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Tomato locus bHLH transcription factor 063
| Locus details | Download GMOD XML | Note to Editors | Annotation guidelines | 
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	 Links to external databases
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| Registry name: | None | [Associate registry name] | 
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	 Accessions and images (0)
	 Accessions and images (0)
 | [Associate accession] | 
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| Alleles (0) | None | [Add new Allele] | 
	 Associated loci (119)
	 Associated loci (119)
 | [Associate new locus] | 
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	 Associated loci - graphical view
	 Associated loci - graphical view
 | View bHLH transcription factor 063 relationships in the stand-alone network browser | 
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	 SolCyc links
	 SolCyc links
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	 Sequence annotations
	 Sequence annotations
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	 Genome features
	 Genome features
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	 Genomic sequence
	 Genomic sequence
 | unprocessed genomic sequence region underlying this gene | 
                
    
  >Solyc10g018510.1 SL2.50ch10:8514762..8509882 (sequence from reverse strand)
    
  
ATGGATTATGAAGTAGCAGAGCTAAAATGGGAAAAGGGAGAGGTAGTGATGCATGGGTTAGGTCCTCCAGGCGTGCCTTGTTATTATAAGCCTTTATCGACTCCTTCTCCAACAAAATACACGTGGGACGATAAGCCACATGCTGCTGCAGGTGGCACACTTGAATCCATAGTGAACCAAGCTACGACTCATAATATTGACATCGGTGACGAGGGTGGTGATGATGATGATTTAGTGAGTTGGTTTGATGATTGTCTTCCTGAAACGTCCATGGATATTGTGGCCGTAGTTCCAACAAGTTGTACTAACTATAATCAACAAGTGCCCCCGTCCACACGTGTTGCATCATGCAGTGGTGATGCAGAGATGGCACGTGTGGGAATGGGATCTAGCTTTGAGGAAATATCGGAAGACTTTGAGAATCAAGAGGCTAAGAACTTGATCGGCTCAATGGTATACGAGGGCAAAAATAACACTGTGAGCCCGGGAGAGACAAGTTTGGGTGAGGAAAGAGTACTTACAACAACATCTACCTTTAAGCATAATAAAAGGAAGACACTGAATAATCATGATAGCAGAGGTCAGGTAAATATATAATCTCCTTTCACGTGCATATTTATTGTATATGATTCCCATGCAGCACAACATAAATTTATTTAGTAATTATGATTTTCTTATTTATTATTATTACTACTATACATTTGCAAAGGCTTTCACCGCTGCAACTAGACTATTAGGGTGTGTTTGGCATGAACCAAAAAAAAAAATCCATGTGAAATACTCTTTTTTTTAAAAAAGAAATCGATCTCTTACTTGTTTTGTAGATCAGTTTGATAAATATATTATTTCAGAACTACTTATATGTAGTTGGATGATCAAAGAGTGGGGGTTTATACAGATTGAGGTAATTGGAATGCCACTAATAGAACTTAATTGTTTTTCCATTAATTAAGTGACTTTTTTCTTTTAATAAGGAACTTGTTTTTTCTAATGAAAATCTATTTCAAAATATTTGACCAAATGCATTTTCAGTCAAACACTACCTTAGTTTCATGTTATTGATTTTGTGTAACCGTTTTGTTATTCGATGTTCACTCGTCCTACTAATTCATTTTTTTTCCAGATCGAGTAAAAGGAGAAATTGCACTGCTCTTTATCAGAATTTTCTCCATTATTCTCTGATTCAAACCAAAATTTCTATCAATGAAGAATTTCATTTATTCTATCACGGTTCATCGTAATAATTAGTCTCATCCTCTAGAAGTGTATTTACTATTTTCTCAATTTTCATTTTACTTGATGTTCTTCCCTTTCAATCTCTTTCATAAAAATTGTTACCTTCTTATAATTAGAAAAAATATAACTTTAGAATTATCTTTTTAACCTTAATGAAATGATACTTTCAACCATATAAATATCTAAACATAATTTCAATTCACAAGTTTCATATATCATTTTTTAAATATCATACCTTGTTAAATAACGTCATATATAAACTGAGACAGGAGAGAAAATTACTTATTCCTTTTCTTTAGTGAAGTGATACTACTAAATAAATTTGAAGATTGATATGTCAAATTGTTGAATAGTGTATTAAACTTTAGTGTTCTTTTTTGTGAACTCACAACACAAGGAGTCGAGAGATAATGAGGATGAGGATGAGAAAAAAAGATCCAAAATTTCTTCATTTTCAACAAAAAGGTGCAGAGTTGCTGCTACTCACAACCAGTCTGAACGAGTAAGATGTCACTCTCATGTCTCTCTAAATGATTTATTTTGAATTTTGAGATTAAAAAAAGCTATTTTAATTGTAAACTTTTTTATATATTTTTAAATATTTTGAGTTGTTTATTTTTTTATATAGTTTATAAATATATAAATTTTATTTATTAAAAATTTAATTATTTAAATTTAAAATATTTAATTCTCAAAAAATAAAATATATCGCGATAGTAAATGATTATTTTCAATTAATTGTAATGATGTAAAAATTTTCTTCTGGCCTGACATCATATATATATAATAACAACAAAACTAATTTGATATTTTTAATTGATTATTGTTTTTTTTAAAATTATTACTAGAAAAGAAGAGACAAGATAAACCAAAGGTTGAAGACATTGCAGAAGTTAGTTCCAACATCGAGTAAGGTAATGAAATTAAAAAATTAATATTTTTTTCTATCAATAAATTAATTTTATAATTTTTGTCTGTGTTTTACGGTTGTTTGGAACTTTATGTTTCAAGAATATAATTATCTATGTTGATCAATTTTGTCTTTACATGAAAAATACACACTAAAAGATGCAAAAGCATTGGGACCTTAGCTTAAATACAGAATATTTCTAGTCCATGACTTATTTCTGCACTCCACCAGTTCATGAATTCTCAACCACTATTTCAAATAATTATTCTATCCGTTTAAAATTTATTTGATATAGTTTAATTTTATGTGAAATTTAAAAAGGAAAAACGTTTAAAATATGGTTCAAAATAAGTCATAAATATTTTTATATTACTGTAAATTATTTTATAAAGAATAAAATAAATATTTTAAAATTGAATTATTAATCTAAATGACATATTATAAATAATAATTTTACGAAAGCTTGTAAATGAAAGACATAAAAAAATGCAGAATCCTCGTATGAAATTATTGTAACTTGTTTTTGCAGTCTCATATTTTTTTCATTTTTCAATCATTAGCTTTCTATTTAAGTATCAATAATTATTACGTATTGTGAAATGTCGAATTGAAGAGAAGAAGGTGAAATTAGTTCTTGACTCCCATATGACAAATATCCAATTGTTACTTTTAAGTATCAATTATTACGTACTGTGACATGTCGAGTTAAAGAGCGAAGAAGACAAAATTAGTTATTGACTCCTTTTTCAGAATAATAACCAAATATTTAAGTATCAATTATGACGTATTGTGACATGTCGGGCCGAAGAGAGAAGAAGACGAATTTAGTTCTTTAGTCCTTTCAAACAAACAATCAACTATTCAAGTATCAATTATAAAGTACCGTGACATGTGGGGTTGAAGAGAGAAAGAAGACGAAACTAGTTCTTGACTCCTTTAAAAAATATAATTAACTTTTAAGTATTAGTTATTATGTATCGTGACATGTTGGGTTAAAGAGAGAAGAAGATGAAAAGTTCTTGACTCCTTTGAGACAAATAGCCAACTATTTAAGTATAAGTGATTATGTACAGTGACATGTCGGGTTGAAGAGAGAAGAAGATGAAATTAGTTCTTGAATCCTTTCAGACAAATAACCAACTATTGAAGTCTCAGTTATTACGTATTGTTCGGGTTGAAGCGAGAAAAACACCAAATTAGTTGTCGACTCCTTTTAGACAAATACCCAACTAGTTAAGTATCAATTATGTGACATGTAGAGTTGAAGAGAAAAGAAGATGAAAGTAGTTCCTGACTCCTTTCAGAAAAATAGCCAACTATATAAGTATTAGTTGTTGCGTACTGTGACGTGTCGGGTTGAAGAGAAAAGAAGAAATATTAGTTCTTGACTCCTTTTAGACAAATAGCCAACTATAGGTACTGAAAGAGAGTACTTGAGTTCTCCAATAACTAGAAAGTGCAGCATACCTAAATATAACTAGGTCAGTCATTAAGAGAGAAGAATTTACGGAATCACTTCTTAACTCCTTTCAGACAACTAACAAACTAATTAGTATCAATTATGACTTACTATGGCATGGGTTGAAGAGAGAAGAAGACAAAATTAGTTCTTGACTCCTTTCAGATAAATACCCAACTATTTAAATATCAGTTAATACGTACTATGACATGTCAGATCGAAGAGAGAAGAAGACTAAATTAGTTCTCGACTCCTTTTACACAAATAGCTAACTAGGGTGAAATTAATTAATTCACATATGGAGATTTGCCTTTTAGGGAATTAAAATTTTAATAGCGGAATTGATTGATTGCCTGAATTATCATCAATTTAGTGAGGGTTTAATACTTGTACTATTCAGCCTACTAAGTTTGATCTTTTTGTTTAAGCAGACTGATACGGCATCAATGTTAGATGAGGTGATAGAATATTTGAAGCAACTACGAGCTCAAGTTAAAGCCATGAGCATGATGATTCATGTTAACATGCAGCCACCCCCTATGATGTTACCAAATATGGCATTCCAACAACAACAACAACAATTTCAAATGTCAATGATGGGGATGGCTAGACCCATCGATGTCAATGCCCTTAGCAGCCCCAACATAACAACAATCCCATCGATTCTCCATACCACCGCACCCTCTAATTTCAATAACCCTCCTATTGCCTCCCCTGGAGCTGATCCTTTAGCTTCCTTGGTCGCAGTACGCCAATTATCACAGGTACAACAACAAAAATAGCTCATCTTATAACGGTTACATCTGTTAAACATTAGAAATGTTATCTCATGTATTCAAATTAGCAAATCAGAAATAAAATAAAAGAGAAGAAAAAGAACTATTCGAGTCCACAGAACCCATAGTGTGTCCCTTTCATTCCTATTCACACGAGAGGAACTCGTGATTTTGAGGTATGTACATCTTGATTCTCTAATATTATCATGAGGAGTGCATGATATTATTGTTTCTCAAAGGGTAATATTTTTTTAACGCTATAGCAAAATATTATTAAATAGAACGTACATTACAAGAGTAACATAAAAATATGATAACACTTTACAGTACAATGAAATATTATTATAGAAAGGTTTGACTGGATTATTATGAATTTTCTAAAAAAATATTTTTCTATTTGGGAACTTTTGCAGCCTATGACGATGGATGCTTATAGCAGGATGGCAGCATTGTACCAACAATATCTACAGTCAAATGCAAATCTTGGCTTTAAAAATTGA
              
