PI0022230 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GGACAAACGAAGGCTTACCGGTTGAGAAAAACCGAACCGGGTTTAGGTGGTTAAAACGTGCAGGCTCTTCACCTCAAAATGCGCGTTACATCCACTCGTTTCGAGCATCTCTCTATCTGTGTATATGCATTTTGTATGTCTCTTTCTCAATCTAACCCTTTGCCTCTCAATCCCTCTCTTCCATCCTTCTCCGCCGGCGTCTTCCTCTCCCCCTTAAATTCTCCGTCTTCTCTTCCCCAAATCGCCGCATGAATTTCGATCCAACTCTCAGGTTCTATTTTTCTTCTTCTACTACTTAATCTTCTCCTTCCTCTGTTTCTCTTCTTCAATCATTTCATTCATTCTTCTATCTTTTCTTGCTTTCTTTCAACTTCTTTCCATCTCCTTTCTCTTTCTCTCTTTCCCCTGAATTCTCGGTCTTGATTTCTTTTTTGTTTTTGGGTTTCTTTTGTTTTTTCTCCTGTTTTTGTGTTGCTTGAATCATGGAAGGTATTGGGGTTTTCGTGTATTAAGAAGTTCCTGTTTGTTTTTGTTCTGTTTTGTTTTTTTAATTTTCTGGATTCGTGGACCCTGCAAGTGAAAGCGGTTTGAATTATGATTTGGGGGTTTGTTTTGTTTTGTTTTTTCTCCTTCTTTCTGGTCATTTCTGTTTGTGGGTTTGAATTTGACATGCATAGGATTTGGTTTTGGTTGTGTTATGCTGAGGATTTGTGAATTATGTGTTGTGAAGCTTCAGATGTACTTCAACTAACCGCGGATTGTTTTTTTTTTCCTACCCATCATTGAGCTAGCTTTTATATGAAATGCCGACGAATCTACTCTTTTGGTCTCACTCTTGACATATCGTCGAGCAAGTTTTTGTTTTTGATTAAAGGAACAAGTGGGGTTTTATTTTATTCTCTGTTAGAAATTTGGAAGATAATTAGGTCGAAATTCATTCCCTCCCCTCGTTTTTGTTTAAAAAACGATATTCAAGTTCGAAATTAAGCATTAAGATGCTCTGTTTGTGGTTTACATCTTTACTGAGATTTCATGCTCACACATCTGCACTATTACAGCAATCAAATAGTCGGTGTAGTAATTGTGGGATGTTGGCTGGTTGTTTGTTTAATTATTTTCCTTGTACTTTTAAGGTACTTTCTACATGTTTTTGTGTTATTCGCTTGTCTGTTTACTGTAATCAGCTTGATTTCTTAGAAAAGTTTGCATAGAAGCAATTGGTTACTTTTTCAATGGGATGATAGCAATAGGTGGAGGTGTGGAGTTTATTTAATATTTGATATGAGTTTTTTTTCCCTTCATTTTCTGTCACACCCCTGTATAATTTTTTTTTCATTTTGTAGTTGATCCCTACCGTCTCAGAAGGGTTCAAGAAAGAGTGAGCTGCTAAATACATTTTTTTCCTTTGGTTAATGTTATGCAAACCAAGGATCCTCTGTTGCTTTTGCAAATAGATTACTAGACTGATTTAGTTTTCTTCCCCTTCCAAAAAAAGAAGTTGAAATCTCTACTCTTTGTAATTCGGTTTTATTCAAAATTTTTTATCATTTATGTGGAAAAAGGATACGCAATTGTTCTCCTTGCTAAATACAGAGTCCTGCTCTGTGCTTGCGTGTGCATCAATCAGTATGCAGTTTCCCTCTTTCGATTTCTATCTTACCCGTTCCATATATATTTCCTCTTCAGTTAATGTTGGTTGCTTGATGTATGACAGCAGTTAACCATCTTCATTCATGTTTATTTTATTCTCTCTTTTAGAACACATTGTCATTGTTATTTTATTCTACTTTGTGTGTGTGTGTCTGTTAGGGGAGTTGGTTGGCAGTTATTTACCAAAAGATATACACCCATTTGAGAATTTTTGTTATCTTTGCTGACTGAAAATCTCACCGTATTATACTTTGTCCATCACAATCAGTGTATTGTTATTTCCCTTATTTTCTTTCCTATTTATCTGAACAATTGAATTATAAAATCATCAATAGAGTTGTTTCTTGTTCATCTGTGATTAGAGCCTGTTCTGGGGTCCAGAAACTGTTTGAAGCATTTTTCTTGTTCGTAAGAACTATTTATTTAGTGGAGAGATTAGGTATTTGATACTCTCCAAATAGAAGTGGGCTTGCAATGATTTTAAAGTGGGACAAATTAAGTTCTGTTAGATTTGGAAAAGATCCGTACATTACCAAGGCAAGGACTACGCAAATTTAAATGGTTGTTTATCCCTTAATGTTTCTCCAGTCTTTGAAATTATTCTGTTTTTGTGTCCTTTTTGTTTCCGTTTGAAATTCCTGAATGTAATAAATGATAGATCAGGGGATAGGCTTTGGGAGGAATCTGGTATTTTTAGTAATATGATTCTTTTTTACTACTTTAAGTATACATTTTAATCAATTGTGTTATTGGTGTACAGGTTGATTGATAACCAATACGCCTCTTTAGAAGTTTCAAGTTTCCTTGGATTGATCAATATTTGGTGCATCTGATACGCTAAAGGTCTTATTGAATTCTAAAAGATGGACCGGTGTGACACTTCAGGATTTGTTAGTGGGGGTGGGATCTTTTTCAGAAACAATTGATCCTTGTTCCTTAGCTTCTTCTTTTTTTTCTCTCAACATAATAGAAATTAAAATAAAACTAGTTCCATAGCTTTTCATTTTTAAATCCCGGAAGGCAGGCAGGCTGGTCTATTTCAATTATAATTTGGTCTTGGTAACAATATTTTAGCTGTAATTTAATGGGCTCAAGCTTCCAGAACTTGAATTTTGCTGCCAATTATTCGTTGAATGTATTTAAGATTTTGGGGAAGTCTTTTCAAGATGGAAAAATTGGAGCTGAAGACAGTGCAGACACCATTCTTCGACTTGATTCCACTGGATCTTCAGTTCCCTGTGGGTCCATATCAAATGGGATGAAAAGGAAGTGGAGTTTGGTTGAGAAATCCATGGGTGGTCAGTCAGTTGGGTCTTCCTTATCTCTTGGGTTTGTTCATTCCTCAAGTTCTTCTGACAGCAAGGGGAGTTCAGGAACTGCATGCACCAGAGTGTCTTCTGCTAAAGAAACTGATGAGGAATCCTCAATGGCACTTGATCTGGATTTTTCTCTCAATCTTGGTAGCGATAGGGTAGCTAGCCCTAAAGAACCTGCCAGTAAGCCGCTTAAAGTACAGAAAGTTAAACCGAAGGTTGACTTGGAGTTAAGTCTCTCAACTGGGCCATCTGAATCTGATGTCACTTCAATTTATCAGGGTTTCCCCTCACTTCAGTTGTCAATGGAGAAGCCATTGACATTTGTTGAAACCTCAAACACAGATGATGGAGAAACATCTTGTTGTTGGAAGCCAGGAACTGCCCAGCCAGTCATGCCTACCTCATTGAATCCTCAGGTTGGCTACATTTTTCCCCCAGTTACTGAGATAGTAATTCCACCTGCCAATGTTCCAGACCTTTCCTCGAGCGTTCTAACCATGCCAAAAAGCTCAGTCACCTGTACTTCCGGGATAACACAACAGCAGCGTTTTAATCGTAGCAGTAATTCTAAAATATGCCAAGTTGAGGGATGTGGCAAAGGAGCCAGAGGTGCTTCTGGCCGTTGCATATCGCATGGTGGTGGTCGGAGGTGTCAGAAACCGGGATGCCATAAAGGGGCTGAGGGTCGCACTGTATACTGCAAGGCCCATGGAGGTGGACGACGATGTCAACACTTGGGTTGCACCAAAAGTGCAGAAGGACGCACAGACTATTGTATTGCCCATGGTGGAGGTCGAAGATGCAACCGTGAAGGATGCACTCGAGCAGCAAGAGGGAAATCAGGATTATGCATTCGTCATGGTGGTGGCAAGAGATGTCAAAAGGAGAACTGCACCAAGAGTGCGGAAGGCCTCTCCGGTCTTTGCATCTCTCATGGTGGTGGTAGGCGATGCCAAACACCTGGGTGCACTAAAGGGGCACAAGGGAGCACCATGTACTGCAAGGCTCATGGTGGGGGAAAAAGATGTACGGCTCCTGGTTGTACCAAAGGTGCTGAAGGGAGCACCCCATTTTGTAAGGGCCATGGTGGTGGAAAACGGTGTGGATTCCAGGGAGGTGGCATTTGTACAAAAAGTGTCCATGGGGGTACCAACTTCTGTGTGGCTCATGGTGGGGGCAAGAGATGTGCTGTTCCTGAGTGCACAAAAAGTGCTAGGGGAAGGACGGACTATTGTGTGCGTCATGGTGGGGGAAAGAGATGCAAGTTTGAAGGGTGCGGCAAAAGTGCACAAGGAAGCACAGATTTCTGCAAGGCACATGGTGGAGGAAAAAGATGTTCTTGGGGTCATCCTGGGTCTGAGTATGGCACACAACCCTGTTGCCCATGCAATTCATTCGCTAGAGGGAAGATGGGTCTTTGTGCACTTCATAGTGGCCTTGTGCAAGATAAGAGGGTTCATGGGGGTGTCTCAATCGGACCTATAATTCAGGACCCTAATCTCAGCAAGACAGAGAAGATGAAAGGAATAGTTGGGGAAGATTACATGAACGAAGATCTTATCAATGTAGGAGGCAAAGTTGGTCCAAATCTTGAGCACTTTGCAGGCAGTGAAGCAGATAAACCATCGACATCGGTTCTCGTTCCCGAAGGTAGAGTGCATGGTGGAAGTTTGTTGGCAATGCTTGCGTGCAGCTCAGGACTGGGATCAACCAGTAGAGATGCAGTTTCTGGTCCTGATCAGCCAATGGAACATCACATCATGCCTCGTAGTTGGGTGTGAAGCAATCTCAGCCTTCCTTTTATGTTCCATCCAGTGTTGGTCGGTAATGTTGGTCTCTTTCTCTTTGTTTAGTATCTGTCAATTATAAAGCTTGTTATTTATTTGTCCAAATGGAAAGACTCCTTAAGAGTGCTCTATATTGAGGGGGGCAAATTCTAAGTATTGGGTTGTTGGTTTGTTCTTTCTTGTATATATTTATTAGATAACGTATGTCGAACAGGCTATCAATACAGGTCAACAACCTGTAGGTTTGTTAATGTTGTCATTCTGGTTATGGATAAAACCCCTTTTTACTGTGGTCATCGTTTTATCTCTCCTTTCTTACCCTCTCTGATCCTCTCGTCTCATCATGGCCATTGACCTTTTAACTGGGATCAAAATTTTGAATTGACTAGATATTGTCCATTAAGCCACTATACTGTTAGTTGGTTATGGCTGATAGATGAAAAAATTTGAATAAAGATATGTATGTGCACTCTCTAGATTGCCCCTTCTTGTTCATATGATGGGTAGTTGCTTCTAATTATTTTTTTTATATCATAGAACTTCGTCACATTGAAATTTGAAAAGTTGGCCTTTTTGCTTTTTAGTTGGCTTATTTTTAGGATAAATATTGTTCATGGTTAGACTGTTTTGAATCGGCTCATCTCCCAGCGTCTCATTGGTTTTCTCTCTATCTCACCATTTTTATGGTTTCTCTCCGCAGTTTTTATTTTCTTTAATGCTTAGTTTGTATTTTCTAAATGGTTTAGTTGGTTTATACATATGCTAGATGAACGAACATGAGTTGATAGCAAAGGTCTCGTAAAGGTATTTGTGTTACCTTGACAACCAAATATAGTAGGACCCGGTGATTCTCTGTTAAAATAAGTCAAGGTCAAGTGTGTGAAGACAGTTGGAATTTCTCTTTGCTTTGATTTACCTTTTCTGCTTTTGCTCATTATTCTTTCTCGCATTCAATGGTATGAAAATTCAAAGTTCTATCGACCATTTAAATTTTTCATACATCCCTTTTCTGATCCTGGATATTTATAGTTGCCTAAGGAAGCATAAAGGTTCATTATCTAAGTGTTTACACATTTTTTTTTATGTATAAACACTTAAAAAGTCTCCAAACACGTTCTAATTTGGTTAAGTTGTGTAAAGGCAAAGGGAAGGAAAGGAAGAAGTTTAACAATTTCCATTGGAAAGTTACATGGCTTTTGATACATGTTTCTTGAATCTTTTCAAGCTAAAAAAAATTCTCTCTTACAACAATAACATATTCAATCATTTGATCTCATTTCAAATATGAACTTCTACTTTATCCCCACTCATCAATGTTCTTCATTGAACTTAGCCATACTAGATAGCTCATCCACTGTTTCAACCAAATAGTCAAGCCTAGCCACAAACTCAATGAGCAAGGAAGTAAAGTTAGCCAGTGACATGGCTGCAGTACTCTCCAGCTTCCTCATCCTCGGCAGAAATTCGATGGCAACACACCTGCCATCGTCGAACATGTCCATTTCCCTCAACGGCCACGAATGCTGCCTTCTCGACTGCTGCTTCCTCACCAAATCAACACCATGAGTATCCTGCTTGTTTAAACTCCTCTCGGAGCCATTGCTGTCGAGCTCAGCTGACAAGCTTGAAAGATCGTCGAGGTTGCCCGACGAGGTGGTTGAGAGACCTTTGGTGTCGCAAGTGGGAGTGAGTAGATAAGAGTGAGTGTCAATGGCGCGTTGGAGCTTCTCAGCTGCACTATGAACATTCTTTAGGTGAGAGATTTTGATGGATTGTTTCATGTTGTCGATGTCTCTGCCCAAACTTCTCACTAGCTCTGCTGCTTGATTTGCTACATCTTGAATCTCTGATTTGAATGTGATTCTGAGGTTATATGGAGCCTACAGTAGTGTAATAAGATTAGATTATATCATCGAATATTTGAGACATTGAGTTTTCAAACAGATATTTT