PI0010153 (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.TTCCGTTATAGCAAGGTTGTTTATCAAAAGGAAAAAAAAGGGGTATTTTTCAAATCGAATTTGGGATCCTTTTAACCTTATCCACTTCTAAAACCCTGCTCAACTTATTTCCCCTGCCTCTCGTGGCAGCACTTGACCCGCCTGAAAATTCTCCGGTGACCTCAATCAAAATCCCACCGGAGTTGACGGCAGCCGAACTTATTTGCTCCGTTGTTAACGGTGAGCTTCGTATTCCAGACCTTTTTTTAATTACATTTTAGTAGCCTTCCCAATCTTGATAAAATGGACTGGTGAAATTGTTTGTTTGTTTGTTTGACAATGCTATCTTTTCCCGGCTTCAATGTGGTCATGTCCTCTGTAATTTTACAACAGAATCGTTTAATTAAGATTTGAAAAAGAATGCCCTGAGAATAATGGCTTTTCCCATGGTTTGTAATATTTCACAGTGTTGTAATGAGAAAATATGTGCAGGTATACGTGTACATACGGTTTCTTCTGGGTTGGAGATGGCTTCCCTGTCTACTCCATGCCTTTATCCTGGTTTGTTTATCGTTATCCAGATTATGATTTGTAGTTTCACTGTCAATCAAATTAACTGTACAGAATTTAGTTTGTTATAACCCCGCGAAGAATGGGAATGATTTCTATCACTCTAAAGACATGGAATTGCAGATAGAGGACGGAATGGAGTATTTTATGCAAATGGATGTGTTGGCGGGAAACCTTTATCAAATTTCCTGAAGGTTTGAAGCTTTATAATGCCATGATTTGCAAATTTTTTCTCCCTAGTGTAAGAATGGTTTTATCTTAGCTCATCTTCTTTGCCACCAGTCTTAAATGGGTGTTAATTTTCTGTTGAATATCCAGACACCATTTGTCGGTTCATTTCCTGTACGATTACTGCTGGTTGGAAATGCCCTGAACAAGTCACCGCAGAGAAATCAGTTAGTTCCTTGCATCAAATGCGAGAACAGGGACGAATCATATGAAGATGTAACGGTGGAGCGGCCGCCATATCATGCTTACATGGACTCAACTTCTGGGCAGCTTGAACCAGCTTCAGGGGCACGTGCAAGTATTCCAGGAGAAGAATACTGGCCAGAAGGAACTGCTAGTCGTGTGAGAGCTGCAAGGGCTCCCGAACCAACTGGTGCATCTATGGGATCTCCATCTTATGGCCAAAATCCAGGAAGTAGGAGAAAGAAGAATAGAACACTAGCAGCTGCTGCTCATGATTCATCCGAAGTGACTGAAGTAGATTCGAGTGACCTAGTGATCTCTGAAATTTCCGAGGATTTTATTGAAGAGCCTAAAGACGATACTTCGCAGTATGTTGTTTATCGAACAGAACCTGACGAGGAAGTAACTGGATTTGATTTAGACAAAAAAATTGGAAATCCCCACCCATTCATTGACCCCAAAAAGAAGAAGCCAATAGAGGAGCCACGCACAAGTGAGGAACTTTGGTGGAATTGGAGAAAGCCAGAAAAAGAGCAATGGTCTAGGTGGCAAAGAAGGAAACCTGATGTTGAAACGGTTAGTCCATATTCAAAGAAAGAGAATAGTGAATGTTGAACAATGATTGTAACGCCCCAAACCCAGGATTTGGAATCCGGATTCGGCACTTGGGGCGTTACAATGACTTTGCATATGTACTTGTGTTAATTACTTTTAGTGGAATTTGAACCTCTCCACACGAATCTGCTGTGTGATGCAAAATATATTGGAAGTCATAAATATAAAGTGCAAATACAGGATTTGAGTCATAGATCATTCCAATTGATAATCTCCACTTAAGTCTTGATTGTATTATATACATGCATATGTTTTGTGTATCGACAACTGATATTTCATGCTTGCATACGTATACCAAATCAGTGTAAATTATAATTGCAGATGAGATGATCTTTTCATACGTAAATAGAATCTGTCAACCTTGAAAGTGCACTTCTTGGATCTACTTTTCTTGCATTTAATAACTAGACTAGGACAGCATACACAATGCAGAACTTGTTTAAATGAGTAAAAGTAGCTTTAAATCTTTATATTGATCTTCTTTGTTTACAATATCCGTAGGTTTTTCTCAAAGCAATGGCAGAGACTGGGCAGATAAAGCTGTATGGTGAACAACCAACATTAACTGAAGTTTCTCTTTACAGGGCTCGACGACATCTATACAAAGAAGAAAGGTATTCTTTCCTAGCTTAAGTGGTATGATACACAAGTTTTCATTTAACCAAGGATACTTGGTTAGACTTGTTTAGGATGTACTGAATGTTAGCAGTGAAAGATATTCATGAAGTTAACTAAGAATTTAGAATGCATGCAGTTTATAATTCTATTTGATTTAAGGATAGGGAAGATAAATGACCATCTTTGAGCTGCTGAAACTTAAAATTTAATTATTGTTTTTTTCTAATTCAGACTAGGCCTCAAGTATCATAGGTTTATCCATATTGAGGAAGATGAAAAAATTAAATGGGAATGGCCTAGTTTATGGGTGTTTACTTAGGTTTTTTATTTGATAAGTCCATCTACTCGGGGCTTGATATCCTATTAATATTTTTTGCAACCAATTATGGTAGGACATATAGTTATCCTGTGAGATTAGTCCAGGTGCAATTAAGTTTGGCCTTAGCCATCATGGGTATAAGAAGGCAATTGGATTAGGCCTCTATAAGGCTCAAAGATATGGTTCATAGAGAAGCATCAGACTCAACGGAGTAAATAGATTTTGGAAATTGATTGGATCCTTTGAATGTCTAGATGTTTTATTTTTTTTCTTTTCTTTTGGAAAGTTTCTAGTCGATTCTATTTTGATACTTGGTAATTCCATCTCTATTCTTATTGCCCGTGCTAAAATATTTTCTAACCACATTGCTGGTGTGTAAAAATACACATTGCTGTTGGTTGAGGTATATTTGATAACGAGTAACTTATAGCTTTATGGGCTTCAAGCCAAACAACTCAACAAGACTGCTCGTGCAGCTTTATGGCTTAAGAACATTTTCTTTACTTTACGTGGTTTAGGAATATTTTAGTAATATATAGATTCTATCATTGCTTAAATTATTCACACGTTTCTCATAAAAAAAAATCTTTTCAGACTTCAAGCCGAACAGGAGAGATTGGAAAGAATAGGTCCCATAGCATTCTACTCAGAATGGGTCAAAGCTTGGAAGAGAGATACCTCAAAGGATGCCATAAAAAAACACTTTGAAGAGACTGGAGAAGATGAAAACACCCAAATGATTGAAATGTTCCAAAATCAAACAGAGAGAGAGTTTCGCATTATGATGGGGACTGATATTCGCATTCGCAGGGACCCATTGGCAATGCGTATGCGAGAAGATCAGATTAAGCAAAGTATCCACTTCAAAGCTGATAAGTTTGTGTGGTATTTCAATTTTATTCATCGATTGTTGTGTTGTTCTATCATCGCAATTTCCTGCACCAATTTTTTCCCAACTGTAAAAGATTCTTGCCTTAAAAAAGTGCACGTTTTTATATTTTGATTTTCATAGCTTTTACCACCGGCTTCCCTTGAGTTCGTTTCTCAATATTCTGATGACTTTGAATTTGAAGTATTTATAACTGTTGCAGTATCAATTACACTATATTTTTATTTCTGATTATTTGAATATATGACATTCTTCTAAGTAAATTGCATTTTTTTCAACCTCATTCACCGTCTTTTTTTTTCCTTTCTTTTTTTGGTGCAGTAATTTAATTTAGTGTATTATGTGCCTTTGCAGTATGGGGTGGTGATCCTGTGTACCCTACTGTAAACTACATTCAAGATCCAAATGAAATAATTGATTATAGGGGACCAGATTTTCATGAACCAACACCTGACATGCTAGATTTTCTGAAGGAGGTTGCTTTACTTTGCTTATTATTTTTTCAAGTTTCGTTTCACTCCATCAATATTGTGTGATTCAATTGGGTCGAAGATTATGAGTGTTGGACCAAATTAGATACCACTGGTATCTCCTAGGTTCAAAACTCCTAGTATAAAGCTTAAGAAGGGGAAATCTCTTGTTGTATGTGACTGGGAGCAGGTAGAGGTAATAGAGTAAATTTTGCTCTCTGATTGATTAGTGGGATGCCAAACTGCCATTTTAAGAACGTGAATTTGACAGTTTTGGACAATATCCATTCTTTGGATATGAATTTTTTGCTCTTCTTCTATTCTAATTCTTTTCAACCCAATGCCATTTTCTTCATATAATCAATCTCTTAGCAGTACTATCTAATATTGCAATATTTTGGTCATAGAAATTTTGTAGCATCTTTAAATTCTAAATTGGTTGTAATCAGAGTTTGAAACCCTTAAAATTGTAAAAGTTATAGTTTGTCCTTCACACCTTTAACCAAGTATCCACAACTGGAGCCAACCAACTGTTTCTCTTGTTTTAATTGCGTCTTTGGCCTCAAAATCATATTAGCTGCAACTTATTCAACGGCTCATTCAACTACCTTTACTTTTAATAGTGGACCTAGATTTATACGTGTAGGTTTTCATGTTCAGTAGAAGTTGGTAGTCATATTTTCTATCAGCAAAACCCACAGCACCCTTCAAGTATCCCCTATATGAGATTTTCTTATAAAAGTTTGATTTTCTTTAATGAACTAGTGAGCAGCTGCTATCTGTTTGACTTAGCCGAGCTCAAGGTGTCCCATGGTTCTTTTTCAATTTCTCTTCTAATGATATTTGAATTAATTGGGAGCTTTTATATCCCATCCATGTGATGTTTCTGTTTTTGTTCATTTTTATGAAATTTTTTATCCTGTTAAACGACACTGTTTAGCAACTGCTGGAATTGATTATAATTCAAGAAGTTGATGTTTGTGATCATTATGCTCGATTATGCTCACATGAGGTACTGACCTTTTCTTTGTTCCTTTTTTCAATCAGCATGGTAAAATTATATCAAGAGAGGAGCTTGAGGAAATTCTGGCTAAAGAAAAAAACGAAGAGCTTGAGGTATTTACATTGCAACTTTTGGCATATTGGTTCTAGCATGAAATCCTAGTTTGATTGATTATTCTACATTGAACCAGTGAACTTAAAGATCATATTCGGCTCCAATCTGCGTATCATGTCTATTATACAATGATAAAGGAAATTACTAGTGCTCTCTCATTTGGTATCTTTCTTTTACCTTTTCTTAACAGAAAGGTATCTCCCATTTGTTGAATCCTTAAAGGTGCAAATGAAAAGGTCATTTTGGCAAGTAATAACACTGAGGAGTAAAGTTGTGTTAGGGCTCAGCTGGAGATGTTTTTTAGTTCTTCCATCAAAGAGGAGTAAAGTTGTGTTAGGCTAGCTTTCTTGCAGTTTTGTGGAGGATTTGGAGCAGAATAATGAAATTTTTAGAGAGAATAGATTGGATGAGAAAGGTTGGGAACTGATTAGGTTTAATGTCTTCTCATGGGCATTGACAGGGTAATGATGAGATTGGTCCTGGTCATTTTGGATTTAAGTCATTTTCTGTAGTTAGGGCCGAACTTTTTTTCTCTCTTTTGGATGCCCTTGTATATTTTTTATTTCTCTCAATGGAAGCAGAGTTTCTTACCAAAATTAGCCATGTGGTCAAGGAATAAGCTAAACTCAGATAAATGAAATTCATAAGTTCAGGCCACGGTTCAAACTTGTATGTTTAGGTGATTGCTCCATGTGAGATGCTCATAGATCTTGGAAAATGATTATTATGTCAGTGATAGAAGAAAACATATTAATGTGAGAAATGATCGATCATTCTTTAAATTGGATGAAGAATACCCTGAAAAATTGATGAATGTTGAAAATGATATGTATCTCATTTTATTCTCAATGTCTTTCCTTTAAAACAGGTGACAGATATGGATGATGCCATGTCCCAAGCTATTGATATTGGTGAAAATGACGTGAGTTCGTGCTCCCTCCATGTCCTTCCATTTGTTATTTTTGTTGTTCATTACATAGTTATCTTGCATTTATTCTTCTTGCAACCAGAAATTTTACGAGTAAAATATAGTATAACTAAATGGATGCAGAGCTTAATTCATACATTAAATAATAACATCAAATTACATTAAACTTGGTCACTATTAAATAAATCTAATTTTTTTTACTCAAAACTAAAAATCTCTAAGATCACACTATAAGTGAAAACATAACCAGAGCTAAATTGAGTTCTAAATCGAGACTCAAACTTTAATCGCTCAAGCTAAACAATATTTTAGTGTCATTTTTATTTACCACTTGGTTCAAACATTTTTATCAGAAAAGAACAATTTGTTTATCAGTAGTAGCAGGTTTGATTTTAACAAATCCATTATATGAAATAGGAAGAATGGGGTATTTAGTTTGGTTCACCTTCCAGTAGGGTAACTTGGATATAGTATTTATACACAGATATCAATTGTGTTGATGATTGCTTAAATTTTAAAATGAATCAACTTCATCTTCAATTTCTATTTAGGATGGAGAGGATAGCGAGGTCGAGGGTGATGAAGAGGCGGAGGAAAAAATCACACGCAACTGGAGTGTCTTGAAAAGCAGTCCCCATCTCAGCAAGCAAAAGGTGATTAAACTCATTTTGTTCTCAATATGTGATTGTGTATGCACTAGAAGACCAATACATTTGTGTTGATCGTTATATTTTATATATGTAGAATGTTTTTCCCTTTTCATACATGACCTAAATTCGGAAGTGATGTGAATTTGAAAATCTCAGTGCTATGATAATACAGCAGCTATAGAAGTCATGAACACATACTGAATTCTTAAGTAAATATTTGCACATGATAAACATGTTACACAAGGAAATATTAGGAATATATCTCTCATACTTGATTTTTCAATTCGTTTAGAGCTGCAATTGCAGTTCTAACTAACTACAAGTTAAGTGTTGGAGTGATTGATTTTTGGTTAAACTACAAGTTTAGTCCTAGAATGTCCAACTTTCGATTTTGTGCTAATGAGTCTATGACATATTGAACTTTTTTACAAATTAAGTTATATAAAATTGAATGCATTCTTGTGGTGAATGTAACTATGTTACACTTTTAGTAGATTCTCCAAACTTCTTATATTATTAGAAATTACTATTTTGAACTTAGAAAACTGTTTGGAAAGGTCGTTTCTTTTTTGTGTTTTCATTTGTATCTACTTAGATATAAAACAATATATTTAGATCAATTTTACTTGAAAAATAGTTAAAAGATTGTTTTAGAATGGATTTTTTTGTCGTTTGGACCATGTTCCAACTTTATGTGCCTCATGAGTTATTCACCCCAATGTTTGTCTGAAAATGCAGGGGAAACCTAACAAGAAGGATCCCGCGTCACTGGAGGGAGCCATTGGTGAGTCTGAGAACTTGACTGATTTTCTCATGGACTTCGAAGAAGATGAGTGACGATTCTTTCCTTCTTTAAACTTCTAAATATAAAGTGTCTACTTCCTAGCTAGCTAGCTCCTACATAATCTATACTTGAGAAAACTATTAGACTGAATTTCTTGATCTGTCTGTTAAAGTTTTGATTTCACCAGAATTGTTAGCATTAGTTTATTGATGAAGTCATTAATAAGCTGAGTTTTTTACCATTTTAAAGCCACCTGTTGTTTTCTATTTAGTTAAAACAAATGCAAGTTTTCTAAAATTATTATT