MELO3C008507T2 (mRNA) Melon (DHL92) v3.5.1

NameMELO3C008507T2
TypemRNA
OrganismCucumis melo (Melon (DHL92) v3.5.1)
DescriptionThioredoxin superfamily protein
Locationchr5 : 11337913 .. 11342285 (-)
Sequence length1464
The following sequences are available for this feature:

Gene sequence (with intron)

Legend: CDS
Hold the cursor over a type above to highlight its positions in the sequence below.
GGGACGGGAGAGAGAAGGGAAATATTTTGGAGATTTCTGGGGCTTTAGTTTCTGGGTGTGGAGGGGTTTCAAATGACTATTTGAGCTTGGTATTCAATTCATGGTTAGTTTCTCTTATTTTTCTCTCCTCTGAATCAATAAACGCTTTTCGCTTCTCCTTTCTTCTCTATACTTATTAGTTCTATCTCTCTGTATTTTGTTATATTATATTTTTATTCTGAAGCAATAGTTGAAGTCCTAATTTGTGCATTCTTGTAGAAATGGCGCTGCAACATACACTGGGTTTACTGTCTCTGGCTTTGCCTTCCTCAAATTGCAAATTTGAAGGGGGCGCTTTATTTGTGTCAACCAGTTCCCATACCACCAATCTTCTCTCTTCTTGGACCTTGGAGTCTTCCTATCCTTCATCCATCTCTTTCATGAAGTTTCCTTTCCGGGTAATGTCATTCTCTAATCCATATACTTTTATAACTGGGAATCATTCCGAATTCGCTCCATGGTAATTTGACATTTGTAGAGTTGTTTTTAGAAATGGTGCAACAACGTACTTGTAATTAAATCACTTTGAAAGAATGTAAATAAACAATATTTTTAGGAAGAAATGGGTTTTAACTAAAATGTATGCCCAAGTCACCCTCAGTGCTTCTTTCTTGTTACTTGGGGAGACTAACTGTGAAGCGCTTCATGTTATTATCTGTAGGGTAGTTGTTTTAGAAGCAGCACTCTAAGGGCCTATAGAACCGCAGGGTCAATTAAGCCTGGTGATGGAAAGAAGAAGAAAGGACAAGCAGGTATGGACTCAGATGAGGAAGATGATTCTTCTTCAGCAAAGCAGCTAGACGCTGAGCCTATGGATGCTGAAGAGAGACAGGAATGGAGGGAGAAGATTAGGAAAGTGATTGATATGAACCCCAATGTTGAGGAGGAGATAGACAACATGGAAAGGAAAAGAAAGATGCAAAAACTTCTCGCTGAGTATCCTCTTGTTGTGGAAGAGGAGGATCCTGATTGGCCTGAGGATGCAGATGGTTGGGGTTTCAACTTGGGTCAGTTTTTTGATAAGATCACCATCAAGAATAAGAAAAAAGACAATAAATTTGATGATGATAAAGATGACACTGATAATGAAATAGTTTGGCAAGATGACAACTACATTCGGCCAATTAAGGACATAACAATTTCTGAATGGGAGGAGGCTGTGTTCAAAGATATTAGTCCACTAATCATTTTTGTACATAATCGCTACAAAAGGTATGCTCTTGGAAGGCATCAGTATCTTGTGTGGGGAAAATTTGTTTTCATGTTTTTGATTGACATTTATCTCTATTATATATATATTTTTATTAATTCTGAACCTATGATCCAATGCAAGGATCTTGTTTGGTATCCACCCTCACTTCCAAAAACCCCGAAATGTACTGGTAACAGCCCTGCGATTCTTATATTACGATAAACAATTATCTAGCAAGTCCACAATATTAACAAGAAATCCTTGGTAACATAAACAAGATTTTGAAAAGCAAGAAATTAAAAAAGAAACAAAACACCATCAAATTCGAGAGACCTGGAAATCCTCTTTTAGCCTCAACTTCACCAAATTCTTCCCCCTAGATAATGAGGCTGAAACCCCTATAGGCCCTATAAAAACCCTCAATTGGACCCCCGCCTCAAAGTACAACAGTGAAGTACAAAGAGCAACAAAACACAAGAAACAGCAACGAACCTACCCCTGAAACACCCTCAACAAATTCTAATACGACCAACTGATAACAAATATCAAAACAAGATTAACAACGATACAAGCAATCATGCTTAATCGACCAAGAAGACAAGCCAAAAAAAAATGAAAAATCCGAGCAGAATAAGGCTTTTCAATCAAGAGATATCTTGCTGTGAGGCTAGTGAAGACAGAATCACCCCATCAAGCCAATTGCTTAATTATGAGGGATACGCTGATTCCTTTCAAACCAAAACCAATCTGAAGGATCTTTAACAATAGTAGACCAAATCAACCGTGGGTTAGCTTCCAAGGACTTAACAAAGCCTTTGAGAACATCATCACCAAGAGCTAACTCTCCTTCCAACATTAATCTTAGGTCTCAACATCAAATTGATTTGAAAAAGCTTGGCAAACAACCGGTTTGCACTACTATTTCTTAGTTATCTTTATTGAAAGCAATAAACACAAAAACGAGACTTACGTTGGAAACCTGAGAACAGGGAGAAAAGCCATGATATTGTTAATTTTATTATTTCCGATGATTTACAAGGGTACAATGAAAGAGATTAAATATAATACACAAAGATATAAAAAAGGAAAAAATGTTTATGGTAAGTCTTTCCATAAGTAGCTTTTTCCATAAACACCCCAAAGGCCAAGCCCATGAATTCTAACAATCTTCAACCCAAAATAATCTATGACTTCAATCAAACATAATCAAAGATTATGCCAAAGAGAACGATGTCCAAAATTGAAACACTCTTCAACCGAAACATTATTAATTGATGGAAGAGTAGTTTTCCCAAGTATCCTACCTCTAACCTCATCAAACTCAACATTGAGGCCGGTAAGGAATTTTGGAAATACGACCAACTTCTATAGTTTTTCTGTAATGCTTTTGTTCTTCTATAGACTTCCACTCATATGTATCAAAGAGATCAAGGTCTTGCCCTTTTTAGGGAGTGAGTATTGTGTCATGGAGTTGCCTCCTTGTCGTATAGCACCTATTTTAAGATTCAACTTAAACACTTGTGACCGACTGCCCAAATCAGAATACATCTGAGTAACACTATTCCGTAATTCCTTGTTTAAAAAACATGATCACCTAAATGTTGGACTGTACACTGGTGCTGGTTGGGCAGGTAGCACCGTTTTTGCTCCTTTGTTGGAGGAAATCTAGTTACTTGGCGAAGTAAAAAACAGAATGTGGTTGCAAGAAATAGTGTAGAAGCAGAATTTAGGATTAGTAGAAGTAGCTGGCAGGACTGGCCCCCATTGTGGAAATAAAGATATCCCCTCTTCTCCATAATATGAAGATGGTGATACTGTTGGTGCAATAGCTTGTTTTTTTTTTTTTTCCTGTTTCTGCATACTTTGGTGCATTTTCGCCTATAGTTTCTTAAGTCCTTCCTCCATACACTGTGCAGTTCCACTGGTTGTTCTTCCACTCCTGAGATCTTCTACTCCCCTGAAATGATTCTTTCTTCCATACTCAAAATACATAATTGCGAGGATCTCACTAATCTAATCGACCAATACCGATTGGTTATTATTACTCAAACGACACAAATCATTATGTCAGAAAAGAGAATATACCAACGAGGAGAGTCTGACAGCTCCTCTCCAAATGCCACCTTATGTTGTTTCACACACTATTGTGATTTGTGTCTATATTTGATTTCTTGGTTTAACTTGTCGGGAATAGGAGGATCTTTGGATTGTGAACAGTTAACTTTGAATAATGCTTGAACGTTATGGTTGCCGTGGTTTAACAATACAAATGAATCATAAGATGATCTTGATCTGTATGTGACGGAAATTTGAAAATTTTGATGGGTCATGTATTTGTCTTCAATTAGGCCAAAGGAAAATGAAAAAGTTCGCAAGGAGCTGGAGAATGCTATACACATAATATGGAATTGCAATCTGCCTTCGCCAAGAGTAAGCCTTTCCTATTTATTGACAATACTTTACTCATCTCTCTACCTTTAGCAAATGTTATTTTAAACGTACTGTCTTTGACGGCAGTGTGTTGCTGTTGACGCTGTTGTTGAATGCAACTTGGTCTCTGCTCTTCAAGTGTCTGCCTTTCCAGAGATTATCTTCACTAAAGCAGGGAAAATCTTATACCGTGAGAAGGGTAAGTGCAAACCGAAGAGAAAACATTGCAAGTTTTGTTAATGAAACCTAGAGGCCTAAGTTTTGGATTGTTTCAGGATTTGTAAGTGCAGACGAGTTGTCCAAAATAATGGCATTCTTCTACTATGGAGCAGCTAAGCCACCATGTTTAAATGACGTTGGGGATTATCAGGAGACGATCCCTTCAGTTTCTCCCTAATTGTACCATAGAAGGATAGGGTATGTAATCGTTTAAAAGAAATTTGAAGTGTAAATTATGCTCTTTTAGGTTTGTTGTAGACGAGTGCAATCAGTTTGTTGGGCCAAATATTTTTGGAAAGGCTGAAGAACATCAGTTATACAACTTACGATGAGATAGCAAGAGCAGCTAGTTGATTCTTGTATTCTTTCTTTGGTCAACTTGTTTGGGTGCTTAATTAACTCCTTTCGCTAGGTTAACATGGATTTTGTTTCTATGATTATCTATATTATGTGCTTAAGAAATATTTATAAATCAGTATAATTTTACTTTTTA

