The RNA binding protein FCA regulates the floral transition and is required for silencing RNAs corresponding to specific noncoding sequences in the Arabidopsis thaliana genome. Through interaction with the canonical RNA 39 processing machinery, FCA affects alternative polyadenylation of many transcripts, including antisense RNAs at the locus encoding the floral repressor FLC. This potential for widespread alteration of gene regulation clearly needs to be tightly regulated, and we have previously shown that FCA expression is autoregulated through poly(A) site choice. Here, we show distinct layers of FCA regulation that involve sequences within the 59 region that regulate noncanonical translation initiation and alter the expression profile. F...
RNA Transcription includes three main stages, initiation, elongation and termination, as well as pro...
AbstractFlowering time control in plants involves integration of multiple signals. One of the signal...
AbstractThe time to flowering in Arabidopsis is controlled by many genes; recently, progress has bee...
The RNA binding protein FCA regulates the floral transition and is required for silencing RNAs corre...
The timing of the transition to flowering is critical for reproductive success in plants. Arabidopsi...
The Arabidopsis gene FCA encodes an RNA binding protein that functions to promote the floral transit...
The RNA-binding proteins FCA and FPA were identified based on their repression of the flowering time...
AbstractThe nuclear RNA binding protein, FCA, promotes Arabidopsis reproductive development. FCA con...
AbstractA strong promoter of the transition to flowering in Arabidopsis is encoded by FCA. FCA has b...
Plants control their flowering time in order to ensure that they reproduce under favourable conditio...
AbstractSeasonal flowering in plants responds to hormonal and environmental cues that lead to expres...
The nuclear RNA binding protein, FCA, promotes Arabidopsis reproductive development. FCA contains a ...
The autonomous pathway functions to promote flowering in Arabidopsis by limiting the accumulation of...
RNA Transcription includes three main stages, initiation, elongation and termination, as well as pro...
AbstractFlowering time control in plants involves integration of multiple signals. One of the signal...
AbstractThe time to flowering in Arabidopsis is controlled by many genes; recently, progress has bee...
The RNA binding protein FCA regulates the floral transition and is required for silencing RNAs corre...
The timing of the transition to flowering is critical for reproductive success in plants. Arabidopsi...
The Arabidopsis gene FCA encodes an RNA binding protein that functions to promote the floral transit...
The RNA-binding proteins FCA and FPA were identified based on their repression of the flowering time...
AbstractThe nuclear RNA binding protein, FCA, promotes Arabidopsis reproductive development. FCA con...
AbstractA strong promoter of the transition to flowering in Arabidopsis is encoded by FCA. FCA has b...
Plants control their flowering time in order to ensure that they reproduce under favourable conditio...
AbstractSeasonal flowering in plants responds to hormonal and environmental cues that lead to expres...
The nuclear RNA binding protein, FCA, promotes Arabidopsis reproductive development. FCA contains a ...
The autonomous pathway functions to promote flowering in Arabidopsis by limiting the accumulation of...
RNA Transcription includes three main stages, initiation, elongation and termination, as well as pro...
AbstractFlowering time control in plants involves integration of multiple signals. One of the signal...
AbstractThe time to flowering in Arabidopsis is controlled by many genes; recently, progress has bee...