IVF0011472 (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.ATGGCCGACCGCTTCCCGCCGGCAGCCGAGCTCACCACCAGTGGCCGTCCGGTGCTGATCCCAAACGAAATCGAATGTTCAATTCTCTCCTCTGTCGACCTCGAGTGCGATGAAATTCCCTCGTTCCCTCTCCTGAAGTCTGGCATTATCATCCTCACCACTCATCGTATCGTCTGGATTTCTGACTCCACCAATTCCGCAGTTGCGGTGCCTCTCGCCGCCGTTAACCACATCCTTTCGTCCAAGAAGGGCATCAAGTCAATGTTCGCCTCGCCCAGGGTCCGTTTCCAGGTATCGGTTCCCTATGGCGGGAGTTCGAGATCAGCTGTGATCACGATTGTAATTAGGGGAAAGGGGGACCACGAGGTCTTTGTAAGCAAGTTTTGGGAGAACTGGAGAGCCAGGGCGTGGGAGAATGATGATAATAGTAAAGATTCCAGTAGCAGTTCTGCGTCGGGGCCGAGTTCTACTGGTTCTGGTGGATTATATTCGAGTGAAGGAACGGTGAGGATGGTTGGAGTAGCGGGAATTCTGAGGAAGGAGCAAGAGATGTGGGAGAATACTGATAAGAGTTTACAAGAAGCTTTCCAGGATCTTAATGCTTTAATGGTAACTTCAGTACGCCATCTTTTGTTTTGTGGTTATCATTCTCAGTACGTCAACTAGGAAAATCTGGTTACTCGAGCCCTCTTTGCAACCCAATAGGGATTAGAACTTGCTCCCACTCATATTTGTGAACGTGCTACTTATTGAAGGAATCTCGTGCTATTATAAATTTATCATGTGCATTTTTGTTAATCATCACTATGCAAGTGATTGAATATATATTTTGTTCATCCTATTTTCTTTAATGAATGCGCCAAGTTTTTCATGGAAATTATACACTCTTGCTGTATTTAGATGTACCAAAAGGCCGTATTTATTTACCTTCTCTTTTTACCTATTTAATTAATCTAACTGAGGCTCAAGCCTGATCTAGAATCCCTGCATTGCTTTGTTGTGCCAGGAAATTGGTACCATGTTGCACAAAATTTCATGTCAAGCTTGGAAGATTTGAAGTTACTTTTAACTTTTGATTTCTTGTCCTGAAAAATATTACTTCCATTTACAGAGTAAAGCTAAGGAAATGGTAATGCTAGCAGAAAAAATGAGACAAAAACTTTTAGCCAGTACAAATTCTCACAGTGGTTCGACAAATGACGACGAAGTAGCTTCAAAAGAAGAAATTCAAGATTGGCTGTTGAGTGTTGGTATCATTTCCCCTGTGACAAAAGAGTCTGCTGGTGCTCTTTATCATCAGCAGTTGTCTCGTCAGGTTCCTTTTATTTAAGGCTTACAATCAGTGCAATTGCAACTTATTTTACCATATGATTTTATGGTCATTTCAAACATGACAATTTTTTATAAATATGCAAAATCATATATTTTCCCTTCAAATTTTAATTGTTTCAAGCTTCCTCACCCTGCACCATTGTAATTTGTTTATTTTGAACTTTTATTTTAACCTCATGTTAACTTAGACTGTACATTTGGAACTGATATAGTGATGTACATAGCCGTTAATTAACACTATAAGAGAGAGTCCAGATTTAGGATAAGTGAGAGGATTACTTCTCAACTTGATCCAATTCCATAAGATGGGAATTGCGACAACAGAAAATCCCCCACCCCATGCACAACATTATTAGAGAGTTTGAACTGTGAAGTAAACTCCTTATGACCGACGAATCCTTAATAATATAGATCAACTTTGTCCTCTCCTCCGCAGAATATAGTTGCTTTAACCGAGAACAAAAGACTGATTTACATTTCAGGCGAACTAGTGCAAAGTCTTGGGAATCTTTATCTAATTGTTGTATCATACATCCTTTGTCTGGTTAAAGCTGAGAAAGTGAGCTTTATAATACCTCTAATAGCATTAATTCAAATTGTCTTTGAAAAATAACGTTCCTAAAGACCATACCAAATACACATTCGATTTTTTGACACTCTAACATCTCTATTTATCTCCGAAAGAGGAAATTTTGGATACAAGTGAGACATTAACATATGTAAACCGAAAGTTTGTGAGTTTTACAGGAGAATTAATCCTACCTTCATCATATCTTTTGGGATTGCAGGGAGCGTCTAATCAAGACTTGGGGATATAAATTATACTTACACGAAGCTCCCCCACCATCAAGTTTCTTTCTCCCTTTTTTGGATAATTGAAGTTGAAGGCTGTTGGAACTTGGAAGTAAGAGACCATAGAGATAGTTGGGTATTTTTTTTTTATAATGGTTGGGCACATATCTATTCTGAGAGGAGGGAACTACACAATGAGGCCTTCCCTCACAAGGATTCTTAAGAAAATTGTGTCGATTCTCTTCGTAGTGAGATGGTAAATGTCATAAAACTATGTGAGACTCTGAGATGTAACTTTGTATCTGTGATAAGATTTGAATTCAACCCTTAGCATGGAGAAAAATTCAATACCTAATAACATTTATGACCTATAGGAGAAGTGTGGGGAATAATAAAACCTATATGAGATAGGAAGTGTGGGGAGTAATAAAATCTATAGGAGAAGAGAAATTGGAAGACAAAAAATAAGTTTTGGTGTTGAAAATTCCTTTTCATCCTGGTTCTTTGATCATTTTTAGGTATTCATATTTTTAATATGCCTTGGATCTTTTCTGTCCCATATTCTGAACTTTCAGTGAAATAAACTTTTGTGTAGCTGGCTGATTTTGTTCGAACTCCACTTGATATAGCCGGTGGAATGATCAGTCTTATAGATATATACTGCCTATTCAATCGTGCTCGAGGAACAGGTTTTCTATGATAAAACAAGAAATCACTTTTCTTTTGTTTTGATTTTCGTTGGCGTGGAAAGTGAACCTTTTCATTTTTTCCTCTATATTTTAAACAGAATTGATCTCACCAGATGATTTGTTGCAAGCATGTTTGCTTTGGGAGAAGATTGACGTGTAAGTATTTGGGTAGTGGGAACATTTTAAAATGGCGTTATGCTTGTTTAGGTTTAATATAATATGAGACGGGCTTATTGTTCTTTTTGTGGACAGTTTTTTTTTCTTTTCCCTCTCATATGAGGCAATTTCATTGATGTTATGATCTCTTTCTCTCTCTCTCAATTTTATGAGATATTTTATATGATAATTTCCCGAGGAAAGTAAGGATATTTAAACTAATTTGTTCTATTTGGTCCTCTGCAGTCCTGTAATGATCCGTAAATTTGACAGTGGAGTCATGGTAATCCAGAGTAAATCCTACAGTGATGATGAGGTGAGTTATATTGTATTGATTGTTGAAAAACTATAAATTTATGATGAGTTTGGCTATTGTGAGTTTACATTTAATTTTCGAATGGAGGACATTGTAGTTTTACCCACAACTACTTGTGTACTTCGAAGATTTTGTTCCTAAACCAATAAAGATAATGAACTGCCTTTACCGCAAGGATTACAGCTTAAGCTTTATCATAACTTAATTATGTTCATGTGCCTCTTTAATATAGGACAAATAAATTGGCTTTAGTGCTAGATCAATTGGTTTAACCACAACTTCTTGCCGAAATAATATACTTCTTGTACTTCACAAAGAGTGAAGTGTTTTCTTAAATAGAAGAACAACCCATTACAAAGAAGGAAAAAATACATTTGGCAAATATAATACAACAAATACAATAGAATATAATACAAAAAAAAGGAAATAATCAACATTCTCCTTCAAGCTGGTTTGAAGATATCAGCCATTGCTAGCTTGTCTATCAATTTGTTGAATTTCCACTTTGGGAGGCCTTTAGTTAACACATTTGCAATTTGTTCTATTGTTGGAAGATAGAGTACGCATATTACTCCTCCATCGATCTTTTCCATTATAAAGTGTTTATTAACTTCAATATGTTTCGTCCTGTCATGAAGAATTGGATTGTGGGGAATGGAAATTATTGCCTTGTTATCACAATAAATATGCATGGGCATTGTTTGAGTGAATCTCAACTTCCAACAATCTTCTTATCCATATACCTTTACAAATACCATGAGCTAACACTCTAAATTCTGCTTTTGCACTACTTCTTGCAACCATACTCTGTTTTTTACTTCGCCAAGTAACAAGATTTCTCCAACAAAGGAGCCAGTATCTAGATGTGGATCTTCTATCAGTCGTGCTACCTGCACAAATAAGCATCGGTGTGAACTTCAATATTGAAATGGTCATGTCTTTGAAAGAATATGCCTTTTCCTGGAGTACCTTTCTAATATCTTAGGATTCTATAAACTGCATTTAAGTGAGCTGGCCTAGGAGCATGATGAACTAACTTACCATACTAACTGCATAAGCGATGTCAGGACGTGCGTGAGAAAAATATATGTCTCCCCACAAGTCTTTGGTACTTTTCTCTTTCCTTTATCTTATTCTTGGTTGCATCTTCCAATTTTAGATTCTGCTCAATGGGAGTTTCTGCTACTTGGCAACAAAGTAAACCTATTTCTTTTAGCAGATCAAGAATATACTCTCTTTGGTTGACAAGAATGCCACTTTTGAACCTGGCAAACTCCATTGCTAGGAAGTACTTTAAAGTTCCTAAATCTTTGATTTGGAAATCATCTGTTGTTTCTTCACGAAAGTCAGTATTGTCTCATCTTTGTCTATAAGAATGAATTCATCAACATAAACTATCAAAACCACAACCTTGTCATTTCCTATATGAGAAAGGCATTCTTAACATCCAATTGATAAAGAGGCCAATCAAAGTTAACCACAATAGATAGCAAAATTCTAATAGAATTGATTTTAGCACACGTTTCTTGATAATGAACTCCATAGGTATTAGTAAACCCCTTAGCAACCAATCCGGCCTTGTACCATCAGCTTTACATTTTATTGTGGACATCTACTTGCATCCAATTGTTTTCTTTTCTTTTGTCCCATATGCAATTTTGTTTTCGGTGCATTCATCCAATCATTCAGGGTCTCTTGTATATTCTTTGGAACAAACAAGTTGGTTATTTTGGATGTGAAAGCTTTATGACTGTTAGATAATTTTTCTTTAGAAAGATAGTTTGCAATGGGATATTTGACACATTTACGGGTACCTTTCCTATGAGCAATTGGAATATCAAGATCAGAGACATCATGCAAGGAATTATGAGAAGAAGACCTTGGAGAATTAGAAGAAGTAAAAGGAGAATGTTGTTAACTGGATCTTCAGAATCATTTATTGGGGTATTAGATTGGTTCTGTGATAAATTAACTGTTTGTTCTCAATTCCTTTGAGTCAAGTCTCTTCTATATAGACCCGTAGTTTAGGTATTTTACTTGCCAAGTCAGTGTATAGTGTTTCTCCTCCTAAAGAAGCACTCTCCGCACTTGGCATCAAAGAATTAGAACTCATAATTTCGGAATCAATGATGTTTGGAATAGGTGAAGTGTCCTAAACTTGTCCTTAATGTTAGGTGGCTCCCTTTGAAGAGAATATTGGCTAAAGAAAGGTTGATTCTCCAAAAAAGACATCCATACTCTCAAAATATTTTTTGGTCGAAGGGTCAAAACTTTTGTAGGCCTTCTCATGGGAGACATAGCCGGCAAAAATGCATTTAACAGCTTGGTGGTCAAGTTTAGTGCAAGTAGGGTTGGGATTATGAACGTAAGCAGTGAAACCAAATAGTTTAATGGGTTTAGAGAACAACCGAACAGTAGGAATTTTTTTTAAAAAATGATATAGAGGAGTTTTAAAATCAAAACCTTAGTTGGCGTTTGATTGATCAGGTATGTAGCTTTAAGGACTGCATCACCCCACAAATATTTTGGGACATTCATTGAAAACATAAGGGCATGAGTGACTTCAAGTAAATGTCTATTCTTTCGCTCAGCATTTTCATTTTGTTGAGTATAACGACATGTAGCTTAATGAAAAATACCCTTTTCATATAAGAAATTGGTTAATTGTTTGTTGAAATATTCAGTACCATTATCGGAGTGAAGGATGCAGATTTTAGTTTGGAACTGAGTTTCAATCATATTGTAAAATCTAACAAACACCTTTTTTACCTCTGAGTTGTTAGTCAACAAATAAAGCCCGGTTAGACGAGTATGATCATCTATAAAGGGTGACAAACCACCGCTTACCATTATGAGTTAAAACTTTAGACGGACCCCAAACATCTGTGTGAATTAACGAAAAAGGTGAAGAAGCCTTGTAAAGTTTGAGCAAATAAGTGGATCGATGATGTTTGACAAAAAAAGCAACTTTCACATTGAAAAAATGAACAATCAAAACCTTTAAATAAATCTAGAAACTACTTGAAGTAAAAGAAATTAGGATGCTCTAGTCTACGATGTCAAAGCATTATAGTTTCTTTAGCAGAAGGAGAACAAGCACTACTCACGCCCTGGACTTGTTGACTAGCTGAAACTTCATCAAACTAATAGAGACTACCAATCATCTTAGCACATCCAATCATCACCCCCAGTTTTGATCCTGAAAGGTACAATGAATGTCGCAGAAGACAACATGACAATTAGTATTCTTAGAGATTTTACTAACAGATAACAAATTGTAAGCTAATTTTGGAACATGAAGACCAGAATGCAACATAAGTTTTGTAGTCAGAAGAATAGTTCCTTTCCCTACGATAGGGGTGAAACGACCATTGACAATGGGAATTTTCTCATTGCAATATATAGGGGAGTAGGATGCAATAAGGAAGAGGAACTGGTCATATGATCAGAGGCTCCAGAATTGATAATCCATGTAGATGAGTTTATGCAAGAGAGGCCTTGAGGAAACTTACTTGATTGTGTCAAGGAAACACAAGGATTAGTAGATGATGAAGTAGTCTTTAGCAGTTTCAAGACTTGATCAATCTTCTCCTTGCCAAATAGGTTGGAATATCCAACATTTGCATTTGAGGTGTGTAGGAGGGAATTTGTCTCCCTTGCTTAGAACTTCTCCAATTGCAGGTTTTCCACGAAGCTTCCAACAGGTCTTGTATGTCAGGGTTTATCGCAATGGTCACACCAGAATTGAGGCTTTCCATGTATCTTGTTGGGTGATAAGAGGCCTTCATGGCTGTTTGTCTGGTCACCAATGCAGAACTTTCTACCTAGTCCATAGGTTTTTTCTTCCAATCATAACATTTCTGCAGTTTTCTTTCCTGCAAACTTCAGAAAACACATTATAAGAGAGGTTTCCCCAAGTATTCGAACCCTAACCTCATCAAGTTCAACATTGAGGTCAGCAAGTAACTTGTAAATACGACCATCTTCGATAGTTTTATTAGCTTTTGATCATTTGCAGACTTCCACTCATATGAAGCAAAGAGGTCGAGGTCTTGTCAAATCCTTGAAAATATTGTGTTCTATTTTGAAATTAAACTCAAATACCTATGACTTGGATCATTTGCTCTAGATAGGAAATGTGATGTACTACTTTTACTCCCTTTCTCCTCCCAGTTCTTTCAGAGTTGCTGGTTTGGTCCTCTTACTAAAATCTTACAAGAAAGCTCGTTATCTCAATATGTTCCTCCTGAGAAGCACGATCGCTCCTATTCCAAGTTTTAACCGGTGTTTTCTTACAGGTTTTTGCTAGAATAAGAACGCTTGTAACAAAGCCCGATGCTCTCCAATTCGGTGTCAGTGCCAGTGATGCTGCAAGGACTCTTGGGATTGCTCCAGCTATGGCCAAGGAGCATCTTTAACAGCAGAGAGTAAAGGTATATTTCTACGCTATTCGCTGAAGAAGTACCGTTTACATCAATGAATTTCAGTTAACCATAAGACTTGATGCAGGTTTGCTGTGTCGAGATGTCAGCCCTGAGGGGTTCCGGTTTTATATTAACCTATTTCCTGAGATTAACTCAGAAGATTTATATTTGTAAGTAAAAATCTGCAAGTTATTGTCTTTTATCCTTGTCTTGATCAAAATTTGTCATTCCAATCTTTTTTTTTAAACAACACTTCCATTTTTTCACTTGTATATATTACATTTGCATCTATTGCGTTTTTTTGATAAAAGTCACCACTTGCTTCAGGGTTAAAGATTATACAGTTTATGCTTCATGGATCAAGGCCACTATTGGTAATAGGTACTTGTTCATTGTCCCTAACTTCCGTAAATTTTTCTTCATGAAAGTAAGGTTTCTCATGAAAAAATAAAGTCGCTCCATTAGAAGTACCAACTGCTGATTTAGAACTTATGGTAATGTCACTACAGTAATTGATACCATAGGATGAACTACGAAGTATTTAGTTCGGTAGTTCTACTTCTACTACATCTTTATATAGTAGTATGTCCTTGAACTTGATTCATCATGCTCTCTCTTTCTGTCTTGCTTTCTCCTTCTTTCTCTTTTTTTCTTGCTGTGGCTCATGCTTGTCTTCTTACACTTTCCAATGCCTCATTTTGGTCTCAAGAAAAGTTCTACTTGAAGAGTTCGTGCCGAATGTAACCATCGACCAAAATCCTTCAGTAAATTTAGTATTATGAGGGGAGAAAAGGAATGTAACCTAGTTTTGGTACATGCTGAGAAGGTAAAAAAAAATTCTGTCGTAATAACTGCTTCATTTCTTCAAACTTCTGTAGGCGGAAATAA ATGGCCGACCGCTTCCCGCCGGCAGCCGAGCTCACCACCAGTGGCCGTCCGGTGCTGATCCCAAACGAAATCGAATGTTCAATTCTCTCCTCTGTCGACCTCGAGTGCGATGAAATTCCCTCGTTCCCTCTCCTGAAGTCTGGCATTATCATCCTCACCACTCATCGTATCGTCTGGATTTCTGACTCCACCAATTCCGCAGTTGCGGTGCCTCTCGCCGCCGTTAACCACATCCTTTCGTCCAAGAAGGGCATCAAGTCAATGTTCGCCTCGCCCAGGGTCCGTTTCCAGGTATCGGTTCCCTATGGCGGGAGTTCGAGATCAGCTGTGATCACGATTGTAATTAGGGGAAAGGGGGACCACGAGGTCTTTGTAAGCAAGTTTTGGGAGAACTGGAGAGCCAGGGCGTGGGAGAATGATGATAATAGTAAAGATTCCAGTAGCAGTTCTGCGTCGGGGCCGAGTTCTACTGGTTCTGGTGGATTATATTCGAGTGAAGGAACGGTGAGGATGGTTGGAGTAGCGGGAATTCTGAGGAAGGAGCAAGAGATGTGGGAGAATACTGATAAGAGTTTACAAGAAGCTTTCCAGGATCTTAATGCTTTAATGAGTAAAGCTAAGGAAATGGTAATGCTAGCAGAAAAAATGAGACAAAAACTTTTAGCCAGTACAAATTCTCACAGTGGTTCGACAAATGACGACGAAGTAGCTTCAAAAGAAGAAATTCAAGATTGGCTGTTGAGTGTTGGTATCATTTCCCCTGTGACAAAAGAGTCTGCTGGTGCTCTTTATCATCAGCAGTTGTCTCGTCAGCTGGCTGATTTTGTTCGAACTCCACTTGATATAGCCGGTGGAATGATCAGTCTTATAGATATATACTGCCTATTCAATCGTGCTCGAGGAACAGAATTGATCTCACCAGATGATTTGTTGCAAGCATGTTTGCTTTGGGAGAAGATTGACGTTCCTGTAATGATCCGTAAATTTGACAGTGGAGTCATGGTAATCCAGAGTAAATCCTACAGTGATGATGAGGTTTTTGCTAGAATAAGAACGCTTGTAACAAAGCCCGATGCTCTCCAATTCGGTGTCAGTGCCAGTGATGCTGCAAGGACTCTTGGGATTGCTCCAGCTATGGCCAAGGAACTTGATGCAGGTTTGCTGTGTCGAGATGTCAGCCCTGAGGGGTTCCGGTTTTATATTAACCTATTTCCTGAGATTAACTCAGAAGATTTATATTTGGTTAAAGATTATACAGTTTATGCTTCATGGATCAAGGCCACTATTGGTAATAGGCGGAAATAA