ATGGATTATGAAGTAGCAGAGCTAAAATGGGAAAAGGGAGAGGTAGTGATGCATGGGTTAGGTCCTCCAGGCGTGCCTTGTTATTATAAGCCTTTATCGACTCCTTCTCCAACAAAATACACGTGGGACGATAAGCCACATGCTGCTGCAGGTGGCACACTTGAATCCATAGTGAACCAAGCTACGACTCATAATATTGACATCGGTGACGAGGGTGGTGATGATGATGATTTAGTGAGTTGGTTTGATGATTGTCTTCCTGAAACGTCCATGGATATTGTGGCCGTAGTTCCAACAAGTTGTACTAACTATAATCAACAAGTGCCCCCGTCCACACGTGTTGCATCATGCAGTGGTGATGCAGAGATGGCACGTGTGGGAATGGGATCTAGCTTTGAGGAAATATCGGAAGACTTTGAGAATCAAGAGGCTAAGAACTTGATCGGCTCAATGGTATACGAGGGCAAAAATAACACTGTGAGCCCGGGAGAGACAAGTTTGGGTGAGGAAAGAGTACTTACAACAACATCTACCTTTAAGCATAATAAAAGGAAGACACTGAATAATCATGATAGCAGAGGTCAGGTAAATATATAATCTCCTTTCACGTGCATATTTATTGTATATGATTCCCATGCAGCACAACATAAATTTATTTAGTAATTATGATTTTCTTATTTATTATTATTACTACTATACATTTGCAAAGGCTTTCACCGCTGCAACTAGACTATTAGGGTGTGTTTGGCATGAACCAAAAAAAAAAATCCATGTGAAATACTCTTTTTTTTAAAAAAGAAATCGATCTCTTACTTGTTTTGTAGATCAGTTTGATAAATATATTATTTCAGAACTACTTATATGTAGTTGGATGATCAAAGAGTGGGGGTTTATACAGATTGAGGTAATTGGAATGCCACTAATAGAACTTAATTGTTTTTCCATTAATTAAGTGACTTTTTTCTTTTAATAAGGAACTTGTTTTTTCTAATGAAAATCTATTTCAAAATATTTGACCAAATGCATTTTCAGTCAAACACTACCTTAGTTTCATGTTATTGATTTTGTGTAACCGTTTTGTTATTCGATGTTCACTCGTCCTACTAATTCATTTTTTTTCCAGATCGAGTAAAAGGAGAAATTGCACTGCTCTTTATCAGAATTTTCTCCATTATTCTCTGATTCAAACCAAAATTTCTATCAATGAAGAATTTCATTTATTCTATCACGGTTCATCGTAATAATTAGTCTCATCCTCTAGAAGTGTATTTACTATTTTCTCAATTTTCATTTTACTTGATGTTCTTCCCTTTCAATCTCTTTCATAAAAATTGTTACCTTCTTATAATTAGAAAAAATATAACTTTAGAATTATCTTTTTAACCTTAATGAAATGATACTTTCAACCATATAAATATCTAAACATAATTTCAATTCACAAGTTTCATATATCATTTTTTAAATATCATACCTTGTTAAATAACGTCATATATAAACTGAGACAGGAGAGAAAATTACTTATTCCTTTTCTTTAGTGAAGTGATACTACTAAATAAATTTGAAGATTGATATGTCAAATTGTTGAATAGTGTATTAAACTTTAGTGTTCTTTTTTGTGAACTCACAACACAAGGAGTCGAGAGATAATGAGGATGAGGATGAGAAAAAAAGATCCAAAATTTCTTCATTTTCAACAAAAAGGTGCAGAGTTGCTGCTACTCACAACCAGTCTGAACGAGTAAGATGTCACTCTCATGTCTCTCTAAATGATTTATTTTGAATTTTGAGATTAAAAAAAGCTATTTTAATTGTAAACTTTTTTATATATTTTTAAATATTTTGAGTTGTTTATTTTTTTATATAGTTTATAAATATATAAATTTTATTTATTAAAAATTTAATTATTTAAATTTAAAATATTTAATTCTCAAAAAATAAAATATATCGCGATAGTAAATGATTATTTTCAATTAATTGTAATGATGTAAAAATTTTCTTCTGGCCTGACATCATATATATATAATAACAACAAAACTAATTTGATATTTTTAATTGATTATTGTTTTTTTTAAAATTATTACTAGAAAAGAAGAGACAAGATAAACCAAAGGTTGAAGACATTGCAGAAGTTAGTTCCAACATCGAGTAAGGTAATGAAATTAAAAAATTAATATTTTTTTCTATCAATAAATTAATTTTATAATTTTTGTCTGTGTTTTACGGTTGTTTGGAACTTTATGTTTCAAGAATATAATTATCTATGTTGATCAATTTTGTCTTTACATGAAAAATACACACTAAAAGATGCAAAAGCATTGGGACCTTAGCTTAAATACAGAATATTTCTAGTCCATGACTTATTTCTGCACTCCACCAGTTCATGAATTCTCAACCACTATTTCAAATAATTATTCTATCCGTTTAAAATTTATTTGATATAGTTTAATTTTATGTGAAATTTAAAAAGGAAAAACGTTTAAAATATGGTTCAAAATAAGTCATAAATATTTTTATATTACTGTAAATTATTTTATAAAGAATAAAATAAATATTTTAAAATTGAATTATTAATCTAAATGACATATTATAAATAATAATTTTACGAAAGCTTGTAAATGAAAGACATAAAAAAATGCAGAATCCTCGTATGAAATTATTGTAACTTGTTTTTGCAGTCTCATATTTTTTTCATTTTTCAATCATTAGCTTTCTATTTAAGTATCAATAATTATTACGTATTGTGAAATGTCGAATTGAAGAGAAGAAGGTGAAATTAGTTCTTGACTCCCATATGACAAATATCCAATTGTTACTTTTAAGTATCAATTATTACGTACTGTGACATGTCGAGTTAAAGAGCGAAGAAGACAAAATTAGTTATTGACTCCTTTTTCAGAATAATAACCAAATATTTAAGTATCAATTATGACGTATTGTGACATGTCGGGCCGAAGAGAGAAGAAGACGAATTTAGTTCTTTAGTCCTTTCAAACAAACAATCAACTATTCAAGTATCAATTATAAAGTACCGTGACATGTGGGGTTGAAGAGAGAAAGAAGACGAAACTAGTTCTTGACTCCTTTAAAAAATATAATTAACTTTTAAGTATTAGTTATTATGTATCGTGACATGTTGGGTTAAAGAGAGAAGAAGATGAAAAGTTCTTGACTCCTTTGAGACAAATAGCCAACTATTTAAGTATAAGTGATTATGTACAGTGACATGTCGGGTTGAAGAGAGAAGAAGATGAAATTAGTTCTTGAATCCTTTCAGACAAATAACCAACTATTGAAGTCTCAGTTATTACGTATTGTTCGGGTTGAAGCGAGAAAAACACCAAATTAGTTGTCGACTCCTTTTAGACAAATACCCAACTAGTTAAGTATCAATTATGTGACATGTAGAGTTGAAGAGAAAAGAAGATGAAAGTAGTTCCTGACTCCTTTCAGAAAAATAGCCAACTATATAAGTATTAGTTGTTGCGTACTGTGACGTGTCGGGTTGAAGAGAAAAGAAGAAATATTAGTTCTTGACTCCTTTTAGACAAATAGCCAACTATAGGTACTGAAAGAGAGTACTTGAGTTCTCCAATAACTAGAAAGTGCAGCATACCTAAATATAACTAGGTCAGTCATTAAGAGAGAAGAATTTACGGAATCACTTCTTAACTCCTTTCAGACAACTAACAAACTAATTAGTATCAATTATGACTTACTATGGCATGGGTTGAAGAGAGAAGAAGACAAAATTAGTTCTTGACTCCTTTCAGATAAATACCCAACTATTTAAATATCAGTTAATACGTACTATGACATGTCAGATCGAAGAGAGAAGAAGACTAAATTAGTTCTCGACTCCTTTTACACAAATAGCTAACTAGGGTGAAATTAATTAATTCACATATGGAGATTTGCCTTTTAGGGAATTAAAATTTTAATAGCGGAATTGATTGATTGCCTGAATTATCATCAATTTAGTGAGGGTTTAATACTTGTACTATTCAGCCTACTAAGTTTGATCTTTTTGTTTAAGCAGACTGATACGGCATCAATGTTAGATGAGGTGATAGAATATTTGAAGCAACTACGAGCTCAAGTTAAAGCCATGAGCATGATGATTCATGTTAACATGCAGCCACCCCCTATGATGTTACCAAATATGGCATTCCAACAACAACAACAACAATTTCAAATGTCAATGATGGGGATGGCTAGACCCATCGATGTCAATGCCCTTAGCAGCCCCAACATAACAACAATCCCATCGATTCTCCATACCACCGCACCCTCTAATTTCAATAACCCTCCTATTGCCTCCCCTGGAGCTGATCCTTTAGCTTCCTTGGTCGCAGTACGCCAATTATCACAGGTACAACAACAAAAATAGCTCATCTTATAACGGTTACATCTGTTAAACATTAGAAATGTTATCTCATGTATTCAAATTAGCAAATCAGAAATAAAATAAAAGAGAAGAAAAAGAACTATTCGAGTCCACAGAACCCATAGTGTGTCCCTTTCATTCCTATTCACACGAGAGGAACTCGTGATTTTGAGGTATGTACATCTTGATTCTCTAATATTATCATGAGGAGTGCATGATATTATTGTTTCTCAAAGGGTAATATTTTTTTAACGCTATAGCAAAATATTATTAAATAGAACGTACATTACAAGAGTAACATAAAAATATGATAACACTTTACAGTACAATGAAATATTATTATAGAAAGGTTTGACTGGATTATTATGAATTTTCTAAAAAAATATTTTTCTATTTGGGAACTTTTGCAGCCTATGACGATGGATGCTTATAGCAGGATGGCAGCATTGTACCAACAATATCTACAGTCAAATGCAAATCTTGGCTTTAAAAATTGA
| Download sequence region | 
    Get flanking sequences on SL2.50ch10
     | 
	 mRNA Solyc10g018510.1.1
	 mRNA Solyc10g018510.1.1
 | 
	 Ontology terms
	 Ontology terms
 | terms associated with this mRNA | 
	 cDNA sequence
	 cDNA sequence
 | spliced cDNA sequence, including UTRs | 
       