GGACAAACGAAGGCTTACCGGTTGAGAAAAACCGAACCGGGTTTAGGTGGTTAAAACGTGCAGGCTCTTCACCTCAAAATGCGCGTTACATCCACTCGTTTCGAGCATCTCTCTATCTGTGTATATGCATTTTGTATGTCTCTTTCTCAATCTAACCCTTTGCCTCTCAATCCCTCTCTTCCATCCTTCTCCGCCGGCGTCTTCCTCTCCCCCTTAAATTCTCCGTCTTCTCTTCCCCAAATCGCCGCATGAATTTCGATCCAACTCTCAGGTTGATTGATAACCAATACGCCTCTTTAGAAGTTTCAAGTTTCCTTGGATTGATCAATATTTGGTGCATCTGATACGCTAAAGGTCTTATTGAATTCTAAAAGATGGACCGGTGTGACACTTCAGGATTTGTTAGTGGGGGTGGGATCTTTTTCAGAAACAATTGATCCTTGTTCCTTAGCTTCTTCTTTTTTTTCTCTCAACATAATAGAAATTAAAATAAAACTAGTTCCATAGCTTTTCATTTTTAAATCCCGGAAGGCAGGCAGGCTGGTCTATTTCAATTATAATTTGGTCTTGGTAACAATATTTTAGCTGTAATTTAATGGGCTCAAGCTTCCAGAACTTGAATTTTGCTGCCAATTATTCGTTGAATGTATTTAAGATTTTGGGGAAGTCTTTTCAAGATGGAAAAATTGGAGCTGAAGACAGTGCAGACACCATTCTTCGACTTGATTCCACTGGATCTTCAGTTCCCTGTGGGTCCATATCAAATGGGATGAAAAGGAAGTGGAGTTTGGTTGAGAAATCCATGGGTGGTCAGTCAGTTGGGTCTTCCTTATCTCTTGGGTTTGTTCATTCCTCAAGTTCTTCTGACAGCAAGGGGAGTTCAGGAACTGCATGCACCAGAGTGTCTTCTGCTAAAGAAACTGATGAGGAATCCTCAATGGCACTTGATCTGGATTTTTCTCTCAATCTTGGTAGCGATAGGGTAGCTAGCCCTAAAGAACCTGCCAGTAAGCCGCTTAAAGTACAGAAAGTTAAACCGAAGGTTGACTTGGAGTTAAGTCTCTCAACTGGGCCATCTGAATCTGATGTCACTTCAATTTATCAGGGTTTCCCCTCACTTCAGTTGTCAATGGAGAAGCCATTGACATTTGTTGAAACCTCAAACACAGATGATGGAGAAACATCTTGTTGTTGGAAGCCAGGAACTGCCCAGCCAGTCATGCCTACCTCATTGAATCCTCAGGTTGGCTACATTTTTCCCCCAGTTACTGAGATAGTAATTCCACCTGCCAATGTTCCAGACCTTTCCTCGAGCGTTCTAACCATGCCAAAAAGCTCAGTCACCTGTACTTCCGGGATAACACAACAGCAGCGTTTTAATCGTAGCAGTAATTCTAAAATATGCCAAGTTGAGGGATGTGGCAAAGGAGCCAGAGGTGCTTCTGGCCGTTGCATATCGCATGGTGGTGGTCGGAGGTGTCAGAAACCGGGATGCCATAAAGGGGCTGAGGGTCGCACTGTATACTGCAAGGCCCATGGAGGTGGACGACGATGTCAACACTTGGGTTGCACCAAAAGTGCAGAAGGACGCACAGACTATTGTATTGCCCATGGTGGAGGTCGAAGATGCAACCGTGAAGGATGCACTCGAGCAGCAAGAGGGAAATCAGGATTATGCATTCGTCATGGTGGTGGCAAGAGATGTCAAAAGGAGAACTGCACCAAGAGTGCGGAAGGCCTCTCCGGTCTTTGCATCTCTCATGGTGGTGGTAGGCGATGCCAAACACCTGGGTGCACTAAAGGGGCACAAGGGAGCACCATGTACTGCAAGGCTCATGGTGGGGGAAAAAGATGTACGGCTCCTGGTTGTACCAAAGGTGCTGAAGGGAGCACCCCATTTTGTAAGGGCCATGGTGGTGGAAAACGGTGTGGATTCCAGGGAGGTGGCATTTGTACAAAAAGTGTCCATGGGGGTACCAACTTCTGTGTGGCTCATGGTGGGGGCAAGAGATGTGCTGTTCCTGAGTGCACAAAAAGTGCTAGGGGAAGGACGGACTATTGTGTGCGTCATGGTGGGGGAAAGAGATGCAAGTTTGAAGGGTGCGGCAAAAGTGCACAAGGAAGCACAGATTTCTGCAAGGCACATGGTGGAGGAAAAAGATGTTCTTGGGGTCATCCTGGGTCTGAGTATGGCACACAACCCTGTTGCCCATGCAATTCATTCGCTAGAGGGAAGATGGGTCTTTGTGCACTTCATAGTGGCCTTGTGCAAGATAAGAGGGTTCATGGGGGTGTCTCAATCGGACCTATAATTCAGGACCCTAATCTCAGCAAGACAGAGAAGATGAAAGGAATAGTTGGGGAAGATTACATGAACGAAGATCTTATCAATGTAGGAGGCAAAGTTGGTCCAAATCTTGAGCACTTTGCAGGCAGTGAAGCAGATAAACCATCGACATCGGTTCTCGTTCCCGAAGGTAGAGTGCATGGTGGAAGTTTGTTGGCAATGCTTGCGTGCAGCTCAGGACTGGGATCAACCAGTAGAGATGCAGTTTCTGGTCCTGATCAGCCAATGGAACATCACATCATGCCTCGTAGTTGGGTGTGAAGCAATCTCAGCCTTCCTTTTATGTTCCATCCAGTGTTGGTCGGTAATGTTGGTCTCTTTCTCTTTGTTTAGTATCTGTCAATTATAAAGCTTGTTATTTATTTGTCCAAATGGAAAGACTCCTTAAGAGTGCTCTATATTGAGGGGGGCAAATTCTAAGTATTGGGTTGTTGGTTTGTTCTTTCTTGTATATATTTATTAGATAACGTATGTCGAACAGGCTATCAATACAGGTCAACAACCTGTAGGTTTGTTAATGTTGTCATTCTGGTTATGGATAAAACCCCTTTTTACTGTGGTCATCGTTTTATCTCTCCTTTCTTACCCTCTCTGATCCTCTCGTCTCATCATGGCCATTGACCTTTTAACTGGGATCAAAATTTTGAATTGACTAGATATTGTCCATTAAGCCACTATACTGTTAGTTGGTTATGGCTGATAGATGAAAAAATTTGAATAAAGATATGTATGTGCACTCTCTAGATTGCCCCTTCTTGTTCATATGATGGGTAGTTGCTTCTAATTATTTTTTTTATATCATAGAACTTCGTCACATTGAAATTTGAAAAGTTGGCCTTTTTGCTTTTTAGTTGGCTTATTTTTAGGATAAATATTGTTCATGGTTAGACTGTTTTGAATCGGCTCATCTCCCAGCGTCTCATTGGTTTTCTCTCTATCTCACCATTTTTATGGTTTCTCTCCGCAGTTTTTATTTTCTTTAATGCTTAGTTTGTATTTTCTAAATGGTTTAGTTGGTTTATACATATGCTAGATGAACGAACATGAGTTGATAGCAAAGGTCTCGTAAAGGTATTTGTGTTACCTTGACAACCAAATATAGTAGGACCCGGTGATTCTCTGTTAAAATAAGTCAAGGTCAAGTGTGTGAAGACAGTTGGAATTTCTCTTTGCTTTGATTTACCTTTTCTGCTTTTGCTCATTATTCTTTCTCGCATTCAATGGTATGAAAATTCAAAGTTCTATCGACCATTTAAATTTTTCATACATCCCTTTTCTGATCCTGGATATTTATAGTTGCCTAAGGAAGCATAAAGGTTCATTATCTAAGTGTTTACACATTTTTTTTTATGTATAAACACTTAAAAAGTCTCCAAACACGTTCTAATTTGGTTAAGTTGTGTAAAGGCAAAGGGAAGGAAAGGAAGAAGTTTAACAATTTCCATTGGAAAGTTACATGGCTTTTGATACATGTTTCTTGAATCTTTTCAAGCTAAAAAAAATTCTCTCTTACAACAATAACATATTCAATCATTTGATCTCATTTCAAATATGAACTTCTACTTTATCCCCACTCATCAATGTTCTTCATTGAACTTAGCCATACTAGATAGCTCATCCACTGTTTCAACCAAATAGTCAAGCCTAGCCACAAACTCAATGAGCAAGGAAGTAAAGTTAGCCAGTGACATGGCTGCAGTACTCTCCAGCTTCCTCATCCTCGGCAGAAATTCGATGGCAACACACCTGCCATCGTCGAACATGTCCATTTCCCTCAACGGCCACGAATGCTGCCTTCTCGACTGCTGCTTCCTCACCAAATCAACACCATGAGTATCCTGCTTGTTTAAACTCCTCTCGGAGCCATTGCTGTCGAGCTCAGCTGACAAGCTTGAAAGATCGTCGAGGTTGCCCGACGAGGTGGTTGAGAGACCTTTGGTGTCGCAAGTGGGAGTGAGTAGATAAGAGTGAGTGTCAATGGCGCGTTGGAGCTTCTCAGCTGCACTATGAACATTCTTTAGGTGAGAGATTTTGATGGATTGTTTCATGTTGTCGATGTCTCTGCCCAAACTTCTCACTAGCTCTGCTGCTTGATTTGCTACATCTTGAATCTCTGATTTGAATGTGATTCTGAGGTTATATGGAGCCTACAGTAGTGTAATAAGATTAGATTATATCATCGAATATTTGAGACATTGAGTTTTCAAACAGATATTTT