ATGGCCGACCGCTTCCCGCCGGCAGCCGAGCTCACCACCAGTGGCCGTCCGGTGCTGATCCCAAACGAAATCGAATGTTCAATTCTCTCCTCTGTCGACCTCGAGTGCGATGAAATTCCCTCGTTCCCTCTCCTGAAGTCTGGCATTATCATCCTCACCACTCATCGTATCGTCTGGATTTCTGACTCCACCAATTCCGCAGTTGCGGTGCCTCTCGCCGCCGTTAACCACATCCTTTCGTCCAAGAAGGGCATCAAGTCAATGTTCGCCTCGCCCAGGGTCCGTTTCCAGGTATCGGTTCCCTATGGCGGGAGTTCGAGATCAGCTGTGATCACGATTGTAATTAGGGGAAAGGGGGACCACGAGGTCTTTGTAAGCAAGTTTTGGGAGAACTGGAGAGCCAGGGCGTGGGAGAATGATGATAATAGTAAAGATTCCAGTAGCAGTTCTGCGTCGGGGCCGAGTTCTACTGGTTCTGGTGGATTATATTCGAGTGAAGGAACGGTGAGGATGGTTGGAGTAGCGGGAATTCTGAGGAAGGAGCAAGAGATGTGGGAGAATACTGATAAGAGTTTACAAGAAGCTTTCCAGGATCTTAATGCTTTAATGAGTAAAGCTAAGGAAATGGTAATGCTAGCAGAAAAAATGAGACAAAAACTTTTAGCCAGTACAAATTCTCACAGTGGTTCGACAAATGACGACGAAGTAGCTTCAAAAGAAGAAATTCAAGATTGGCTGTTGAGTGTTGGTATCATTTCCCCTGTGACAAAAGAGTCTGCTGGTGCTCTTTATCATCAGCAGTTGTCTCGTCAGCTGGCTGATTTTGTTCGAACTCCACTTGATATAGCCGGTGGAATGATCAGTCTTATAGATATATACTGCCTATTCAATCGTGCTCGAGGAACAGAATTGATCTCACCAGATGATTTGTTGCAAGCATGTTTGCTTTGGGAGAAGATTGACGTTCCTGTAATGATCCGTAAATTTGACAGTGGAGTCATGGTAATCCAGAGTAAATCCTACAGTGATGATGAGGTTTTTGCTAGAATAAGAACGCTTGTAACAAAGCCCGATGCTCTCCAATTCGGTGTCAGTGCCAGTGATGCTGCAAGGACTCTTGGGATTGCTCCAGCTATGGCCAAGGAACTTGATGCAGGTTTGCTGTGTCGAGATGTCAGCCCTGAGGGGTTCCGGTTTTATATTAACCTATTTCCTGAGATTAACTCAGAAGATTTATATTTGGTTAAAGATTATACAGTTTATGCTTCATGGATCAAGGCCACTATTGGTAATAGGCGGAAATAA MADRFPPAAELTTSGRPVLIPNEIECSILSSVDLECDEIPSFPLLKSGIIILTTHRIVWISDSTNSAVAVPLAAVNHILSSKKGIKSMFASPRVRFQVSVPYGGSSRSAVITIVIRGKGDHEVFVSKFWENWRARAWENDDNSKDSSSSSASGPSSTGSGGLYSSEGTVRMVGVAGILRKEQEMWENTDKSLQEAFQDLNALMSKAKEMVMLAEKMRQKLLASTNSHSGSTNDDEVASKEEIQDWLLSVGIISPVTKESAGALYHQQLSRQLADFVRTPLDIAGGMISLIDIYCLFNRARGTELISPDDLLQACLLWEKIDVPVMIRKFDSGVMVIQSKSYSDDEVFARIRTLVTKPDALQFGVSASDAARTLGIAPAMAKELDAGLLCRDVSPEGFRFYINLFPEINSEDLYLVKDYTVYASWIKATIGNRRK Homology
BLAST of IVF0011472 vs. ExPASy Swiss-Prot
Match: Q9FF81 (Vacuolar protein sorting-associated protein 36 OS=Arabidopsis thaliana OX=3702 GN=VPS36 PE=1 SV=1) HSP 1 Score: 540.8 bits (1392), Expect = 1.4e-152 Identity = 285/428 (66.59%), Postives = 343/428 (80.14%), Query Frame = 0
BLAST of IVF0011472 vs. ExPASy Swiss-Prot
