Lcy12g011430 (gene) Sponge gourd (P93075) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AAAGAAGCAATTTGCTGAACATAAATTCCATTATTCTACTCTTTTGGTTGGGTACGTAAAACCATGGAATTTTGTGGCCGGAATACCCGTTTTGGAAATGTCCGTCGTTGTTCATAGCCTCCGGCAAAGGAAACACAATCGTCGGCCGGTGGAACTTCAGATTGGATTGGCTTTCGACTCCACTTCTCTTCCAGGTAAGTCCGATTGGTTTTGAATCGGAGTTGGCACTGATCTGTTACGGGTATAAAGTTTTGCGACTATTTCTTTTTCTGGATTTGAATTTTGATTTGGATTTTGGGGATGGGATGGAGTTTGTTTCTCAGCCTTGGTTCTTCCATATGTAGGCTTCAACGAATTTCCACTGCAATCGGTTTTGGGGAAGGAACACTGGGTTTAAGAGTTGAGTTCTTTTTTGTTGACGGTGGTTTTGTGACGAGTCCGATGACATCACGAGACTGGTATTAGCAGATCCACTGTATGATTGTTATTTGTGATTGTACGTCTAAGTTTTGGCTTTATGGGAATGGTTCTTCACTTCTTGCATTGTATTTGACCATGGCTGTATAGTATTGAGCATTCAGAAAGAATTGTAGTTTTGGTGGATTTGAATTTGGGTTTTTTCAGAACCGATACTGGGTTTGTAATGATTTTATAATAGAACTTGATCAATTTTTAGGATTGGTGTTGGTTGGTGGTGGTAACAGCGGGAGTTGGTGCATCACTTCAGACTTCAGTGTTGGGAAGTAATTCAGTTTTTGGAGAATTGATTGTTTTCCTGGGAAGTTACGGGAAATGAAAGTCGAAGTTGTGGGGTTGGAGGTATAATGACTGGAGGGTCATTGGGTCTTCGTACGGGAAGCTATGCATCACTGCATCTACATCTACAAAATGGTGCTTTGCAAAATCCAGGAACGCCATTGCATGTGCACAAGGCTTCAAAAACAAATTTTTCAAGTTCAAGAGAGAGGGAGAGAGTTATTCCCTTGTTTTATCGATACTTCGGTCGGAGAAGGGTTGCAATGCTCCTCTTGTTTATCCTTGCTCTTTTGGTTTTTGTATTTGGATCCTTTGCAGTCAGTAGAGGTTTGTTCTTTTCTATCTCATTACTGATTCATGGTGGTATTGCTGAATTATCGGTAGATATTGATTTGAACTTATTGGCTGATGACTGCAGTGTAGGACTTATTCTGATTAGATGAATCAAAACACTGTACAAAATCCTGTATAAAATACGGCCTCTTGGTGGATTACTTTACCCAGAAAGTTCTTTTGTTATTATAGCTTGCTTATGATTATTAACTATTGACAGACCCTTTTGAGATAGCTTTTGGGAGGGGTGACCTCCACCCTGGCCCCTAGGTTGTTTTCATCTTCTTTTGTGATAATATATTTCCCTCTCGATGTTTCTTACCAAAAAAAAAAAAAAAAAAAAAAAAATTCAAAACACTTAATAGTTAATCATTAATTTCAGTAATTTGTTGTATCTAAATCTCTATCTCTGCCTCTACCTCAAGTGTGGTTCTTTGCGGTATCAATATGAGGCCAAGACATTAGCTTATTGTTCACCTATCTGAATAAATACATACCTTGCATACCCGGAGCTGTGCTCATTTGTAGAAAAACAGTGGTCATTGTGATTGTTATTTACTTTCTTCTGGAATTTTGAACCATATGTTTGTCATTTTTCTGGCAATGGTTGCTTGCAACAATTACATCGTGTGTTTAGTTGTTTTATCTGCTGTATCCTTCTGCTTTCGATTTCTTTGCAGCAATAACATCTACTGTTCTGTGGTTTCCTTTGTTGTGGTGATTGACCAGATAGTAGTGATTTGAAGCCACCTTATGAAGAAACTACACTCAGAGATTTGATAAATCCTGCTGTCCGAAAAACAGAAGACTTCAACTATAATATAACTTCAACACATGAGAATTCGATTGGAAGAAATGAAATTTCATCTCTGCTTCCTCCTTTCCCTCATCCAAATCGTTCTTTAATTTCTGATTTTTTTCCTCGACATTCCCTTCCATCGCCGCATCCATGCAGAAACTTTGCACTTCCTCCTCCAGCCCCAGCAAATGGAAAGCGGACTGGAGCACGTCGTAAGTTTTAGTTATTTTATGATTCTTTGCATGTCTACCACGATCCACGGGATTTATTCACCCTCCCGTTTGAATTTCTGATTCATATTCTCCTCCCTTACTTTTTCCAGCTTGTCCAGTATGTTATATCCCTGTGGAGCAGGCTATTGCTAGTATGCCAATTGTACCATCAATATCTCCTGTACTACGCCATTTAACATATATTCATGATGGAAATCCAATAAAAACAGAACCACATGGGGGGTCTGATTTTGGTGGATATCCTTCTTTAAGACAGAGAAATGATTCTTTTGATATAAAAGAGTCGATGACAGTTCACTGTGGGTATGTTTCACTTTCTTACCTGTTTTCATGTACTGATTTAATAAGTGATGATGATTACTTTTCCAAAGATTTAAATTTTGATGTTCATCATACATGTATTCGTTGTCCTAAAATTTTAAATTTGTTTGTTGCAAATTTGTTTGTTGTCGTAAATGCATTCACTCTTGTGTTCTGCTCTTCTGTACTTATTAGATTTGTTAAAGGAAGTAAACCTGGTAATCAGAGTGGTTTCGATATTGATGAAGCCGACCTTTTGGAGTTGGAGGAGTTTCATGAGGTCATTGTTGCATCAGCCATCTTTGGTATGGTGGCGCATTGCAATACTTTTTCTTTCACTTTCTTTTTGTGGACGTGGTTCTTTCTGTGACTACTATTTACATTTTCTTTTTTCTTTTTTAAAGGAAACTATGATGTATTACAGCAGCCTATTAATATCAGTGAAGAATCAAAAAGATTTGTTCCTTTCTACATGTTCATTGATGAAGAGACAGAAGCATATATGAAGAATTCTAGTCTCTTAGATAGCAGAAAGAGGATTGGCTTGTGGAGAATCATTGTAGTTCGTAATGTTCCTTATGCTGATTCAAGACGTAATGGCAAGGTCGGTGAAATTCTTTCCCCCTCCCTAATTTGCTCCTTTCCACATCTGTTCCAGAAAATTGAGTGTTCCATCGGTGTCTTGGTTTCAAGAATTCTTCTGGTTGATTTGATCAACTTGTAAGAAAATTGTTTCTCATATTGAATCATTTTTATAGGTCAGATTAAAGAAATGTTTCAAAAAATTATTTGCATTGGCGAATATGTTTAAGCAGAATAGAAGTAAAACTGGAAGGAGGCCATTCAAAAACAAGGGCCGAACATAAAGCACTGAATTCACCCAAAAAAGAAAAAAGAGCTCCAAGAAGTAGTAATCAAATTCAGAAACAAAGATAATAACAAAAAGGCTTGTTAATGTGGACCCAAAGAGAATCACTAAAATGATTTAGAATCTAAATACCCCAAAATCCTCCTATTTGTCTCTAATTTAATATTCAAATAGCCAAAATTCTAGCCTGCCATAGAAGACTTTGTATCGTGAAAGAGAGGATGTAGATTACATACTCTATCATACCATTGCAACTCTGAGACTCCAGCATTCATTCCAAAAATGTCGAAGAACCTAACCCAAATCTGAACAGCAAACGCATATCTCCAATGTGTTACTTTTACTAGCTTGAATGCATATTGTTGTTCTTGGCATCATTTTTCATAATCTGCCAAGAACAACTCTGATAAAATGTTCATTATTTTTCCATAGGTTTGGTTTCTTATAAAAAAAAAGTTTATCATTTTGTAGCTTAAAACTCTTGTAATGTTTGGACGTTCTTGGGTGGAGAGGGTTGTTAAACTATTAACACGTGGTATGAATGCTGATGATAATTAAAACGAAGTTCACTTCATAGCCCTGCGTAGAAACCTACTATTTTCCCCTTTTCTAATGATAACACTATGGGGGTACGCATGTTGTGGAGTGGCAACCTCGTTAACCTTGATATAGGCTTTTTTGTTCCAACTTTTTGAGGTTCTTTTCTTCTTTCTGCAAAAGGAATGTTCATATTCCCCTTGCAGGTGTGATTTGATGCTTGGGTGACAATTTTGTTTCTATTCATTACTTAGAAGTGGAAGGAGCATAGATCATGATCGGCCTATTTTTCTCTATTACTTTCTGTCTTTTTTCCCACCATGCACTGATAATCAAATTTCAAAGCCAGTGTCCTGTTGTTATTGATATTAGGTTTAAATCCTGTTTTAGTTGTTGAACTTTCAAACTTATTTCATTTCTTCTTTATACTTTCAAATCTCTTAATTTGGTTTTGACACTTTCAAATATTCTATTCTTTTCCTCTTAAAACCTTTTTCACAATCCATTTTACTTTTCTTTGTTAAATTTATATCTGCATTTAACAAAATTTTTATGCCGCCCATTTCTAAACTCATTGCCAAACTCTACACATGGAGTTTAAAAGTTTATTATAATGCCACCTAAGGTTTTTGTTAGATGCAATACAAAAATTTAACAACAAAGTTCAAATGAGTTCTTATGTAAAATAGAGTACGTGTGAAAGTTGAGAGATTGGAATAAGATTAAAATCTTATTATTATTGTCATTTTAACATTATCATTATTATGCTTCGTAACCATAGAGGTTCTGATGATCCAGAGTCAAATTTATTTGCATATTTAGTTATTCTGTTTGGGGACACAAGATATTCATAATCTCTGCCTAGAAAATAAAAGTAAATATGTATATCTTGTTTCTTATAATAATTAATAAATAAATACATAGTAAATTAGGACATAACATTGTTGTAGATAGGAAGAGAACCTTTGTGGCTTCTATATATCTAGATGTTGGCTGGCAACGTGGAAAGCAATGAGAGAACCCGGCAGATAAACATGATGGAAAACTGAGAGAACCCAATTGATAAAGTTATAACTTCCTGTTTATTTTTTAGGATTAGTTAATAGGACCGAGCCTAGCGCCAAAATGAGCATCATTGCTAATGAGCATCATTGCTAGAGTCTTGAGTTACTCTGTAGATCTTTCTGCATTGAAGTACTTTACTGCTAAGAAATTAATCAACAGATGTTTGCATCCCTTTTAAATGAGGTCAATATATTAACAGGTTATACAGATTTTTGGTATTTTCTTGGAACTATGATGGAATATGATGGGCATTTCATTAGGTTTTACTTGATTTAATTGTGGCAGATTCCCAAGCTTCTTCTGCATAGGCTTTTCCCTAACATTCAATACTCAATATGGATAGATGGAAAACTTCAGCTTGTTGTGGATCCATTTCAAATTCTTGAGAGGTACGTCCAATTTTCTATGTTGCGTGGGCCTTCAGACTTTTAGAGCACGAAATTCTAAGATGCTCATTTTTAAGCTTCACACATGCTTTCTGTAATAATTTTTTCCTGATGTCTGATTGTTATTCGGTTTAATTTTTTCCATAGCATGGCTGTTCTTCTGTTGGTTCTTTTTCTTTTGGCAAAATATTTTTATCCATCTACATTTACTATGGATCCCACCCGGTCAAATGGGAGGTAGTTCAAAGCCGGTGGAGCTTGGAGGGCTAGGTGAGGGCTAGGTATTGGCAACTTAAGGTTACATAATGAGACCTTGTTAGCGAAATGGTTGTGGTGCTTCCTCATAGAACCACATGCTCTATGGTATAGGATCATTGTAAGTGTGTTTTGCACCCTTTTGAGTGGATTTCAGGCGGTGGGAGGGTTCAAGCAAAAACCTTTGGACTACCATTACTTTGGGTTTTTCTTTATTCTCCATGTTTGTTAAATGCTTGGTTCTAGATGATTCAAGTATTTACTTTTGGGAGGATTGTTGGGTGGAAGACAAGCCCCCTTGTGCATTGTTTTCCTAGATTTGTTGTTTTCCCAAATTTATCATTTGCTAATTAAGAGGTTGCACTCGGTCGCCTCTGTATTGCCTTCTTATAATACTTCATCGATTTCTTTGGGCTTTCATCGTCCCCTCACTAACCAAGAGACTTTGGAGGTGTTTGCCTTTCTTTTCTGTCAATTTTTATTAGTTGACCAGTTCAAGGACAAGGATTTTTGGCTTTGGGTGCCTAATTCGTTGGAGGGTTTCAGATCACTTTTTCATATCTCTTTGGCTCCCCTTCTTCCTCGCAGGGTGCCCTAACATTCCCCTCTCTCTAGAAGGTCGAAATCCTATAAACGTTAAGTTCTTTGCTTGACATGTTTTGCATGAGAGAGTGAACATCTAAGATTGTATTCAGAGACATTCTTCTTTTGTTGCATTTGCAATAGTGCATTCTTTGCAAGCGACAAGAGGAGGATATTGACCATTTATTGTGGAATTTCCAGTTCGCTTACTCCTTTTGGAGTCGGTGCTTTACAATTTTTGGGATTGCTCTGGCTTGTAACAGAGATTGTTGTTCTACAATAGAGGAGGTGCTCTTGAACTCTCCCTTTTGGAATAAAGGAAGAATGTTGTGGCAAGCTTGCTTTTTGGCTATTTTGTGGAGAGTTAGGTTGGAGAGGAATGATAGGATTTTTAAAGGGGTCGAGAGTTCTTTGGAGGATGTTTGAGAGGTTGTAAGGTTTAATGTTTCTTTATGGGTTCCATTAATCAAACTTTTTGTAATTTTCAGTTTTGGTCTTATTTTTTTTCGATTATTCCTATGGGTGGTTTGGGGACTCCTTTGTACCTTCTTTCATTTTTCTCCGTGAAAGCTTGATTTCTTTTTAAAAAAACAAAATATTCAAAGTTATGACAACGGTACTTGGAAGGTAAGAGTATAAAATAAGTTGTCTCAACGTTAATCTGATACTCCAATTGTCTTCTTGACCAACTGATTTAACGAGACAAATAAATGAGATTGTGAGCTTTGTTTGGGTACAATAGTTCAATATTACTAAAGAGGGAAATTCACATTATTTCAATACCCTTCTTATTTGATTGTCCAATATTTTTTGAACTGTTTGACGCATTTTGTTCTATAAATCTAATTTGCACTGGAGATTGTTCAGTTCCAATAAAAAGCTATCTCAAGACTTGCAATGGATCTTATTTATTTTCATGTTTAGTGAGTGCCCAATAAAATTGAACAATCAAAGAACCATAATAACAAATAGCCCAGTGTTGTCTTTAGTGGGAAGGTTTGAAAATCCCTTGATCGATCTGTAAGGCTCATCATTTTGTAGAAGAATACTTTTTATGTCCTCTTACATCATATCTTAATCGTCATAATAATGAGTTTGATCTATTTCTTCTTATACATGATTTTTACCTGTGGATCATTTCAGAATATTTGCTGGCATGATTCTCGTTTGTAGGTTCTATGCTGATGTATGTTTTGGGTGCTGGTTTAAGCTTTATCGCTGTAAAGTATTTTTAACTAGGTATTATTATGTATTTCAAAAAAAAAAAAAAAAAAAAACTAGGTATTATTATGTTAATTGTCTTGACAGGTTCCTGTGGCGCCAAAATGCATCTTTTGCAATTTCAAGACACTATAAACGATTTGACGTCTTTGAAGAGGCTGATGCTAACAAGGCTGCTGGAAAATATGACAATTCCTCCATTGATGAGCAGATTGATTTTTATGTTAGCGAGGGTTTAACACCATATTCTTTGGCTAAGCTTCCTATAACTAGTGGTACGGATTAATTCGTTACAAGCAATTGTTCCGTTTATCCGCACCTGCTTTTTACGTATGCAACCTATCTCTGTATATTTCACATCTTCTTTTTGGGTCTGCGTTGGACTTCCTGCAGATGTTCCTGAAGGTTGTGTTCTAATTCGAGAACATATTCCTATAACAAATTTATTCACTTGCCTTTGGTTCAATGAAGTTGATCGTTTTACTTCAAGAGATCAATTAAGCTTCGCCATGGTGAGAGATAAGATAATGTCTAGAGTCAATTGGAGCATTAACATGTTCTTGGACTGTGAAAGGCGCAATTTTGTTATACAGGTCCTAAACTCCTTTTCTTCTGTTTTGAAAAAAAAAAAGCATGCGTGCAGCTTAATAGAACCCTTATCATAATTAACAAAGCATAGTTTAATTCAGTTTATTGGAACATGTAATTCTATAAACATGGCGTTCAGCCTTTTGCCATATTGAGTTCTAGGACTTTTTTTTTCCCTCTCAACCTAGTGGCTTTACAATCTTTGTTCCAACTCCTTTTGTACGTTTAGATTTGAGAAAAAAGATTATTGACATTCTGCTCTTTCCCCTTTCACATTTACAGACATATCATAGAGAAATACTGGAACACATGCCACCTCCTGCCATAGCAGTTATCCGTCGTCCTCCACCGGTGCCCGACGGTCGTACTGTTTTGAAGACTCCAGTACGTACCGTTTCAAAGCCTCCAGTTCGTATTGTTCTAAAGCCTCCAGTAAAGAGAAATCCTTCCAAGCGGGGAAGAAGCGATAAGAGGTCCAGTTCGAAGCGGCATCGTAAAGTTATTGCTGGACATAGAGAGGATAATTTGTTCTAATTCAATTCATATAAAAAGAAAATGTTCTTTTTTCTTTACCCTTTGACATTTTTAGTTTCATTCTCATTCTCATCCCTCAAATTTACATCTCAATACAGGGAGATCTGGTTTAGATGTAGAGCATTGTTTGATGGGACAAAATGATACCAATTTTGTACTGGAAATTGTTGATATATATATTGGTTTCTGTTGTAGATATGAAAGTTTCTTC