This site uses cookies to provide logins and other features. Please accept the use of cookies by clicking Accept.
Tomato locus X-intrinsic protein 1.6
| Locus details | Download GMOD XML | Note to Editors | Annotation guidelines | 
[loading edit links...] 
 | 
[loading...]
  
      
  | 
    
  | 
	 Links to external databases
	 Links to external databases
 | 
| Registry name: | None | [Associate registry name] | 
	 Notes and figures (0)
	 Notes and figures (0)
 | [Add notes, figures or images] | 
Success
The display image was set successfully.
| Image | Description | Type | 
|---|
	 Accessions and images (0)
	 Accessions and images (0)
 | [Associate accession] | 
  Accession name:
  
  
  
  
  Would you Like to specify an allele?
  
  
      
 
| Alleles (0) | None | [Add new Allele] | 
	 Associated loci (46)
	 Associated loci (46)
 | [Associate new locus] | 
[loading...] 
 | 
	 Associated loci - graphical view
	 Associated loci - graphical view
 | View X-intrinsic protein 1.6 relationships in the stand-alone network browser | 
[loading...]  | [Legend] [Levels]  | 
	 SolCyc links
	 SolCyc links
 | 
[loading...]
	 Sequence annotations
	 Sequence annotations
 | 
	 Genome features
	 Genome features
 | 
	 Genomic sequence
	 Genomic sequence
 | unprocessed genomic sequence region underlying this gene | 
                