    
  >Solyc10g018510.1.1 BHLH transcription factor (AHRD V1 *-** B6TXR4_MAIZE); contains Interpro domain(s)  IPR011598  Helix-loop-helix DNA-binding 
    
  
ATGGATTATGAAGTAGCAGAGCTAAAATGGGAAAAGGGAGAGGTAGTGATGCATGGGTTAGGTCCTCCAGGCGTGCCTTGTTATTATAAGCCTTTATCGACTCCTTCTCCAACAAAATACACGTGGGACGATAAGCCACATGCTGCTGCAGGTGGCACACTTGAATCCATAGTGAACCAAGCTACGACTCATAATATTGACATCGGTGACGAGGGTGGTGATGATGATGATTTAGTGAGTTGGTTTGATGATTGTCTTCCTGAAACGTCCATGGATATTGTGGCCGTAGTTCCAACAAGTTGTACTAACTATAATCAACAAGTGCCCCCGTCCACACGTGTTGCATCATGCAGTGGTGATGCAGAGATGGCACGTGTGGGAATGGGATCTAGCTTTGAGGAAATATCGGAAGACTTTGAGAATCAAGAGGCTAAGAACTTGATCGGCTCAATGGTATACGAGGGCAAAAATAACACTGTGAGCCCGGGAGAGACAAGTTTGGGTGAGGAAAGAGTACTTACAACAACATCTACCTTTAAGCATAATAAAAGGAAGACACTGAATAATCATGATAGCAGAGGTCAGGAGTCGAGAGATAATGAGGATGAGGATGAGAAAAAAAGATCCAAAATTTCTTCATTTTCAACAAAAAGGTGCAGAGTTGCTGCTACTCACAACCAGTCTGAACGAAAAAGAAGAGACAAGATAAACCAAAGGTTGAAGACATTGCAGAAGTTAGTTCCAACATCGAGTAAGACTGATACGGCATCAATGTTAGATGAGGTGATAGAATATTTGAAGCAACTACGAGCTCAAGTTAAAGCCATGAGCATGATGATTCATGTTAACATGCAGCCACCCCCTATGATGTTACCAAATATGGCATTCCAACAACAACAACAACAATTTCAAATGTCAATGATGGGGATGGCTAGACCCATCGATGTCAATGCCCTTAGCAGCCCCAACATAACAACAATCCCATCGATTCTCCATACCACCGCACCCTCTAATTTCAATAACCCTCCTATTGCCTCCCCTGGAGCTGATCCTTTAGCTTCCTTGGTCGCAGTACGCCAATTATCACAGCCTATGACGATGGATGCTTATAGCAGGATGGCAGCATTGTACCAACAATATCTACAGTCAAATGCAAATCTTGGCTTTAAAAATTGA
     