mRNA sequence

GGGACGGGAGAGAGAAGGGAAATATTTTGGAGATTTCTGGGGCTTTAGTTTCTGGGTGTGGAGGGGTTTCAAATGACTATTTGAGCTTGGTATTCAATTCATGAAATGGCGCTGCAACATACACTGGGTTTACTGTCTCTGGCTTTGCCTTCCTCAAATTGCAAATTTGAAGGGGGCGCTTTATTTGTGTCAACCAGTTCCCATACCACCAATCTTCTCTCTTCTTGGACCTTGGAGTCTTCCTATCCTTCATCCATCTCTTTCATGAAGTTTCCTTTCCGGGGTAGTTGTTTTAGAAGCAGCACTCTAAGGGCCTATAGAACCGCAGGGTCAATTAAGCCTGGTGATGGAAAGAAGAAGAAAGGACAAGCAGGTATGGACTCAGATGAGGAAGATGATTCTTCTTCAGCAAAGCAGCTAGACGCTGAGCCTATGGATGCTGAAGAGAGACAGGAATGGAGGGAGAAGATTAGGAAAGTGATTGATATGAACCCCAATGTTGAGGAGGAGATAGACAACATGGAAAGGAAAAGAAAGATGCAAAAACTTCTCGCTGAGTATCCTCTTGTTGTGGAAGAGGAGGATCCTGATTGGCCTGAGGATGCAGATGGTTGGGGTTTCAACTTGGGTCAGTTTTTTGATAAGATCACCATCAAGAATAAGAAAAAAGACAATAAATTTGATGATGATAAAGATGACACTGATAATGAAATAGTTTGGCAAGATGACAACTACATTCGGCCAATTAAGGACATAACAATTTCTGAATGGGAGGAGGCTGTGTTCAAAGATATTAGTCCACTAATCATTTTTGTACATAATCGCTACAAAAGGCCAAAGGAAAATGAAAAAGTTCGCAAGGAGCTGGAGAATGCTATACACATAATATGGAATTGCAATCTGCCTTCGCCAAGATGTGTTGCTGTTGACGCTGTTGTTGAATGCAACTTGGTCTCTGCTCTTCAAGTGTCTGCCTTTCCAGAGATTATCTTCACTAAAGCAGGGAAAATCTTATACCGTGAGAAGGGATTTGTAAGTGCAGACGAGTTGTCCAAAATAATGGCATTCTTCTACTATGGAGCAGCTAAGCCACCATGTTTAAATGACGTTGGGGATTATCAGGAGACGATCCCTTCAGTTTCTCCCTAATTGTACCATAGAAGGATAGGGTATGTAATCGTTTAAAAGAAATTTGAAGTGTAAATTATGCTCTTTTAGGTTTGTTGTAGACGAGTGCAATCAGTTTGTTGGGCCAAATATTTTTGGAAAGGCTGAAGAACATCAGTTATACAACTTACGATGAGATAGCAAGAGCAGCTAGTTGATTCTTGTATTCTTTCTTTGGTCAACTTGTTTGGGTGCTTAATTAACTCCTTTCGCTAGGTTAACATGGATTTTGTTTCTATGATTATCTATATTATGTGCTTAAGAAATATTTATAAATCAGTATAATTTTACTTTTTA

