Gene Details:
- Gene ID: AT5G27350
- Gene Symbol: SFP1
- Gene Name:
- Description: Major facilitator superfamily protein;(source:Araport11)
- TAIR Accession:
- Genome: Araport11_genome_release
- Species: Arabidopsis thaliana
Transcripts:
Plant Ontology Annotations:
- PO:0009005 — root — raíz (Spanish, exact), radices (exact, plural), radix (exact), 根 (Japanese, exact), aerial root (narrow), climbing root (narrow)
Function-related keywords:
Literature:
- The carboxylesterase gene family from Arabidopsis thaliana. DOI: 10.1007/s00239-003-2492-8 ; PMID: 14738307
- Arabidopsis POLYOL TRANSPORTER5, a new member of the monosaccharide transporter-like superfamily, mediates H+-Symport of numerous substrates, including myo-inositol, glycerol, and ribose. DOI: 10.1105/tpc.104.026641 ; PMID: 15598803
- Nematode-induced changes of transporter gene expression in Arabidopsis roots. DOI: 10.1094/MPMI-18-1247 ; PMID: 16478044
- Arabidopsis INOSITOL TRANSPORTER4 mediates high-affinity H+ symport of myoinositol across the plasma membrane. DOI: 10.1104/pp.106.077123 ; PMID: 16603666
- Transcriptional dynamics of two seed compartments with opposing roles in Arabidopsis seed germination. DOI: 10.1104/pp.113.223511 ; PMID: 23858430
- Endogenous Arabidopsis messenger RNAs transported to distant tissues. DOI: 10.1038/nplants.2015.25 ; PMID: 27247031
- Transcription factor RD26 is a key regulator of metabolic reprogramming during dark-induced senescence. DOI: 10.1111/nph.15127 ; PMID: 29659022
Sequences:
cDNA Sequence
- >AT5G27350.1
AGCTTTCCAATCCAACCCTTAATTAGAAGTCTTCACCATTTGCTGGTTAAAGGATATTTTTTCAAAGTGTTTAGCATTTTGTATACGTCAAACTATTTTAGAATCCAGATGATGAATGATCATATACTAATACTTAGCTGTATTTTTATAATTTAAAACAACAAAACTTGGTTTAATGAAATTTGACTTGATCTTGTTTAAAAAAACGTCTCACGTCCACACGTTAGCTTTTCCAATCCAAAACCCCTAAAGAGTAGAAAACCAAAATAACCATTTTTAATTCCCAGCCTCTTTTTATACGTAGTCTAAATTGACAAACACATCATTCGCTCTCTTTCTCTTCTTTCTCTAGCTCTCTTGGTTTTTTGCTAAAAACAGAGCATTTTCTCTCTAGCTCTCACTGTTTCTTTACCATAAGTTTCGTCATATTAGTACATGCAAGTGTAAGGGATGGTGATGGAGGAAGGAAGAAGCATAGAAGAAGGGCTTTTGCAGCTCAAGAACAAAAACGACGATTCAGAGTGTCGTATTACTGCTTGTGTTATCCTTAGCACTTTTGTCGCCGTTTGTGGCTCCTTCTCTTTTGGTGTTGCTACTGGTTACACTTCAGGTGCTGAGACAGGAGTTATGAAGGACTTGGATCTTTCTATCGCGCAATTTTCAGCTTTTGGCTCATTCGCCACTTTAGGAGCTGCAATTGGTGCACTGTTCTGCGGTAATCTGGCAATGGTCATTGGCAGAAGAGGGACAATGTGGGTCTCCGATTTCCTATGCATCACTGGTTGGCTCTCCATCGCTTTTGCTAAGGAAGTAGTGTTGCTGAACTTCGGAAGAATCATTTCAGGGATAGGTTTCGGCTTGACGAGCTATGTGGTACCTGTCTACATAGCAGAAATTACGCCAAAACATGTTCGTGGTACATTTACGTTTTCAAACCAGCTTCTTCAAAACGCTGGACTCGCCATGATTTATTTCTGTGGGAATTTCATCACTTGGAGGACGTTGGCTTTATTAGGTGCTTTACCATGCTTCATTCAAGTAATCGGTTTATTCTTCGTGCCAGAGTCTCCAAGATGGCTGGCCAAAGTTGGCTCCGATAAAGAACTAGAAAATTCACTGTTTCGGCTTAGAGGAAGAGATGCTGATATTTCACGTGAAGCCTCAGAAATTCAAGTAATGACCAAAATGGTGGAAAATGATTCAAAGTCGAGTTTTTCAGATTTGTTCCAGAGAAAGTATAGATACACCCTCGTGGTAGGAATCGGGCTAATGTTGATACAACAATTCTCAGGAAGTGCTGCTGTAATCTCTTATGCAAGTACCATTTTTAGAAAAGCTGGTTTTTCGGTGGCCATTGGAACGACGATGCTAGGTATCTTCGTGATTCCAAAAGCCATGATTGGCCTCATTCTTGTCGATAAATGGGGCAGACGTCCTCTCCTGATGACTTCAGCGTTTGGGATGAGCATGACTTGCATGCTACTTGGGGTCGCCTTCACATTACAGAAAATGCAATTGCTTTCGGAACTAACTCCAATATTATCGTTTATATGCGTAATGATGTATATTGCAACTTATGCAATAGGCTTGGGAGGTCTACCTTGGGTAATTATGTCGGAGATATTTCCAATAAATATAAAAGTAACTGCAGGAAGTATAGTTACGTTAGTCTCATTTTCAAGTAGTTCAATCGTCACTTACGCTTTCAACTTTCTGTTCGAATGGAGCACTCAAGGAACGTTTTTCATATTCGCGGGTATCGGTGGAGCAGCGTTGCTTTTTATATGGTTGCTCGTTCCAGAAACGAAAGGATTATCACTCGAAGAAATACAAGTTTCACTTATTCATCAGCCCGATGAAAGAAATCAAACTTAATTTGAATTATTTTATTTTATTATAAAAATGATCAAATTCAGTTTATGGTGTTATATTTGTTTATTTACAAACAAGGATTTTTTTTTTTCATTATGTAATTACTACTTTATTTTTCTGGGTAATTAGCCCCATTTTTATGATGTATATTTACGAGATGTAAAACTTGGCCTACGTACATGTGTATTTTATCTCTAAAATTGCAAATGTAATATTTTTCGGACATATATTAAAGAAGAGATTGATTTCTAGT
CDS Sequence
Protein Sequence