The SQUAMOSA promoter binding protein (SBP)-box gene family is a plant-specific transcription factor family. This family plays a crucial role in plant growth and development. In this study, 20 SBP-box genes were identified in the tea plant genome and classified into six groups. The genes in each group shared similar exon-intron structures and motif positions. Expression pattern analyses in five different tissues demonstrated that expression in the buds and leaves was higher than that in other tissues. The cis-elements and expression patterns of the CsSBP genes suggested that the CsSBP genes play active roles in abiotic stress responses; these responses may depend on the abscisic acid (ABA), gibberellic acid (GA), and methyl jasmonate (MeJA)...
The SQUAMOSA PROMOTER BINDING PROTEIN (SBP)-box gene family contains highly conserved plant-specific...
The SQUAMOSA PROMOTER BINDING PROTEIN–LIKE (SPL) gene family is an SBP-box transcription family in A...
Abiotic stresses, including extreme temperature, drought and salinity, seriously threaten the growth...
The SQUAMOSA promoter binding protein (SBP)-box gene family is a plant-specific transcription factor...
Heat shock proteins (HSPs) function as molecular chaperones. These proteins are encoded by a multige...
Plant stress-associated proteins (SAPs) contain A20/AN1 zinc finger domains and are involved in plan...
SQUAMOSA promoter binding protein (SBP)-box gene family encodes a group of transcription factors tha...
The plant-specific LBD (LATERAL ORGAN BOUNDARIES DOMAIN) genes belong to a major family of transcrip...
Cysteine-rich polycomb-like (CPP) is a small gene family in plants, which plays key role in plant de...
Transcription factors play vital roles in the developmental processes of plants. The SQUAMOSA promot...
The tea plant is an important economic crop and is widely cultivated. Isopentenyl transferase (IPT) ...
Abiotic stress possesses serious threat to plant distribution and production. In response to stress,...
Superoxide dismutases (SODs), as a family of metalloenzymes related to the removal of reactive oxyge...
The tea plant (Camellia sinensis (L.) O. Ktze) is an important cash crop grown worldwide. It is ofte...
Pathogenesis-related 1 (PR-1) proteins, which are defense proteins in plant–pathogen interactions, p...
The SQUAMOSA PROMOTER BINDING PROTEIN (SBP)-box gene family contains highly conserved plant-specific...
The SQUAMOSA PROMOTER BINDING PROTEIN–LIKE (SPL) gene family is an SBP-box transcription family in A...
Abiotic stresses, including extreme temperature, drought and salinity, seriously threaten the growth...
The SQUAMOSA promoter binding protein (SBP)-box gene family is a plant-specific transcription factor...
Heat shock proteins (HSPs) function as molecular chaperones. These proteins are encoded by a multige...
Plant stress-associated proteins (SAPs) contain A20/AN1 zinc finger domains and are involved in plan...
SQUAMOSA promoter binding protein (SBP)-box gene family encodes a group of transcription factors tha...
The plant-specific LBD (LATERAL ORGAN BOUNDARIES DOMAIN) genes belong to a major family of transcrip...
Cysteine-rich polycomb-like (CPP) is a small gene family in plants, which plays key role in plant de...
Transcription factors play vital roles in the developmental processes of plants. The SQUAMOSA promot...
The tea plant is an important economic crop and is widely cultivated. Isopentenyl transferase (IPT) ...
Abiotic stress possesses serious threat to plant distribution and production. In response to stress,...
Superoxide dismutases (SODs), as a family of metalloenzymes related to the removal of reactive oxyge...
The tea plant (Camellia sinensis (L.) O. Ktze) is an important cash crop grown worldwide. It is ofte...
Pathogenesis-related 1 (PR-1) proteins, which are defense proteins in plant–pathogen interactions, p...
The SQUAMOSA PROMOTER BINDING PROTEIN (SBP)-box gene family contains highly conserved plant-specific...
The SQUAMOSA PROMOTER BINDING PROTEIN–LIKE (SPL) gene family is an SBP-box transcription family in A...
Abiotic stresses, including extreme temperature, drought and salinity, seriously threaten the growth...