Gene Details:
- Gene ID: Vitvi08g01720
- Gene Symbol: VvSBP8
- Gene Name: SBP-type domain-containing protein
- Genome: Vitis vinifera PN40024.v4
- Species: Vitis vinifera
Functional Descriptions:
- miR156b-targeted VvSBP8/VvSBP13 functions downstream of the abscisic acid signal to regulate anthocyanins biosynthesis in grapevine fruit under drought.
- Furthermore, two miR156b downstream targets, VvSBP8 and VvSBP13, exhibited reduced grape anthocyanin content in their overexpressors but there was a contrary result in their CRISPR-edited lines, the decrease in anthocyanin content was rescued in miR156b and SBP8/13 double overexpressors.
- VvSBP8 and VvSBP13, encoding transcriptional repressors, displayed sufficient ability to interact with VvMYC1 and VvMYBA1, thereby interfering with MYB-bHLH-WD (MBW) repeat transcriptional complex formation, resulting in the repression of anthocyanin biosynthesis.
Function-related keywords:
Literature:
- miR156b-targeted VvSBP8/13 functions downstream of the abscisic acid signal to regulate anthocyanins biosynthesis in grapevine fruit under drought. DOI: 10.1093/hr/uhad293 ; PMID: 38371638
Related News:
Gene Resources:
Orthologs:
Sequences:
cDNA Sequence
- >Vitvi08g01720_t001
CCACTCTTCTATCGGTATCTGTTGCTTTTGTCACTCTTTACACAAGTGTTTCCTTTTCCCCTCTTTTCTATATCTTCGTGACCCACAAGAAAAATACCCATGAATGGACTCTAGGAGCGCCACACATGGAAAGGGGTTCGAGCTCTTTGACCGTTTCCAGCTCTTCGGCCAACTCGTCTGAGTCGCTCAACGGGTTGAAATTTGGGCAGAAGATATATTTTGAAGATTTGGGTGTTGGAGCTCCGGCCAAATCGGGAACCGGGTCCTCCTCCTCCTCCTCTGCCGCCGGCTCCGGTGGTCGCCCACCTCCGGCGCCACCAAAGAAGGTAAGAGGTAGTGGGGTTGTTCAGGGAGGCCAACCACCGAGGTGTCAAGTTGAAGGGTGTAAAGTAGATCTGAGTGATGCCAAAGCTTACTATTCAAGGCATAAAGTGTGTGGTATGCATTCGAAGTCTCCAACGGTCATTGTTGCGGGCCTTGAGCAGAGGTTTTGCCAGCAGTGTAGCAGATTTCATCAGCTTGCCGAATTTGACCAAGGAAAACGAAGTTGTCGTAGGCGCCTGGCTGGTCATAATGAGCGTCGCAGGAAGCCACCACCTGGATCTTTATTGTCCTCACGCTATGGGCGACTTTCTTCATCCATTTTTGAAAACAGCAGCAGGGTGGGAGGAGGCTTTCTGATGGACTTTGCTGCATACCCAAGGCATCCCGAGAGGGATACTTGGCCAACTACAAGAGCATCTGATCGGGTACCTGGAAATCAAACCACTGCGATGGGAAGGTTTCTTCCACATCCATGGCAGAGCAACTCTGAGAATCCTCTCTTTCTGCAAGGTTCAGCAGGCGGGACCAGCTTTCATGGTCCTGGAATTCCTTCAGGAGAATGTTTCACAGGGGCCTCCGACTCAAGCTGTGCTCTCTCTCTTCTGTCAAATCAGCCATGGAGCTCCAGGAATCGAGCATCTGGTCTTGGAGCAAACAGCTTCATGAATCCTGAAGGGGCATCCATGGCGCAACCCACAGCTCCTCATAGTGCAGCTATCAATCACTTCCCAAGCACCTCGTGGGATTTCAAGGGCAATGAAGGTAGTAGCAGTTCGCAGGAGATGCCACCTGATCTTGGTCTTGGTCAAATTTCACAGCCTATTAATAGCCAGTTCTCAGGTGGGGGCGAGTTGCCCCAACAGAGTGGAAGGCAATACATGGAACTCGAGCACTCCAGGGCTTATGACTCTTCCACTCAGCAGATGCACTGGTCACTTTAGGTGCCAACTTACCATCTGGTTTGTATGAACAC
CDS Sequence
- >Vitvi08g01720_t001
ATGGAAAGGGGTTCGAGCTCTTTGACCGTTTCCAGCTCTTCGGCCAACTCGTCTGAGTCGCTCAACGGGTTGAAATTTGGGCAGAAGATATATTTTGAAGATTTGGGTGTTGGAGCTCCGGCCAAATCGGGAACCGGGTCCTCCTCCTCCTCCTCTGCCGCCGGCTCCGGTGGTCGCCCACCTCCGGCGCCACCAAAGAAGGTAAGAGGTAGTGGGGTTGTTCAGGGAGGCCAACCACCGAGGTGTCAAGTTGAAGGGTGTAAAGTAGATCTGAGTGATGCCAAAGCTTACTATTCAAGGCATAAAGTGTGTGGTATGCATTCGAAGTCTCCAACGGTCATTGTTGCGGGCCTTGAGCAGAGGTTTTGCCAGCAGTGTAGCAGATTTCATCAGCTTGCCGAATTTGACCAAGGAAAACGAAGTTGTCGTAGGCGCCTGGCTGGTCATAATGAGCGTCGCAGGAAGCCACCACCTGGATCTTTATTGTCCTCACGCTATGGGCGACTTTCTTCATCCATTTTTGAAAACAGCAGCAGGGTGGGAGGAGGCTTTCTGATGGACTTTGCTGCATACCCAAGGCATCCCGAGAGGGATACTTGGCCAACTACAAGAGCATCTGATCGGGTACCTGGAAATCAAACCACTGCGATGGGAAGGTTTCTTCCACATCCATGGCAGAGCAACTCTGAGAATCCTCTCTTTCTGCAAGGTTCAGCAGGCGGGACCAGCTTTCATGGTCCTGGAATTCCTTCAGGAGAATGTTTCACAGGGGCCTCCGACTCAAGCTGTGCTCTCTCTCTTCTGTCAAATCAGCCATGGAGCTCCAGGAATCGAGCATCTGGTCTTGGAGCAAACAGCTTCATGAATCCTGAAGGGGCATCCATGGCGCAACCCACAGCTCCTCATAGTGCAGCTATCAATCACTTCCCAAGCACCTCGTGGGATTTCAAGGGCAATGAAGGTAGTAGCAGTTCGCAGGAGATGCCACCTGATCTTGGTCTTGGTCAAATTTCACAGCCTATTAATAGCCAGTTCTCAGGTGGGGGCGAGTTGCCCCAACAGAGTGGAAGGCAATACATGGAACTCGAGCACTCCAGGGCTTATGACTCTTCCACTCAGCAGATGCACTGGTCACTTTAG
Protein Sequence
- >Vitvi08g01720_P001
MERGSSSLTVSSSSANSSESLNGLKFGQKIYFEDLGVGAPAKSGTGSSSSSSAAGSGGRPPPAPPKKVRGSGVVQGGQPPRCQVEGCKVDLSDAKAYYSRHKVCGMHSKSPTVIVAGLEQRFCQQCSRFHQLAEFDQGKRSCRRRLAGHNERRRKPPPGSLLSSRYGRLSSSIFENSSRVGGGFLMDFAAYPRHPERDTWPTTRASDRVPGNQTTAMGRFLPHPWQSNSENPLFLQGSAGGTSFHGPGIPSGECFTGASDSSCALSLLSNQPWSSRNRASGLGANSFMNPEGASMAQPTAPHSAAINHFPSTSWDFKGNEGSSSSQEMPPDLGLGQISQPINSQFSGGGELPQQSGRQYMELEHSRAYDSSTQQMHWSL