Entanglement of plant immunity and endomembrane trafficking revealed by plant-powdery mildew fungal interactions. [PDF]
Thordal-Christensen H +3 more
europepmc +1 more source
Mapping novel QTLs associated with grain number and primary branching in rice using new plant type derived RILs. [PDF]
Nandakumar S +14 more
europepmc +1 more source
Functional Characterization of Floral Gene Network Reveals a Critical FT1-AP1 Interaction in Flowering Regulation in Longan. [PDF]
Tang Y +8 more
europepmc +1 more source
Interaction study of MADS-domain proteins in tomato [PDF]
MADS-domain proteins are important transcription factors involved in many biological processes of plants. Interactions between MADS-domain proteins are essential for their functions. In tomato (Solanum lycopersicum), the number of MIKC(c)-type MADS-domain proteins identified has totalled 36, but a large-scale interaction assay is lacking. In this study,
Melvin Duvall +2 more
exaly +3 more sources
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The ‘ABC’ of MADS domain protein behaviour and interactions
Seminars in Cell and Developmental Biology, 2010Development of eudicot flowers is under tight developmental control by genes belonging to the MADS box transcription factor family, as is nicely represented by the well-known ABC model of floral organ development. During the last two decades enormous progress has been made in our understanding of the molecular mechanisms underlying the combinatorial ...
Kerstin Kaufmann +2 more
exaly +3 more sources
Molecular mechanisms of floral organ specification by MADS domain proteins
Current Opinion in Plant Biology, 2016Flower development is a model system to understand organ specification in plants. The identities of different types of floral organs are specified by homeotic MADS transcription factors that interact in a combinatorial fashion. Systematic identification of DNA-binding sites and target genes of these key regulators show that they have shared and unique ...
Kerstin Kaufmann +2 more
exaly +5 more sources
Mapping the protein regions responsible for the functional specificities of the Arabidopsis MADS domain organ-identity proteins. [PDF]
The Arabidopsis MADS domain proteins AP1, AP3, PI, and AG specify floral organ identity. All of these proteins contain a MADS domain required for DNA binding and dimerization; a region termed L (linker between MADS domain and K domain), which plays an important role in dimerization specificity; the K domain, named for its similarity to the coiled-coil ...
Elliot Meyerowitz, Meyerowitz Elliot M
exaly +5 more sources
Dimerization specificity of Arabidopsis MADS domain homeotic proteins APETALA1, APETALA3, PISTILLATA, and AGAMOUS. [PDF]
The MADS domain homeotic proteins APETALA1 (AP1), APETALA3 (AP3), PISTILLATA (PI), and AGAMOUS (AG) act in a combinatorial manner to specify the identity of Arabidopsis floral organs. The molecular basis for this combinatorial mode of action was investigated.
Elliot Meyerowitz, Meyerowitz Elliot M
exaly +5 more sources