TTCCGTTATAGCAAGGTTGTTTATCAAAAGGAAAAAAAAGGGGTATTTTTCAAATCGAATTTGGGATCCTTTTAACCTTATCCACTTCTAAAACCCTGCTCAACTTATTTCCCCTGCCTCTCGTGGCAGCACTTGACCCGCCTGAAAATTCTCCGGTGACCTCAATCAAAATCCCACCGGAGTTGACGGCAGCCGAACTTATTTGCTCCGTTGTTAACGGTATACGTGTACATACGGTTTCTTCTGGGTTGGAGATGGCTTCCCTGTCTACTCCATGCCTTTATCCTGATAGAGGACGGAATGGAGTATTTTATGCAAATGGATGTGTTGGCGGGAAACCTTTATCAAATTTCCTGAAGACACCATTTGTCGGTTCATTTCCTGTACGATTACTGCTGGTTGGAAATGCCCTGAACAAGTCACCGCAGAGAAATCAGTTAGTTCCTTGCATCAAATGCGAGAACAGGGACGAATCATATGAAGATGTAACGGTGGAGCGGCCGCCATATCATGCTTACATGGACTCAACTTCTGGGCAGCTTGAACCAGCTTCAGGGGCACGTGCAAGTATTCCAGGAGAAGAATACTGGCCAGAAGGAACTGCTAGTCGTGTGAGAGCTGCAAGGGCTCCCGAACCAACTGGTGCATCTATGGGATCTCCATCTTATGGCCAAAATCCAGGAAGTAGGAGAAAGAAGAATAGAACACTAGCAGCTGCTGCTCATGATTCATCCGAAGTGACTGAAGTAGATTCGAGTGACCTAGTGATCTCTGAAATTTCCGAGGATTTTATTGAAGAGCCTAAAGACGATACTTCGCAGTATGTTGTTTATCGAACAGAACCTGACGAGGAAGTAACTGGATTTGATTTAGACAAAAAAATTGGAAATCCCCACCCATTCATTGACCCCAAAAAGAAGAAGCCAATAGAGGAGCCACGCACAAGTGAGGAACTTTGGTGGAATTGGAGAAAGCCAGAAAAAGAGCAATGGTCTAGGTGGCAAAGAAGGAAACCTGATGTTGAAACGGTTTTTCTCAAAGCAATGGCAGAGACTGGGCAGATAAAGCTGTATGGTGAACAACCAACATTAACTGAAGTTTCTCTTTACAGGGCTCGACGACATCTATACAAAGAAGAAAGACTTCAAGCCGAACAGGAGAGATTGGAAAGAATAGGTCCCATAGCATTCTACTCAGAATGGGTCAAAGCTTGGAAGAGAGATACCTCAAAGGATGCCATAAAAAAACACTTTGAAGAGACTGGAGAAGATGAAAACACCCAAATGATTGAAATGTTCCAAAATCAAACAGAGAGAGAGTTTCGCATTATGATGGGGACTGATATTCGCATTCGCAGGGACCCATTGGCAATGCGTATGCGAGAAGATCAGATTAAGCAAATATGGGGTGGTGATCCTGTGTACCCTACTGTAAACTACATTCAAGATCCAAATGAAATAATTGATTATAGGGGACCAGATTTTCATGAACCAACACCTGACATGCTAGATTTTCTGAAGGAGCATGGTAAAATTATATCAAGAGAGGAGCTTGAGGAAATTCTGGCTAAAGAAAAAAACGAAGAGCTTGAGGTGACAGATATGGATGATGCCATGTCCCAAGCTATTGATATTGGTGAAAATGACGATGGAGAGGATAGCGAGGTCGAGGGTGATGAAGAGGCGGAGGAAAAAATCACACGCAACTGGAGTGTCTTGAAAAGCAGTCCCCATCTCAGCAAGCAAAAGGGGAAACCTAACAAGAAGGATCCCGCGTCACTGGAGGGAGCCATTGGTGAGTCTGAGAACTTGACTGATTTTCTCATGGACTTCGAAGAAGATGAGTGACGATTCTTTCCTTCTTTAAACTTCTAAATATAAAGTGTCTACTTCCTAGCTAGCTAGCTCCTACATAATCTATACTTGAGAAAACTATTAGACTGAATTTCTTGATCTGTCTGTTAAAGTTTTGATTTCACCAGAATTGTTAGCATTAGTTTATTGATGAAGTCATTAATAAGCTGAGTTTTTTACCATTTTAAAGCCACCTGTTGTTTTCTATTTAGTTAAAACAAATGCAAGTTTTCTAAAATTATTATT ATGGCTTCCCTGTCTACTCCATGCCTTTATCCTGATAGAGGACGGAATGGAGTATTTTATGCAAATGGATGTGTTGGCGGGAAACCTTTATCAAATTTCCTGAAGACACCATTTGTCGGTTCATTTCCTGTACGATTACTGCTGGTTGGAAATGCCCTGAACAAGTCACCGCAGAGAAATCAGTTAGTTCCTTGCATCAAATGCGAGAACAGGGACGAATCATATGAAGATGTAACGGTGGAGCGGCCGCCATATCATGCTTACATGGACTCAACTTCTGGGCAGCTTGAACCAGCTTCAGGGGCACGTGCAAGTATTCCAGGAGAAGAATACTGGCCAGAAGGAACTGCTAGTCGTGTGAGAGCTGCAAGGGCTCCCGAACCAACTGGTGCATCTATGGGATCTCCATCTTATGGCCAAAATCCAGGAAGTAGGAGAAAGAAGAATAGAACACTAGCAGCTGCTGCTCATGATTCATCCGAAGTGACTGAAGTAGATTCGAGTGACCTAGTGATCTCTGAAATTTCCGAGGATTTTATTGAAGAGCCTAAAGACGATACTTCGCAGTATGTTGTTTATCGAACAGAACCTGACGAGGAAGTAACTGGATTTGATTTAGACAAAAAAATTGGAAATCCCCACCCATTCATTGACCCCAAAAAGAAGAAGCCAATAGAGGAGCCACGCACAAGTGAGGAACTTTGGTGGAATTGGAGAAAGCCAGAAAAAGAGCAATGGTCTAGGTGGCAAAGAAGGAAACCTGATGTTGAAACGGTTTTTCTCAAAGCAATGGCAGAGACTGGGCAGATAAAGCTGTATGGTGAACAACCAACATTAACTGAAGTTTCTCTTTACAGGGCTCGACGACATCTATACAAAGAAGAAAGACTTCAAGCCGAACAGGAGAGATTGGAAAGAATAGGTCCCATAGCATTCTACTCAGAATGGGTCAAAGCTTGGAAGAGAGATACCTCAAAGGATGCCATAAAAAAACACTTTGAAGAGACTGGAGAAGATGAAAACACCCAAATGATTGAAATGTTCCAAAATCAAACAGAGAGAGAGTTTCGCATTATGATGGGGACTGATATTCGCATTCGCAGGGACCCATTGGCAATGCGTATGCGAGAAGATCAGATTAAGCAAATATGGGGTGGTGATCCTGTGTACCCTACTGTAAACTACATTCAAGATCCAAATGAAATAATTGATTATAGGGGACCAGATTTTCATGAACCAACACCTGACATGCTAGATTTTCTGAAGGAGCATGGTAAAATTATATCAAGAGAGGAGCTTGAGGAAATTCTGGCTAAAGAAAAAAACGAAGAGCTTGAGGTGACAGATATGGATGATGCCATGTCCCAAGCTATTGATATTGGTGAAAATGACGATGGAGAGGATAGCGAGGTCGAGGGTGATGAAGAGGCGGAGGAAAAAATCACACGCAACTGGAGTGTCTTGAAAAGCAGTCCCCATCTCAGCAAGCAAAAGGGGAAACCTAACAAGAAGGATCCCGCGTCACTGGAGGGAGCCATTGGTGAGTCTGAGAACTTGACTGATTTTCTCATGGACTTCGAAGAAGATGAGTGA MASLSTPCLYPDRGRNGVFYANGCVGGKPLSNFLKTPFVGSFPVRLLLVGNALNKSPQRNQLVPCIKCENRDESYEDVTVERPPYHAYMDSTSGQLEPASGARASIPGEEYWPEGTASRVRAARAPEPTGASMGSPSYGQNPGSRRKKNRTLAAAAHDSSEVTEVDSSDLVISEISEDFIEEPKDDTSQYVVYRTEPDEEVTGFDLDKKIGNPHPFIDPKKKKPIEEPRTSEELWWNWRKPEKEQWSRWQRRKPDVETVFLKAMAETGQIKLYGEQPTLTEVSLYRARRHLYKEERLQAEQERLERIGPIAFYSEWVKAWKRDTSKDAIKKHFEETGEDENTQMIEMFQNQTEREFRIMMGTDIRIRRDPLAMRMREDQIKQIWGGDPVYPTVNYIQDPNEIIDYRGPDFHEPTPDMLDFLKEHGKIISREELEEILAKEKNEELEVTDMDDAMSQAIDIGENDDGEDSEVEGDEEAEEKITRNWSVLKSSPHLSKQKGKPNKKDPASLEGAIGESENLTDFLMDFEEDE Homology
BLAST of PI0010153 vs. ExPASy Swiss-Prot
