The MADS-box gene family encodes transcription factors with many biological functions that extensively regulate plant growth, development and reproduction. Erigeron breviscapus is a medicinal herb used widely in traditional Chinese medicine, and is believed to improve blood circulation and ameliorate platelet coagulation. In order to gain a detailed understanding of how transcription factor expression may regulate the growth of this potentially important medicinal plant, a genome-wide analysis of the MADS-box gene family of E. breviscapus is needed. In the present study, 44 MADS-box genes were identified in E. breviscapus and categorized into five subgroups (MIKC, Mα, Mβ, Mγ and Mδ) according to their phylogenetic relationships with the Ara...
MADS-box transcription factors are key regulators of several plant development processes. Analysis o...
MADS-box transcription factors play an important role in regulating floral organ development and par...
The type I MADS-box genes constitute a largely unexplored subfamily of the extensively studied MADS-...
MADS-box genes are important transcription factors for plant development, especially floral organoge...
MADS-box genes are important transcription factors for plant development, especially floral organoge...
Abstract Background MADS-box genes play important roles in vegetative growth and reproductive develo...
MADS-box transcription factors play an important role in regulating floral organ development and par...
MADS-box transcription factors play an important role in regulating floral organ development and par...
The MADS-box gene family encodes a number of transcription factors that play key roles in various pl...
MADS-box transcription factors play an important role in regulating floral organ development and par...
The MADS-box transcription factors are known to be involved in several aspects of plant growth and d...
The MADS-box gene family controls plant flowering and floral organ development; therefore, it is par...
The MADS-box transcription factors have garnered substantial attention due to their crucial involvem...
MADS-box transcription factors are important for plant growth and development, and hundreds of MADS-...
MADS-box transcription factors are key regulators of several plant development processes. Analysis o...
MADS-box transcription factors are key regulators of several plant development processes. Analysis o...
MADS-box transcription factors play an important role in regulating floral organ development and par...
The type I MADS-box genes constitute a largely unexplored subfamily of the extensively studied MADS-...
MADS-box genes are important transcription factors for plant development, especially floral organoge...
MADS-box genes are important transcription factors for plant development, especially floral organoge...
Abstract Background MADS-box genes play important roles in vegetative growth and reproductive develo...
MADS-box transcription factors play an important role in regulating floral organ development and par...
MADS-box transcription factors play an important role in regulating floral organ development and par...
The MADS-box gene family encodes a number of transcription factors that play key roles in various pl...
MADS-box transcription factors play an important role in regulating floral organ development and par...
The MADS-box transcription factors are known to be involved in several aspects of plant growth and d...
The MADS-box gene family controls plant flowering and floral organ development; therefore, it is par...
The MADS-box transcription factors have garnered substantial attention due to their crucial involvem...
MADS-box transcription factors are important for plant growth and development, and hundreds of MADS-...
MADS-box transcription factors are key regulators of several plant development processes. Analysis o...
MADS-box transcription factors are key regulators of several plant development processes. Analysis o...
MADS-box transcription factors play an important role in regulating floral organ development and par...
The type I MADS-box genes constitute a largely unexplored subfamily of the extensively studied MADS-...