This site uses cookies to provide logins and other features. Please accept the use of cookies by clicking Accept.
Potato locus PoAc75 gene for actin
| 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 (0)
Associated loci (0)
| [Associate new locus] |
[loading...]
|
| Associated loci - graphical view | None |
SolCyc links
SolCyc links
|
[loading...]
Sequence annotations
Sequence annotations
|
Genome features
Genome features
|
Genomic sequence
Genomic sequence
| unprocessed genomic sequence region underlying this gene |
>PGSC0003DMG400025519 PGSC_DMv3_219_ch11:39594076..39599987
TCTATTATGGGTCCATGGTCAAACTTTTTTGGCTCTTTCCTTTTCAGGCTTCAACTCAAGCCTCTGGATCTTTACCCTTTGAAGAAGCCATAACCCCCTTTTTCAATTTACAAGAATCATTTCTTGTTTTTTTCTGCTTCACTGTTGATTCCCAACATTAGCCTTTTGTTCATCATTGTACTGTGAGGAAGAGGCTTTCTTCTTGTGCAAAGCAAAGTTTGTGTCTTTTGCTTTTTGGTACTTCTGAAAGTGCTTGATTTGAGGTAAAGAACTGATTTTGATTTATGGGTCAGTGGATTTTATTGTTTTCTCAAGTGAGTCAGATTAGTTTTGAGGAGTTATGGGGAGTTTGTGGTAAAAGAACAGATTTTTATATTTAAGCTTTCAATTTCTTGTGTTTTTGTTTGTGGAATCTGAATTTGCAATTCACTGGAGAAAATGGGTTGAGTATGATATCTGGGGTTTTGAATTTGTGGTTACTTGAATGGTTGAAGGTTGTTCATGTGGGATTCTTGAATTAGTCAGTGTTAACTAGTACTTTGTTGTGTTTGTGCCGGTAGGAGGTAGCAGGTATCCTGTGAAATAGTTGAGGTGTGTGTGTAAGCTGGTGTAAACACTAATGTCATTTTAAAAAGTGCTTTGATGTATCTGTTGAAAGACTAGAAGAGGGGTAAGTGGAGAAGGGTAGAGGGATGGGCCTGTTATTCCTGAGTTTCGAATAGGAGAGGAGTAAGTGGAGAAGGGTAGAGGAGCTGAACCATTATTCGTGAGTTTTGGAGGTTAGCTACTGAGGTAGAGGAAGATGAAAAGAGGCATAGGTCAAGAGAAAGTTATGGGGCCTATGTTTCCAAGGCTTCATGTTAATGATACAGAAAAAGGAGGTCCAAGAGCACCTCCAAGGAACAAGATGGCTCTTTATGAACAGCTTAGTATCCCTTCCCAACGATACAACCCTGGTGATTTGCCTCATAACAGTAGTAACAGTGCAAATTTGTTCCCTCCTCACTCAAGCCAGGTAAAGCAAGTTAAAATAATTGCAGTTTACTTCATAGTAGATATATTCCAAATTTTGCCAATGGGTTTAGGTCAGCCTTTTGCTTGAATTTCCATATTTTTTTGTTTTAGTAACCGCCATTTCGGGGCTAGCTTGTGCACGCCTCAGCTAATTCCATGAGGTTCCCACTAACACAACTACCTAGTAACTCTGTCCACTACCTTGGATAGATGGGGGAAAAGTCACCTAGTGATTTTGCCTCCGATTGGATTTGTCCATTTGAGTAGGGCTTTCTTACATCGGAATTTTTCTTCTTTACCAAATACCAAATTACATCCCAAATTTTTCACTTAAAAGCTCCAGGAGGATGATATTCAACTATGTCAATGTGTTCCCTTTTCTTATAGGTTTTTTAATCCAAGTTTGATGCATAATCCACATTGAATACGTCATTTCCACGTCCTCCCTTTCTTTCTCCTTGTGGTACTCGATACTCCCTGTGGCTGGTTTCAAGTTTTCTTGATGTTGACCCCACTCGTGTGAATATGCTCGGTATGTCAATGTTGTTGTTGTGGATAGTAAGTTTTGCAGTTGTTTGAGTTTGTTATATCTGAGTTCAGAATATTGTGTAGGAGAATGAACACGAAAGAGGTGTATTTTTCTCAAGACAACTTCCTGCATTAAGACATCCAGTTGAGAAGCCATATGGATGTAGTTCTGGTTCAAATACTCCATTGCGGGAAGTTAAGTCTAAAAGGCAGACACAAAAGGAAGATTTTAGAGTTCCCACTTTTGGTAACTCCAAGGAGCATGCAGTAAGCAGAGAGGACTATTTTAAAGGTACCTCAGATTCTTTATCTATAGATAAGCGAGACGGTACTTTGAAGCGGACTGATCAACTCTCGCATTTCAAACCAAGAGAGAATCTTGTTAATACCTTTGGTGAATCACATAAGACCAATATAGTACAGTTGGAATTCAGATCTGATTCTCAAGTTGATTGCACTGTCTTTTCTGGATCTGTCATAGATGTTGATGATGGTAATCTTCTTTCCATTTGGATGACTAATAACCTTATTATCATCAGAAGAGAGGATAAAACTAATAACCTTATTAATGATACAGACTCCCAGGAAGACAAGACGTGTAAATCATCACAAACAGGAGAAATGGCCCACAGTGATGAACTATCAGAGACTTCCATGGTCGAGTATGTATCTGAAATGGACATATCTCCTGATGATGTTGTTAGAATGATTGGACAAAAACATTTCTGGAAAGCAAGACGAGCTATTGCCAAGTAAGTCTGGTTTCTTAGTGATAGCTTTGATTGATTGTTTGAGCTTGACATCTTCATTTTCTTATCACGTTGTGCAAAGATGATCCCTATCATTCTCTTTGGCAGATGGTATCTGTGGATGTTATAAATTGGCTTTGTTTTGAACCTGACTTTTCTTGCTGATGATGTACTTTAAAGTGTATCAGGTCATCACTTGTACAGTGAGAGTAGAAAAATTGTCACTTTTGAGTCTCCTCATGGTTTTGTTTTTATTGAAATGAAGGATGTGCTCCTCTAATATTTCTGCAGCCAATTAGCACCGATATGTGCTTGGTAGTTTAAGTTACCTTTTCTTTCTGAATACATGTGTATAGTATAACCATTCATAACCTACAACTGTGTTTACAAATTATTTCAATGATGCCTATGATGTATTTGTGGTCTAGTCAGTTCTACATGAAATTACATCTCAACTGCACTTTCTTGATGCAACTTTGTTAAACAATGTGCCTTGAAGATCTTTTCATTACATGGCTTAGTCTTTACCATTTGAAGCACGTTGAATGACACGTCACTTACTTGGATGATTGTCAAAATCATTTGTGAACTTTGCCATTTGAATATGAAAAAGAGACGACTTGAATTAACATGCTAACTAGCATTTACTAGCATTCTATAGTGTACTCAATTTTCCCTTTAAAGCTGATCGGCTTTGTATGACGGTTAGATCTAACAATTTTTGTATTGCTAACCCTTCTTGCTGTTTGCTCGAGTTTATTTTTGATGAGTTTTAGCAATCTAGAGTTGACTTGTTATTGCAATACAATGTGATTGTGATAGCTTTCAGTTTTTTTAAGCACTAAGGACAATGACTCTTTAGAGTGGTATGGTACTTATATATAATTAATATTCTTCTTCTAAAAGTGGTAGTAGTCATGGTATTCTTGGAGTATATGGTCCTGTACTGAGTTAAGGTGGTGTGATGGTTTTCATGTGTTGGGATTCTTTGTTCCTGTTCCTGCAATTATCAACTGACGAATTCTTCTAGACAAATTCTGTGTGAATAGTAGGATTTGAGGTATGGCATAAAGGAGGTTGGACCTCTTAGTGCAGTCTGATGGTTCTCACAGTGTGGGTCATGCGTGTAGCGTCCATTAATTCAGCACTTATTCACATTCACTTATGCATTGTGGGGACCATGTAAGACGTGTTGTAGTTTCATGGTGAGCTGTCGCCACTGGATTAGTTTGACTGATTGTCGACTTATCTCTTGGGCCTTTTTTTGGCTGGTTTTCCTGGGTTGTAGATGATTGTTGGGTGAGTTTAGAGTGTAGCATGCGGATCTTCTTTTCCCTGACCTCAAAAGCTCAGATTTGATATGTACCTGGGAATCATGCAACAAATTGTCATGTAGGAGAAAAAGTTGTACCATTAGTGTTGACTGCCTCTTTTTTGTTGATGAAATAAGAAGGATATCATTAACAAAAAGCATCAAGAAGATGCAAGCATTACAACTACAACAGGAAGAGAAAAACAGGAAAAAATGGTTATTTGTGTCGTAGAGCAAAAAACTAACTCTGTCTTTAAGCACATTAACAACTACAACTCAATTAAAGCTGTTTCTCTCGGCTTTATGATTCTCACTGTCCATTTTGTTGCATCTTAATTCGTTTGATTTCCAATATTCAATATTACAGTTTCTTAGAAAGAAAAATGAAGAATGAGACTGGCCCCTACTTTTCCCCCACATTTGAGTCATAGTGGAGACTCAGTTACTCACCAATCATTTAACTATTGGTTGCCTATTTACTCGTAGAGACGCTTTTCTTCAAGCATCACGATGGAACTCTGACTGGTCTTACATAGTCATTTGCCCATCTCTAGTGATCATTTCTTGAGTTCTTGTTGTTATCTGTAGGTCAACTCGGTGGTTCTCTTTCTTCCAGCTGATTTTCAACTGTACATTAGTCTTTTATTACTTCTATTCTGTATTTGATATTTCGGATGTATGAAGTTTAACAGCTAATCTTTTACTATATGTTATTTGTTATCTTGATTCTGTCCCTGTTGTCCTGGTACAGCCAGCAGAGAATGCTTGCAGTTCAAGTATTTGAGTTGCATAGACTACTCAAGGTAAGGCAGCTGTAGAGGCTGAATTGCATCTTGTATCAGCACTGAGATTAACATTCCTTGTCTTTCGTTGGACTTGGCATTTTGCTCAAATTTTTCCGGTTGTTGCTCAATAGGTCCAGAAACTGATAGCTGGTTCGCCAAATGTGAATCTCGAAGATAATGCTTATTTAGGCAAACCTTTAAAGAGGTTGTCTGCTAAAAGAATTTCTTTGGAGCATAGTGTCAAAGCACCTGAAAATGTTTCGCGGCACAAGAATGATTCAGAGAAACCTAACCCTAGGATGGAATGCAATGCTGAAAATGATGTAGGAAAGACATCTCTTTCTTCAGTACAAAATGGTTGCCAGCCTTCTAGCTGCAATCCACTTTCAGAAAAACAACTACCAACACCTGTAAAACATGATTCCCTTATGAGTCCTTGGTACTTCAATCAAGCTCCAGGGCACCAATGGTTGATACCCATGATGTCTCCTTCTGAAGGACTCATGTTCAAGCCACACTCTGGACCTGCAGTCATGAGTCCAGTATACGGAGGTTGTGGACCCCCAGGGTCGACTCCAATGATGGGAAACTTTTTAGCTCCAGCATATGGACTTCCCTTTGCGCCTCCGACTGGTCATGGCTACTTTCGTCCCTTTGGCATGCCAGTTATGAATCCGGCAATCCCATCTCCAGCTCAATATCAATCGAACCAGGTTGCTGCATCGCATTCTAAAGGTCAGTTATCGGGAGGGAGAGCTAGTTTTAACATTCAACACCAGAACTCAAGTAATGCTGGGAGTGAGAATGATGGAACCATGCCAGAAGGTGTGAGATTATACCCCTCTAGAGATTCTGAGTTGCAGGCCAGTACTGCAAGTAGTCCGAGTGAAAGAATTCGTGCAGTAGACATGGGCAACTCCACAAGAGGAAGAAGTGCATTTCATCACTTCCCAACTTCTCCAGCTGTTGACAATCCCGTTCTTAGGCCTCAGCCTCATTTTCCTCTACGCCCTGCCCGAGCAATCAAAGTTACACCTCACAATGCCCGATCAGCTACAGAATCTGTTGCTCGGATTTTTCAGTCCATACAAGACGAGAGAAAACAGTATTGATTCAGATTTTTAATCCAAGATGATGAGTTTTTTGGTCTATTTGTTGTTACCTCTTTGACTGTATTGTTGTAATTGGATTTCTAACTCAGCTGGTGAGCCACGTTATAGGTAACTACTTTTTGTTGCACCCCTATCTTTAAAGGGTGAACAACAACAACAACATATCCAGTGAAATTCCAGCAAGTGAGATTTGGGAAGGGTAGAGTGTATCCAGACCTTACCACTACCTAATGGAGGTGGAAAGGCTATTTCCGAAAGACACTCAGCCCTATCTTTAAAGGGTGAGGGTGGCTAATTTTTGATGTTGTAATTCTGAACTCGTTATGTGTTTGGATGATTTGTTCTGCATTAGCTCCTTGTTCTTGAGATACTGGGAAGTATGGCAAACTACTCTACATTGTTAATTTATTTT
TCTATTATGGGTCCATGGTCAAACTTTTTTGGCTCTTTCCTTTTCAGGCTTCAACTCAAGCCTCTGGATCTTTACCCTTTGAAGAAGCCATAACCCCCTTTTTCAATTTACAAGAATCATTTCTTGTTTTTTTCTGCTTCACTGTTGATTCCCAACATTAGCCTTTTGTTCATCATTGTACTGTGAGGAAGAGGCTTTCTTCTTGTGCAAAGCAAAGTTTGTGTCTTTTGCTTTTTGGTACTTCTGAAAGTGCTTGATTTGAGGTAAAGAACTGATTTTGATTTATGGGTCAGTGGATTTTATTGTTTTCTCAAGTGAGTCAGATTAGTTTTGAGGAGTTATGGGGAGTTTGTGGTAAAAGAACAGATTTTTATATTTAAGCTTTCAATTTCTTGTGTTTTTGTTTGTGGAATCTGAATTTGCAATTCACTGGAGAAAATGGGTTGAGTATGATATCTGGGGTTTTGAATTTGTGGTTACTTGAATGGTTGAAGGTTGTTCATGTGGGATTCTTGAATTAGTCAGTGTTAACTAGTACTTTGTTGTGTTTGTGCCGGTAGGAGGTAGCAGGTATCCTGTGAAATAGTTGAGGTGTGTGTGTAAGCTGGTGTAAACACTAATGTCATTTTAAAAAGTGCTTTGATGTATCTGTTGAAAGACTAGAAGAGGGGTAAGTGGAGAAGGGTAGAGGGATGGGCCTGTTATTCCTGAGTTTCGAATAGGAGAGGAGTAAGTGGAGAAGGGTAGAGGAGCTGAACCATTATTCGTGAGTTTTGGAGGTTAGCTACTGAGGTAGAGGAAGATGAAAAGAGGCATAGGTCAAGAGAAAGTTATGGGGCCTATGTTTCCAAGGCTTCATGTTAATGATACAGAAAAAGGAGGTCCAAGAGCACCTCCAAGGAACAAGATGGCTCTTTATGAACAGCTTAGTATCCCTTCCCAACGATACAACCCTGGTGATTTGCCTCATAACAGTAGTAACAGTGCAAATTTGTTCCCTCCTCACTCAAGCCAGGTAAAGCAAGTTAAAATAATTGCAGTTTACTTCATAGTAGATATATTCCAAATTTTGCCAATGGGTTTAGGTCAGCCTTTTGCTTGAATTTCCATATTTTTTTGTTTTAGTAACCGCCATTTCGGGGCTAGCTTGTGCACGCCTCAGCTAATTCCATGAGGTTCCCACTAACACAACTACCTAGTAACTCTGTCCACTACCTTGGATAGATGGGGGAAAAGTCACCTAGTGATTTTGCCTCCGATTGGATTTGTCCATTTGAGTAGGGCTTTCTTACATCGGAATTTTTCTTCTTTACCAAATACCAAATTACATCCCAAATTTTTCACTTAAAAGCTCCAGGAGGATGATATTCAACTATGTCAATGTGTTCCCTTTTCTTATAGGTTTTTTAATCCAAGTTTGATGCATAATCCACATTGAATACGTCATTTCCACGTCCTCCCTTTCTTTCTCCTTGTGGTACTCGATACTCCCTGTGGCTGGTTTCAAGTTTTCTTGATGTTGACCCCACTCGTGTGAATATGCTCGGTATGTCAATGTTGTTGTTGTGGATAGTAAGTTTTGCAGTTGTTTGAGTTTGTTATATCTGAGTTCAGAATATTGTGTAGGAGAATGAACACGAAAGAGGTGTATTTTTCTCAAGACAACTTCCTGCATTAAGACATCCAGTTGAGAAGCCATATGGATGTAGTTCTGGTTCAAATACTCCATTGCGGGAAGTTAAGTCTAAAAGGCAGACACAAAAGGAAGATTTTAGAGTTCCCACTTTTGGTAACTCCAAGGAGCATGCAGTAAGCAGAGAGGACTATTTTAAAGGTACCTCAGATTCTTTATCTATAGATAAGCGAGACGGTACTTTGAAGCGGACTGATCAACTCTCGCATTTCAAACCAAGAGAGAATCTTGTTAATACCTTTGGTGAATCACATAAGACCAATATAGTACAGTTGGAATTCAGATCTGATTCTCAAGTTGATTGCACTGTCTTTTCTGGATCTGTCATAGATGTTGATGATGGTAATCTTCTTTCCATTTGGATGACTAATAACCTTATTATCATCAGAAGAGAGGATAAAACTAATAACCTTATTAATGATACAGACTCCCAGGAAGACAAGACGTGTAAATCATCACAAACAGGAGAAATGGCCCACAGTGATGAACTATCAGAGACTTCCATGGTCGAGTATGTATCTGAAATGGACATATCTCCTGATGATGTTGTTAGAATGATTGGACAAAAACATTTCTGGAAAGCAAGACGAGCTATTGCCAAGTAAGTCTGGTTTCTTAGTGATAGCTTTGATTGATTGTTTGAGCTTGACATCTTCATTTTCTTATCACGTTGTGCAAAGATGATCCCTATCATTCTCTTTGGCAGATGGTATCTGTGGATGTTATAAATTGGCTTTGTTTTGAACCTGACTTTTCTTGCTGATGATGTACTTTAAAGTGTATCAGGTCATCACTTGTACAGTGAGAGTAGAAAAATTGTCACTTTTGAGTCTCCTCATGGTTTTGTTTTTATTGAAATGAAGGATGTGCTCCTCTAATATTTCTGCAGCCAATTAGCACCGATATGTGCTTGGTAGTTTAAGTTACCTTTTCTTTCTGAATACATGTGTATAGTATAACCATTCATAACCTACAACTGTGTTTACAAATTATTTCAATGATGCCTATGATGTATTTGTGGTCTAGTCAGTTCTACATGAAATTACATCTCAACTGCACTTTCTTGATGCAACTTTGTTAAACAATGTGCCTTGAAGATCTTTTCATTACATGGCTTAGTCTTTACCATTTGAAGCACGTTGAATGACACGTCACTTACTTGGATGATTGTCAAAATCATTTGTGAACTTTGCCATTTGAATATGAAAAAGAGACGACTTGAATTAACATGCTAACTAGCATTTACTAGCATTCTATAGTGTACTCAATTTTCCCTTTAAAGCTGATCGGCTTTGTATGACGGTTAGATCTAACAATTTTTGTATTGCTAACCCTTCTTGCTGTTTGCTCGAGTTTATTTTTGATGAGTTTTAGCAATCTAGAGTTGACTTGTTATTGCAATACAATGTGATTGTGATAGCTTTCAGTTTTTTTAAGCACTAAGGACAATGACTCTTTAGAGTGGTATGGTACTTATATATAATTAATATTCTTCTTCTAAAAGTGGTAGTAGTCATGGTATTCTTGGAGTATATGGTCCTGTACTGAGTTAAGGTGGTGTGATGGTTTTCATGTGTTGGGATTCTTTGTTCCTGTTCCTGCAATTATCAACTGACGAATTCTTCTAGACAAATTCTGTGTGAATAGTAGGATTTGAGGTATGGCATAAAGGAGGTTGGACCTCTTAGTGCAGTCTGATGGTTCTCACAGTGTGGGTCATGCGTGTAGCGTCCATTAATTCAGCACTTATTCACATTCACTTATGCATTGTGGGGACCATGTAAGACGTGTTGTAGTTTCATGGTGAGCTGTCGCCACTGGATTAGTTTGACTGATTGTCGACTTATCTCTTGGGCCTTTTTTTGGCTGGTTTTCCTGGGTTGTAGATGATTGTTGGGTGAGTTTAGAGTGTAGCATGCGGATCTTCTTTTCCCTGACCTCAAAAGCTCAGATTTGATATGTACCTGGGAATCATGCAACAAATTGTCATGTAGGAGAAAAAGTTGTACCATTAGTGTTGACTGCCTCTTTTTTGTTGATGAAATAAGAAGGATATCATTAACAAAAAGCATCAAGAAGATGCAAGCATTACAACTACAACAGGAAGAGAAAAACAGGAAAAAATGGTTATTTGTGTCGTAGAGCAAAAAACTAACTCTGTCTTTAAGCACATTAACAACTACAACTCAATTAAAGCTGTTTCTCTCGGCTTTATGATTCTCACTGTCCATTTTGTTGCATCTTAATTCGTTTGATTTCCAATATTCAATATTACAGTTTCTTAGAAAGAAAAATGAAGAATGAGACTGGCCCCTACTTTTCCCCCACATTTGAGTCATAGTGGAGACTCAGTTACTCACCAATCATTTAACTATTGGTTGCCTATTTACTCGTAGAGACGCTTTTCTTCAAGCATCACGATGGAACTCTGACTGGTCTTACATAGTCATTTGCCCATCTCTAGTGATCATTTCTTGAGTTCTTGTTGTTATCTGTAGGTCAACTCGGTGGTTCTCTTTCTTCCAGCTGATTTTCAACTGTACATTAGTCTTTTATTACTTCTATTCTGTATTTGATATTTCGGATGTATGAAGTTTAACAGCTAATCTTTTACTATATGTTATTTGTTATCTTGATTCTGTCCCTGTTGTCCTGGTACAGCCAGCAGAGAATGCTTGCAGTTCAAGTATTTGAGTTGCATAGACTACTCAAGGTAAGGCAGCTGTAGAGGCTGAATTGCATCTTGTATCAGCACTGAGATTAACATTCCTTGTCTTTCGTTGGACTTGGCATTTTGCTCAAATTTTTCCGGTTGTTGCTCAATAGGTCCAGAAACTGATAGCTGGTTCGCCAAATGTGAATCTCGAAGATAATGCTTATTTAGGCAAACCTTTAAAGAGGTTGTCTGCTAAAAGAATTTCTTTGGAGCATAGTGTCAAAGCACCTGAAAATGTTTCGCGGCACAAGAATGATTCAGAGAAACCTAACCCTAGGATGGAATGCAATGCTGAAAATGATGTAGGAAAGACATCTCTTTCTTCAGTACAAAATGGTTGCCAGCCTTCTAGCTGCAATCCACTTTCAGAAAAACAACTACCAACACCTGTAAAACATGATTCCCTTATGAGTCCTTGGTACTTCAATCAAGCTCCAGGGCACCAATGGTTGATACCCATGATGTCTCCTTCTGAAGGACTCATGTTCAAGCCACACTCTGGACCTGCAGTCATGAGTCCAGTATACGGAGGTTGTGGACCCCCAGGGTCGACTCCAATGATGGGAAACTTTTTAGCTCCAGCATATGGACTTCCCTTTGCGCCTCCGACTGGTCATGGCTACTTTCGTCCCTTTGGCATGCCAGTTATGAATCCGGCAATCCCATCTCCAGCTCAATATCAATCGAACCAGGTTGCTGCATCGCATTCTAAAGGTCAGTTATCGGGAGGGAGAGCTAGTTTTAACATTCAACACCAGAACTCAAGTAATGCTGGGAGTGAGAATGATGGAACCATGCCAGAAGGTGTGAGATTATACCCCTCTAGAGATTCTGAGTTGCAGGCCAGTACTGCAAGTAGTCCGAGTGAAAGAATTCGTGCAGTAGACATGGGCAACTCCACAAGAGGAAGAAGTGCATTTCATCACTTCCCAACTTCTCCAGCTGTTGACAATCCCGTTCTTAGGCCTCAGCCTCATTTTCCTCTACGCCCTGCCCGAGCAATCAAAGTTACACCTCACAATGCCCGATCAGCTACAGAATCTGTTGCTCGGATTTTTCAGTCCATACAAGACGAGAGAAAACAGTATTGATTCAGATTTTTAATCCAAGATGATGAGTTTTTTGGTCTATTTGTTGTTACCTCTTTGACTGTATTGTTGTAATTGGATTTCTAACTCAGCTGGTGAGCCACGTTATAGGTAACTACTTTTTGTTGCACCCCTATCTTTAAAGGGTGAACAACAACAACAACATATCCAGTGAAATTCCAGCAAGTGAGATTTGGGAAGGGTAGAGTGTATCCAGACCTTACCACTACCTAATGGAGGTGGAAAGGCTATTTCCGAAAGACACTCAGCCCTATCTTTAAAGGGTGAGGGTGGCTAATTTTTGATGTTGTAATTCTGAACTCGTTATGTGTTTGGATGATTTGTTCTGCATTAGCTCCTTGTTCTTGAGATACTGGGAAGTATGGCAAACTACTCTACATTGTTAATTTATTTT
| Download sequence region |
Get flanking sequences on PGSC_DMv3_219_ch11
|
mRNA PGSC0003DMT400065602
mRNA PGSC0003DMT400065602
|
| Ontology terms | None | terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>PGSC0003DMT400065602 Early flowering 3
TCTATTATGGGTCCATGGTCAAACTTTTTTGGCTCTTTCCTTTTCAGGCTTCAACTCAAGCCTCTGGATCTTTACCCTTTGAAGAAGCCATAACCCCCTTTTTCAATTTACAAGAATCATTTCTTGTTTTTTTCTGCTTCACTGTTGATTCCCAACATTAGCCTTTTGTTCATCATTGTACTGTGAGGAAGAGGCTTTCTTCTTGTGCAAAGCAAAGTTTGTGTCTTTTGCTTTTTGGTACTTCTGAAAGTGCTTGATTTGAGGTAAAGAACTGATTTTGATTTATGGGTCAGTGGATTTTATTGTTTTCTCAAGTGAGTCAGATTAGTTTTGAGGAGTTATGGGGAGTTTGTGGTAAAAGAACAGATTTTTATATTTAAGCTTTCAATTTCTTGTGTTTTTGTTTGTGGAATCTGAATTTGCAATTCACTGGAGAAAATGGGTTGAGTATGATATCTGGGGTTTTGAATTTGTGGTTACTTGAATGGTTGAAGGTTGTTCATGTGGGATTCTTGAATTAGTCAGTGTTAACTAGTACTTTGTTGTGTTTGTGCCGGTAGGAGGTAGCAGGTATCCTGTGAAATAGTTGAGGTGTGTGTGTAAGCTGGTGTAAACACTAATGTCATTTTAAAAAGTGCTTTGATGTATCTGTTGAAAGACTAGAAGAGGGGTAAGTGGAGAAGGGTAGAGGGATGGGCCTGTTATTCCTGAGTTTCGAATAGGAGAGGAGTAAGTGGAGAAGGGTAGAGGAGCTGAACCATTATTCGTGAGTTTTGGAGGTTAGCTACTGAGGTAGAGGAAGATGAAAAGAGGCATAGGTCAAGAGAAAGTTATGGGGCCTATGTTTCCAAGGCTTCATGTTAATGATACAGAAAAAGGAGGTCCAAGAGCACCTCCAAGGAACAAGATGGCTCTTTATGAACAGCTTAGTATCCCTTCCCAACGATACAACCCTGGTGATTTGCCTCATAACAGTAGTAACAGTGCAAATTTGTTCCCTCCTCACTCAAGCCAGGAGAATGAACACGAAAGAGGTGTATTTTTCTCAAGACAACTTCCTGCATTAAGACATCCAGTTGAGAAGCCATATGGATGTAGTTCTGGTTCAAATACTCCATTGCGGGAAGTTAAGTCTAAAAGGCAGACACAAAAGGAAGATTTTAGAGTTCCCACTTTTGGTAACTCCAAGGAGCATGCAGTAAGCAGAGAGGACTATTTTAAAGGTACCTCAGATTCTTTATCTATAGATAAGCGAGACGGTACTTTGAAGCGGACTGATCAACTCTCGCATTTCAAACCAAGAGAGAATCTTGTTAATACCTTTGGTGAATCACATAAGACCAATATAGTACAGTTGGAATTCAGATCTGATTCTCAAGTTGATTGCACTGTCTTTTCTGGATCTGTCATAGATGTTGATGATGACTCCCAGGAAGACAAGACGTGTAAATCATCACAAACAGGAGAAATGGCCCACAGTGATGAACTATCAGAGACTTCCATGGTCGAGTATGTATCTGAAATGGACATATCTCCTGATGATGTTGTTAGAATGATTGGACAAAAACATTTCTGGAAAGCAAGACGAGCTATTGCCAAGTAAGTCTGGTTTCTTAGTGATAGCTTTGATTGATTGTTTGAGCTTGACATCTTCATTTTCTTATCACGTTGTGCAAAGATGATCCCTATCATTCTCTTTGGCAGATGGTATCTGTGGATGTTATAAATTGGCTTTGTTTTGAACCTGACTTTTCTTGCTGATGATGTACTTTAAAGTGTATCAGGTCATCACTTGTACAGTGAGAGTAGAAAAATTGTCACTTTTGAGTCTCCTCATGGTTTTGTTTTTATTGAAATGAAGGATGTGCTCCTCTAATATTTCTGCAGCCAATTAGCACCGATATGTGCTTGGTAGTTTAAGTTACCTTTTCTTTCTGAATACATGTGTATAGTATAACCATTCATAACCTACAACTGTGTTTACAAATTATTTCAATGATGCCTATGATGTATTTGTGGTCTAGTCAGTTCTACATGAAATTACATCTCAACTGCACTTTCTTGATGCAACTTTGTTAAACAATGTGCCTTGAAGATCTTTTCATTACATGGCTTAGTCTTTACCATTTGAAGCACGTTGAATGACACGTCACTTACTTGGATGATTGTCAAAATCATTTGTGAACTTTGCCATTTGAATATGAAAAAGAGACGACTTGAATTAACATGCTAACTAGCATTTACTAGCATTCTATAGTGTACTCAATTTTCCCTTTAAAGCTGATCGGCTTTGTATGACGGTTAGATCTAACAATTTTTGTATTGCTAACCCTTCTTGCTGTTTGCTCGAGTTTATTTTTGATGAGTTTTAGCAATCTAGAGTTGACTTGTTATTGCAATACAATGTGATTGTGATAGCTTTCAGTTTTTTTAAGCACTAAGGACAATGACTCTTTAGAGTGGTATGGTACTTATATATAATTAATATTCTTCTTCTAAAAGTGGTAGTAGTCATGGTATTCTTGGAGTATATGGTCCTGTACTGAGTTAAGGTGGTGTGATGGTTTTCATGTGTTGGGATTCTTTGTTCCTGTTCCTGCAATTATCAACTGACGAATTCTTCTAGACAAATTCTGTGTGAATAGTAGGATTTGAGGTATGGCATAAAGGAGGTTGGACCTCTTAGTGCAGTCTGATGGTTCTCACAGTGTGGGTCATGCGTGTAGCGTCCATTAATTCAGCACTTATTCACATTCACTTATGCATTGTGGGGACCATGTAAGACGTGTTGTAGTTTCATGGTGAGCTGTCGCCACTGGATTAGTTTGACTGATTGTCGACTTATCTCTTGGGCCTTTTTTTGGCTGGTTTTCCTGGGTTGTAGATGATTGTTGGGTGAGTTTAGAGTGTAGCATGCGGATCTTCTTTTCCCTGACCTCAAAAGCTCAGATTTGATATGTACCTGGGAATCATGCAACAAATTGTCATGTAGGAGAAAAAGTTGTACCATTAGTGTTGACTGCCTCTTTTTTGTTGATGAAATAAGAAGGATATCATTAACAAAAAGCATCAAGAAGATGCAAGCATTACAACTACAACAGGAAGAGAAAAACAGGAAAAAATGGTTATTTGTGTCGTAGAGCAAAAAACTAACTCTGTCTTTAAGCACATTAACAACTACAACTCAATTAAAGCTGTTTCTCTCGGCTTTATGATTCTCACTGTCCATTTTGTTGCATCTTAATTCGTTTGATTTCCAATATTCAATATTACAGTTTCTTAGAAAGAAAAATGAAGAATGAGACTGGCCCCTACTTTTCCCCCACATTTGAGTCATAGTGGAGACTCAGTTACTCACCAATCATTTAACTATTGGTTGCCTATTTACTCGTAGAGACGCTTTTCTTCAAGCATCACGATGGAACTCTGACTGGTCTTACATAGTCATTTGCCCATCTCTAGTGATCATTTCTTGAGTTCTTGTTGTTATCTGTAGGTCAACTCGGTGGTTCTCTTTCTTCCAGCTGATTTTCAACTGTACATTAGTCTTTTATTACTTCTATTCTGTATTTGATATTTCGGATGTATGAAGTTTAACAGCTAATCTTTTACTATATGTTATTTGTTATCTTGATTCTGTCCCTGTTGTCCTGGTACAGCCAGCAGAGAATGCTTGCAGTTCAAGTATTTGAGTTGCATAGACTACTCAAGGTAAGGCAGCTGTAGAGGCTGAATTGCATCTTGTATCAGCACTGAGATTAACATTCCTTGTCTTTCGTTGGACTTGGCATTTTGCTCAAATTTTTCCGGTTGTTGCTCAATAGGTCCAGAAACTGATAGCTGGTTCGCCAAATGTGAATCTCGAAGATAATGCTTATTTAGGCAAACCTTTAAAGAGGTTGTCTGCTAAAAGAATTTCTTTGGAGCATAGTGTCAAAGCACCTGAAAATGTTTCGCGGCACAAGAATGATTCAGAGAAACCTAACCCTAGGATGGAATGCAATGCTGAAAATGATGTAGGAAAGACATCTCTTTCTTCAGTACAAAATGGTTGCCAGCCTTCTAGCTGCAATCCACTTTCAGAAAAACAACTACCAACACCTGTAAAACATGATTCCCTTATGAGTCCTTGGTACTTCAATCAAGCTCCAGGGCACCAATGGTTGATACCCATGATGTCTCCTTCTGAAGGACTCATGTTCAAGCCACACTCTGGACCTGCAGTCATGAGTCCAGTATACGGAGGTTGTGGACCCCCAGGGTCGACTCCAATGATGGGAAACTTTTTAGCTCCAGCATATGGACTTCCCTTTGCGCCTCCGACTGGTCATGGCTACTTTCGTCCCTTTGGCATGCCAGTTATGAATCCGGCAATCCCATCTCCAGCTCAATATCAATCGAACCAGGTTGCTGCATCGCATTCTAAAGGTCAGTTATCGGGAGGGAGAGCTAGTTTTAACATTCAACACCAGAACTCAAGTAATGCTGGGAGTGAGAATGATGGAACCATGCCAGAAGGTGTGAGATTATACCCCTCTAGAGATTCTGAGTTGCAGGCCAGTACTGCAAGTAGTCCGAGTGAAAGAATTCGTGCAGTAGACATGGGCAACTCCACAAGAGGAAGAAGTGCATTTCATCACTTCCCAACTTCTCCAGCTGTTGACAATCCCGTTCTTAGGCCTCAGCCTCATTTTCCTCTACGCCCTGCCCGAGCAATCAAAGTTACACCTCACAATGCCCGATCAGCTACAGAATCTGTTGCTCGGATTTTTCAGTCCATACAAGACGAGAGAAAACAGTATTGATTCAGATTTTTAATCCAAGATGATGAGTTTTTTGGTCTATTTGTTGTTACCTCTTTGACTGTATTGTTGTAATTGGATTTCTAACTCAGCTGGTGAGCCACGTTATAGGTAACTACTTTTTGTTGCACCCCTATCTTTAAAGGGTGAACAACAACAACAACATATCCAGTGAAATTCCAGCAAGTGAGATTTGGGAAGGGTAGAGTGTATCCAGACCTTACCACTACCTAATGGAGGTGGAAAGGCTATTTCCGAAAGACACTCAGCCCTATCTTTAAAGGGTGAGGGTGGCTAATTTTTGATGTTGTAATTCTGAACTCGTTATGTGTTTGGATGATTTGTTCTGCATTAGCTCCTTGTTCTTGAGATACTGGGAAGTATGGCAAACTACTCTACATTGTTAATTTATTTT
TCTATTATGGGTCCATGGTCAAACTTTTTTGGCTCTTTCCTTTTCAGGCTTCAACTCAAGCCTCTGGATCTTTACCCTTTGAAGAAGCCATAACCCCCTTTTTCAATTTACAAGAATCATTTCTTGTTTTTTTCTGCTTCACTGTTGATTCCCAACATTAGCCTTTTGTTCATCATTGTACTGTGAGGAAGAGGCTTTCTTCTTGTGCAAAGCAAAGTTTGTGTCTTTTGCTTTTTGGTACTTCTGAAAGTGCTTGATTTGAGGTAAAGAACTGATTTTGATTTATGGGTCAGTGGATTTTATTGTTTTCTCAAGTGAGTCAGATTAGTTTTGAGGAGTTATGGGGAGTTTGTGGTAAAAGAACAGATTTTTATATTTAAGCTTTCAATTTCTTGTGTTTTTGTTTGTGGAATCTGAATTTGCAATTCACTGGAGAAAATGGGTTGAGTATGATATCTGGGGTTTTGAATTTGTGGTTACTTGAATGGTTGAAGGTTGTTCATGTGGGATTCTTGAATTAGTCAGTGTTAACTAGTACTTTGTTGTGTTTGTGCCGGTAGGAGGTAGCAGGTATCCTGTGAAATAGTTGAGGTGTGTGTGTAAGCTGGTGTAAACACTAATGTCATTTTAAAAAGTGCTTTGATGTATCTGTTGAAAGACTAGAAGAGGGGTAAGTGGAGAAGGGTAGAGGGATGGGCCTGTTATTCCTGAGTTTCGAATAGGAGAGGAGTAAGTGGAGAAGGGTAGAGGAGCTGAACCATTATTCGTGAGTTTTGGAGGTTAGCTACTGAGGTAGAGGAAGATGAAAAGAGGCATAGGTCAAGAGAAAGTTATGGGGCCTATGTTTCCAAGGCTTCATGTTAATGATACAGAAAAAGGAGGTCCAAGAGCACCTCCAAGGAACAAGATGGCTCTTTATGAACAGCTTAGTATCCCTTCCCAACGATACAACCCTGGTGATTTGCCTCATAACAGTAGTAACAGTGCAAATTTGTTCCCTCCTCACTCAAGCCAGGAGAATGAACACGAAAGAGGTGTATTTTTCTCAAGACAACTTCCTGCATTAAGACATCCAGTTGAGAAGCCATATGGATGTAGTTCTGGTTCAAATACTCCATTGCGGGAAGTTAAGTCTAAAAGGCAGACACAAAAGGAAGATTTTAGAGTTCCCACTTTTGGTAACTCCAAGGAGCATGCAGTAAGCAGAGAGGACTATTTTAAAGGTACCTCAGATTCTTTATCTATAGATAAGCGAGACGGTACTTTGAAGCGGACTGATCAACTCTCGCATTTCAAACCAAGAGAGAATCTTGTTAATACCTTTGGTGAATCACATAAGACCAATATAGTACAGTTGGAATTCAGATCTGATTCTCAAGTTGATTGCACTGTCTTTTCTGGATCTGTCATAGATGTTGATGATGACTCCCAGGAAGACAAGACGTGTAAATCATCACAAACAGGAGAAATGGCCCACAGTGATGAACTATCAGAGACTTCCATGGTCGAGTATGTATCTGAAATGGACATATCTCCTGATGATGTTGTTAGAATGATTGGACAAAAACATTTCTGGAAAGCAAGACGAGCTATTGCCAAGTAAGTCTGGTTTCTTAGTGATAGCTTTGATTGATTGTTTGAGCTTGACATCTTCATTTTCTTATCACGTTGTGCAAAGATGATCCCTATCATTCTCTTTGGCAGATGGTATCTGTGGATGTTATAAATTGGCTTTGTTTTGAACCTGACTTTTCTTGCTGATGATGTACTTTAAAGTGTATCAGGTCATCACTTGTACAGTGAGAGTAGAAAAATTGTCACTTTTGAGTCTCCTCATGGTTTTGTTTTTATTGAAATGAAGGATGTGCTCCTCTAATATTTCTGCAGCCAATTAGCACCGATATGTGCTTGGTAGTTTAAGTTACCTTTTCTTTCTGAATACATGTGTATAGTATAACCATTCATAACCTACAACTGTGTTTACAAATTATTTCAATGATGCCTATGATGTATTTGTGGTCTAGTCAGTTCTACATGAAATTACATCTCAACTGCACTTTCTTGATGCAACTTTGTTAAACAATGTGCCTTGAAGATCTTTTCATTACATGGCTTAGTCTTTACCATTTGAAGCACGTTGAATGACACGTCACTTACTTGGATGATTGTCAAAATCATTTGTGAACTTTGCCATTTGAATATGAAAAAGAGACGACTTGAATTAACATGCTAACTAGCATTTACTAGCATTCTATAGTGTACTCAATTTTCCCTTTAAAGCTGATCGGCTTTGTATGACGGTTAGATCTAACAATTTTTGTATTGCTAACCCTTCTTGCTGTTTGCTCGAGTTTATTTTTGATGAGTTTTAGCAATCTAGAGTTGACTTGTTATTGCAATACAATGTGATTGTGATAGCTTTCAGTTTTTTTAAGCACTAAGGACAATGACTCTTTAGAGTGGTATGGTACTTATATATAATTAATATTCTTCTTCTAAAAGTGGTAGTAGTCATGGTATTCTTGGAGTATATGGTCCTGTACTGAGTTAAGGTGGTGTGATGGTTTTCATGTGTTGGGATTCTTTGTTCCTGTTCCTGCAATTATCAACTGACGAATTCTTCTAGACAAATTCTGTGTGAATAGTAGGATTTGAGGTATGGCATAAAGGAGGTTGGACCTCTTAGTGCAGTCTGATGGTTCTCACAGTGTGGGTCATGCGTGTAGCGTCCATTAATTCAGCACTTATTCACATTCACTTATGCATTGTGGGGACCATGTAAGACGTGTTGTAGTTTCATGGTGAGCTGTCGCCACTGGATTAGTTTGACTGATTGTCGACTTATCTCTTGGGCCTTTTTTTGGCTGGTTTTCCTGGGTTGTAGATGATTGTTGGGTGAGTTTAGAGTGTAGCATGCGGATCTTCTTTTCCCTGACCTCAAAAGCTCAGATTTGATATGTACCTGGGAATCATGCAACAAATTGTCATGTAGGAGAAAAAGTTGTACCATTAGTGTTGACTGCCTCTTTTTTGTTGATGAAATAAGAAGGATATCATTAACAAAAAGCATCAAGAAGATGCAAGCATTACAACTACAACAGGAAGAGAAAAACAGGAAAAAATGGTTATTTGTGTCGTAGAGCAAAAAACTAACTCTGTCTTTAAGCACATTAACAACTACAACTCAATTAAAGCTGTTTCTCTCGGCTTTATGATTCTCACTGTCCATTTTGTTGCATCTTAATTCGTTTGATTTCCAATATTCAATATTACAGTTTCTTAGAAAGAAAAATGAAGAATGAGACTGGCCCCTACTTTTCCCCCACATTTGAGTCATAGTGGAGACTCAGTTACTCACCAATCATTTAACTATTGGTTGCCTATTTACTCGTAGAGACGCTTTTCTTCAAGCATCACGATGGAACTCTGACTGGTCTTACATAGTCATTTGCCCATCTCTAGTGATCATTTCTTGAGTTCTTGTTGTTATCTGTAGGTCAACTCGGTGGTTCTCTTTCTTCCAGCTGATTTTCAACTGTACATTAGTCTTTTATTACTTCTATTCTGTATTTGATATTTCGGATGTATGAAGTTTAACAGCTAATCTTTTACTATATGTTATTTGTTATCTTGATTCTGTCCCTGTTGTCCTGGTACAGCCAGCAGAGAATGCTTGCAGTTCAAGTATTTGAGTTGCATAGACTACTCAAGGTAAGGCAGCTGTAGAGGCTGAATTGCATCTTGTATCAGCACTGAGATTAACATTCCTTGTCTTTCGTTGGACTTGGCATTTTGCTCAAATTTTTCCGGTTGTTGCTCAATAGGTCCAGAAACTGATAGCTGGTTCGCCAAATGTGAATCTCGAAGATAATGCTTATTTAGGCAAACCTTTAAAGAGGTTGTCTGCTAAAAGAATTTCTTTGGAGCATAGTGTCAAAGCACCTGAAAATGTTTCGCGGCACAAGAATGATTCAGAGAAACCTAACCCTAGGATGGAATGCAATGCTGAAAATGATGTAGGAAAGACATCTCTTTCTTCAGTACAAAATGGTTGCCAGCCTTCTAGCTGCAATCCACTTTCAGAAAAACAACTACCAACACCTGTAAAACATGATTCCCTTATGAGTCCTTGGTACTTCAATCAAGCTCCAGGGCACCAATGGTTGATACCCATGATGTCTCCTTCTGAAGGACTCATGTTCAAGCCACACTCTGGACCTGCAGTCATGAGTCCAGTATACGGAGGTTGTGGACCCCCAGGGTCGACTCCAATGATGGGAAACTTTTTAGCTCCAGCATATGGACTTCCCTTTGCGCCTCCGACTGGTCATGGCTACTTTCGTCCCTTTGGCATGCCAGTTATGAATCCGGCAATCCCATCTCCAGCTCAATATCAATCGAACCAGGTTGCTGCATCGCATTCTAAAGGTCAGTTATCGGGAGGGAGAGCTAGTTTTAACATTCAACACCAGAACTCAAGTAATGCTGGGAGTGAGAATGATGGAACCATGCCAGAAGGTGTGAGATTATACCCCTCTAGAGATTCTGAGTTGCAGGCCAGTACTGCAAGTAGTCCGAGTGAAAGAATTCGTGCAGTAGACATGGGCAACTCCACAAGAGGAAGAAGTGCATTTCATCACTTCCCAACTTCTCCAGCTGTTGACAATCCCGTTCTTAGGCCTCAGCCTCATTTTCCTCTACGCCCTGCCCGAGCAATCAAAGTTACACCTCACAATGCCCGATCAGCTACAGAATCTGTTGCTCGGATTTTTCAGTCCATACAAGACGAGAGAAAACAGTATTGATTCAGATTTTTAATCCAAGATGATGAGTTTTTTGGTCTATTTGTTGTTACCTCTTTGACTGTATTGTTGTAATTGGATTTCTAACTCAGCTGGTGAGCCACGTTATAGGTAACTACTTTTTGTTGCACCCCTATCTTTAAAGGGTGAACAACAACAACAACATATCCAGTGAAATTCCAGCAAGTGAGATTTGGGAAGGGTAGAGTGTATCCAGACCTTACCACTACCTAATGGAGGTGGAAAGGCTATTTCCGAAAGACACTCAGCCCTATCTTTAAAGGGTGAGGGTGGCTAATTTTTGATGTTGTAATTCTGAACTCGTTATGTGTTTGGATGATTTGTTCTGCATTAGCTCCTTGTTCTTGAGATACTGGGAAGTATGGCAAACTACTCTACATTGTTAATTTATTTT
Protein sequence
Protein sequence
| translated polypeptide sequence |
>PGSC0003DMT400065602 Early flowering 3
MGPMFPRLHVNDTEKGGPRAPPRNKMALYEQLSIPSQRYNPGDLPHNSSNSANLFPPHSSQENEHERGVFFSRQLPALRHPVEKPYGCSSGSNTPLREVKSKRQTQKEDFRVPTFGNSKEHAVSREDYFKGTSDSLSIDKRDGTLKRTDQLSHFKPRENLVNTFGESHKTNIVQLEFRSDSQVDCTVFSGSVIDVDDDSQEDKTCKSSQTGEMAHSDELSETSMVEYVSEMDISPDDVVRMIGQKHFWKARRAIAK*
MGPMFPRLHVNDTEKGGPRAPPRNKMALYEQLSIPSQRYNPGDLPHNSSNSANLFPPHSSQENEHERGVFFSRQLPALRHPVEKPYGCSSGSNTPLREVKSKRQTQKEDFRVPTFGNSKEHAVSREDYFKGTSDSLSIDKRDGTLKRTDQLSHFKPRENLVNTFGESHKTNIVQLEFRSDSQVDCTVFSGSVIDVDDDSQEDKTCKSSQTGEMAHSDELSETSMVEYVSEMDISPDDVVRMIGQKHFWKARRAIAK*
mRNA PGSC0003DMT400065603
mRNA PGSC0003DMT400065603
|
| Ontology terms | None | terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>PGSC0003DMT400065603 Early flowering 3
