AGAMOUS-LIKE6 (AGL6) genes play essential roles in flower development, but whether and how they work with floral organ identity genes remain less understood. Here, we describe interactions of the rice (Oryza sativa) AGL6 gene MADS6 with other rice floral homeotic genes in flower development. Genetic analyses revealed that MADS6 specifies the identity of the three inner whorls and floral meristem determinacy redundantly with SUPERWOMAN1/MADS16 (B-gene) or MADS3 (C-gene). MADS6 was shown to define carpel/ovule development and floral determinacy by interacting with MADS13 (D-gene) and control the palea and floral meristem identities together with the YABBY gene DROOPING LEAF. Expression analyses revealed that the transcript levels of six B-, C...
MADS-box genes involved in flower development have been isolated and studied in a wide variety of pl...
MADS-box genes involved in flower development have been isolated and studied in a wide variety of pl...
The predicted products of floral homeotic genes, AGAMOUS (AG) from Arabidopsis thaliana and DEFICIEN...
Although AGAMOUS-LIKE6 (AGL6) MADS-box genes are ancient with wide distributions in gymnosperms and ...
Floral patterning is regulated by intricate networks of floral identity genes. The peculiar MADS32 s...
AGL6 is an ancient subfamily of MADS-box genes found in both gymnosperms and angiosperms. Its functi...
Grass plants develop unique floral patterns that determine grain production. However, the molecular ...
In angiosperms, floral homeotic genes encoding MADS-domain transcription factors regulate the develo...
MADS-domain transcription factors play pivotal roles in various developmental processes. The lack of...
MADS-domain transcription factors play pivotal roles in various developmental processes. The lack of...
MADS-domain transcription factors play pivotal roles in various developmental processes. The lack of...
SummaryThe spatiotemporal architecture of inflorescences that bear flowers determines plant reproduc...
MADS box transcription factors controlling flower development have been isolated and studied in a wi...
Studies on MADS-box genes in Arabidopsis and other higher eudicotyledonous flowering plants have sho...
The well-known ABC model describes the combinatorial interaction of homeotic genes in specifying flo...
MADS-box genes involved in flower development have been isolated and studied in a wide variety of pl...
MADS-box genes involved in flower development have been isolated and studied in a wide variety of pl...
The predicted products of floral homeotic genes, AGAMOUS (AG) from Arabidopsis thaliana and DEFICIEN...
Although AGAMOUS-LIKE6 (AGL6) MADS-box genes are ancient with wide distributions in gymnosperms and ...
Floral patterning is regulated by intricate networks of floral identity genes. The peculiar MADS32 s...
AGL6 is an ancient subfamily of MADS-box genes found in both gymnosperms and angiosperms. Its functi...
Grass plants develop unique floral patterns that determine grain production. However, the molecular ...
In angiosperms, floral homeotic genes encoding MADS-domain transcription factors regulate the develo...
MADS-domain transcription factors play pivotal roles in various developmental processes. The lack of...
MADS-domain transcription factors play pivotal roles in various developmental processes. The lack of...
MADS-domain transcription factors play pivotal roles in various developmental processes. The lack of...
SummaryThe spatiotemporal architecture of inflorescences that bear flowers determines plant reproduc...
MADS box transcription factors controlling flower development have been isolated and studied in a wi...
Studies on MADS-box genes in Arabidopsis and other higher eudicotyledonous flowering plants have sho...
The well-known ABC model describes the combinatorial interaction of homeotic genes in specifying flo...
MADS-box genes involved in flower development have been isolated and studied in a wide variety of pl...
MADS-box genes involved in flower development have been isolated and studied in a wide variety of pl...
The predicted products of floral homeotic genes, AGAMOUS (AG) from Arabidopsis thaliana and DEFICIEN...