about
Genetic control of inflorescence architecture in legumesStructural basis for LEAFY floral switch function and similarity with helix-turn-helix proteinsIsolation of mtpim proves Tnt1 a useful reverse genetics tool in Medicago truncatula and uncovers new aspects of AP1-like functions in legumes.Integrating long-day flowering signals: a LEAFY binding site is essential for proper photoperiodic activation of APETALA1.The Arabidopsis thaliana Med25 mediator subunit integrates environmental cues to control plant development.An antagonistic pair of FT homologs mediates the control of flowering time in sugar beet.Analysis of B function in legumes: PISTILLATA proteins do not require the PI motif for floral organ development in Medicago truncatula.Analysis of conifer FLOWERING LOCUS T/TERMINAL FLOWER1-like genes provides evidence for dramatic biochemical evolution in the angiosperm FT lineage.Crystal structure and functional characterization of photosystem II-associated carbonic anhydrase CAH3 in Chlamydomonas reinhardtii.Analysis of the developmental roles of the Arabidopsis gibberellin 20-oxidases demonstrates that GA20ox1, -2, and -3 are the dominant paralogs.Genetic analysis reveals that C19-GA 2-oxidation is a major gibberellin inactivation pathway in ArabidopsisSumoylation in plants: mechanistic insights and its role in drought stressLEAFY activity is post-transcriptionally regulated by BLADE ON PETIOLE2 and CULLIN3 in Arabidopsis
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P50
description
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Reyes Benlloch
@ast
Reyes Benlloch
@en
Reyes Benlloch
@es
Reyes Benlloch
@nl
Reyes Benlloch
@sl
type
label
Reyes Benlloch
@ast
Reyes Benlloch
@en
Reyes Benlloch
@es
Reyes Benlloch
@nl
Reyes Benlloch
@sl
prefLabel
Reyes Benlloch
@ast
Reyes Benlloch
@en
Reyes Benlloch
@es
Reyes Benlloch
@nl
Reyes Benlloch
@sl
P1053
L-7526-2014
P106
P1153
25225186500
P31
P3829
P496
0000-0002-0364-1589