Match: Q7ZVK4 (Vacuolar protein-sorting-associated protein 36 OS=Danio rerio OX=7955 GN=vps36 PE=2 SV=1) HSP 1 Score: 203.4 bits (516), Expect = 5.3e-51 Identity = 138/373 (37.00%), Postives = 207/373 (55.50%), Query Frame = 0
BLAST of IVF0011472 vs. ExPASy Swiss-Prot
Match: Q6DDF4 (Vacuolar protein-sorting-associated protein 36 OS=Xenopus laevis OX=8355 GN=vps36 PE=2 SV=1) HSP 1 Score: 203.4 bits (516), Expect = 5.3e-51 Identity = 135/371 (36.39%), Postives = 209/371 (56.33%), Query Frame = 0
BLAST of IVF0011472 vs. ExPASy Swiss-Prot
Match: Q91XD6 (Vacuolar protein-sorting-associated protein 36 OS=Mus musculus OX=10090 GN=Vps36 PE=1 SV=1) HSP 1 Score: 199.9 bits (507), Expect = 5.9e-50 Identity = 133/371 (35.85%), Postives = 209/371 (56.33%), Query Frame = 0
BLAST of IVF0011472 vs. ExPASy Swiss-Prot
Match: A5PK00 (Vacuolar protein-sorting-associated protein 36 OS=Bos taurus OX=9913 GN=VPS36 PE=2 SV=1) HSP 1 Score: 198.7 bits (504), Expect = 1.3e-49 Identity = 132/370 (35.68%), Postives = 208/370 (56.22%), Query Frame = 0
BLAST of IVF0011472 vs. ExPASy TrEMBL
Match: A0A1S3BCK3 (Vacuolar protein-sorting-associated protein 36 OS=Cucumis melo OX=3656 GN=LOC103488431 PE=3 SV=1) HSP 1 Score: 830.5 bits (2144), Expect = 3.3e-237 Identity = 430/439 (97.95%), Postives = 430/439 (97.95%), Query Frame = 0
BLAST of IVF0011472 vs. ExPASy TrEMBL
Match: A0A5A7VB19 (Vacuolar protein-sorting-associated protein 36 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold82G001060 PE=3 SV=1) HSP 1 Score: 825.9 bits (2132), Expect = 8.1e-236 Identity = 428/436 (98.17%), Postives = 428/436 (98.17%), Query Frame = 0
BLAST of IVF0011472 vs. ExPASy TrEMBL
Match: A0A6J1K6P2 (Vacuolar protein-sorting-associated protein 36 OS=Cucurbita maxima OX=3661 GN=LOC111492139 PE=3 SV=1) HSP 1 Score: 759.2 bits (1959), Expect = 9.3e-216 Identity = 394/442 (89.14%), Postives = 411/442 (92.99%), Query Frame = 0
BLAST of IVF0011472 vs. ExPASy TrEMBL