Coding sequence (CDS)

ATGGCGCTGCAACATACACTGGGTTTACTGTCTCTGGCTTTGCCTTCCTCAAATTGCAAATTTGAAGGGGGCGCTTTATTTGTGTCAACCAGTTCCCATACCACCAATCTTCTCTCTTCTTGGACCTTGGAGTCTTCCTATCCTTCATCCATCTCTTTCATGAAGTTTCCTTTCCGGGGTAGTTGTTTTAGAAGCAGCACTCTAAGGGCCTATAGAACCGCAGGGTCAATTAAGCCTGGTGATGGAAAGAAGAAGAAAGGACAAGCAGGTATGGACTCAGATGAGGAAGATGATTCTTCTTCAGCAAAGCAGCTAGACGCTGAGCCTATGGATGCTGAAGAGAGACAGGAATGGAGGGAGAAGATTAGGAAAGTGATTGATATGAACCCCAATGTTGAGGAGGAGATAGACAACATGGAAAGGAAAAGAAAGATGCAAAAACTTCTCGCTGAGTATCCTCTTGTTGTGGAAGAGGAGGATCCTGATTGGCCTGAGGATGCAGATGGTTGGGGTTTCAACTTGGGTCAGTTTTTTGATAAGATCACCATCAAGAATAAGAAAAAAGACAATAAATTTGATGATGATAAAGATGACACTGATAATGAAATAGTTTGGCAAGATGACAACTACATTCGGCCAATTAAGGACATAACAATTTCTGAATGGGAGGAGGCTGTGTTCAAAGATATTAGTCCACTAATCATTTTTGTACATAATCGCTACAAAAGGCCAAAGGAAAATGAAAAAGTTCGCAAGGAGCTGGAGAATGCTATACACATAATATGGAATTGCAATCTGCCTTCGCCAAGATGTGTTGCTGTTGACGCTGTTGTTGAATGCAACTTGGTCTCTGCTCTTCAAGTGTCTGCCTTTCCAGAGATTATCTTCACTAAAGCAGGGAAAATCTTATACCGTGAGAAGGGATTTGTAAGTGCAGACGAGTTGTCCAAAATAATGGCATTCTTCTACTATGGAGCAGCTAAGCCACCATGTTTAAATGACGTTGGGGATTATCAGGAGACGATCCCTTCAGTTTCTCCCTAA
GO Assignments
This mRNA is annotated with the following GO terms.
Category Term Accession Term Name
biological_process GO:0009658 chloroplast organization
biological_process GO:0006355 regulation of transcription, DNA-templated
cellular_component GO:0009570 chloroplast stroma
molecular_function GO:0003674 molecular_function

This mRNA is a part of the following gene feature(s):

Feature NameUnique NameType
MELO3C008507MELO3C008507gene


The following CDS feature(s) are a part of this mRNA:

Feature NameUnique NameType
MELO3C008507T2.cds5MELO3C008507T2.cds5CDS
MELO3C008507T2.cds4MELO3C008507T2.cds4CDS
MELO3C008507T2.cds3MELO3C008507T2.cds3CDS
MELO3C008507T2.cds2MELO3C008507T2.cds2CDS
MELO3C008507T2.cds1MELO3C008507T2.cds1CDS


The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameType
MELO3C008507T2MELO3C008507T2-proteinpolypeptide