    
  >Solyc01g111010.2 SL2.50ch01:97423358..97427715
    
  
ATGGCTATCCGTATGCCTCGAATAATCAAGAAGTCTTCAGATATTCCCAAGGGTCACTTTGTTGTGTATGTTGGAGAGAAACAGAAGAAGAGATTTGTGATTCCGATATCATTCTTGAGTGAACCTTTATTTCAAGATTTGCTTAATCAAGCTGAGGAGGAATTCGGCTTTGATCATCCAATGGGTGGTGTCACAATTCCCTGCACTGAGGATTTGTTTGTCAATCTTACATCTCGCTTGAGGAAGTGAGATGAAAACCAATCCCCATTCTTTTGCTTACACAATTTTGTAACTACGTAAAGCAGGATTTTCAGTGTACAGTTCAGGAGTTAGAAGAAATAGTAACTTGACGTTAGAATTAGGGGAGTCTAACTAGTTAGACTAATGAATTTAGCTCCATAAAAGAATGTAGATGTAATACTGTCTCTTGATTAAGTTGACACTTTTCTACTTCAAAAGAAATTAAAGCAATTATATTTTTTTTACTTCTATGGTTCCATTCAATTCCTCAATAACTCATTGCAATATAAAAATTCTGTATACAAATACAATGAGCTTGTTGATCGGTTTTCTTTGTTCTTATCTGATCCAAGATCTTAAGTATTTCCACTCCTGATTAAAATGTGTAAGTTAATTTACTTATGATAAGATATGGCATCTGTACTTCTCTTGAATATTGAACACAGATATCTGGCAATAACAAGATTATGAGTTATAATAAAGGAAATTTGGAAATTGTAGCCTTCTGTATTCTCTGTTATTTGGGAACATTTTCTCTGCTGAGATAATTCGAGTAATTATTATCTAGCTAGTTGATCCTGCATGATGACTTAGCATGAGGGACCAAACAACTTTGTCAGATATTGCTGTAAATTTGTTTCTAATTGTAGAGTTTATTGAATTACAAGACAATTAGAAATGGTTATAATTTGATCAAAGATCATGTGTTAGACAATTACATTTTATAAATTTGATTTCTAAAGATTCTTTGTTCTCTATCCTGTCATGAAAAACATTGTGTCCTGCTGTTCTACAGGCACAATGGCCTAAAATCATATATACTGGGCAAAGAGTTGAATAGCAAAACCATGTGATACTTCATGTGCTATTGCCAATCAACAGTTCAACAAAATGCCTCTCTACCAGCTAAAAATCTTACATATGATTGATTTGTTTTCTCTAATAGTTTGTTTATACATGGACACATGACAGTTTGCATCTGGGGTATGTTCCAGTGCTAGTGGACAGTGTTGCAGACACAAATCGTCATAAGGCACATATGGTTTTGATGATGAGAGGTCCTTTGTTCCAGGTATGAGAAAAAAGGTAGGACCTATTGTTGTTGAACTTATATGAGCTAAAGTAATTAATTTTGTCAATTAGTTGGAAGACAGAACCATGTGGTAATTGATATGTCATTGTCTTCACCACAAATAATGAGATTTTATGACTTGCCATTTGCTTATATAAACTTGTTTTGAGAAGTTGTGACCACCACAACTCTACACAAAACAAAGAATACTACTTAAAGCTTTTCTGTTCTTTTGGGATCTTAAGTACTCTTTCTCTTCATACTTTGCGCATCTTAAATTAAAGATCATGGCTATTCGTGTACCTCGTATAATCAAGAAGTCCTCGACATCTCTACAAGTTCCCAAGGGACATTTTGCTGTTTATGTTGGGGAGAAGCAGAAGAAGAGATTTGTGATACCAATATCATACTTGAGCCAATCTTCATTTCAAGACTTGCTAAGTCAAGCAGAGGAAGAATTTGGCTTCGATCATCCAATGGGTGGTGTCACAATTCCATGTCCAGAAGACATTTTTATTGCCATCACTTCTCAGCTTAATTAGGATTTGAGAACATAGTTGAGATCATTTTTTCTTTTTATAGGTCTAACAATTTTGTATACAAATTAAAGAAGGAGATCCATATTGTACAGTTGATTAGTTACAAGTTAAATGAGACTTAGCACCTCAAAGATTGGTGGTTTTTTAGCTAATTCAGAGAATACAATACGTCATTTTCTCTCTCTTAAATTGTGTTTCCTGGTTTATGTTTAAAAAGTTTTGCTTCAATCAGTTATCAATTGGGCTGCAATATGCCCTAGACTATCTAGTATAGCTCCAAGCATATAATAGCAACAACATACCTAGTGTAGTCCCATGACATGGAGTCCTGAAAAGTAGAGTGTAGGCGTATCTACCTCTAGCTCGTAGGTGGAGCTCCGAGTATCTACAACTTTATTTATTTATTTATTTATTTATTTATTGCTATCAACAAAATAATATTAGAATAGATTATCTACAAGGGGACATGCCAAAATATGTCTTTGTTTTTTAACCTTATTTCTTGGTAGGGTATAACATATATATGTCGTGAAGTGTTGAATAAAAAGGATTATCCGTTATATTTAGGGTATATGCGTGAAAAGGGATCTTAGACTAAGTGTATTTTGACACTAACAATGAATAGAAATGTTATAAACTAGTCCAGCTCGATGTACAAACATACAAATATATATTTTTAAAAAGAAAAAGAAAAAAAGTAGTTAATTTAGGAAGCTTTATACATATATAACCCGCCAAATGGACATACTTTTTCATGAAAAAAAAAACATAACTTGTTGAACGTTTATCCTTATGGATTCTACTAATGGAAATGTTCTAGGGGATGAAGAAAGTCAGCTTTCTTTTGGAAGCAGTAATAAAATTCAACCTACTATCTCTATTACACAAAAGCAAGTACCCAGGTTTTCTTTTTAAACTCTTCCCTCATCACTATTTATGATAAGCCTCAGATATTTTATCTTTTTTTGGTTTGATATCTTTTCAATTTGTTCTTACATATATGTATGGTGTTTGGCTTCTTTTTTTAACAGCTCAGATGATGAAAAGAAGAAGTATACTTGTCTCACAATGGCTGAAAGGCTGGGCTTACCTGACTTCTTCTCTTTGGACGTTAGTATATTTCATCTCTTACTCATCTTCTATACGACTGTATTGACTAAGCAATAGAATTCGACTATTTTTTATGTAGGTGTGGCGAGCATCGGTTGGAGAGCTTTTAGGCTCTGCGGTTCTTGTTTTTATGTTGGACACCGTAGTGATTTCCACCCTAGAAAGTGATGTCAAAATGCCAAATTTGATTATGTCAATTCTCATAGCAATTACACTCACCATTCTAATCCTTGCTGTTTTTCCTGTGTCTGGTGGCCACATTAGCCCTGTAATTACCTTCTCCTCAGCACTAGTGGGACTAATATCAATGTCACGAGCCATAATTTACATAGTGGCACAATGTGTTGGTGCTATTTTAGGTGCACTAGCACTCAAAGCTGTGTTGAGTAGTACCATTGAACAAAGATTCTCTCTTGGTGGTTGTACCGTTACGGTAGTTACGCCTGGGCTCAATGGGCCTGAAATTGTGGGCTTGGAGATAGCCCAAGCATTTTGGCTTGAGTTTATGTGTACATTTGCTTTGCTTTTTGGTTCACTTTGGATGGCCTATGATCATCGCCAGTCCAAGGCACTTGGGCTTATTACTGTCATGTCTATTGTTGGGCTTCTAGCAGGGATTCTTGTGTTTATTTCAACTTCAGTTACTGCTAAAAAGGGCTATGCTGGAGCTGGAATGAATCCAGCTAGGTGCTTTGGAGCTGCTTTTGTTAGAGGAGGCCACCTGTGGAATGGGCATTGGATCTTTTGGGTTGGGCCTGGACTTGCTTGTTTTGCTTTCTACTTCTATACAAAGATCATTCCTTCGGATCATTTCCAAACTGATGGATACAAGCATGATTTCTTAGCGATAATCGAGACATTGTTCAATCAGAGATAGTGTAGTAGTAGTTTTTGCAAATCATGTACTTATTGCAAACAAAATCCCTATCAGTGGTAAACATATAACTTGTATCCTTGTCAATTGTTTAGCTAGCATTCGCTCAAAAATAGCCCGACTCAATATCACAAACTGCACATAGAACAACTAGTGGCACTTGGACTGCTCCATGTGTAGTCCAATTGATAAGCACAGATTCTGCGGTAACGGTTTGTATGCTTTCTTCTTGCTTCTTTCTCCTCTGGCATCAAAAATTCACCTAGCCAGTTTTCCAATTTTCATTACAAAGTCAACTGGCAGCTACAGCACTCTGTTGTATCATCATGGTCATTAACTAAACCAGACCATTAATTCATTAATTAATTGAGTTGTCTAGTTTCATTAGCCCTCCTTGAACTTCTCCTAATCTAAGGACAAATCACCAGTTCGAATAGTACGTTGTTGATGGCTTATTCCTTTTCGTAGCCGTGTCTGGGAGAAGCTGAAACCTGTCTGTTCCCAACTAAAAGGTGATTCGAGC
              