    
ATGGATTATGAAGTAGCAGAGCTAAAATGGGAAAAGGGAGAGGTAGTGATGCATGGGTTAGGTCCTCCAGGCGTGCCTTGTTATTATAAGCCTTTATCGACTCCTTCTCCAACAAAATACACGTGGGACGATAAGCCACATGCTGCTGCAGGTGGCACACTTGAATCCATAGTGAACCAAGCTACGACTCATAATATTGACATCGGTGACGAGGGTGGTGATGATGATGATTTAGTGAGTTGGTTTGATGATTGTCTTCCTGAAACGTCCATGGATATTGTGGCCGTAGTTCCAACAAGTTGTACTAACTATAATCAACAAGTGCCCCCGTCCACACGTGTTGCATCATGCAGTGGTGATGCAGAGATGGCACGTGTGGGAATGGGATCTAGCTTTGAGGAAATATCGGAAGACTTTGAGAATCAAGAGGCTAAGAACTTGATCGGCTCAATGGTATACGAGGGCAAAAATAACACTGTGAGCCCGGGAGAGACAAGTTTGGGTGAGGAAAGAGTACTTACAACAACATCTACCTTTAAGCATAATAAAAGGAAGACACTGAATAATCATGATAGCAGAGGTCAGGAGTCGAGAGATAATGAGGATGAGGATGAGAAAAAAAGATCCAAAATTTCTTCATTTTCAACAAAAAGGTGCAGAGTTGCTGCTACTCACAACCAGTCTGAACGAAAAAGAAGAGACAAGATAAACCAAAGGTTGAAGACATTGCAGAAGTTAGTTCCAACATCGAGTAAGACTGATACGGCATCAATGTTAGATGAGGTGATAGAATATTTGAAGCAACTACGAGCTCAAGTTAAAGCCATGAGCATGATGATTCATGTTAACATGCAGCCACCCCCTATGATGTTACCAAATATGGCATTCCAACAACAACAACAACAATTTCAAATGTCAATGATGGGGATGGCTAGACCCATCGATGTCAATGCCCTTAGCAGCCCCAACATAACAACAATCCCATCGATTCTCCATACCACCGCACCCTCTAATTTCAATAACCCTCCTATTGCCTCCCCTGGAGCTGATCCTTTAGCTTCCTTGGTCGCAGTACGCCAATTATCACAGCCTATGACGATGGATGCTTATAGCAGGATGGCAGCATTGTACCAACAATATCTACAGTCAAATGCAAATCTTGGCTTTAAAAATTGA
	 Protein sequence
	 Protein sequence
 | translated polypeptide sequence | 
       