Match: A0A6J1HEM5 (Vacuolar protein-sorting-associated protein 36 OS=Cucurbita moschata OX=3662 GN=LOC111462786 PE=3 SV=1) HSP 1 Score: 744.6 bits (1921), Expect = 2.4e-211 Identity = 390/443 (88.04%), Postives = 408/443 (92.10%), Query Frame = 0
BLAST of IVF0011472 vs. ExPASy TrEMBL
Match: A0A6J1BRT3 (Vacuolar protein-sorting-associated protein 36 OS=Momordica charantia OX=3673 GN=LOC111004815 PE=3 SV=1) HSP 1 Score: 708.8 bits (1828), Expect = 1.4e-200 Identity = 374/445 (84.04%), Postives = 397/445 (89.21%), Query Frame = 0
BLAST of IVF0011472 vs. NCBI nr
Match: XP_008445381.1 (PREDICTED: vacuolar protein sorting-associated protein 36 [Cucumis melo]) HSP 1 Score: 825 bits (2132), Expect = 6.12e-301 Identity = 432/439 (98.41%), Postives = 432/439 (98.41%), Query Frame = 0
BLAST of IVF0011472 vs. NCBI nr
Match: KAA0064798.1 (vacuolar protein sorting-associated protein 36 [Cucumis melo var. makuwa]) HSP 1 Score: 821 bits (2121), Expect = 2.80e-299 Identity = 430/436 (98.62%), Postives = 430/436 (98.62%), Query Frame = 0
BLAST of IVF0011472 vs. NCBI nr
Match: XP_004146775.1 (vacuolar protein sorting-associated protein 36 [Cucumis sativus] >KAE8647281.1 hypothetical protein Csa_003467 [Cucumis sativus]) HSP 1 Score: 803 bits (2074), Expect = 4.22e-292 Identity = 421/439 (95.90%), Postives = 425/439 (96.81%), Query Frame = 0
BLAST of IVF0011472 vs. NCBI nr
Match: XP_038884952.1 (vacuolar protein sorting-associated protein 36 [Benincasa hispida]) HSP 1 Score: 782 bits (2019), Expect = 1.13e-283 Identity = 411/440 (93.41%), Postives = 419/440 (95.23%), Query Frame = 0
BLAST of IVF0011472 vs. NCBI nr
Match: XP_022997146.1 (vacuolar protein sorting-associated protein 36 [Cucurbita maxima]) HSP 1 Score: 754 bits (1947), Expect = 1.13e-272 Identity = 396/442 (89.59%), Postives = 413/442 (93.44%), Query Frame = 0
BLAST of IVF0011472 vs. TAIR 10
Match: AT5G04920.1 (EAP30/Vps36 family protein ) HSP 1 Score: 540.8 bits (1392), Expect = 1.0e-153 Identity = 285/428 (66.59%), Postives = 343/428 (80.14%), 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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