ATGGCTATCCGTATGCCTCGAATAATCAAGAAGTCTTCAGATATTCCCAAGGGTCACTTTGTTGTGTATGTTGGAGAGAAACAGAAGAAGAGATTTGTGATTCCGATATCATTCTTGAGTGAACCTTTATTTCAAGATTTGCTTAATCAAGCTGAGGAGGAATTCGGCTTTGATCATCCAATGGGTGGTGTCACAATTCCCTGCACTGAGGATTTGTTTGTCAATCTTACATCTCGCTTGAGGAAGTGAGATGAAAACCAATCCCCATTCTTTTGCTTACACAATTTTGTAACTACGTAAAGCAGGATTTTCAGTGTACAGTTCAGGAGTTAGAAGAAATAGTAACTTGACGTTAGAATTAGGGGAGTCTAACTAGTTAGACTAATGAATTTAGCTCCATAAAAGAATGTAGATGTAATACTGTCTCTTGATTAAGTTGACACTTTTCTACTTCAAAAGAAATTAAAGCAATTATATTTTTTTTACTTCTATGGTTCCATTCAATTCCTCAATAACTCATTGCAATATAAAAATTCTGTATACAAATACAATGAGCTTGTTGATCGGTTTTCTTTGTTCTTATCTGATCCAAGATCTTAAGTATTTCCACTCCTGATTAAAATGTGTAAGTTAATTTACTTATGATAAGATATGGCATCTGTACTTCTCTTGAATATTGAACACAGATATCTGGCAATAACAAGATTATGAGTTATAATAAAGGAAATTTGGAAATTGTAGCCTTCTGTATTCTCTGTTATTTGGGAACATTTTCTCTGCTGAGATAATTCGAGTAATTATTATCTAGCTAGTTGATCCTGCATGATGACTTAGCATGAGGGACCAAACAACTTTGTCAGATATTGCTGTAAATTTGTTTCTAATTGTAGAGTTTATTGAATTACAAGACAATTAGAAATGGTTATAATTTGATCAAAGATCATGTGTTAGACAATTACATTTTATAAATTTGATTTCTAAAGATTCTTTGTTCTCTATCCTGTCATGAAAAACATTGTGTCCTGCTGTTCTACAGGCACAATGGCCTAAAATCATATATACTGGGCAAAGAGTTGAATAGCAAAACCATGTGATACTTCATGTGCTATTGCCAATCAACAGTTCAACAAAATGCCTCTCTACCAGCTAAAAATCTTACATATGATTGATTTGTTTTCTCTAATAGTTTGTTTATACATGGACACATGACAGTTTGCATCTGGGGTATGTTCCAGTGCTAGTGGACAGTGTTGCAGACACAAATCGTCATAAGGCACATATGGTTTTGATGATGAGAGGTCCTTTGTTCCAGGTATGAGAAAAAAGGTAGGACCTATTGTTGTTGAACTTATATGAGCTAAAGTAATTAATTTTGTCAATTAGTTGGAAGACAGAACCATGTGGTAATTGATATGTCATTGTCTTCACCACAAATAATGAGATTTTATGACTTGCCATTTGCTTATATAAACTTGTTTTGAGAAGTTGTGACCACCACAACTCTACACAAAACAAAGAATACTACTTAAAGCTTTTCTGTTCTTTTGGGATCTTAAGTACTCTTTCTCTTCATACTTTGCGCATCTTAAATTAAAGATCATGGCTATTCGTGTACCTCGTATAATCAAGAAGTCCTCGACATCTCTACAAGTTCCCAAGGGACATTTTGCTGTTTATGTTGGGGAGAAGCAGAAGAAGAGATTTGTGATACCAATATCATACTTGAGCCAATCTTCATTTCAAGACTTGCTAAGTCAAGCAGAGGAAGAATTTGGCTTCGATCATCCAATGGGTGGTGTCACAATTCCATGTCCAGAAGACATTTTTATTGCCATCACTTCTCAGCTTAATTAGGATTTGAGAACATAGTTGAGATCATTTTTTCTTTTTATAGGTCTAACAATTTTGTATACAAATTAAAGAAGGAGATCCATATTGTACAGTTGATTAGTTACAAGTTAAATGAGACTTAGCACCTCAAAGATTGGTGGTTTTTTAGCTAATTCAGAGAATACAATACGTCATTTTCTCTCTCTTAAATTGTGTTTCCTGGTTTATGTTTAAAAAGTTTTGCTTCAATCAGTTATCAATTGGGCTGCAATATGCCCTAGACTATCTAGTATAGCTCCAAGCATATAATAGCAACAACATACCTAGTGTAGTCCCATGACATGGAGTCCTGAAAAGTAGAGTGTAGGCGTATCTACCTCTAGCTCGTAGGTGGAGCTCCGAGTATCTACAACTTTATTTATTTATTTATTTATTTATTTATTGCTATCAACAAAATAATATTAGAATAGATTATCTACAAGGGGACATGCCAAAATATGTCTTTGTTTTTTAACCTTATTTCTTGGTAGGGTATAACATATATATGTCGTGAAGTGTTGAATAAAAAGGATTATCCGTTATATTTAGGGTATATGCGTGAAAAGGGATCTTAGACTAAGTGTATTTTGACACTAACAATGAATAGAAATGTTATAAACTAGTCCAGCTCGATGTACAAACATACAAATATATATTTTTAAAAAGAAAAAGAAAAAAAGTAGTTAATTTAGGAAGCTTTATACATATATAACCCGCCAAATGGACATACTTTTTCATGAAAAAAAAAACATAACTTGTTGAACGTTTATCCTTATGGATTCTACTAATGGAAATGTTCTAGGGGATGAAGAAAGTCAGCTTTCTTTTGGAAGCAGTAATAAAATTCAACCTACTATCTCTATTACACAAAAGCAAGTACCCAGGTTTTCTTTTTAAACTCTTCCCTCATCACTATTTATGATAAGCCTCAGATATTTTATCTTTTTTTGGTTTGATATCTTTTCAATTTGTTCTTACATATATGTATGGTGTTTGGCTTCTTTTTTTAACAGCTCAGATGATGAAAAGAAGAAGTATACTTGTCTCACAATGGCTGAAAGGCTGGGCTTACCTGACTTCTTCTCTTTGGACGTTAGTATATTTCATCTCTTACTCATCTTCTATACGACTGTATTGACTAAGCAATAGAATTCGACTATTTTTTATGTAGGTGTGGCGAGCATCGGTTGGAGAGCTTTTAGGCTCTGCGGTTCTTGTTTTTATGTTGGACACCGTAGTGATTTCCACCCTAGAAAGTGATGTCAAAATGCCAAATTTGATTATGTCAATTCTCATAGCAATTACACTCACCATTCTAATCCTTGCTGTTTTTCCTGTGTCTGGTGGCCACATTAGCCCTGTAATTACCTTCTCCTCAGCACTAGTGGGACTAATATCAATGTCACGAGCCATAATTTACATAGTGGCACAATGTGTTGGTGCTATTTTAGGTGCACTAGCACTCAAAGCTGTGTTGAGTAGTACCATTGAACAAAGATTCTCTCTTGGTGGTTGTACCGTTACGGTAGTTACGCCTGGGCTCAATGGGCCTGAAATTGTGGGCTTGGAGATAGCCCAAGCATTTTGGCTTGAGTTTATGTGTACATTTGCTTTGCTTTTTGGTTCACTTTGGATGGCCTATGATCATCGCCAGTCCAAGGCACTTGGGCTTATTACTGTCATGTCTATTGTTGGGCTTCTAGCAGGGATTCTTGTGTTTATTTCAACTTCAGTTACTGCTAAAAAGGGCTATGCTGGAGCTGGAATGAATCCAGCTAGGTGCTTTGGAGCTGCTTTTGTTAGAGGAGGCCACCTGTGGAATGGGCATTGGATCTTTTGGGTTGGGCCTGGACTTGCTTGTTTTGCTTTCTACTTCTATACAAAGATCATTCCTTCGGATCATTTCCAAACTGATGGATACAAGCATGATTTCTTAGCGATAATCGAGACATTGTTCAATCAGAGATAGTGTAGTAGTAGTTTTTGCAAATCATGTACTTATTGCAAACAAAATCCCTATCAGTGGTAAACATATAACTTGTATCCTTGTCAATTGTTTAGCTAGCATTCGCTCAAAAATAGCCCGACTCAATATCACAAACTGCACATAGAACAACTAGTGGCACTTGGACTGCTCCATGTGTAGTCCAATTGATAAGCACAGATTCTGCGGTAACGGTTTGTATGCTTTCTTCTTGCTTCTTTCTCCTCTGGCATCAAAAATTCACCTAGCCAGTTTTCCAATTTTCATTACAAAGTCAACTGGCAGCTACAGCACTCTGTTGTATCATCATGGTCATTAACTAAACCAGACCATTAATTCATTAATTAATTGAGTTGTCTAGTTTCATTAGCCCTCCTTGAACTTCTCCTAATCTAAGGACAAATCACCAGTTCGAATAGTACGTTGTTGATGGCTTATTCCTTTTCGTAGCCGTGTCTGGGAGAAGCTGAAACCTGTCTGTTCCCAACTAAAAGGTGATTCGAGC
| Download sequence region | 
    Get flanking sequences on SL2.50ch01
     | 
	 mRNA Solyc01g111010.2.1
	 mRNA Solyc01g111010.2.1
 | 
	 Ontology terms
	 Ontology terms
 | terms associated with this mRNA | 
	 cDNA sequence
	 cDNA sequence
 | spliced cDNA sequence, including UTRs | 
       
