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1 ally transition from a vegetative state to a terminal flower.
2 dditional petals and inflorescences produced terminal flowers.
3 tidylethanolamine-binding protein homologues TERMINAL FLOWER 1 (TFL1) and FLOWERING LOCUS T (FT) are
4                                              TERMINAL FLOWER 1 (TFL1) is a key regulator of Arabidops
5          Members of the CENTRORADIALIS (CEN)/TERMINAL FLOWER 1 (TFL1) subfamily control shoot meriste
6                      Of particular interest, TERMINAL FLOWER 1 (TFL1) transcripts were found at eleva
7 ENTRORADIALIS (CEN) and the Arabidopsis gene TERMINAL FLOWER 1 (TFL1) were shown to be homologous, wh
8 omolog (designated as GmTfl1) of Arabidopsis terminal flower 1 (TFL1), a regulatory gene encoding a s
9 ant that disrupts PSV trafficking identified TERMINAL FLOWER 1 (TFL1), a shoot meristem identity gene
10    Instead, it is similar to the sequence of TERMINAL FLOWER 1 (TFL1), an inhibitor of flowering that
11  time, FCA, with the meristem identity-genes TERMINAL FLOWER 1 (TFL1), APETALA 1 (AP1) and LEAFY (LFY
12 ologous proteins, FLOWERING LOCUS T (FT) and TERMINAL FLOWER 1 (TFL1).
13     We suggest that the wild-type pattern of TERMINAL FLOWER 1 and floral meristem identity gene expr
14  that five paralogs in the flowering locus T/terminal flower 1 gene family experienced selective swee
15          We demonstrate that the Arabidopsis TERMINAL FLOWER 1 gene has a unified effect on the rate
16 In two mutants in distantly related species, terminal flower 1 in Arabidopsis and centroradialis in A
17                     The results suggest that TERMINAL FLOWER 1 participates in a common mechanism und
18 as LEAFY, APETALA 1 and CAULIFLOWER, prevent TERMINAL FLOWER 1 transcription in floral meristems on t
19 Arabidopsis plants which ectopically express TERMINAL FLOWER 1, both the vegetative and reproductive
20 Y and APETALA 1 is not directly inhibited by TERMINAL FLOWER 1, but their upregulation is markedly de
21                                              TERMINAL FLOWER 1, in turn, can inhibit the activity of
22 -defective, whereas early-flowering tfl1-14 (terminal flower 1-14) displayed ARR at the same time as
23  antagonistic group of genes, which includes TERMINAL FLOWER 1.
24 atterns of IbTFL1 and IbAG to the control of terminal flowering and floral determinacy in Impatiens.
25 minority of lines the SAM was converted to a terminal flower as would be expected from the reporter-e
26 in precocious flowering and the formation of terminal flowers at apices of both the primary infloresc
27 failed to direct the development of compound terminal flowers but instead induced novel phenotypes wh
28                          Similarly, compound terminal flowers did not develop in era1-2 transformants
29                                              Terminal flowering in Impatiens appears therefore to be
30                                              TERMINAL FLOWER is a key regulator of floral timing in A
31 ows indefinitely, or determinate, in which a terminal flower is produced.
32  to determinate growth by producing a single terminal flower on all nodes.
33 on factor activity and directed the expected terminal flower phenotype when ectopically expressed in
34 ithin organ primordia, such as the sepals of terminal flowers produced by centroradialis mutants.
35 ombination of elf3 hy2 double mutants form a terminal flower similar to the structure produced by tfk
36 tity on developing floral primordia, whereas TERMINAL FLOWER (TFL) is required to repress their expre

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