ATGGGCTCAAGCTTCCAGAACTTGAATTTTGCTGCCAATTATTCGTTGAATGTATTTAAGATTTTGGGGAAGTCTTTTCAAGATGGAAAAATTGGAGCTGAAGACAGTGCAGACACCATTCTTCGACTTGATTCCACTGGATCTTCAGTTCCCTGTGGGTCCATATCAAATGGGATGAAAAGGAAGTGGAGTTTGGTTGAGAAATCCATGGGTGGTCAGTCAGTTGGGTCTTCCTTATCTCTTGGGTTTGTTCATTCCTCAAGTTCTTCTGACAGCAAGGGGAGTTCAGGAACTGCATGCACCAGAGTGTCTTCTGCTAAAGAAACTGATGAGGAATCCTCAATGGCACTTGATCTGGATTTTTCTCTCAATCTTGGTAGCGATAGGGTAGCTAGCCCTAAAGAACCTGCCAGTAAGCCGCTTAAAGTACAGAAAGTTAAACCGAAGGTTGACTTGGAGTTAAGTCTCTCAACTGGGCCATCTGAATCTGATGTCACTTCAATTTATCAGGGTTTCCCCTCACTTCAGTTGTCAATGGAGAAGCCATTGACATTTGTTGAAACCTCAAACACAGATGATGGAGAAACATCTTGTTGTTGGAAGCCAGGAACTGCCCAGCCAGTCATGCCTACCTCATTGAATCCTCAGGTTGGCTACATTTTTCCCCCAGTTACTGAGATAGTAATTCCACCTGCCAATGTTCCAGACCTTTCCTCGAGCGTTCTAACCATGCCAAAAAGCTCAGTCACCTGTACTTCCGGGATAACACAACAGCAGCGTTTTAATCGTAGCAGTAATTCTAAAATATGCCAAGTTGAGGGATGTGGCAAAGGAGCCAGAGGTGCTTCTGGCCGTTGCATATCGCATGGTGGTGGTCGGAGGTGTCAGAAACCGGGATGCCATAAAGGGGCTGAGGGTCGCACTGTATACTGCAAGGCCCATGGAGGTGGACGACGATGTCAACACTTGGGTTGCACCAAAAGTGCAGAAGGACGCACAGACTATTGTATTGCCCATGGTGGAGGTCGAAGATGCAACCGTGAAGGATGCACTCGAGCAGCAAGAGGGAAATCAGGATTATGCATTCGTCATGGTGGTGGCAAGAGATGTCAAAAGGAGAACTGCACCAAGAGTGCGGAAGGCCTCTCCGGTCTTTGCATCTCTCATGGTGGTGGTAGGCGATGCCAAACACCTGGGTGCACTAAAGGGGCACAAGGGAGCACCATGTACTGCAAGGCTCATGGTGGGGGAAAAAGATGTACGGCTCCTGGTTGTACCAAAGGTGCTGAAGGGAGCACCCCATTTTGTAAGGGCCATGGTGGTGGAAAACGGTGTGGATTCCAGGGAGGTGGCATTTGTACAAAAAGTGTCCATGGGGGTACCAACTTCTGTGTGGCTCATGGTGGGGGCAAGAGATGTGCTGTTCCTGAGTGCACAAAAAGTGCTAGGGGAAGGACGGACTATTGTGTGCGTCATGGTGGGGGAAAGAGATGCAAGTTTGAAGGGTGCGGCAAAAGTGCACAAGGAAGCACAGATTTCTGCAAGGCACATGGTGGAGGAAAAAGATGTTCTTGGGGTCATCCTGGGTCTGAGTATGGCACACAACCCTGTTGCCCATGCAATTCATTCGCTAGAGGGAAGATGGGTCTTTGTGCACTTCATAGTGGCCTTGTGCAAGATAAGAGGGTTCATGGGGGTGTCTCAATCGGACCTATAATTCAGGACCCTAATCTCAGCAAGACAGAGAAGATGAAAGGAATAGTTGGGGAAGATTACATGAACGAAGATCTTATCAATGTAGGAGGCAAAGTTGGTCCAAATCTTGAGCACTTTGCAGGCAGTGAAGCAGATAAACCATCGACATCGGTTCTCGTTCCCGAAGGTAGAGTGCATGGTGGAAGTTTGTTGGCAATGCTTGCGTGCAGCTCAGGACTGGGATCAACCAGTAGAGATGCAGTTTCTGGTCCTGATCAGCCAATGGAACATCACATCATGCCTCGTAGTTGGGTGTGA MGSSFQNLNFAANYSLNVFKILGKSFQDGKIGAEDSADTILRLDSTGSSVPCGSISNGMKRKWSLVEKSMGGQSVGSSLSLGFVHSSSSSDSKGSSGTACTRVSSAKETDEESSMALDLDFSLNLGSDRVASPKEPASKPLKVQKVKPKVDLELSLSTGPSESDVTSIYQGFPSLQLSMEKPLTFVETSNTDDGETSCCWKPGTAQPVMPTSLNPQVGYIFPPVTEIVIPPANVPDLSSSVLTMPKSSVTCTSGITQQQRFNRSSNSKICQVEGCGKGARGASGRCISHGGGRRCQKPGCHKGAEGRTVYCKAHGGGRRCQHLGCTKSAEGRTDYCIAHGGGRRCNREGCTRAARGKSGLCIRHGGGKRCQKENCTKSAEGLSGLCISHGGGRRCQTPGCTKGAQGSTMYCKAHGGGKRCTAPGCTKGAEGSTPFCKGHGGGKRCGFQGGGICTKSVHGGTNFCVAHGGGKRCAVPECTKSARGRTDYCVRHGGGKRCKFEGCGKSAQGSTDFCKAHGGGKRCSWGHPGSEYGTQPCCPCNSFARGKMGLCALHSGLVQDKRVHGGVSIGPIIQDPNLSKTEKMKGIVGEDYMNEDLINVGGKVGPNLEHFAGSEADKPSTSVLVPEGRVHGGSLLAMLACSSGLGSTSRDAVSGPDQPMEHHIMPRSWV Homology