    
  >Solyc01g111010.2.1 Aquaporin (AHRD V1 *-*- Q40266_MESCR); contains Interpro domain(s)  IPR003676  Auxin responsive SAUR protein 
    
  
ATGGCTATCCGTATGCCTCGAATAATCAAGAAGTCTTCAGATATTCCCAAGGGTCACTTTGTTGTGTATGTTGGAGAGAAACAGAAGAAGAGATTTGTGATTCCGATATCATTCTTGAGTGAACCTTTATTTCAAGATTTGCTTAATCAAGCTGAGGAGGAATTCGGCTTTGATCATCCAATGGGTGGTGTCACAATTCCCTGCACTGAGGATTTGTTTGTCAATCTTACATCTCGCTTGAGGAATTTGCATCTGGGGTATGTTCCAGTGCTAGTGGACAGTGTTGCAGACACAAATCGTCATAAGGCACATATGGTTTTGATGATGAGAGGTCCTTTGTTCCAGATGGCTATTCGTGTACCTCGTATAATCAAGAAGTCCTCGACATCTCTACAAGTTCCCAAGGGACATTTTGCTGTTTATGTTGGGGAGAAGCAGAAGAAGAGATTTGTGATACCAATATCATACTTGAGCCAATCTTCATTTCAAGACTTGCTAAGTCAAGCAGAGGAAGAATTTGGCTTCGATCATCCAATGGGTGGTGTCACAATTCCATGTCCAGAAGACATTTTTATTATGGATTCTACTAATGGAAATGTTCTAGGGGATGAAGAAAGTCAGCTTTCTTTTGGAAGCAGTAATAAAATTCAACCTACTATCTCTATTACACAAAAGCAAGTACCCAGCTCAGATGATGAAAAGAAGAAGTATACTTGTCTCACAATGGCTGAAAGGCTGGGCTTACCTGACTTCTTCTCTTTGGACGTGTGGCGAGCATCGGTTGGAGAGCTTTTAGGCTCTGCGGTTCTTGTTTTTATGTTGGACACCGTAGTGATTTCCACCCTAGAAAGTGATGTCAAAATGCCAAATTTGATTATGTCAATTCTCATAGCAATTACACTCACCATTCTAATCCTTGCTGTTTTTCCTGTGTCTGGTGGCCACATTAGCCCTGTAATTACCTTCTCCTCAGCACTAGTGGGACTAATATCAATGTCACGAGCCATAATTTACATAGTGGCACAATGTGTTGGTGCTATTTTAGGTGCACTAGCACTCAAAGCTGTGTTGAGTAGTACCATTGAACAAAGATTCTCTCTTGGTGGTTGTACCGTTACGGTAGTTACGCCTGGGCTCAATGGGCCTGAAATTGTGGGCTTGGAGATAGCCCAAGCATTTTGGCTTGAGTTTATGTGTACATTTGCTTTGCTTTTTGGTTCACTTTGGATGGCCTATGATCATCGCCAGTCCAAGGCACTTGGGCTTATTACTGTCATGTCTATTGTTGGGCTTCTAGCAGGGATTCTTGTGTTTATTTCAACTTCAGTTACTGCTAAAAAGGGCTATGCTGGAGCTGGAATGAATCCAGCTAGGTGCTTTGGAGCTGCTTTTGTTAGAGGAGGCCACCTGTGGAATGGGCATTGGATCTTTTGGGTTGGGCCTGGACTTGCTTGTTTTGCTTTCTACTTCTATACAAAGATCATTCCTTCGGATCATTTCCAAACTGATGGATACAAGCATGATTTCTTAGCGATAATCGAGACATTGTTCAATCAGAGATAGTGTAGTAGTAGTTTTTGCAAATCATGTACTTATTGCAAACAAAATCCCTATCAGTGGTAAACATATAACTTGTATCCTTGTCAATTGTTTAGCTAGCATTCGCTCAAAAATAGCCCGACTCAATATCACAAACTGCACATAGAACAACTAGTGGCACTTGGACTGCTCCATGTGTAGTCCAATTGATAAGCACAGATTCTGCGGTAACGGTTTGTATGCTTTCTTCTTGCTTCTTTCTCCTCTGGCATCAAAAATTCACCTAGCCAGTTTTCCAATTTTCATTACAAAGTCAACTGGCAGCTACAGCACTCTGTTGTATCATCATGGTCATTAACTAAACCAGACCATTAATTCATTAATTAATTGAGTTGTCTAGTTTCATTAGCCCTCCTTGAACTTCTCCTAATCTAAGGACAAATCACCAGTTCGAATAGTACGTTGTTGATGGCTTATTCCTTTTCGTAGCCGTGTCTGGGAGAAGCTGAAACCTGTCTGTTCCCAACTAAAAGGTGATTCGAGC
     