    
  >Solyc10g018510.1.1 BHLH transcription factor (AHRD V1 *-** B6TXR4_MAIZE); contains Interpro domain(s)  IPR011598  Helix-loop-helix DNA-binding 
    
  
MDYEVAELKWEKGEVVMHGLGPPGVPCYYKPLSTPSPTKYTWDDKPHAAAGGTLESIVNQATTHNIDIGDEGGDDDDLVSWFDDCLPETSMDIVAVVPTSCTNYNQQVPPSTRVASCSGDAEMARVGMGSSFEEISEDFENQEAKNLIGSMVYEGKNNTVSPGETSLGEERVLTTTSTFKHNKRKTLNNHDSRGQESRDNEDEDEKKRSKISSFSTKRCRVAATHNQSERKRRDKINQRLKTLQKLVPTSSKTDTASMLDEVIEYLKQLRAQVKAMSMMIHVNMQPPPMMLPNMAFQQQQQQFQMSMMGMARPIDVNALSSPNITTIPSILHTTAPSNFNNPPIASPGADPLASLVAVRQLSQPMTMDAYSRMAALYQQYLQSNANLGFKN*
    
MDYEVAELKWEKGEVVMHGLGPPGVPCYYKPLSTPSPTKYTWDDKPHAAAGGTLESIVNQATTHNIDIGDEGGDDDDLVSWFDDCLPETSMDIVAVVPTSCTNYNQQVPPSTRVASCSGDAEMARVGMGSSFEEISEDFENQEAKNLIGSMVYEGKNNTVSPGETSLGEERVLTTTSTFKHNKRKTLNNHDSRGQESRDNEDEDEKKRSKISSFSTKRCRVAATHNQSERKRRDKINQRLKTLQKLVPTSSKTDTASMLDEVIEYLKQLRAQVKAMSMMIHVNMQPPPMMLPNMAFQQQQQQFQMSMMGMARPIDVNALSSPNITTIPSILHTTAPSNFNNPPIASPGADPLASLVAVRQLSQPMTMDAYSRMAALYQQYLQSNANLGFKN*
	 Gene model matches
	 Gene model matches
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	 SGN Unigenes
	 SGN Unigenes
 | [Associate new unigene] | 
    Unigene ID:
    
    
  
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| 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 characterization of the bHLH gene family in tomato.   
    BMC genomics (2015) 
  
Show / hide abstract
    
  Show / hide abstract
       BackgroundThe basic helix-loop-helix (bHLH) proteins are a large superfamily of transcription factors, and play a central role in a wide range of metabolic, physiological, and developmental processes in higher organisms. Tomato is an important vegetable crop, and its genome sequence has been published recently. However, the bHLH gene family of tomato has not been systematically identified and characterized yet.ResultsIn this study, we identified 159 bHLH protein-encoding genes (SlbHLH) in tomato genome and analyzed their structures. Although bHLH domains were conserved among the bHLH proteins between tomato and Arabidopsis, the intron sequences and distribution of tomato bHLH genes were extremely different compared with Arabidopsis. The gene duplication analysis showed that 58.5% and 6.3% of SlbHLH genes belonged to low-stringency and high-stringency duplication, respectively, indicating that the SlbHLH genes are mainly generated via short low-stringency region duplication in tomato. Subsequently, we classified the SlbHLH genes into 21 subfamilies by phylogenetic tree analysis, and predicted their possible functions by comparison with their homologous genes of Arabidopsis. Moreover, the expression profile analysis of SlbHLH genes from 10 different tissues showed that 21 SlbHLH genes exhibited tissue-specific expression. Further, we identified that 11 SlbHLH genes were associated with fruit development and ripening (eight of them associated with young fruit development and three with fruit ripening). The evolutionary analysis revealed that 92% SlbHLH genes might be evolved from ancestor(s) originated from early land plant, and 8% from algae.ConclusionsIn this work, we systematically identified SlbHLHs by analyzing the tomato genome sequence using a set of bioinformatics approaches, and characterized their chromosomal distribution, gene structures, duplication, phylogenetic relationship and expression profiles, as well predicted their possible biological functions via comparative analysis with bHLHs of Arabidopsis. The results and information provide a good basis for further investigation of the biological functions and evolution of tomato bHLH genes.
    
     
       Sun, H. Fan, HJ. Ling, HQ.
       BMC genomics.
       2015.
        16(1).
       9.
      
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