Match: F4IHY7 (Protein PLASTID TRANSCRIPTIONALLY ACTIVE 12, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=PTAC12 PE=1 SV=1) HSP 1 Score: 644.0 bits (1660), Expect = 1.4e-183 Identity = 338/505 (66.93%), Postives = 402/505 (79.60%), Query Frame = 0
BLAST of PI0010153 vs. ExPASy Swiss-Prot
Match: Q0JIZ1 (Protein PLASTID TRANSCRIPTIONALLY ACTIVE 12, chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=PTAC12 PE=3 SV=1) HSP 1 Score: 538.5 bits (1386), Expect = 8.5e-152 Identity = 289/498 (58.03%), Postives = 368/498 (73.90%), Query Frame = 0
BLAST of PI0010153 vs. ExPASy Swiss-Prot
Match: B4FZ81 (Protein PLASTID TRANSCRIPTIONALLY ACTIVE 12, chloroplastic OS=Zea mays OX=4577 GN=PTAC12 PE=1 SV=1) HSP 1 Score: 536.2 bits (1380), Expect = 4.2e-151 Identity = 286/500 (57.20%), Postives = 370/500 (74.00%), Query Frame = 0
BLAST of PI0010153 vs. ExPASy TrEMBL
Match: A0A0A0KM32 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G524690 PE=4 SV=1) HSP 1 Score: 1033.5 bits (2671), Expect = 3.1e-298 Identity = 516/530 (97.36%), Postives = 524/530 (98.87%), Query Frame = 0
BLAST of PI0010153 vs. ExPASy TrEMBL
Match: A0A1S3AZS1 (protein PLASTID TRANSCRIPTIONALLY ACTIVE 12 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103484338 PE=4 SV=1) HSP 1 Score: 1027.3 bits (2655), Expect = 2.2e-296 Identity = 516/533 (96.81%), Postives = 524/533 (98.31%), Query Frame = 0
BLAST of PI0010153 vs. ExPASy TrEMBL
Match: A0A5D3CSY1 (Protein PLASTID TRANSCRIPTIONALLY ACTIVE 12 isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold255G009320 PE=4 SV=1) HSP 1 Score: 1026.9 bits (2654), Expect = 2.9e-296 Identity = 515/533 (96.62%), Postives = 524/533 (98.31%), Query Frame = 0
BLAST of PI0010153 vs. ExPASy TrEMBL
Match: A0A6J1EIK5 (protein PLASTID TRANSCRIPTIONALLY ACTIVE 12, chloroplastic OS=Cucurbita moschata OX=3662 GN=LOC111433691 PE=4 SV=1) HSP 1 Score: 968.8 bits (2503), Expect = 9.4e-279 Identity = 486/530 (91.70%), Postives = 503/530 (94.91%), Query Frame = 0
BLAST of PI0010153 vs. ExPASy TrEMBL