    
ATGGCTATCCGTATGCCTCGAATAATCAAGAAGTCTTCAGATATTCCCAAGGGTCACTTTGTTGTGTATGTTGGAGAGAAACAGAAGAAGAGATTTGTGATTCCGATATCATTCTTGAGTGAACCTTTATTTCAAGATTTGCTTAATCAAGCTGAGGAGGAATTCGGCTTTGATCATCCAATGGGTGGTGTCACAATTCCCTGCACTGAGGATTTGTTTGTCAATCTTACATCTCGCTTGAGGAATTTGCATCTGGGGTATGTTCCAGTGCTAGTGGACAGTGTTGCAGACACAAATCGTCATAAGGCACATATGGTTTTGATGATGAGAGGTCCTTTGTTCCAGATGGCTATTCGTGTACCTCGTATAATCAAGAAGTCCTCGACATCTCTACAAGTTCCCAAGGGACATTTTGCTGTTTATGTTGGGGAGAAGCAGAAGAAGAGATTTGTGATACCAATATCATACTTGAGCCAATCTTCATTTCAAGACTTGCTAAGTCAAGCAGAGGAAGAATTTGGCTTCGATCATCCAATGGGTGGTGTCACAATTCCATGTCCAGAAGACATTTTTATTATGGATTCTACTAATGGAAATGTTCTAGGGGATGAAGAAAGTCAGCTTTCTTTTGGAAGCAGTAATAAAATTCAACCTACTATCTCTATTACACAAAAGCAAGTACCCAGCTCAGATGATGAAAAGAAGAAGTATACTTGTCTCACAATGGCTGAAAGGCTGGGCTTACCTGACTTCTTCTCTTTGGACGTGTGGCGAGCATCGGTTGGAGAGCTTTTAGGCTCTGCGGTTCTTGTTTTTATGTTGGACACCGTAGTGATTTCCACCCTAGAAAGTGATGTCAAAATGCCAAATTTGATTATGTCAATTCTCATAGCAATTACACTCACCATTCTAATCCTTGCTGTTTTTCCTGTGTCTGGTGGCCACATTAGCCCTGTAATTACCTTCTCCTCAGCACTAGTGGGACTAATATCAATGTCACGAGCCATAATTTACATAGTGGCACAATGTGTTGGTGCTATTTTAGGTGCACTAGCACTCAAAGCTGTGTTGAGTAGTACCATTGAACAAAGATTCTCTCTTGGTGGTTGTACCGTTACGGTAGTTACGCCTGGGCTCAATGGGCCTGAAATTGTGGGCTTGGAGATAGCCCAAGCATTTTGGCTTGAGTTTATGTGTACATTTGCTTTGCTTTTTGGTTCACTTTGGATGGCCTATGATCATCGCCAGTCCAAGGCACTTGGGCTTATTACTGTCATGTCTATTGTTGGGCTTCTAGCAGGGATTCTTGTGTTTATTTCAACTTCAGTTACTGCTAAAAAGGGCTATGCTGGAGCTGGAATGAATCCAGCTAGGTGCTTTGGAGCTGCTTTTGTTAGAGGAGGCCACCTGTGGAATGGGCATTGGATCTTTTGGGTTGGGCCTGGACTTGCTTGTTTTGCTTTCTACTTCTATACAAAGATCATTCCTTCGGATCATTTCCAAACTGATGGATACAAGCATGATTTCTTAGCGATAATCGAGACATTGTTCAATCAGAGATAGTGTAGTAGTAGTTTTTGCAAATCATGTACTTATTGCAAACAAAATCCCTATCAGTGGTAAACATATAACTTGTATCCTTGTCAATTGTTTAGCTAGCATTCGCTCAAAAATAGCCCGACTCAATATCACAAACTGCACATAGAACAACTAGTGGCACTTGGACTGCTCCATGTGTAGTCCAATTGATAAGCACAGATTCTGCGGTAACGGTTTGTATGCTTTCTTCTTGCTTCTTTCTCCTCTGGCATCAAAAATTCACCTAGCCAGTTTTCCAATTTTCATTACAAAGTCAACTGGCAGCTACAGCACTCTGTTGTATCATCATGGTCATTAACTAAACCAGACCATTAATTCATTAATTAATTGAGTTGTCTAGTTTCATTAGCCCTCCTTGAACTTCTCCTAATCTAAGGACAAATCACCAGTTCGAATAGTACGTTGTTGATGGCTTATTCCTTTTCGTAGCCGTGTCTGGGAGAAGCTGAAACCTGTCTGTTCCCAACTAAAAGGTGATTCGAGC
	 Protein sequence
	 Protein sequence
 | translated polypeptide sequence | 
       