BLAST of PI0022230 vs. ExPASy Swiss-Prot
Match: Q9SZ67 (Probable WRKY transcription factor 19 OS=Arabidopsis thaliana OX=3702 GN=WRKY19 PE=1 SV=1) HSP 1 Score: 272.3 bits (695), Expect = 1.4e-71 Identity = 137/232 (59.05%), Postives = 162/232 (69.83%), Query Frame = 0
BLAST of PI0022230 vs. ExPASy TrEMBL
Match: A0A1S3ATY8 (uncharacterized protein LOC103482798 OS=Cucumis melo OX=3656 GN=LOC103482798 PE=4 SV=1) HSP 1 Score: 1352.8 bits (3500), Expect = 0.0e+00 Identity = 664/670 (99.10%), Postives = 666/670 (99.40%), Query Frame = 0
BLAST of PI0022230 vs. ExPASy TrEMBL
Match: A0A5D3C4G5 (Putative WRKY transcription factor 19 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold376G002090 PE=4 SV=1) HSP 1 Score: 1352.8 bits (3500), Expect = 0.0e+00 Identity = 664/670 (99.10%), Postives = 666/670 (99.40%), Query Frame = 0
BLAST of PI0022230 vs. ExPASy TrEMBL
Match: A0A0A0KKF7 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G151590 PE=4 SV=1) HSP 1 Score: 1347.8 bits (3487), Expect = 0.0e+00 Identity = 662/670 (98.81%), Postives = 665/670 (99.25%), Query Frame = 0
BLAST of PI0022230 vs. ExPASy TrEMBL
Match: A0A6J1H3B1 (uncharacterized protein LOC111459286 OS=Cucurbita moschata OX=3662 GN=LOC111459286 PE=4 SV=1) HSP 1 Score: 1228.0 bits (3176), Expect = 0.0e+00 Identity = 609/673 (90.49%), Postives = 631/673 (93.76%), Query Frame = 0
BLAST of PI0022230 vs. ExPASy TrEMBL
Match: A0A6J1CY22 (uncharacterized protein LOC111015265 OS=Momordica charantia OX=3673 GN=LOC111015265 PE=4 SV=1) HSP 1 Score: 1223.8 bits (3165), Expect = 0.0e+00 Identity = 612/675 (90.67%), Postives = 633/675 (93.78%), Query Frame = 0
BLAST of PI0022230 vs. NCBI nr
Match: XP_008437353.1 (PREDICTED: uncharacterized protein LOC103482798 [Cucumis melo] >XP_008437354.1 PREDICTED: uncharacterized protein LOC103482798 [Cucumis melo] >XP_008437355.1 PREDICTED: uncharacterized protein LOC103482798 [Cucumis melo] >KAA0042704.1 putative WRKY transcription factor 19 [Cucumis melo var. makuwa] >TYK06108.1 putative WRKY transcription factor 19 [Cucumis melo var. makuwa]) HSP 1 Score: 1352.8 bits (3500), Expect = 0.0e+00 Identity = 664/670 (99.10%), Postives = 666/670 (99.40%), Query Frame = 0
BLAST of PI0022230 vs. NCBI nr