Match: A0A6J1KRU0 (protein PLASTID TRANSCRIPTIONALLY ACTIVE 12, chloroplastic OS=Cucurbita maxima OX=3661 GN=LOC111497065 PE=4 SV=1) HSP 1 Score: 966.8 bits (2498), Expect = 3.6e-278 Identity = 484/530 (91.32%), Postives = 503/530 (94.91%), Query Frame = 0
BLAST of PI0010153 vs. NCBI nr
Match: XP_011658302.1 (protein PLASTID TRANSCRIPTIONALLY ACTIVE 12, chloroplastic [Cucumis sativus] >KGN49432.1 hypothetical protein Csa_003582 [Cucumis sativus]) HSP 1 Score: 1033.5 bits (2671), Expect = 6.4e-298 Identity = 516/530 (97.36%), Postives = 524/530 (98.87%), Query Frame = 0
BLAST of PI0010153 vs. NCBI nr
Match: XP_008439585.1 (PREDICTED: protein PLASTID TRANSCRIPTIONALLY ACTIVE 12 isoform X1 [Cucumis melo]) HSP 1 Score: 1027.3 bits (2655), Expect = 4.6e-296 Identity = 516/533 (96.81%), Postives = 524/533 (98.31%), Query Frame = 0
BLAST of PI0010153 vs. NCBI nr
Match: KAA0052516.1 (protein PLASTID TRANSCRIPTIONALLY ACTIVE 12 isoform X1 [Cucumis melo var. makuwa] >TYK13309.1 protein PLASTID TRANSCRIPTIONALLY ACTIVE 12 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 1026.9 bits (2654), Expect = 6.0e-296 Identity = 515/533 (96.62%), Postives = 524/533 (98.31%), Query Frame = 0
BLAST of PI0010153 vs. NCBI nr
Match: XP_038883750.1 (protein PLASTID TRANSCRIPTIONALLY ACTIVE 12, chloroplastic [Benincasa hispida]) HSP 1 Score: 996.5 bits (2575), Expect = 8.7e-287 Identity = 501/530 (94.53%), Postives = 512/530 (96.60%), Query Frame = 0
BLAST of PI0010153 vs. NCBI nr
Match: KAG7026443.1 (Protein PLASTID TRANSCRIPTIONALLY ACTIVE 12 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 970.7 bits (2508), Expect = 5.1e-279 Identity = 487/530 (91.89%), Postives = 504/530 (95.09%), Query Frame = 0
BLAST of PI0010153 vs. TAIR 10
Match: AT2G34640.1 (plastid transcriptionally active 12 ) HSP 1 Score: 644.0 bits (1660), Expect = 1.0e-184 Identity = 338/505 (66.93%), Postives = 402/505 (79.60%), 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:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
|