    
  >Solyc01g111010.2.1 Aquaporin (AHRD V1 *-*- Q40266_MESCR); contains Interpro domain(s)  IPR003676  Auxin responsive SAUR protein 
    
  
MAIRMPRIIKKSSDIPKGHFVVYVGEKQKKRFVIPISFLSEPLFQDLLNQAEEEFGFDHPMGGVTIPCTEDLFVNLTSRLRNLHLGYVPVLVDSVADTNRHKAHMVLMMRGPLFQMAIRVPRIIKKSSTSLQVPKGHFAVYVGEKQKKRFVIPISYLSQSSFQDLLSQAEEEFGFDHPMGGVTIPCPEDIFIMDSTNGNVLGDEESQLSFGSSNKIQPTISITQKQVPSSDDEKKKYTCLTMAERLGLPDFFSLDVWRASVGELLGSAVLVFMLDTVVISTLESDVKMPNLIMSILIAITLTILILAVFPVSGGHISPVITFSSALVGLISMSRAIIYIVAQCVGAILGALALKAVLSSTIEQRFSLGGCTVTVVTPGLNGPEIVGLEIAQAFWLEFMCTFALLFGSLWMAYDHRQSKALGLITVMSIVGLLAGILVFISTSVTAKKGYAGAGMNPARCFGAAFVRGGHLWNGHWIFWVGPGLACFAFYFYTKIIPSDHFQTDGYKHDFLAIIETLFNQR*
    
