IVF0022118 (gene) Melon (IVF77) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGGTGATGTTGAAGGTTCTCCAGGAAGCTCAATGCATGGAGTGACTGGAAGAGAACAAACTTTTGCATTCTCTGTAGCTTCCCCGATCGTCCCAACTGACACGACCGCTAAATTTGCATTACCGGTTGACTCGGAGCATAAAGCTAAGGTTTTCAGGCTATGGTCTTTAGCCAACCCCCATATGAGAACCTTCCACCTTTCTTGGATTTCCTTCTTCACATGCTTTGTGTCGACGTTCGCAGCTGCCCCTCTCGTCCCCATCATTCGCGACAACCTGAACCTGACGAAAGTGGACATCGGGAACGCTGGAGTTACATCTGTTTCTGGGAGTATCTTCTCTCGTCTTGTGATGGGGGCTGTGTGCGACCTTCTGGGACCACGATATGGATGTGCGTTTTTGATAATGTTATCGGCTCCAACGGTGTTTTGTATGTCGTTTGTGTCGAATGCTGCTGGTTACATAGCGGTTAGATTCATGATCGGGTTTTCGCTAGCAACGTTCGTGTCGTGTCAGTATTGGATGAGTACAATGTTTAATAGTCAGATAATAGGGCTTGTGAACGGGACAGCAGCTGGGTGGGGGAATATGGGAGGAGGAGCAACTCAATTAATAATGCCATTGTTGTATGATGTTATTCAGAGAGCTGGTGCTACTCCTTTTACTGCTTGGAGGATCGCTTTCTTCATTCCTGGTTTCCTTCATGTTCTTATGGGCATTTTGGTTTTGACTCTTGGTCAAGACTTGCCTGATGGTAACCTTGCTAGTCTTCAGAAGAAGGGAAATGTTGCCAAAGACAAATTCTCCAATGTATGTATAGTTAGCATCTCTTCTTAATAATATAATCTCTCTCATATATATGCTTTACTTAATTAATCATCATCTCTTATAATAAACTATATATCCTCTTCCTCACAGGTCTTGTGGTATGCTGTCACCAATTATCGAACTTGGATCTTCGTCCTCCTCTATGGCTACTCCATGGGAGTTGAGCTTTCCACCGATAATGTCATTGCCGAATATTTCTACGATAGGTAACATAATTAAATTATCACTGTGTCGTTGTTGTGATTTTAAATAACAGTGTGTTAGCTACACAAACAAAGCAAATCGAAGAAGTCCTTATGTTTGTCTGGGTTTGTTAAAACAGGTTTGATCTAAAGCTTCACACAGCAGGAATCATTGCAGCAACGTTCGGGATGGCGAATCTAGTGGCTAGACCGTTTGGAGGGTATGCATCGGACGTAGCAGCGCGATACTTCGGGATGAGAGGAAGGTTGTGGACACTATGGATCCTACAAACAGCTGGGGGAGTGTTTTGCATGTGGCTAGGGAAAGCAACCAAGTTGCCAATAGCAATAGTGGCAATGATATTGTTCTCAATAGGAGCACAAGCAGCATGTGGAGCCACATTTGGTATAATTCCATTCATATCAAGGAGATCTCTAGGAATAATATCAGGACTAACAGGAGCTGGTGGGAACTTTGGAAGTGGTTTAACACAATTAGTATTCTTCTCAACAACAAAATACTCAACAGACACAGGATTGTTCTTGATGGGAATAATGATTGTTTGTTGCACTCTTCCAATAACTTTGGTTCATTTCCCTCAATGGGGAAGCATGTTTCTACCACCAACTAAACATGTTGAAAAATCAACTGAAGAATTTTATTATGGTTCTGAATGGACTGAGGATGAAAAGAAGAAAGGTTTGCATCAACAAAGTATTAAGTTTGCTGAGAATAGCAGGTCTGAACGTGGTAGACGCGTTGCTTCAGCTCCAACTCCACCAAATACAACTCCTTCTCATGTTTAATATTAGAATAATATAACATATAGTAATATAATGTTTAATGTGTTTTCTTTGCTTTTTGTCATATGTATCTTTGTGACTTTATTCATGACCTTAAAGGCAAGGCAACCACTCTAAATTAAAGCTATGAAAATGAGTTCATATTTGTTTGCTAAATGAATCTCTAGTGGTTTATCTTTTTAGTATTTTGTATTTTGTATGAATATGTGTAGATTGGGATTGTATGTTGCATAATGAGGCTTTGGATGCATCTTATTTGGCATTTTGTGTTTTGGATTCAACTAAAAGGTTTCTATCTTCTTTTTGATGATGAAAGTAATTAATATAGTTGATTGCTTTGCTGATATCATCTACGGAAGGTTGACTTATTCTTACTTAATTCTGAGGTGTTGGGGGAAAAGCTTTCCACTAGACAACAACGAGAATATTGAGCAGAAATATAATGGAGAAATTAAAAGAATAATAAAATTACAAATACAATAATTAATGTTTAAAAAACTCCAAACCACCGGGAAAAAAAAAAAAACATCAGAGCAAAAAAGTCCTACTGGATGAAAAATTGCTACAATTACACTTAAATTTCTCCCTCATCCCATTATCAAGAGCACTTTCTCAAAGTATTTTTCTTTATCACTAACAAACATTTTTACAGATTCTCATAATAAAAAAAAGAAAAGGAGTTAGCAAACTTACTTGGAGTGTTTCTAACTAAGAAGATTTAAACCCAAAAGCCATAAAACTCCCTTTTATAATGCTTCAAGATCATTGCTTTAATTTTCCGAACCTTTCGTATGTGAGATAAACACACAACTTCTAATATTTTGTCAAAACCCAACAAATTTTATCTTAACAAGATATTTGAAGAATTTAAAACTTCTATTGTATCCATTGTCTTCACCAACAATCATAATGCCAAAAACTTAGAGAATTATGTTAGGTCTTCAACCTGAAAATCAGTAAAATACTCAACAAGAGAGAAACAAAGACAACACTCTATAATATTTATATTGTTAAATCGAAACATCTGTTCACAAGAAAAGCTAAAGAAAGCATCAAGAACAAATAAAGAAAAATAGAATGAAAACCCAGCTCCCTAGAGAAGACTGGGAAACTTCTCCGGTAAAAGCCACAGCAGCCTTTACTACCAATGTAGCTCTCTTTATTCAAGTCTTACTAATCGTTCGAAGAGCAATCTCTGTCCCTTCATCGATTTCAGTGGTTTTCAAATCAACCGTTTCGATCTCTAGATTTTTGGTTTTCCCACATTCTCTCGTTTCCTATTCTTCGTTCATTATGAACAACGTTAGCTCAAGATTTTCTCATACCTTGCATCTATGATTATGGGAATATTTTTCGTTGCATCTGAAACAAAGCCCTTTTTCAAGCCTTGCTCGGAATTCGCTATTGAAAAGCCTCTTGAGTGGTGGTTCTTTCTTCGCGTAATTGTCGCGTACTAGAATGATGATACGTCGAATATTCCTCTCAGAACCCTTCAGTCCCCCTTTCAATCAGTGTTTGGGTTATTAATTTTATTTGTTGGGCTAGTTTTAAAGCCACGTTTCGATCGTCCACTAGTTGTGCTTCGCGCATACAATCTTCAAGAGTTATCAGATGACAGTTGCGCACTTCCGCTTGAAGTTCTAGTTCTAAATAAGTGATGAACGTGTCTCTGAACACGCTCTCTGGCATCTTCAGTAAGGGTGCTGAGTAATTTAGAAATTTCTTCAAATAATCCAGGTAAGTTTAATTTCATCTGGTTAGATTCGGATAAGCCTTGCCCCTAAACTCCCTTCTCTGGTGGGTTAAAATCGTTCGAACATTTGCTGTTTCAGGTCATCCTAGGATACCACTTTCTTTCTGTTATTACTCCAACGAAACCAATTCACTTCGTCCTGCCCAAAACTAACGACTGCAACCTTTACTTCTCCTTATTAGACAACTCATTTATTTCAATGAAATGTTCTGCTCTATACACCCGACTTTCTGGGTTCTCCCATCAAATATTGACATCTCTAACTTCTTGTATTTACTTTTGTCAAATGATCCCCCACTCGGGGTAGTCGTTGCCTCAACTTCTTCTACTTTCCCTTTCATCATGTAGCTTGAACCATCCGACGTGCCCAATTCCTCCCTTCTTTTGCTATTACTGTTTTCTTTCATCTCATCAGTGAGTCTTTCCACACTCATTTTCAATGCAAGGATCATCTCCTTGATTCTCTTCATTTCCTTCTCATGAATGTCAACACACTCTTCTATTTGCTTCTGAGCCATGTATCTTGTTCGATCCAGAATGAGCTAGCTCTGATACCAATTGGTTAGGTTTTCAACCTAAAAATCAATAAAATACCCAACAAGAGAGAAACAAAGACAATATTGTGTAATATTTATATTGCTAAATCAAAATATCAATTTACAAGGAAACTAAAGAAAGCATCAAGAACAAATATGGAAAAACAGAATGAAAACCCAACTCCTTAGAAAAGGTTGGGAAACTTCTCCCAATAAAAGCCACAACAGCCTTTACTACCAAAAAAACCCTCTTCTCAAATCCCTAAACATTCTCTCTTTATATTTAATCATAAAGATGGGGTCCACTCAAGTGAATTCCTCTCTTTCTGAAACCTGTCTAGACGTCCCAACTGATGTTATTTCCTTCTTGCCCCTCCTTTGTAAGTGTGTAATATAAGAGGTCTAACAAATTATATATAACTTACTTGGACCATAAAGAGTATATTGACACTTTGAGTATTGCCTTCCAATATTTTCCTTTTTCATCATATGTCGATAAACTTTATTGAAATTTATAACTACAACTTCCACCTACTTGGCTCACTCAGAAGTTCTTTAATTATCAGCATTACTCCACCATAGACCTAGTTCAAAATGCCTACTACTTCCAAAACGTCTTTCTTCTTCCAAAAACCAAAACCCTTTTATTCAAAATGCAGGTTTTACATTTAGGCTCACCCTAAATACAATATCATGCAATATTGAACGTCTTCTAAGTTCTACGATGGTTACTGAACCAAAAGTCTCAATGAAAGGTACAAGAATTTTCAATATCAATACATGAAGGTTGATGCTTAGACAAACCCTAAGCTCAAAACGTTCAAAGTACACACACTTTTCTCATGAGGCGGCTAACCCTAAAAATGAATGAGAACACAATATAAATATGAGTAGCTATGGAAATATATATTTTTGGAGAGAATAAACATTATTTGCAAGAGAGTAAAGGCTAAAGATATATGCCGGAGAATAAATGCTCCACAAGTATGCAAATCAATCTTTTATATATGGAAATAATATTTTGTTGAACCAGGGATCCCAATGTTCTTGACAATGTTGTTGACACGTTGTCTAACATGTTGCACAAGTTTTTCCTTTAATAAAATCACTCAACCAATGTAGTAACAACATCGATAGAACTTTTGGCAAATTTTTAGCAAGGGTTGTTGGTCAACTAGTAACACTGTCTCCTGCAGAAAATGTGGTGTGTTGGTAATTAACCACTTCTTGGATATCTAGATGCGCTTACTAATTCCACCTACCCTTTTGTAACTTAGTAAAAAAAATCATTTATTAGATGAGATCTAATAAATAATTTGGAGGAAGTAGTGCCCACTTTTGATGTTGAAAATGAAGGTGTGGGGGTTATGGTGTCCCTTCATGATACAAGGGAGGTCGAGGATATAATGTTATCTTCGACAAGAGGCCGATCAACACCCTCACCCTCGACCATGTCGAGATCGGGAGAGTCCCAATTTATCCTATAGTATTGTGCCATCCACAACTTTGATTCAATATGCCCAACAATATGCACTCATTTGGTTCATCAATGTTAATGAGGAATAATGGAGGCCTAGGTCAAACTTCACTTAATTAAACATCAGAGTGTTTGAAACAAACGCCGCACCACATTTTCTATTTTGGCTATGAATGACACATGTATGTGCTCACTCCTACAGCAGCTGATAATTTGATGAAGGAATAATGAGTCATAATCTCATTTAAGGCTATTCTAATTTTTTTGGTCGAGTTGGTACGATATTTTGGACAAGTGCCCTATTTTATTCAACACCAACCTATTAAAAAATATAATTTTAGCCCTTCTCAAATGCTGCGTTTTCTAGGGTTTGTTGGAGATTTAAATTATATCTTATTATATCGCCTACTTTACCCCTTCAAGAGTTCTTAGAGTTATTTGCTCTATATTTTGTTCTCTTAATATAACATTAAAATATACAAATTTTGAGGGCTTGATTGAATGTATATGATTTGAGTTTTAAACCTTTTTTTTTTCTCTACCTTTTAATTATTAATCTTAGGCTCAAATATATATACCAACATGTGGATTGATAGTGATGTTATATATTGCTTCAATTTGGTTATATATCATTCACATGCCACAAAATCATCATTAAGGTTTTTAAATATTAATTTGATCGTCTCTGGAATAATGGCGAAGGGACCAAAGTTGAAAGTTAAAAAAGATATTGTCAAAAACTCTCTATAAACAAAGGTATCAATTTTAAATTATATCAAGTAGGGCACAAATTTCCACTAATTAGGTCAAATGTAAAAAAAAAAAAGGGTTAGTTGAGTCTCCTATAAAGAACTTTTTCTAATAATATCAATTTCGTTTAATTTTCAAAATTATAGATAGAAATCTATATTTGAATTGAGTTGGAGATGAAATTTATAGAAAATGTCTAAAGCATCATAATACACCATTTTCATTCGTGGATAAATTGTTTTTCAAAAGTATAGTTATTGATGTAATATTGGATAAAAAATGGTTAATTAAAGTAATAGTGGTGATTTTTGGAGTAGCTTTGTATATATCTTCTTCTATTACTTTGGTTATTTACTCAGTTACTGAGCAAATTATCTTTGTACAATTGCACCTAAGAATCATTTTATTAGGGTTTAGGGTAGAGAATTAATAGGGAAACATTGTTTTTTTTGGAGCCATGGAAAAATTCTTTCTTCCCAAGGTATTGGATGAGAGTAGAGTTGGTGAATCATAGCCCAAGTCTTAGCTAACATATATTATTGAAACTATGAAAAATATCAAATAGAGCCACATCCAACAAGATGAATCCAATAATAATTTGGATTTAAAAAGTACAGATGACAATAATGAATATGCAGTTTGATTATAATATATATATATATATAAAGTAAAATGTGTGTCTCATTCCAATCATTTTTTTTAAAGTCAAACTTGCCCTAGATGATATCAGCAAACTTGTGCAATATCAGATTACAAAGAGATCCCATAATACTAAAAAATTCCCCATTGGATTCTATTAGCCAACATAAGTAGTTTAGGCTCATTCTTTTTGGTTTTTAGCTGGGGAAGGTTTAGCCTCTGCTTTTAGGTACATAAAAGTGCAATATATACATTATTATAAAATATAAAGCAACTAGAAATATATATATATCTATATATATGTATATATATATATATATATATATATATATATATATATATATATATGTATGTATGTATATATATATATATATATATATGTATGTATATATATGTATGTATGTATGTATGTATATATATATATATATGTGTGTGTGTGTGTGTATGTATGTATGTATCAATCTAAGTCTTTATTATCATCATTATTATTCTATTTGCAAGTTGAGGTATAGACCAAAACACCTATTGATTTAGTTGTTTAGTTGTGTAGGCTTTTTTGGGATTCATTGGAGTGAGATTCAAGATTGTGCGACTCATGTTTGTTTGGGAGTGCAACCACACACACATATGTGTGTGTGTGTGCGCTTATATTGGCTAGATTTAGGAAATCATCATAGATACATATATGTGTAGGTACGTAAAACTTATTATATTTGGTAGAAGATCATCGAAAATTGAAAACGAAAGCCTTCAGGATCTATGTTCAAAGTTGTAAATATTATCGTGGATAGTTGTAATGAGTATAAAATTGGCTGTTATATATCTAATTTACAAATGTAGAGTCCCATGTAATAAATAATTTGTATACATTAAATATGACAAATCTTTAAAATTTTTAGGTTTATAAATCAATGATATTATATTTGTATAGTCCATCAATTGAACTTTCATATAATATCTCTTAGGAATATTAGTTGATATATATTCTTATCCTATCTCTTTTTATGTGCTTGGACACGTGTCTTTCAAGTTGACTCGAGGTAGTTTAAATATTTAAGTTTGAATTTTCAATTTGGTTTTATTTAATTGTAGAGGGTTATGAAGCCCCAATTTTCTCCGAAGGGTTGCAATTAAATTTCGCATGGCAATATTCTGTTTTATAAATAATTAAGTTTATATTTTTGGAATAATCGAGTGAAACTATTTATAAGTATGTATCATCTAACACATGCCTACGATTATGTACCTAAATCCATCTAGATTATTTTTTAATATACACATATATTTATTTAACTCGATTGGTCAATCTAAACCTCGAGGCACTGACATTTCTTTATTGGGACACACGTTCCCATATGCCTTCTCTTGATATGTATATACCCTCTGAATTTGGACCTTAGCTTGAGGAACTATCAACCATCTTAATTTGAGGAAATTTTCAAACTTCTTGATCAACCCCCTTCTTGATTTTCTCACCCATTATTCTAGACATATATTTCCACAAAGTTTGATAAATCATATATACCCAACTTGAATTTCACCCTTAAAAACATTTACAAAAAACTAAATTAATAAAAAAAAGAGTATAAAATAAGAGAGAAAATAAATATTATTGTTTAATTAACTCATGGAAAAAGTCTCCTCTTCCCCAAGTATTGGAAATTAAATTACATTTCACAACCCAAGGCTAAGACCCTACAAACCCTATACAACCCTACACAATATATTTAAATGATGTAGAATGTCAATCGTACAGCCATACAACTTGGTGCATCAACATGATGAAACTCAATAAAACTTCCATATAAAATTGTAGAATCAACAACTGGCTTAATTTTAAATCATAATGTAAATGTCCCACCTCCAATTATGTCTCAAAAGTAGGAACAAGTCAAACATTTCCCTCAGCTAGATGATATCAGCAATAAAATCCAACTCATTATCAGTTTTTTATATAGTTGAAAATCCAGTCACAAAATGCCACTGAATCAAGTGTGTGCATCCCTCAAGTGCCATTTTAAAACTCACATTAATTCCATCAAACTCTTTTCTTAATACAAAACAGATTCCCAAATATACTAAAAACCTCCCAATTGGATCCTTTTACTATACAGGTCCAAAATATAACCCATTTTGTTGGTTTCATCTAGGGGAGGTTTCTCAGTATATACTTTAACATTCAAAATACAAAACAAGTACACCAAAATATACAACCAAAAAAAAAAAAAAAAAAAAGAAAACTAAAAGTAAAATAACGACACTTAGTGCATCTCAAAACACACTCATCCTTATTCATCTCTTCTCATCACTCACATTGAAAGGACACTAAAGTATAAATAAGAACTTTTTTTCACGTGACAATTTGTGATAGAACGAGTCGATGAGATACACAGAAGATATATAGATGCGGACCAGGATGCATCTAAGTATTTTTTTATATGGATATACAAAAAGAAAGCATTTTAAGAGGTTTGATTATTCATTCAAACATGAGAAGGAGTTGTATTTGGTGGAGTTGGAGCTGAAGCAACACGCCTACCACGTTCAGATCTGCTATTCTCAGCAAACTTAATACTTTGTTGATGCAAACCTTTCTTCTTTTCATCCTCAGTCCATTCAGAACCATAATAAAATTCTTCAGTTGATTTTTCAACATGTTTAGTTGGTGGTAGAAACATGCTTCCCCATTGAGGGAAATGAACCAAAGTTATTGGAAGAGTGCAACAAACAATCATTATTCCCATCAAGAACAATCCTGTGTCTGTTGAGTATTTTGTTGTTGAGAAGAATACTAATTGTGTTAAACCACTTCCAAAGTTCCCACCAGCTCCTGTTAGTCCTGATATTATTCCTAGAGATCTCCTTGATATGAATGGAATTATACCAAATGTGGCTCCACATGCTGCTTGTGCTCCTATTGAGAACAATATCATTGCCACTATTGCTATTGGCAACTTGGTTGCTTTCCCTAGCCACATGCAAAACACTCCCCCAGCTGTTTGTAGGATCCATAGTGTCCACAACCTTCCTCTCATCCCGAAGTATCGCGCTGCTACGTCCGATGCATACCCTCCAAACGGTCTAGCCACTAGATTCGCCATCCCGAACGTTGCTGCAATGATTCCTGCTGTGTGAAGCTTTAGATCAAACCTGTTTTAACAAACACAGACAAACATAAGGACTTCTTCGATTTGCTTTGTTTGTGTAGCTAACACACTGTTATTTAAAATCACAACAACGATACAGTGATAATTTAATTATGTTACCTATCGTAGAAATATTCGGCAATGACATTATCGGTGGAAAGCTCAACTCCCATGGAGTAGCCATAGAGGAGGACGAAGATCCAAGTTCGATAATTGGTGACAGCATACCACAAGACCTGTGAGGAAGAGGATATATAGTTTATTATAAGAGATGATGATTAATTAAGTAAAGCATATATATGAGAGAGATTATATTATTAAGAAGAGATGCTAACTATACATACATTGGAGAATTTGTCTTTGGCAACATTTCCCTTCTTCTGAAGACTAGCAAGGTTACCATCAGGCAAGTCTTGACCAAGAGTCAAAACCAAAATGCCCATAAGAACATGAAGGAAACCAGGAATGAAGAAAGCGATCCTCCAAGCAGTAAAAGGAGTAGCACCAGCTCTCTGAATAACATCATACAACAATGGCATTATTAATTGAGTTGCTCCTCCTCCCATATTCCCCCACCCAGCTGCTGTCCCGTTCACAAGCCCTATTATCTGACTATTAAACATTGTACTCATCCAATACTGACACGACACGAACGTTGCTAGCGAAAACCCGATCATGAATCTAACCGCTATGTAACCAGCAGCATTCGACACAAACGACATACAAAACACCGTTGGAGCCGATAACATTATCAAAAACGCACATCCATATCGTGGTCCCAGAAGGTCGCACACAGCCCCCATCACAAGACGAGAGAAGATACTCCCAGAAACAGATGTAACTCCAGCGTTCCCGATGTCGACTTTCGTCAGGTTCAGGTTGTCGCGAATGATGGGGACGAGAGGGGCAGCTGCGAACGTCGACACAAAGCATGTGAAGAAGGAAATCCAAGAAAGGTGGAAGGTTCTCATGTGGGGGTTGGCTAAAGACCATAGCCTGAAAACCTTAGCTTTATGCTCCGAGTCGACCGGTAATGCAAATTTAGCGGTCGTGTCAGTTGGGACGATCGGGGAAGCTACAGAGAATGCAAAGGTTTGTTCTCTTCCAGTCACTCCATGCATTGAGCTTCCTGGAGAACCTTCAACATCACCCATTTTTCTTTTGTTGTTTTGGCTTTAG ATGGGTGATGTTGAAGGTTCTCCAGGAAGCTCAATGCATGGAGTGACTGGAAGAGAACAAACTTTTGCATTCTCTGTAGCTTCCCCGATCGTCCCAACTGACACGACCGCTAAATTTGCATTACCGGTTGACTCGGAGCATAAAGCTAAGGTTTTCAGGCTATGGTCTTTAGCCAACCCCCATATGAGAACCTTCCACCTTTCTTGGATTTCCTTCTTCACATGCTTTGTGTCGACGTTCGCAGCTGCCCCTCTCGTCCCCATCATTCGCGACAACCTGAACCTGACGAAAGTGGACATCGGGAACGCTGGAGTTACATCTGTTTCTGGGAGTATCTTCTCTCGTCTTGTGATGGGGGCTGTGTGCGACCTTCTGGGACCACGATATGGATGTGCGTTTTTGATAATGTTATCGGCTCCAACGGTGTTTTCCGATAACATTATCAAAAACGCACATCCATATCGTGGTCCCAGAAGGTCGCACACAGCCCCCATCACAAGACGAGAGAAGATACTCCCAGAAACAGATGTAACTCCAGCGTTCCCGATGTCGACTTTCGTCAGGTTCAGGTTGTCGCGAATGATGGGGACGAGAGGGGCAGCTGCGAACGTCGACACAAAGCATGTGAAGAAGGAAATCCAAGAAAGGTGGAAGGTTCTCATGTGGGGGTTGGCTAAAGACCATAGCCTGAAAACCTTAGCTTTATGCTCCGAGTCGACCGGTAATGCAAATTTAGCGGTCGTGTCAGTTGGGACGATCGGGGAAGCTACAGAGAATGCAAAGGTTTGTTCTCTTCCAGTCACTCCATGCATTGAGCTTCCTGGAGAACCTTCAACATCACCCATTTTTCTTTTGTTGTTTTGGCTTTAG ATGGGTGATGTTGAAGGTTCTCCAGGAAGCTCAATGCATGGAGTGACTGGAAGAGAACAAACTTTTGCATTCTCTGTAGCTTCCCCGATCGTCCCAACTGACACGACCGCTAAATTTGCATTACCGGTTGACTCGGAGCATAAAGCTAAGGTTTTCAGGCTATGGTCTTTAGCCAACCCCCATATGAGAACCTTCCACCTTTCTTGGATTTCCTTCTTCACATGCTTTGTGTCGACGTTCGCAGCTGCCCCTCTCGTCCCCATCATTCGCGACAACCTGAACCTGACGAAAGTGGACATCGGGAACGCTGGAGTTACATCTGTTTCTGGGAGTATCTTCTCTCGTCTTGTGATGGGGGCTGTGTGCGACCTTCTGGGACCACGATATGGATGTGCGTTTTTGATAATGTTATCGGCTCCAACGGTGTTTTCCGATAACATTATCAAAAACGCACATCCATATCGTGGTCCCAGAAGGTCGCACACAGCCCCCATCACAAGACGAGAGAAGATACTCCCAGAAACAGATGTAACTCCAGCGTTCCCGATGTCGACTTTCGTCAGGTTCAGGTTGTCGCGAATGATGGGGACGAGAGGGGCAGCTGCGAACGTCGACACAAAGCATGTGAAGAAGGAAATCCAAGAAAGGTGGAAGGTTCTCATGTGGGGGTTGGCTAAAGACCATAGCCTGAAAACCTTAGCTTTATGCTCCGAGTCGACCGGTAATGCAAATTTAGCGGTCGTGTCAGTTGGGACGATCGGGGAAGCTACAGAGAATGCAAAGGTTTGTTCTCTTCCAGTCACTCCATGCATTGAGCTTCCTGGAGAACCTTCAACATCACCCATTTTTCTTTTGTTGTTTTGGCTTTAG MGDVEGSPGSSMHGVTGREQTFAFSVASPIVPTDTTAKFALPVDSEHKAKVFRLWSLANPHMRTFHLSWISFFTCFVSTFAAAPLVPIIRDNLNLTKVDIGNAGVTSVSGSIFSRLVMGAVCDLLGPRYGCAFLIMLSAPTVFSDNIIKNAHPYRGPRRSHTAPITRREKILPETDVTPAFPMSTFVRFRLSRMMGTRGAAANVDTKHVKKEIQERWKVLMWGLAKDHSLKTLALCSESTGNANLAVVSVGTIGEATENAKVCSLPVTPCIELPGEPSTSPIFLLLFWL Homology
BLAST of IVF0022118 vs. ExPASy Swiss-Prot
Match: O82811 (High-affinity nitrate transporter 2.1 OS=Arabidopsis thaliana OX=3702 GN=NRT2.1 PE=1 SV=1) HSP 1 Score: 253.8 bits (647), Expect = 2.3e-66 Identity = 126/151 (83.44%), Postives = 135/151 (89.40%), Query Frame = 0
BLAST of IVF0022118 vs. ExPASy Swiss-Prot
Match: Q9FJH8 (High affinity nitrate transporter 2.4 OS=Arabidopsis thaliana OX=3702 GN=NRT2.4 PE=2 SV=1) HSP 1 Score: 249.6 bits (636), Expect = 4.3e-65 Identity = 121/154 (78.57%), Postives = 136/154 (88.31%), Query Frame = 0
BLAST of IVF0022118 vs. ExPASy Swiss-Prot
Match: P0DKG9 (High-affinity nitrate transporter 2.1 OS=Oryza sativa subsp. japonica OX=39947 GN=NRT2.1 PE=1 SV=1) HSP 1 Score: 226.9 bits (577), Expect = 3.0e-58 Identity = 113/149 (75.84%), Postives = 123/149 (82.55%), Query Frame = 0