TCTATTATGGGTCCATGGTCAAACTTTTTTGGCTCTTTCCTTTTCAGGCTTCAACTCAAGCCTCTGGATCTTTACCCTTTGAAGAAGCCATAACCCCCTTTTTCAATTTACAAGAATCATTTCTTGTTTTTTTCTGCTTCACTGTTGATTCCCAACATTAGCCTTTTGTTCATCATTGTACTGTGAGGAAGAGGCTTTCTTCTTGTGCAAAGCAAAGTTTGTGTCTTTTGCTTTTTGGTACTTCTGAAAGTGCTTGATTTGAGGTAAAGAACTGATTTTGATTTATGGGTCAGTGGATTTTATTGTTTTCTCAAGTGAGTCAGATTAGTTTTGAGGAGTTATGGGGAGTTTGTGGTAAAAGAACAGATTTTTATATTTAAGCTTTCAATTTCTTGTGTTTTTGTTTGTGGAATCTGAATTTGCAATTCACTGGAGAAAATGGGTTGAGTATGATATCTGGGGTTTTGAATTTGTGGTTACTTGAATGGTTGAAGGTTGTTCATGTGGGATTCTTGAATTAGTCAGTGTTAACTAGTACTTTGTTGTGTTTGTGCCGGTAGGAGGTAGCAGGTATCCTGTGAAATAGTTGAGGTGTGTGTGTAAGCTGGTGTAAACACTAATGTCATTTTAAAAAGTGCTTTGATGTATCTGTTGAAAGACTAGAAGAGGGGTAAGTGGAGAAGGGTAGAGGGATGGGCCTGTTATTCCTGAGTTTCGAATAGGAGAGGAGTAAGTGGAGAAGGGTAGAGGAGCTGAACCATTATTCGTGAGTTTTGGAGGTTAGCTACTGAGGTAGAGGAAGATGAAAAGAGGCATAGGTCAAGAGAAAGTTATGGGGCCTATGTTTCCAAGGCTTCATGTTAATGATACAGAAAAAGGAGGTCCAAGAGCACCTCCAAGGAACAAGATGGCTCTTTATGAACAGCTTAGTATCCCTTCCCAACGATACAACCCTGGTGATTTGCCTCATAACAGTAGTAACAGTGCAAATTTGTTCCCTCCTCACTCAAGCCAGGAGAATGAACACGAAAGAGGTGTATTTTTCTCAAGACAACTTCCTGCATTAAGACATCCAGTTGAGAAGCCATATGGATGTAGTTCTGGTTCAAATACTCCATTGCGGGAAGTTAAGTCTAAAAGGCAGACACAAAAGGAAGATTTTAGAGTTCCCACTTTTGGTAACTCCAAGGAGCATGCAGTAAGCAGAGAGGACTATTTTAAAGGTACCTCAGATTCTTTATCTATAGATAAGCGAGACGGTACTTTGAAGCGGACTGATCAACTCTCGCATTTCAAACCAAGAGAGAATCTTGTTAATACCTTTGGTGAATCACATAAGACCAATATAGTACAGTTGGAATTCAGATCTGATTCTCAAGTTGATTGCACTGTCTTTTCTGGATCTGTCATAGATGTTGATGATGACTCCCAGGAAGACAAGACGTGTAAATCATCACAAACAGGAGAAATGGCCCACAGTGATGAACTATCAGAGACTTCCATGGTCGAGTATGTATCTGAAATGGACATATCTCCTGATGATGTTGTTAGAATGATTGGACAAAAACATTTCTGGAAAGCAAGACGAGCTATTGCCAACCAGCAGAGAATGCTTGCAGTTCAAGTATTTGAGTTGCATAGACTACTCAAGGTCCAGAAACTGATAGCTGGTTCGCCAAATGTGAATCTCGAAGATAATGCTTATTTAGGCAAACCTTTAAAGAGGTTGTCTGCTAAAAGAATTTCTTTGGAGCATAGTGTCAAAGCACCTGAAAATGTTTCGCGGCACAAGAATGATTCAGAGAAACCTAACCCTAGGATGGAATGCAATGCTGAAAATGATGTAGGAAAGACATCTCTTTCTTCAGTACAAAATGGTTGCCAGCCTTCTAGCTGCAATCCACTTTCAGAAAAACAACTACCAACACCTGTAAAACATGATTCCCTTATGAGTCCTTGGTACTTCAATCAAGCTCCAGGGCACCAATGGTTGATACCCATGATGTCTCCTTCTGAAGGACTCATGTTCAAGCCACACTCTGGACCTGCAGTCATGAGTCCAGTATACGGAGGTTGTGGACCCCCAGGGTCGACTCCAATGATGGGAAACTTTTTAGCTCCAGCATATGGACTTCCCTTTGCGCCTCCGACTGGTCATGGCTACTTTCGTCCCTTTGGCATGCCAGTTATGAATCCGGCAATCCCATCTCCAGCTCAATATCAATCGAACCAGGTTGCTGCATCGCATTCTAAAGGTCAGTTATCGGGAGGGAGAGCTAGTTTTAACATTCAACACCAGAACTCAAGTAATGCTGGGAGTGAGAATGATGGAACCATGCCAGAAGGTGTGAGATTATACCCCTCTAGAGATTCTGAGTTGCAGGCCAGTACTGCAAGTAGTCCGAGTGAAAGAATTCGTGCAGTAGACATGGGCAACTCCACAAGAGGAAGAAGTGCATTTCATCACTTCCCAACTTCTCCAGCTGTTGACAATCCCGTTCTTAGGCCTCAGCCTCATTTTCCTCTACGCCCTGCCCGAGCAATCAAAGTTACACCTCACAATGCCCGATCAGCTACAGAATCTGTTGCTCGGATTTTTCAGTCCATACAAGACGAGAGAAAACAGTATTGATTCAGATTTTTAATCCAAGATGATGAGTTTTTTGGTCTATTTGTTGTTACCTCTTTGACTGTATTGTTGTAATTGGATTTCTAACTCAGCTGGTGAGCCACGTTATAGGTAACTACTTTTTGTTGCACCCCTATCTTTAAAGGGTGAACAACAACAACAACATATCCAGTGAAATTCCAGCAAGTGAGATTTGGGAAGGGTAGAGTGTATCCAGACCTTACCACTACCTAATGGAGGTGGAAAGGCTATTTCCGAAAGACACTCAGCCCTATCTTTAAAGGGTGAGGGTGGCTAATTTTTGATGTTGTAATTCTGAACTCGTTATGTGTTTGGATGATTTGTTCTGCATTAGCTCCTTGTTCTTGAGATACTGGGAAGTATGGCAAACTACTCTACATTGTTAATTTATTTT
TCTATTATGGGTCCATGGTCAAACTTTTTTGGCTCTTTCCTTTTCAGGCTTCAACTCAAGCCTCTGGATCTTTACCCTTTGAAGAAGCCATAACCCCCTTTTTCAATTTACAAGAATCATTTCTTGTTTTTTTCTGCTTCACTGTTGATTCCCAACATTAGCCTTTTGTTCATCATTGTACTGTGAGGAAGAGGCTTTCTTCTTGTGCAAAGCAAAGTTTGTGTCTTTTGCTTTTTGGTACTTCTGAAAGTGCTTGATTTGAGGTAAAGAACTGATTTTGATTTATGGGTCAGTGGATTTTATTGTTTTCTCAAGTGAGTCAGATTAGTTTTGAGGAGTTATGGGGAGTTTGTGGTAAAAGAACAGATTTTTATATTTAAGCTTTCAATTTCTTGTGTTTTTGTTTGTGGAATCTGAATTTGCAATTCACTGGAGAAAATGGGTTGAGTATGATATCTGGGGTTTTGAATTTGTGGTTACTTGAATGGTTGAAGGTTGTTCATGTGGGATTCTTGAATTAGTCAGTGTTAACTAGTACTTTGTTGTGTTTGTGCCGGTAGGAGGTAGCAGGTATCCTGTGAAATAGTTGAGGTGTGTGTGTAAGCTGGTGTAAACACTAATGTCATTTTAAAAAGTGCTTTGATGTATCTGTTGAAAGACTAGAAGAGGGGTAAGTGGAGAAGGGTAGAGGGATGGGCCTGTTATTCCTGAGTTTCGAATAGGAGAGGAGTAAGTGGAGAAGGGTAGAGGAGCTGAACCATTATTCGTGAGTTTTGGAGGTTAGCTACTGAGGTAGAGGAAGATGAAAAGAGGCATAGGTCAAGAGAAAGTTATGGGGCCTATGTTTCCAAGGCTTCATGTTAATGATACAGAAAAAGGAGGTCCAAGAGCACCTCCAAGGAACAAGATGGCTCTTTATGAACAGCTTAGTATCCCTTCCCAACGATACAACCCTGGTGATTTGCCTCATAACAGTAGTAACAGTGCAAATTTGTTCCCTCCTCACTCAAGCCAGGAGAATGAACACGAAAGAGGTGTATTTTTCTCAAGACAACTTCCTGCATTAAGACATCCAGTTGAGAAGCCATATGGATGTAGTTCTGGTTCAAATACTCCATTGCGGGAAGTTAAGTCTAAAAGGCAGACACAAAAGGAAGATTTTAGAGTTCCCACTTTTGGTAACTCCAAGGAGCATGCAGTAAGCAGAGAGGACTATTTTAAAGGTACCTCAGATTCTTTATCTATAGATAAGCGAGACGGTACTTTGAAGCGGACTGATCAACTCTCGCATTTCAAACCAAGAGAGAATCTTGTTAATACCTTTGGTGAATCACATAAGACCAATATAGTACAGTTGGAATTCAGATCTGATTCTCAAGTTGATTGCACTGTCTTTTCTGGATCTGTCATAGATGTTGATGATGACTCCCAGGAAGACAAGACGTGTAAATCATCACAAACAGGAGAAATGGCCCACAGTGATGAACTATCAGAGACTTCCATGGTCGAGTATGTATCTGAAATGGACATATCTCCTGATGATGTTGTTAGAATGATTGGACAAAAACATTTCTGGAAAGCAAGACGAGCTATTGCCAACCAGCAGAGAATGCTTGCAGTTCAAGTATTTGAGTTGCATAGACTACTCAAGGTCCAGAAACTGATAGCTGGTTCGCCAAATGTGAATCTCGAAGATAATGCTTATTTAGGCAAACCTTTAAAGAGGTTGTCTGCTAAAAGAATTTCTTTGGAGCATAGTGTCAAAGCACCTGAAAATGTTTCGCGGCACAAGAATGATTCAGAGAAACCTAACCCTAGGATGGAATGCAATGCTGAAAATGATGTAGGAAAGACATCTCTTTCTTCAGTACAAAATGGTTGCCAGCCTTCTAGCTGCAATCCACTTTCAGAAAAACAACTACCAACACCTGTAAAACATGATTCCCTTATGAGTCCTTGGTACTTCAATCAAGCTCCAGGGCACCAATGGTTGATACCCATGATGTCTCCTTCTGAAGGACTCATGTTCAAGCCACACTCTGGACCTGCAGTCATGAGTCCAGTATACGGAGGTTGTGGACCCCCAGGGTCGACTCCAATGATGGGAAACTTTTTAGCTCCAGCATATGGACTTCCCTTTGCGCCTCCGACTGGTCATGGCTACTTTCGTCCCTTTGGCATGCCAGTTATGAATCCGGCAATCCCATCTCCAGCTCAATATCAATCGAACCAGGTTGCTGCATCGCATTCTAAAGGTCAGTTATCGGGAGGGAGAGCTAGTTTTAACATTCAACACCAGAACTCAAGTAATGCTGGGAGTGAGAATGATGGAACCATGCCAGAAGGTGTGAGATTATACCCCTCTAGAGATTCTGAGTTGCAGGCCAGTACTGCAAGTAGTCCGAGTGAAAGAATTCGTGCAGTAGACATGGGCAACTCCACAAGAGGAAGAAGTGCATTTCATCACTTCCCAACTTCTCCAGCTGTTGACAATCCCGTTCTTAGGCCTCAGCCTCATTTTCCTCTACGCCCTGCCCGAGCAATCAAAGTTACACCTCACAATGCCCGATCAGCTACAGAATCTGTTGCTCGGATTTTTCAGTCCATACAAGACGAGAGAAAACAGTATTGATTCAGATTTTTAATCCAAGATGATGAGTTTTTTGGTCTATTTGTTGTTACCTCTTTGACTGTATTGTTGTAATTGGATTTCTAACTCAGCTGGTGAGCCACGTTATAGGTAACTACTTTTTGTTGCACCCCTATCTTTAAAGGGTGAACAACAACAACAACATATCCAGTGAAATTCCAGCAAGTGAGATTTGGGAAGGGTAGAGTGTATCCAGACCTTACCACTACCTAATGGAGGTGGAAAGGCTATTTCCGAAAGACACTCAGCCCTATCTTTAAAGGGTGAGGGTGGCTAATTTTTGATGTTGTAATTCTGAACTCGTTATGTGTTTGGATGATTTGTTCTGCATTAGCTCCTTGTTCTTGAGATACTGGGAAGTATGGCAAACTACTCTACATTGTTAATTTATTTT
Protein sequence
Protein sequence
| translated polypeptide sequence |
>PGSC0003DMT400065603 Early flowering 3
MGPMFPRLHVNDTEKGGPRAPPRNKMALYEQLSIPSQRYNPGDLPHNSSNSANLFPPHSSQENEHERGVFFSRQLPALRHPVEKPYGCSSGSNTPLREVKSKRQTQKEDFRVPTFGNSKEHAVSREDYFKGTSDSLSIDKRDGTLKRTDQLSHFKPRENLVNTFGESHKTNIVQLEFRSDSQVDCTVFSGSVIDVDDDSQEDKTCKSSQTGEMAHSDELSETSMVEYVSEMDISPDDVVRMIGQKHFWKARRAIANQQRMLAVQVFELHRLLKVQKLIAGSPNVNLEDNAYLGKPLKRLSAKRISLEHSVKAPENVSRHKNDSEKPNPRMECNAENDVGKTSLSSVQNGCQPSSCNPLSEKQLPTPVKHDSLMSPWYFNQAPGHQWLIPMMSPSEGLMFKPHSGPAVMSPVYGGCGPPGSTPMMGNFLAPAYGLPFAPPTGHGYFRPFGMPVMNPAIPSPAQYQSNQVAASHSKGQLSGGRASFNIQHQNSSNAGSENDGTMPEGVRLYPSRDSELQASTASSPSERIRAVDMGNSTRGRSAFHHFPTSPAVDNPVLRPQPHFPLRPARAIKVTPHNARSATESVARIFQSIQDERKQY*
MGPMFPRLHVNDTEKGGPRAPPRNKMALYEQLSIPSQRYNPGDLPHNSSNSANLFPPHSSQENEHERGVFFSRQLPALRHPVEKPYGCSSGSNTPLREVKSKRQTQKEDFRVPTFGNSKEHAVSREDYFKGTSDSLSIDKRDGTLKRTDQLSHFKPRENLVNTFGESHKTNIVQLEFRSDSQVDCTVFSGSVIDVDDDSQEDKTCKSSQTGEMAHSDELSETSMVEYVSEMDISPDDVVRMIGQKHFWKARRAIANQQRMLAVQVFELHRLLKVQKLIAGSPNVNLEDNAYLGKPLKRLSAKRISLEHSVKAPENVSRHKNDSEKPNPRMECNAENDVGKTSLSSVQNGCQPSSCNPLSEKQLPTPVKHDSLMSPWYFNQAPGHQWLIPMMSPSEGLMFKPHSGPAVMSPVYGGCGPPGSTPMMGNFLAPAYGLPFAPPTGHGYFRPFGMPVMNPAIPSPAQYQSNQVAASHSKGQLSGGRASFNIQHQNSSNAGSENDGTMPEGVRLYPSRDSELQASTASSPSERIRAVDMGNSTRGRSAFHHFPTSPAVDNPVLRPQPHFPLRPARAIKVTPHNARSATESVARIFQSIQDERKQY*
mRNA PGSC0003DMT400065601
mRNA PGSC0003DMT400065601
|
| Ontology terms | None | terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>PGSC0003DMT400065601 Early flowering 3
ATGAAAAGAGGCATAGGTCAAGAGAAAGTTATGGGGCCTATGTTTCCAAGGCTTCATGTTAATGATACAGAAAAAGGAGGTCCAAGAGCACCTCCAAGGAACAAGATGGCTCTTTATGAACAGCTTAGTATCCCTTCCCAACGATACAACCCTGGTGATTTGCCTCATAACAGTAGTAACAGTGCAAATTTGTTCCCTCCTCACTCAAGCCAGGAGAATGAACACGAAAGAGGTGTATTTTTCTCAAGACAACTTCCTGCATTAAGACATCCAGTTGAGAAGCCATATGGATGTAGTTCTGGTTCAAATACTCCATTGCGGGAAGTTAAGTCTAAAAGGCAGACACAAAAGGAAGATTTTAGAGTTCCCACTTTTGGTAACTCCAAGGAGCATGCAGTAAGCAGAGAGGACTATTTTAAAGGTACCTCAGATTCTTTATCTATAGATAAGCGAGACGGTACTTTGAAGCGGACTGATCAACTCTCGCATTTCAAACCAAGAGAGAATCTTGTTAATACCTTTGGTGAATCACATAAGACCAATATAGTACAGTTGGAATTCAGATCTGATTCTCAAGTTGATTGCACTGTCTTTTCTGGATCTGTCATAGATGTTGATGATGGTAATCTTCTTTCCATTTGGATGACTAATAACCTTATTATCATCAGAAGAGAGGATAAAACTAATAACCTTATTAATGATACAGACTCCCAGGAAGACAAGACGTGTAAATCATCACAAACAGGAGAAATGGCCCACAGTGATGAACTATCAGAGACTTCCATGGTCGAGTATGTATCTGAAATGGACATATCTCCTGATGATGTTGTTAGAATGATTGGACAAAAACATTTCTGGAAAGCAAGACGAGCTATTGCCAACCAGCAGAGAATGCTTGCAGTTCAAGTATTTGAGTTGCATAGACTACTCAAGGTCCAGAAACTGATAGCTGGTTCGCCAAATGTGAATCTCGAAGATAATGCTTATTTAGGCAAACCTTTAAAGAGGTTGTCTGCTAAAAGAATTTCTTTGGAGCATAGTGTCAAAGCACCTGAAAATGTTTCGCGGCACAAGAATGATTCAGAGAAACCTAACCCTAGGATGGAATGCAATGCTGAAAATGATGTAGGAAAGACATCTCTTTCTTCAGTACAAAATGGTTGCCAGCCTTCTAGCTGCAATCCACTTTCAGAAAAACAACTACCAACACCTGTAAAACATGATTCCCTTATGAGTCCTTGGTACTTCAATCAAGCTCCAGGGCACCAATGGTTGATACCCATGATGTCTCCTTCTGAAGGACTCATGTTCAAGCCACACTCTGGACCTGCAGTCATGAGTCCAGTATACGGAGGTTGTGGACCCCCAGGGTCGACTCCAATGATGGGAAACTTTTTAGCTCCAGCATATGGACTTCCCTTTGCGCCTCCGACTGGTCATGGCTACTTTCGTCCCTTTGGCATGCCAGTTATGAATCCGGCAATCCCATCTCCAGCTCAATATCAATCGAACCAGGTTGCTGCATCGCATTCTAAAGGTCAGTTATCGGGAGGGAGAGCTAGTTTTAACATTCAACACCAGAACTCAAGTAATGCTGGGAGTGAGAATGATGGAACCATGCCAGAAGGTGTGAGATTATACCCCTCTAGAGATTCTGAGTTGCAGGCCAGTACTGCAAGTAGTCCGAGTGAAAGAATTCGTGCAGTAGACATGGGCAACTCCACAAGAGGAAGAAGTGCATTTCATCACTTCCCAACTTCTCCAGCTGTTGACAATCCCGTTCTTAGGCCTCAGCCTCATTTTCCTCTACGCCCTGCCCGAGCAATCAAAGTTACACCTCACAATGCCCGATCAGCTACAGAATCTGTTGCTCGGATTTTTCAGTCCATACAAGACGAGAGAAAACAGTATTGA