MAIRMPRIIKKSSDIPKGHFVVYVGEKQKKRFVIPISFLSEPLFQDLLNQAEEEFGFDHPMGGVTIPCTEDLFVNLTSRLRNLHLGYVPVLVDSVADTNRHKAHMVLMMRGPLFQMAIRVPRIIKKSSTSLQVPKGHFAVYVGEKQKKRFVIPISYLSQSSFQDLLSQAEEEFGFDHPMGGVTIPCPEDIFIMDSTNGNVLGDEESQLSFGSSNKIQPTISITQKQVPSSDDEKKKYTCLTMAERLGLPDFFSLDVWRASVGELLGSAVLVFMLDTVVISTLESDVKMPNLIMSILIAITLTILILAVFPVSGGHISPVITFSSALVGLISMSRAIIYIVAQCVGAILGALALKAVLSSTIEQRFSLGGCTVTVVTPGLNGPEIVGLEIAQAFWLEFMCTFALLFGSLWMAYDHRQSKALGLITVMSIVGLLAGILVFISTSVTAKKGYAGAGMNPARCFGAAFVRGGHLWNGHWIFWVGPGLACFAFYFYTKIIPSDHFQTDGYKHDFLAIIETLFNQR*
	 Gene model matches
	 Gene model matches
 | 
	 SGN Unigenes
	 SGN Unigenes
 | [Associate new unigene] | 
    Unigene ID:
    
    
  
[loading...]
  
| GenBank accessions | None | [Associate new genbank sequence] | 
| Other genome matches | None | 
	 Literature annotations [1]
	 Literature annotations [1]
 | [Associate publication] [Matching publications] | 
    Genome-wide identification and expression analysis of aquaporins in tomato.   
    PloS one (2014) 
  
Show / hide abstract
    
  Show / hide abstract
       The family of aquaporins, also called water channels or major intrinsic proteins, is characterized by six transmembrane domains that together facilitate the transport of water and a variety of low molecular weight solutes. They are found in all domains of life, but show their highest diversity in plants. Numerous studies identified aquaporins as important targets for improving plant performance under drought stress. The phylogeny of aquaporins is well established based on model species like Arabidopsis thaliana, which can be used as a template to investigate aquaporins in other species. In this study we comprehensively identified aquaporin encoding genes in tomato (Solanum lycopersicum), which is an important vegetable crop and also serves as a model for fleshy fruit development. We found 47 aquaporin genes in the tomato genome and analyzed their structural features. Based on a phylogenetic analysis of the deduced amino acid sequences the aquaporin genes were assigned to five subfamilies (PIPs, TIPs, NIPs, SIPs and XIPs) and their substrate specificity was assessed on the basis of key amino acid residues. As ESTs were available for 32 genes, expression of these genes was analyzed in 13 different tissues and developmental stages of tomato. We detected tissue-specific and development-specific expression of tomato aquaporin genes, which is a first step towards revealing the contribution of aquaporins to water and solute transport in leaves and during fruit development.
    
     
       Reuscher, S. Akiyama, M. Mori, C. Aoki, K. Shibata, D. Shiratake, K.
       PloS one.
       2014.
        8(11).
       e79052.
      
  	 Ontology annotations (1)
	 Ontology annotations (1)
 | [Add ontology annotations] | 
[loading...] 
	 Related views
	 Related views
 | 
- Genomic details
 
| User comments | 
Please wait, checking for comments.  (If comments do not show up, access them here)
Your Lists
Public Lists
List Contents
List Validation Report: Failed
Elements not found:
Optional: Add Missing Accessions to A List
Mismatched case
            Click the Adjust Case button to align the case in the list with what is in the database.
          
          Multiple mismatched case
Items listed here have mulitple case mismatches and must be fixed manually. If accessions need to be merged, contact the database directly.
List elements matching a synonym
Multiple synonym matches
Fuzzy Search Results
Synonym Search Results
Available Seedlots
Your Datasets
Public Datasets
Dataset Contents
Dataset Validation Failed
Elements not found:
Your Calendar
Having trouble viewing events on the calendar? 
Are you associated with the breeding program you are interested in viewing?
Add New Event
Event Info
| Attribute | Value | 
|---|---|
| Project Name: | |
| Start Date: | |
| End Date: | |
| Event Type: | |
| Event Description: | |
| Event Web URL: | 
Edit Event
Login
Forgot Username
                    If you've forgotten your username, enter your email address below. An email will be sent with any account username(s) associated with your email address.
                
                Reset Password
                    To reset your password, please enter your email address. A link will be sent to that address with a link that will enable you to reset your password.
                
                Create New User
Working
    	      
	        
Links to external databases
Links to external databases