BLAST of IVF0022118 vs. ExPASy Swiss-Prot
Match: P0DKH0 (High-affinity nitrate transporter 2.2 OS=Oryza sativa subsp. japonica OX=39947 GN=NRT2.2 PE=1 SV=1) HSP 1 Score: 226.9 bits (577), Expect = 3.0e-58 Identity = 113/149 (75.84%), Postives = 123/149 (82.55%), Query Frame = 0
BLAST of IVF0022118 vs. ExPASy Swiss-Prot
Match: Q9LMZ9 (High-affinity nitrate transporter 2.2 OS=Arabidopsis thaliana OX=3702 GN=NRT2.2 PE=2 SV=1) HSP 1 Score: 226.1 bits (575), Expect = 5.1e-58 Identity = 115/151 (76.16%), Postives = 129/151 (85.43%), Query Frame = 0
BLAST of IVF0022118 vs. ExPASy TrEMBL
Match: A0A0A0LS93 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G097685 PE=4 SV=1) HSP 1 Score: 526.6 bits (1355), Expect = 6.7e-146 Identity = 269/289 (93.08%), Postives = 272/289 (94.12%), Query Frame = 0
BLAST of IVF0022118 vs. ExPASy TrEMBL
Match: A0A0A0LXS3 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G097690 PE=4 SV=1) HSP 1 Score: 524.6 bits (1350), Expect = 2.6e-145 Identity = 269/290 (92.76%), Postives = 271/290 (93.45%), Query Frame = 0
BLAST of IVF0022118 vs. ExPASy TrEMBL
Match: A0A5A7UDS5 (High affinity nitrate transporter 2.4-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold609G00340 PE=4 SV=1) HSP 1 Score: 294.3 bits (752), Expect = 5.6e-76 Identity = 146/154 (94.81%), Postives = 148/154 (96.10%), Query Frame = 0
BLAST of IVF0022118 vs. ExPASy TrEMBL
Match: A0A5D3DCT6 (High affinity nitrate transporter 2.4-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold609G00320 PE=4 SV=1) HSP 1 Score: 294.3 bits (752), Expect = 5.6e-76 Identity = 146/154 (94.81%), Postives = 148/154 (96.10%), Query Frame = 0
BLAST of IVF0022118 vs. ExPASy TrEMBL
Match: Q6PRP8 (High-affinity nitrate transporter OS=Cucumis sativus OX=3659 GN=NRT2 PE=2 SV=3) HSP 1 Score: 293.5 bits (750), Expect = 9.6e-76 Identity = 145/154 (94.16%), Postives = 148/154 (96.10%), Query Frame = 0
BLAST of IVF0022118 vs. NCBI nr
Match: KAA0051855.1 (high affinity nitrate transporter 2.4-like [Cucumis melo var. makuwa] >TYK21388.1 high affinity nitrate transporter 2.4-like [Cucumis melo var. makuwa]) HSP 1 Score: 293 bits (750), Expect = 3.48e-95 Identity = 146/154 (94.81%), Postives = 148/154 (96.10%), Query Frame = 0
BLAST of IVF0022118 vs. NCBI nr
