Gene Details:
- Gene ID: MD10G1142100
- Gene Symbol: MdTST2
- Gene Name:
- Genome: Golden ASM211411v1
- Species: Malus domestica
Functional Descriptions:
- The MdCBF1/MdCBF2-MdTST1/MdTST2 module regulates sugar accumulation in response to low temperature in apple.
- Overexpression of MdCBF1 or MdCBF2 in apple calli and fruit significantly upregulated MdTST1/MdTST2 expression and increased the concentrations of glucose, fructose, and sucrose.
- Suppression of MdTST1 and/or MdTST2 in an MdCBF1/MdCBF2-overexpression background abolished the positive effect of MdCBF1/MdCBF2 on sugar accumulation.
- Simultaneous silencing of MdCBF1/MdCBF2 downregulated MdTST1/MdTST2 expression and apple fruits failed to accumulate more sugars under low-temperature conditions, indicating that MdCBF1/MdCBF2-mediated sugar accumulation was dependent on MdTST1/MdTST2 expression.
Function-related keywords:
- temperature , sugar , sucrose , low-temperature , calli , temperature-response , fructose , fructose-accumulation
Literature:
- The MdCBF1/2-MdTST1/2 module regulates sugar accumulation in response to low temperature in apple. DOI: 10.1111/tpj.16633 ; PMID: 38206080
Related News:
Gene Resources:
Orthologs:
Sequences:
cDNA Sequence
mRNA Sequence
- />MD10G1142100
TTTTTTACCAAATCTTTATTTTTAGCAAATTCTTTAACTTTTTTTCTTTATATTTCTTTTGGTTTGTTAAAGTTAAACCTACACGGCCTTGGTTCAACTGGTTCTCTCCTCTCAAAACCCCATTAGTTCTTCTCACATACTCTTCTCTAAGAAACAGAGCATCGTGTTCATTGGCTTTCTTTCGTTTTCGTTCAAGCGATATTCCAATCTAATCAGTATTACAAATTGATAATTCATACTTGAGGAATATTGTTATAGCCAACTTAATTACGTAAAACACGCGTTTAGTGGGTGATGGAACATGTAGCAGAAAGCTCAGTAGGGAGGGGGTGACGTGCAGGGCGAGGACAGAGGGAAAGGGGCAGGTGTCCAACAGCCACCGCTCTGTTCCGAAAGCTGCTTAACGAATGAGAATTGCTTTATTTTTTATTTTTGCAATAACCCTGCGTTTCGTTTTCCGTGGAAATTATAAAAAAAAGAGTGAAAATATCATCCGCAAAGAGTCAAAGTCTCGAACTCCTGACGGTGTCGTGGCATTCGAAGACAGACGCACACAACGGAACAGACCCACCATCAATCAAACGCCTATATTTCAGGATTGCTGAACAGGGTGATCAAGAACTGGTTCGATTCGTTGATATTTGATCTGGTTTTTTGTTTTTTGATTGGATTGGTTGGTTTTTCCTGAGATTTTGTGAAAGGGTTGCAATTGGTTTTGATTTTTGAGTGGAAAGATGAGTGGAGCCGTTCTTGTTGCTGTTGCTGCTGCAATCGGTAACCTGTTGCAAGGATGGGACAACGCTACTATCGCAGCTTCTGTTTTGTACATAAAGAGGGAATTCAACTTGGAAAGCGAACCAGCTGTGGAAGGGCTGATCGTGGCCATGTCGCTTATAGGGGCAACTGTGGTAACATTTTGTTCTGGGGCTGTAGCAGACTGGCTAGGCCGCCGTCCTACGCTGATAGTCTCTTCTGTCCTTTACTTTCTTAGTGGTCTTGTAATGCTGTGGTCTCCCAATGTTTATATCCTTCTCTTGGCACGGCTTTTAGATGGATTTGGAATCGGTTTGGTGGTTACCGTGGTTCCACTTTATATATCTGAGACAGCCCCACCTGAGATAAGGGGATCGTTGAATACCCTTCCACAGTTTCTTGGCTCTGGTGGGATGTTCTTGTCGTATTGCATGGTTTTTGGGATGTCGTTGACAGATTCGGCCAGTTGGAGGTTGATGCTTGGGATTCTCTCTATTCCTTCTCTTGTTTATTTTGTATTGACTGTGTTCTTCTTGCCCGAGTCTCCACGATGGCTTGTGAGTAGGGGACAGATGCTTGAGGCTAAGCAAGTTTTGCAGAGGCTACGTGGCAGAGAAGATGTCGCTGGTGAGATGGCTTTACTTGTTGAGGGTCTTGGAGTTGGGGGTGAAACGTCTTTTGAGGAGTACATAATTGGCCCAGCAGACGACTCCGCTGATGACCACAATTTATCTGCTGAAAAGGATGAAATCAGATTATATGGGCCTGAACAAGGACAATCCTGGGTCGCCAAACCTGTCACCGGGCAAAGCACTCTTGGACTTGTGTCTCGACATGCAAGCATGGTAAATCAAAGTGGGCTTGTGGATCCTCTGGTCTCGCTCTTTGGCAGTGTACATGAGAAGCTCCCCGACACAGGAAGCAAGGGAAGTATGCTTTTTCCGCACTTTGGCAGCATGTTCAGCGTGGGAGGGAATCAGCCTAGACATGAAGAGTGGGACGAGGAGAGCGTTGACAGAGAAGGAGAGGGTTACACATCTGATGCAGCCGGTGGTGATTCCGATGACAATTTGCACAGTCCATTGATCTCGCGTCAGACAACAAGCATTGAAAAGAACGTGGGCCCACCTCCCCATGGAAGCCTTGCTGGCATGAGAAACGGCAGTCTCATTGGTGGAGAGGGAGCTAGTAGCACCGATATTGGTGGCGGTTGGCAACTGGCGTGGAAATGGTCTGAGAGAGAAGGCCAAGATGGACACAAGGAAGGAGGGTTTAAAAGAATGTATTTGCGCCAGGAGGGTGTCCCTGCATCTCGCCATGGATCTATTGTTTCGATACCTGGTGGCGATGCACCGAACGACAGTGAGTTCATTCAGGCTTCTGCTTTGGTGAGTGAATCGGCTCTGTACTCACGTGAACTTATGAATCAGCATCCAGTTGGACCGGCAATGGTTAACCCAGCTGCAACTTCTGCAAAAGGGCCAAGTTGGAGTGATCTTTTTGAACCTGGAGTGAAGCATGCCTTGGCTGTTGGGGTGGGAATGCAGATACTTCAGCAGTTTTCCGGTATAAGTGGGGTTCTCTACTACACGCCTCAAATTCTTGAGCAGGCAGGCGTTGGCATCCTTCTTTCGAACTTGGGCATTAGTTCAGCTTCTTCGTCTCTGCTTATCAGTGCAGTGACAACCTTGCTGATGCTTCCTAGTATAGCCATTGCCATGAGGCTCATGGATATAGCCGGCAGAAGGAGCTTGCTGCTCGGCACAATCCCTGTCTTGGTAGTGTCTCTCGTCATCCTAGTCCTCGGAAGTCTTGTGAATATGGGCAGTGTTGTAAACGCATCAGTTTCGACTGTCAGCGTTGTGCTCTACTTCTGTTTCTTTGTTATGGGGTTTGGTCCGATCCCCAACATACTCTGTGCAGAAATCTTCCCCACCAGAGTTCGAGGCCTCTGCATTGCCATCTGCGCCCTCACCTTTTGGATTGGCGACATCATTGTCACCTACTCACTTCCAGTGATGCTCAAATCTGTTGGCCTTGCTGGTGTCTTTGGCATGTATGCAGTTGTGTCCGTCATAGCGTTTATCTTCATTTTCTTGAAAGTTCCGGAGACCAAAGGTATGCCCCTTGAAGTGATTACCGAGTTTTTCTCTGTTGGTGCGAAGCAGGCTTCAGCTGCCAAGAACAATTAACTTGATCCATGTTGGGTTAAAAGTTTTGACGGCTGTTTTATCTTCCTACTTTCGCTTCGAATCTACATTTTCTTTACTTGTTTCGGAATTGGTACGGTTGATCCTTGTAGAAAGGATCATTGTATAATTATCCCTCATTTGTTATACCAGATAAAAATGATAAAGAGTTGTGTGTACAATTTGTTCGGAACGAAAATTGTGGGTTAACCAACCTTCATATGAAAGGTGATTGCTTTACTATTTTACTTCTCGAAATTTATCTTCCTCTCCCTATTGGAGCTCCAAAATCTGGAATCCATGAGTTCGAAACCAACTTCATCTCTCTTCCACAACACAATGCGCGACTAGACGGGCACGAAGAGCTGCACTGCAGCCACCTATCAACACAACTCGCATGGAATCCGTGACAACAATATGGCAACAACCCTATGACATCTCCATCCACAAACTCCATCAAGCAGATTGCACATTCTGCGAGTCTTGCATCAACTGCTGCTTCG
Protein Sequence
- />MD10G1142100
MSGAVLVAVAAAIGNLLQGWDNATIAASVLYIKREFNLESEPAVEGLIVAMSLIGATVVTFCSGAVADWLGRRPTLIVSSVLYFLSGLVMLWSPNVYILLLARLLDGFGIGLVVTVVPLYISETAPPEIRGSLNTLPQFLGSGGMFLSYCMVFGMSLTDSASWRLMLGILSIPSLVYFVLTVFFLPESPRWLVSRGQMLEAKQVLQRLRGREDVAGEMALLVEGLGVGGETSFEEYIIGPADDSADDHNLSAEKDEIRLYGPEQGQSWVAKPVTGQSTLGLVSRHASMVNQSGLVDPLVSLFGSVHEKLPDTGSKGSMLFPHFGSMFSVGGNQPRHEEWDEESVDREGEGYTSDAAGGDSDDNLHSPLISRQTTSIEKNVGPPPHGSLAGMRNGSLIGGEGASSTDIGGGWQLAWKWSEREGQDGHKEGGFKRMYLRQEGVPASRHGSIVSIPGGDAPNDSEFIQASALVSESALYSRELMNQHPVGPAMVNPAATSAKGPSWSDLFEPGVKHALAVGVGMQILQQFSGISGVLYYTPQILEQAGVGILLSNLGISSASSSLLISAVTTLLMLPSIAIAMRLMDIAGRRSLLLGTIPVLVVSLVILVLGSLVNMGSVVNASVSTVSVVLYFCFFVMGFGPIPNILCAEIFPTRVRGLCIAICALTFWIGDIIVTYSLPVMLKSVGLAGVFGMYAVVSVIAFIFIFLKVPETKGMPLEVITEFFSVGAKQASAAKNN