Plants contain a variety of the MADS box genes that encode regulatory proteins and play important roles in both the formation of flower meristem and the determination of floral organ identity. We have characterized two newer-specific cDNAs from rice, designated OsMADS7 and OsMADS8. The cDNAs displayed the structure of a typical plant MADS box gene, which consists of the MADS domain, I region, K domain, and C-terminal region. These genes were classified as members of the AGL2 gene family based on sequence homology. The OsMADS7 and 8 proteins were most homologous to OM1 and FBP2, respectively. The OsMADS7 and 8 transcripts were detectable primarily in carpels and also weakly in anthers. During newer development, the OsMADS genes started to ex...
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...
Floral patterning is regulated by intricate networks of floral identity genes. The peculiar MADS32 s...
A group of regulatory factors containing the MADS box domain is playing an important role in control...
The functions of two rice MADS-box genes were studied by the loss-of-function approach. The first ge...
With the aim of elucidating the complex genetic system controlling flower morphogenesis in cereals, ...
With the aim of elucidating the complex genetic system controlling flower morphogenesis in cereals, ...
Rice contains several MADS box genes. It has been demonstrated previously that one of these genes, O...
With the aim of elucidating the complex genetic system controlling flower morphogenesis in cereals, ...
During reproductive development, rice plants develop unique flower organs which determine the final ...
MADS-box genes play critical roles in a number of developmental processes in flowering plants, such ...
OsMADS1 is a MADS box gene controlling flower development in rice. In order to learn more about the ...
During floral induction and flower development plants undergo delicate phase changes which are under...
MADS-box genes involved in flower development have been isolated and studied in a wide variety of pl...
MADS box transcription factors controlling flower development have been isolated and studied in a wi...
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...
Floral patterning is regulated by intricate networks of floral identity genes. The peculiar MADS32 s...
A group of regulatory factors containing the MADS box domain is playing an important role in control...
The functions of two rice MADS-box genes were studied by the loss-of-function approach. The first ge...
With the aim of elucidating the complex genetic system controlling flower morphogenesis in cereals, ...
With the aim of elucidating the complex genetic system controlling flower morphogenesis in cereals, ...
Rice contains several MADS box genes. It has been demonstrated previously that one of these genes, O...
With the aim of elucidating the complex genetic system controlling flower morphogenesis in cereals, ...
During reproductive development, rice plants develop unique flower organs which determine the final ...
MADS-box genes play critical roles in a number of developmental processes in flowering plants, such ...
OsMADS1 is a MADS box gene controlling flower development in rice. In order to learn more about the ...
During floral induction and flower development plants undergo delicate phase changes which are under...
MADS-box genes involved in flower development have been isolated and studied in a wide variety of pl...
MADS box transcription factors controlling flower development have been isolated and studied in a wi...
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...
Floral patterning is regulated by intricate networks of floral identity genes. The peculiar MADS32 s...