Match: TYK21386.1 (high affinity nitrate transporter 2.4-like [Cucumis melo var. makuwa]) HSP 1 Score: 293 bits (750), Expect = 2.34e-92 Identity = 146/154 (94.81%), Postives = 148/154 (96.10%), Query Frame = 0
BLAST of IVF0022118 vs. NCBI nr
Match: NP_001274401.1 (high affinity nitrate transporter 2.4-like [Cucumis sativus] >AAS93686.3 high-affinity nitrate transporter [Cucumis sativus]) HSP 1 Score: 292 bits (748), Expect = 5.35e-92 Identity = 145/154 (94.16%), Postives = 148/154 (96.10%), Query Frame = 0
BLAST of IVF0022118 vs. NCBI nr
Match: XP_031736393.1 (high affinity nitrate transporter 2.4-like isoform X1 [Cucumis sativus] >AZP53714.1 high affinity nitrate transporter 2.1 [Cucumis sativus] >KAE8652752.1 hypothetical protein Csa_014056 [Cucumis sativus]) HSP 1 Score: 292 bits (748), Expect = 5.35e-92 Identity = 145/154 (94.16%), Postives = 148/154 (96.10%), Query Frame = 0
BLAST of IVF0022118 vs. NCBI nr
Match: XP_038895485.1 (high affinity nitrate transporter 2.4-like [Benincasa hispida] >XP_038895611.1 high affinity nitrate transporter 2.4-like [Benincasa hispida]) HSP 1 Score: 291 bits (744), Expect = 2.13e-91 Identity = 144/154 (93.51%), Postives = 148/154 (96.10%), Query Frame = 0
BLAST of IVF0022118 vs. TAIR 10
Match: AT1G08090.1 (nitrate transporter 2:1 ) HSP 1 Score: 253.8 bits (647), Expect = 1.6e-67 Identity = 126/151 (83.44%), Postives = 135/151 (89.40%), Query Frame = 0
BLAST of IVF0022118 vs. TAIR 10
Match: AT5G60770.1 (nitrate transporter 2.4 ) HSP 1 Score: 249.6 bits (636), Expect = 3.1e-66 Identity = 121/154 (78.57%), Postives = 136/154 (88.31%), Query Frame = 0
BLAST of IVF0022118 vs. TAIR 10
Match: AT1G08100.1 (nitrate transporter 2.2 ) HSP 1 Score: 226.1 bits (575), Expect = 3.6e-59 Identity = 115/151 (76.16%), Postives = 129/151 (85.43%), Query Frame = 0
BLAST of IVF0022118 vs. TAIR 10
Match: AT5G60780.1 (nitrate transporter 2.3 ) HSP 1 Score: 214.2 bits (544), Expect = 1.4e-55 Identity = 109/157 (69.43%), Postives = 123/157 (78.34%), Query Frame = 0
BLAST of IVF0022118 vs. TAIR 10
Match: AT3G45060.1 (high affinity nitrate transporter 2.6 ) HSP 1 Score: 211.5 bits (537), Expect = 9.2e-55 Identity = 107/160 (66.88%), Postives = 124/160 (77.50%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (IVF77) v1
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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