP-clade MADS-box genes, has been shown that functions
Dongyang, Wang, Yi, Chai, Suhui, Chen
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Mathematical modelling of the floral transition
2017The floral transition is a developmental process through which some plants commit to flowering and stop producing leaves. This is controlled by changes in gene expression in the shoot apical meristem (SAM). Many of the genes involved are known, but their interactions are usually only studied one by one, or in small sets.
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Mathematical modelling of the floral transition — with a Bayesian flourish — [PDF]
Flowering plants are abundant on Earth. In the model dicot plant species, Arabidopsis thaliana, multiple endogenous and exogenous signals converge to initiate a change from vegetative to reproductive growth in optimal environmental conditions. Much genetic and experimental research has gone into elucidating the biological mechanisms controlling the ...
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Floral transition genes in maize and uses thereof
2007DANILEVSKAYA OLGA +5 more
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