ATGAAAAGAGGCATAGGTCAAGAGAAAGTTATGGGGCCTATGTTTCCAAGGCTTCATGTTAATGATACAGAAAAAGGAGGTCCAAGAGCACCTCCAAGGAACAAGATGGCTCTTTATGAACAGCTTAGTATCCCTTCCCAACGATACAACCCTGGTGATTTGCCTCATAACAGTAGTAACAGTGCAAATTTGTTCCCTCCTCACTCAAGCCAGGAGAATGAACACGAAAGAGGTGTATTTTTCTCAAGACAACTTCCTGCATTAAGACATCCAGTTGAGAAGCCATATGGATGTAGTTCTGGTTCAAATACTCCATTGCGGGAAGTTAAGTCTAAAAGGCAGACACAAAAGGAAGATTTTAGAGTTCCCACTTTTGGTAACTCCAAGGAGCATGCAGTAAGCAGAGAGGACTATTTTAAAGGTACCTCAGATTCTTTATCTATAGATAAGCGAGACGGTACTTTGAAGCGGACTGATCAACTCTCGCATTTCAAACCAAGAGAGAATCTTGTTAATACCTTTGGTGAATCACATAAGACCAATATAGTACAGTTGGAATTCAGATCTGATTCTCAAGTTGATTGCACTGTCTTTTCTGGATCTGTCATAGATGTTGATGATGGTAATCTTCTTTCCATTTGGATGACTAATAACCTTATTATCATCAGAAGAGAGGATAAAACTAATAACCTTATTAATGATACAGACTCCCAGGAAGACAAGACGTGTAAATCATCACAAACAGGAGAAATGGCCCACAGTGATGAACTATCAGAGACTTCCATGGTCGAGTATGTATCTGAAATGGACATATCTCCTGATGATGTTGTTAGAATGATTGGACAAAAACATTTCTGGAAAGCAAGACGAGCTATTGCCAACCAGCAGAGAATGCTTGCAGTTCAAGTATTTGAGTTGCATAGACTACTCAAGGTCCAGAAACTGATAGCTGGTTCGCCAAATGTGAATCTCGAAGATAATGCTTATTTAGGCAAACCTTTAAAGAGGTTGTCTGCTAAAAGAATTTCTTTGGAGCATAGTGTCAAAGCACCTGAAAATGTTTCGCGGCACAAGAATGATTCAGAGAAACCTAACCCTAGGATGGAATGCAATGCTGAAAATGATGTAGGAAAGACATCTCTTTCTTCAGTACAAAATGGTTGCCAGCCTTCTAGCTGCAATCCACTTTCAGAAAAACAACTACCAACACCTGTAAAACATGATTCCCTTATGAGTCCTTGGTACTTCAATCAAGCTCCAGGGCACCAATGGTTGATACCCATGATGTCTCCTTCTGAAGGACTCATGTTCAAGCCACACTCTGGACCTGCAGTCATGAGTCCAGTATACGGAGGTTGTGGACCCCCAGGGTCGACTCCAATGATGGGAAACTTTTTAGCTCCAGCATATGGACTTCCCTTTGCGCCTCCGACTGGTCATGGCTACTTTCGTCCCTTTGGCATGCCAGTTATGAATCCGGCAATCCCATCTCCAGCTCAATATCAATCGAACCAGGTTGCTGCATCGCATTCTAAAGGTCAGTTATCGGGAGGGAGAGCTAGTTTTAACATTCAACACCAGAACTCAAGTAATGCTGGGAGTGAGAATGATGGAACCATGCCAGAAGGTGTGAGATTATACCCCTCTAGAGATTCTGAGTTGCAGGCCAGTACTGCAAGTAGTCCGAGTGAAAGAATTCGTGCAGTAGACATGGGCAACTCCACAAGAGGAAGAAGTGCATTTCATCACTTCCCAACTTCTCCAGCTGTTGACAATCCCGTTCTTAGGCCTCAGCCTCATTTTCCTCTACGCCCTGCCCGAGCAATCAAAGTTACACCTCACAATGCCCGATCAGCTACAGAATCTGTTGCTCGGATTTTTCAGTCCATACAAGACGAGAGAAAACAGTATTGA
Protein sequence
Protein sequence
| translated polypeptide sequence |
>PGSC0003DMT400065601 Early flowering 3
MKRGIGQEKVMGPMFPRLHVNDTEKGGPRAPPRNKMALYEQLSIPSQRYNPGDLPHNSSNSANLFPPHSSQENEHERGVFFSRQLPALRHPVEKPYGCSSGSNTPLREVKSKRQTQKEDFRVPTFGNSKEHAVSREDYFKGTSDSLSIDKRDGTLKRTDQLSHFKPRENLVNTFGESHKTNIVQLEFRSDSQVDCTVFSGSVIDVDDGNLLSIWMTNNLIIIRREDKTNNLINDTDSQEDKTCKSSQTGEMAHSDELSETSMVEYVSEMDISPDDVVRMIGQKHFWKARRAIANQQRMLAVQVFELHRLLKVQKLIAGSPNVNLEDNAYLGKPLKRLSAKRISLEHSVKAPENVSRHKNDSEKPNPRMECNAENDVGKTSLSSVQNGCQPSSCNPLSEKQLPTPVKHDSLMSPWYFNQAPGHQWLIPMMSPSEGLMFKPHSGPAVMSPVYGGCGPPGSTPMMGNFLAPAYGLPFAPPTGHGYFRPFGMPVMNPAIPSPAQYQSNQVAASHSKGQLSGGRASFNIQHQNSSNAGSENDGTMPEGVRLYPSRDSELQASTASSPSERIRAVDMGNSTRGRSAFHHFPTSPAVDNPVLRPQPHFPLRPARAIKVTPHNARSATESVARIFQSIQDERKQY*
MKRGIGQEKVMGPMFPRLHVNDTEKGGPRAPPRNKMALYEQLSIPSQRYNPGDLPHNSSNSANLFPPHSSQENEHERGVFFSRQLPALRHPVEKPYGCSSGSNTPLREVKSKRQTQKEDFRVPTFGNSKEHAVSREDYFKGTSDSLSIDKRDGTLKRTDQLSHFKPRENLVNTFGESHKTNIVQLEFRSDSQVDCTVFSGSVIDVDDGNLLSIWMTNNLIIIRREDKTNNLINDTDSQEDKTCKSSQTGEMAHSDELSETSMVEYVSEMDISPDDVVRMIGQKHFWKARRAIANQQRMLAVQVFELHRLLKVQKLIAGSPNVNLEDNAYLGKPLKRLSAKRISLEHSVKAPENVSRHKNDSEKPNPRMECNAENDVGKTSLSSVQNGCQPSSCNPLSEKQLPTPVKHDSLMSPWYFNQAPGHQWLIPMMSPSEGLMFKPHSGPAVMSPVYGGCGPPGSTPMMGNFLAPAYGLPFAPPTGHGYFRPFGMPVMNPAIPSPAQYQSNQVAASHSKGQLSGGRASFNIQHQNSSNAGSENDGTMPEGVRLYPSRDSELQASTASSPSERIRAVDMGNSTRGRSAFHHFPTSPAVDNPVLRPQPHFPLRPARAIKVTPHNARSATESVARIFQSIQDERKQY*
Gene model matches
Gene model matches
|
SGN Unigenes
SGN Unigenes
| [Associate new unigene] |
Unigene ID:
[loading...]
GenBank accessions
GenBank accessions
| [Associate new genbank sequence] |
X55753 S.tuberosum PoAc75 gene for actin.
| Other genome matches | None |
Literature annotations [1]
Literature annotations [1]
| [Associate publication] [Matching publications] |
Independent gene evolution in the potato actin gene family demonstrated by phylogenetic procedures for resolving gene conversions and the phylogeny of angiosperm actin genes.
Journal of molecular evolution (1990)
Show / hide abstract
Show / hide abstract
Nine different actin DNA sequences were isolated from the common potato, Solanum tuberosum, and the nucleotide sequence of five actin loci and of two allelic variants are presented. Unlike the wide variation in intron position among animal actin genes, the potato actin genes have three introns situated in the same positions as reported for all other angiosperm actin genes. Using a novel combination of analytical procedures (G-test and compatibility analysis), we could not find evidence of frequent large or small nonreciprocal exchanges of genetic material between the sequenced loci, although there were a few candidates. Resolution of such gene conversion events and the quantification of independence of gene evolution in multigene families is critical to the inference of phylogenetic relationships. Comparison with actin genes in other angiosperm species suggests that the actin multigene family can be divided into a number of subfamilies, evolved by descent rather than gene conversion, which are of possible functional origin, with one major subfamily diversification occurring before the divergence of monocots and dicots. The silent rate of nucleotide substitution was estimated to be similar to that suggested for a number of other plant nuclear genes, whereas the replacement rate was extremely slow, suggestive of selective constraints.
Drouin, G. Dover, GA.
Journal of molecular evolution.
1990.
31(2).
132-50.
Ontology annotations (11)
Ontology annotations (11)
| [Add ontology annotations] |
[loading...]
Related views
Related views
|
none found
| 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
