Gene Details:
- Gene ID: AT5G11800
- Gene Symbol: ATKEA6, KEA6
- Gene Name: ARABIDOPSIS THALIANA K+ EFFLUX ANTIPORTER 6, K+ efflux antiporter 6
- Description: K+ efflux antiporter 6;(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:
- Phylogenetic relationships within cation transporter families of Arabidopsis. DOI: 10.1104/pp.126.4.1646 ; PMID: 11500563
- Membrane proteomic analysis of Arabidopsis thaliana using alternative solubilization techniques. DOI: 10.1021/pr060525b ; PMID: 17432890
- Golgi-localized cation/proton exchangers regulate ionic homeostasis and skotomorphogenesis in Arabidopsis. DOI: 10.1111/pce.13452 ; PMID: 30255504
- K(+) Efflux Antiporters 4, 5, and 6 Mediate pH and K(+) Homeostasis in Endomembrane Compartments. DOI: 10.1104/pp.18.01053 ; PMID: 30309966
- Evidence for potassium transport activity of Arabidopsis KEA1-KEA6. DOI: 10.1038/s41598-019-46463-7 ; PMID: 31296940
- Phylogenetic relationships within cation transporter families of Arabidopsis. DOI: 10.1104/pp.126.4.1646 ; PMID: 11500563
- Membrane proteomic analysis of Arabidopsis thaliana using alternative solubilization techniques. DOI: 10.1021/pr060525b ; PMID: 17432890
Sequences:
cDNA Sequence
- >AT5G11800.1
GATATGTCGTAAATTGTACAGTATAGTCTTGTTATATGTAGAGAGCCTATGTATGGACTGTTTGTTGACCATTGCAACAATCTCACTTTCCCTCTCTCCCCACTTGCCCACTCCTCGTCCTCGATCGAGAGACTCGCGACGGTTCCGGTTCTTCTGCTAGACCGTTGCTCCAGTCCGGTTTAATCCAGAACCAGTTGTTCTGCCATGGTGGAAGGAAGAAGAAGAAGAAGATTCTCGCTCTCCTCTCAACAGCTAGCTCTCCTCTTACTTTTACTCTCCTTCTTCCTCTGCTTCTCCGTCGCGTCTCCTCGAGCTATATCTGATTCGGATCTACTGGATGAAACAGTCGCCAACTCCTCCTCTTCCGTCGCATCTCTCAACGCTTCTTCTTCTTCTTCTCTTGTTAAGCCTAAGGAAGGTAGCTTCGCCGACATCATCGATCGTGCTCTTGAAAAAGAGTTCAATGAAAGCGACCAGAATGAAGTGGCTGATCCTGGAAGCTTCAATAACAGTGTAGCTGGACAACAGGCTGTTCTGGAAACTGTAGCCCGAGTAAAGTCGACCAAGAAAAATGAGACAAAAGAGGAGAAGCGTTTTCAACTCCATGATGTTTTCAACTTGAACAATGATAACAGAGCTGAGGACACTCCAACTCTCATTGATCGAAAAGACAATGTCTTCATCATATCCAATTCCAAATCAAAGTATCCAGTATTGCAGCTAGACTTGAGACTGATATCAGACCTGGTGGTTGTCATTGTATCTGCAACTTGTGGTGGTATCGCCTTTGCTTGTGCTGGACAGCCGGTGATAACTGGATATTTGCTAGCAGGATCTATCATTGGGCCTGGAGGATTGAACTTCATCAGTGAGATGGTCCAGGTTGAAACAGTTGCCCAGTTTGGTGTGGTATTTCTGCTCTTTGCTTTGGGTCTAGAGTTCTCCACTGCTAAGCTTAAAGTTGTTCGATCAGTTGCTGTTCTGGGAGGCCTTCTTCAAATTCTTCTATTCATGTTCTTGTGCGGTATCACAGTGTCGTTATGCGGTGGTAAACGTTCGGAGGGGGTATTTGTAGGAGCCTTTTTGTCAATGTCATCAACTGCGGTGGTGCTGAAGTTTCTCATGGAAAAGAATTCAACTAATTCTCTTCATGGCCAAGTTACGATTGGAATCCTAATTCTTCAGGACTGTGCTGTGGGTTTGCTGTTTGCTTTGCTTCCAGTTCTCGAGGGAAATTCTGGCATTGTTCATGGAATGTTGTCAATAGGAAAAGTGGTGGTTTTGTTGCTTTCGTTTTTGGCTGTTTTGTCAATATTATCACGGACATGTATTCCTTGGTTGCTGAAGCTAATGGTCAGCTTATCGTCACAGACAAATGAACTCTATCAGTTAGCGGCTGTTGCGTTTTGTCTACTTGTAGCCTGGTGTAGTGATAAGCTGGGATTAAGTCTTGAATTGGGTTCTTTTGCTGCGGGGGTCATGATATCCACTACTGATCTCGCTGAACATACATTGGAGCAAATCGAACCCATCCGTAATTTATTTGCTGCTCTTTTCCTAGCCAGCATTGGGATGTTAGTTAATGTCCATTTTCTGTGGACACATGTGGATATACTGTTAGCCTCTGTGATATTAGTTATTATTATAAAGACAACAATAGTTACAACCGTTGTTAAGGGATTTGGATACAACAATAAGACGGCTCTTCTGGTTGGAATATCTCTGGCTCAGATAGGGGAGTTTGCCTTTGTACTACTTAGCCGTGCCTCCAATCTTCACCTCATCGAAGGGAAACTCTATCTGCTTCTCCTTGGGACAACCGCTCTAAGCCTGGTTACGACACCGCTGGTTTTCAAAATGATACCAGCAGTTGTACATCTTGGGATATTGTTGAAATGGTTTTCTCCAGACAGTACTATAGAGAAAGGAGAAATTGTAAGATCAGAAAGTGGGAAACAACGGATGATTCTAATGTCACGTCAATCCCACAGCTCCTAAAACCACAAAATGTTCTTCTCAACTAAAGTTTGGTACACTCAATCAATTTTGACAAAAGAAAAATGTGGAAAAGAAGAGAAAAAGATTTTAACACTAACATTGTTTGTTTCCTGGGAGTAACTAACCCACAAGTCCACAACCCATTTGTTTCCCTTGTAATTAGCATTGTTTCTTTTTACTATTTTTTTCATGTAATGTATCACAAAACAAGTTTGATTTTTTCTCCTGTAATCATATACTCGGCCTATACAACTTTGTGCAACCAAAAATATGTGGAATCAGATCTTCTCTGTTTAATTTTTGAAGGCACATGTTTTAGC
CDS Sequence
Protein Sequence