Abstract Background MADS-box genes are key regulators of plant reproductive development and members of most lineages of this gene family have been extensively studied. However, the function and diversification of the ancient TM8 lineage remains elusive to date. The available data suggest a possible function in flower development in tomato and fast evolution through numerous gene loss events in flowering plants. Results We show the broad conservation of TM8 within angiosperms and find that in contrast to other MADS-box gene lineages, no gene duplicates have been retained after major whole genome duplication events. Through knock-down of NbTM8 by virus induced gene silencing in Nicotiana benthamiana, we show that NbTM8 represses miR172 togeth...
MADS-box genes have been found in all eukaryotes, but their number has greatly expanded in plants, w...
MADS-box transcription factors (TFs) are present in nearly all major eukaryotic groups. They are div...
During the past decade, MADS-box genes have become known as key regulators in both reproductive and ...
Background: MADS-box genes are key regulators of plant reproductive development and members of most ...
Background.The identity of flower organs is specified by various MIKC MADS-box transcription factors...
B-class MADS box genes specify petal and stamen identities in several core eudicot species. Members ...
MADS-box genes encode transcription factors that are involved in various aspects of plant developmen...
Experiments in Antirrinum majus, Arabidopsis thaliana and Petunia hybrida have demonstrated that put...
The timing of ¯owering is important for the reproductive success of plants. Here we describe the ide...
The MADS-box transcription factor family has expanded considerably in plants via gene and genome dup...
Plants contain a variety of the MADS box genes that encode regulatory proteins and play important ro...
MADS-box genes are a large group of transcription factors regulating various aspects of development ...
Background MADS-box transcription factors function as homo- or heterodimers and regulate many asp...
MADS-box genes encode transcriptional regulators involved in diverse aspects of plant development. H...
Members of the MADS-box transcription factor family play essential roles in almost every development...
MADS-box genes have been found in all eukaryotes, but their number has greatly expanded in plants, w...
MADS-box transcription factors (TFs) are present in nearly all major eukaryotic groups. They are div...
During the past decade, MADS-box genes have become known as key regulators in both reproductive and ...
Background: MADS-box genes are key regulators of plant reproductive development and members of most ...
Background.The identity of flower organs is specified by various MIKC MADS-box transcription factors...
B-class MADS box genes specify petal and stamen identities in several core eudicot species. Members ...
MADS-box genes encode transcription factors that are involved in various aspects of plant developmen...
Experiments in Antirrinum majus, Arabidopsis thaliana and Petunia hybrida have demonstrated that put...
The timing of ¯owering is important for the reproductive success of plants. Here we describe the ide...
The MADS-box transcription factor family has expanded considerably in plants via gene and genome dup...
Plants contain a variety of the MADS box genes that encode regulatory proteins and play important ro...
MADS-box genes are a large group of transcription factors regulating various aspects of development ...
Background MADS-box transcription factors function as homo- or heterodimers and regulate many asp...
MADS-box genes encode transcriptional regulators involved in diverse aspects of plant development. H...
Members of the MADS-box transcription factor family play essential roles in almost every development...
MADS-box genes have been found in all eukaryotes, but their number has greatly expanded in plants, w...
MADS-box transcription factors (TFs) are present in nearly all major eukaryotic groups. They are div...
During the past decade, MADS-box genes have become known as key regulators in both reproductive and ...