Floral patterning is regulated by intricate networks of floral identity genes. The peculiar MADS32 subfamily genes, absent in eudicots but prevalent in monocots, control floral organ identity. However, how the MADS32 family genes interact with other floral homeotic genes during flower development is mostly unknown. We show here that the rice homeotic transcription factor OsMADS32 regulates floral patterning by interacting synergistically with E class protein OsMADS6 in a dosage-dependent manner. Furthermore, our results indicate important roles for OsMADS32 in defining stamen, pistil, and ovule development through physical and genetic interactions with OsMADS1, OsMADS58, and OsMADS13, and in specifying floral meristem identity with OsMADS6,...
Grass flowers are highly derived compared to their eudicot counterparts. To delineate OsMADS1 functi...
Grass flowers are highly derived compared to their eudicot counterparts. To delineate OsMADS1 functi...
SEPALLATA (SEP)-like genes, which encode a subfamily of MADS-box transcription factors, are essentia...
During reproductive development, rice plants develop unique flower organs which determine the final ...
Online on Aug. 26, 2017Grasses display highly diversified inflorescence architectures that differ in...
The SEPALLATA genes encode a functionally diverse group of MADS domain transcription factors includi...
The SEPALLATA genes encode a functionally diverse group of MADS domain transcription factors includi...
MADS-domain-containing transcription factors play diverse roles in plant development. The prototypic...
MADS-domain-containing transcription factors play diverse roles in plant development. The prototypic...
MADS-domain-containing transcription factors play diverse roles in plant development. The prototypic...
The SEPALLATA genes encode a functionally diverse group of MADS domain transcription factors includi...
In angiosperms, specialized reproductive structures are borne in flowers to ensure their reproductiv...
Rice (Oryza sativa) has unique floral patterns that contribute to grain yield. However, the molecula...
Grass flowers are highly derived compared to their eudicot counterparts. To delineate OsMADS1 functi...
Rice (Oryza sativa) has unique floral patterns that contribute to grain yield. However, the molecula...
Grass flowers are highly derived compared to their eudicot counterparts. To delineate OsMADS1 functi...
Grass flowers are highly derived compared to their eudicot counterparts. To delineate OsMADS1 functi...
SEPALLATA (SEP)-like genes, which encode a subfamily of MADS-box transcription factors, are essentia...
During reproductive development, rice plants develop unique flower organs which determine the final ...
Online on Aug. 26, 2017Grasses display highly diversified inflorescence architectures that differ in...
The SEPALLATA genes encode a functionally diverse group of MADS domain transcription factors includi...
The SEPALLATA genes encode a functionally diverse group of MADS domain transcription factors includi...
MADS-domain-containing transcription factors play diverse roles in plant development. The prototypic...
MADS-domain-containing transcription factors play diverse roles in plant development. The prototypic...
MADS-domain-containing transcription factors play diverse roles in plant development. The prototypic...
The SEPALLATA genes encode a functionally diverse group of MADS domain transcription factors includi...
In angiosperms, specialized reproductive structures are borne in flowers to ensure their reproductiv...
Rice (Oryza sativa) has unique floral patterns that contribute to grain yield. However, the molecula...
Grass flowers are highly derived compared to their eudicot counterparts. To delineate OsMADS1 functi...
Rice (Oryza sativa) has unique floral patterns that contribute to grain yield. However, the molecula...
Grass flowers are highly derived compared to their eudicot counterparts. To delineate OsMADS1 functi...
Grass flowers are highly derived compared to their eudicot counterparts. To delineate OsMADS1 functi...
SEPALLATA (SEP)-like genes, which encode a subfamily of MADS-box transcription factors, are essentia...