Match: XP_004143880.1 (uncharacterized protein LOC101212238 [Cucumis sativus] >XP_004143881.1 uncharacterized protein LOC101212238 [Cucumis sativus] >KGN50043.1 hypothetical protein Csa_000205 [Cucumis sativus]) HSP 1 Score: 1347.8 bits (3487), Expect = 0.0e+00 Identity = 662/670 (98.81%), Postives = 665/670 (99.25%), Query Frame = 0
BLAST of PI0022230 vs. NCBI nr
Match: XP_038876062.1 (uncharacterized protein LOC120068383 [Benincasa hispida]) HSP 1 Score: 1297.3 bits (3356), Expect = 0.0e+00 Identity = 637/672 (94.79%), Postives = 649/672 (96.58%), Query Frame = 0
BLAST of PI0022230 vs. NCBI nr
Match: XP_023532728.1 (uncharacterized protein LOC111794808 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1228.0 bits (3176), Expect = 0.0e+00 Identity = 609/673 (90.49%), Postives = 631/673 (93.76%), Query Frame = 0
BLAST of PI0022230 vs. NCBI nr
Match: XP_022957879.1 (uncharacterized protein LOC111459286 [Cucurbita moschata]) HSP 1 Score: 1228.0 bits (3176), Expect = 0.0e+00 Identity = 609/673 (90.49%), Postives = 631/673 (93.76%), Query Frame = 0
BLAST of PI0022230 vs. TAIR 10
Match: AT1G64140.1 (BEST Arabidopsis thaliana protein match is: loricrin-related (TAIR:AT5G64550.1); Has 3596 Blast hits to 2004 proteins in 150 species: Archae - 0; Bacteria - 54; Metazoa - 1597; Fungi - 38; Plants - 513; Viruses - 9; Other Eukaryotes - 1385 (source: NCBI BLink). ) HSP 1 Score: 740.0 bits (1909), Expect = 1.7e-213 Identity = 412/669 (61.58%), Postives = 483/669 (72.20%), Query Frame = 0
BLAST of PI0022230 vs. TAIR 10
Match: AT5G64550.1 (loricrin-related ) HSP 1 Score: 475.7 bits (1223), Expect = 6.1e-134 Identity = 252/403 (62.53%), Postives = 282/403 (69.98%), Query Frame = 0
BLAST of PI0022230 vs. TAIR 10
Match: AT5G09670.2 (loricrin-related ) HSP 1 Score: 462.6 bits (1189), Expect = 5.3e-130 Identity = 241/400 (60.25%), Postives = 283/400 (70.75%), Query Frame = 0
BLAST of PI0022230 vs. TAIR 10
Match: AT5G09670.1 (loricrin-related ) HSP 1 Score: 462.6 bits (1189), Expect = 5.3e-130 Identity = 241/400 (60.25%), Postives = 283/400 (70.75%), Query Frame = 0
BLAST of PI0022230 vs. TAIR 10
Match: AT4G12020.1 (protein kinase family protein ) HSP 1 Score: 272.3 bits (695), Expect = 1.0e-72 Identity = 137/232 (59.05%), Postives = 162/232 (69.83%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) v1
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
|