AAAGAAGCAATTTGCTGAACATAAATTCCATTATTCTACTCTTTTGGTTGGGTACGTAAAACCATGGAATTTTGTGGCCGGAATACCCGTTTTGGAAATGTCCGTCGTTGTTCATAGCCTCCGGCAAAGGAAACACAATCGTCGGCCGGTGGAACTTCAGATTGGATTGGCTTTCGACTCCACTTCTCTTCCAGGCTTCAACGAATTTCCACTGCAATCGGTTTTGGGGAAGGAACACTGGGTTTAAGAGTTGAGTTCTTTTTTGTTGACGGTGGTTTTGTGACGAGTCCGATGACATCACGAGACTGGATTGGTGTTGGTTGGTGGTGGTAACAGCGGGAGTTGGTGCATCACTTCAGACTTCAGTGTTGGGAAGTAATTCAGTTTTTGGAGAATTGATTGTTTTCCTGGGAAGTTACGGGAAATGAAAGTCGAAGTTGTGGGGTTGGAGGTATAATGACTGGAGGGTCATTGGGTCTTCGTACGGGAAGCTATGCATCACTGCATCTACATCTACAAAATGGTGCTTTGCAAAATCCAGGAACGCCATTGCATGTGCACAAGGCTTCAAAAACAAATTTTTCAAGTTCAAGAGAGAGGGAGAGAGTTATTCCCTTGTTTTATCGATACTTCGGTCGGAGAAGGGTTGCAATGCTCCTCTTGTTTATCCTTGCTCTTTTGGTTTTTGTATTTGGATCCTTTGCAGTCAGTAGAGATAGTAGTGATTTGAAGCCACCTTATGAAGAAACTACACTCAGAGATTTGATAAATCCTGCTGTCCGAAAAACAGAAGACTTCAACTATAATATAACTTCAACACATGAGAATTCGATTGGAAGAAATGAAATTTCATCTCTGCTTCCTCCTTTCCCTCATCCAAATCGTTCTTTAATTTCTGATTTTTTTCCTCGACATTCCCTTCCATCGCCGCATCCATGCAGAAACTTTGCACTTCCTCCTCCAGCCCCAGCAAATGGAAAGCGGACTGGAGCACGTCCTTGTCCAGTATGTTATATCCCTGTGGAGCAGGCTATTGCTAGTATGCCAATTGTACCATCAATATCTCCTGTACTACGCCATTTAACATATATTCATGATGGAAATCCAATAAAAACAGAACCACATGGGGGGTCTGATTTTGGTGGATATCCTTCTTTAAGACAGAGAAATGATTCTTTTGATATAAAAGAGTCGATGACAGTTCACTGTGGATTTGTTAAAGGAAGTAAACCTGGTAATCAGAGTGGTTTCGATATTGATGAAGCCGACCTTTTGGAGTTGGAGGAGTTTCATGAGGTCATTGTTGCATCAGCCATCTTTGGAAACTATGATGTATTACAGCAGCCTATTAATATCAGTGAAGAATCAAAAAGATTTGTTCCTTTCTACATGTTCATTGATGAAGAGACAGAAGCATATATGAAGAATTCTAGTCTCTTAGATAGCAGAAAGAGGATTGGCTTGTGGAGAATCATTGTAGTTCGTAATGTTCCTTATGCTGATTCAAGACGTAATGGCAAGATTCCCAAGCTTCTTCTGCATAGGCTTTTCCCTAACATTCAATACTCAATATGGATAGATGGAAAACTTCAGCTTGTTGTGGATCCATTTCAAATTCTTGAGAGGTTCCTGTGGCGCCAAAATGCATCTTTTGCAATTTCAAGACACTATAAACGATTTGACGTCTTTGAAGAGGCTGATGCTAACAAGGCTGCTGGAAAATATGACAATTCCTCCATTGATGAGCAGATTGATTTTTATGTTAGCGAGGGTTTAACACCATATTCTTTGGCTAAGCTTCCTATAACTAGTGATGTTCCTGAAGGTTGTGTTCTAATTCGAGAACATATTCCTATAACAAATTTATTCACTTGCCTTTGGTTCAATGAAGTTGATCGTTTTACTTCAAGAGATCAATTAAGCTTCGCCATGGTGAGAGATAAGATAATGTCTAGAGTCAATTGGAGCATTAACATGTTCTTGGACTGTGAAAGGCGCAATTTTGTTATACAGACATATCATAGAGAAATACTGGAACACATGCCACCTCCTGCCATAGCAGTTATCCGTCGTCCTCCACCGGTGCCCGACGGTCGTACTGTTTTGAAGACTCCAGTACGTACCGTTTCAAAGCCTCCAGTTCGTATTGTTCTAAAGCCTCCAGTAAAGAGAAATCCTTCCAAGCGGGGAAGAAGCGATAAGAGGTCCAGTTCGAAGCGGCATCGTAAAGTTATTGCTGGACATAGAGAGGATAATTTGTTCTAATTCAATTCATATAAAAAGAAAATGTTCTTTTTTCTTTACCCTTTGACATTTTTAGTTTCATTCTCATTCTCATCCCTCAAATTTACATCTCAATACAGGGAGATCTGGTTTAGATGTAGAGCATTGTTTGATGGGACAAAATGATACCAATTTTGTACTGGAAATTGTTGATATATATATTGGTTTCTGTTGTAGATATGAAAGTTTCTTC ATGACTGGAGGGTCATTGGGTCTTCGTACGGGAAGCTATGCATCACTGCATCTACATCTACAAAATGGTGCTTTGCAAAATCCAGGAACGCCATTGCATGTGCACAAGGCTTCAAAAACAAATTTTTCAAGTTCAAGAGAGAGGGAGAGAGTTATTCCCTTGTTTTATCGATACTTCGGTCGGAGAAGGGTTGCAATGCTCCTCTTGTTTATCCTTGCTCTTTTGGTTTTTGTATTTGGATCCTTTGCAGTCAGTAGAGATAGTAGTGATTTGAAGCCACCTTATGAAGAAACTACACTCAGAGATTTGATAAATCCTGCTGTCCGAAAAACAGAAGACTTCAACTATAATATAACTTCAACACATGAGAATTCGATTGGAAGAAATGAAATTTCATCTCTGCTTCCTCCTTTCCCTCATCCAAATCGTTCTTTAATTTCTGATTTTTTTCCTCGACATTCCCTTCCATCGCCGCATCCATGCAGAAACTTTGCACTTCCTCCTCCAGCCCCAGCAAATGGAAAGCGGACTGGAGCACGTCCTTGTCCAGTATGTTATATCCCTGTGGAGCAGGCTATTGCTAGTATGCCAATTGTACCATCAATATCTCCTGTACTACGCCATTTAACATATATTCATGATGGAAATCCAATAAAAACAGAACCACATGGGGGGTCTGATTTTGGTGGATATCCTTCTTTAAGACAGAGAAATGATTCTTTTGATATAAAAGAGTCGATGACAGTTCACTGTGGATTTGTTAAAGGAAGTAAACCTGGTAATCAGAGTGGTTTCGATATTGATGAAGCCGACCTTTTGGAGTTGGAGGAGTTTCATGAGGTCATTGTTGCATCAGCCATCTTTGGAAACTATGATGTATTACAGCAGCCTATTAATATCAGTGAAGAATCAAAAAGATTTGTTCCTTTCTACATGTTCATTGATGAAGAGACAGAAGCATATATGAAGAATTCTAGTCTCTTAGATAGCAGAAAGAGGATTGGCTTGTGGAGAATCATTGTAGTTCGTAATGTTCCTTATGCTGATTCAAGACGTAATGGCAAGATTCCCAAGCTTCTTCTGCATAGGCTTTTCCCTAACATTCAATACTCAATATGGATAGATGGAAAACTTCAGCTTGTTGTGGATCCATTTCAAATTCTTGAGAGGTTCCTGTGGCGCCAAAATGCATCTTTTGCAATTTCAAGACACTATAAACGATTTGACGTCTTTGAAGAGGCTGATGCTAACAAGGCTGCTGGAAAATATGACAATTCCTCCATTGATGAGCAGATTGATTTTTATGTTAGCGAGGGTTTAACACCATATTCTTTGGCTAAGCTTCCTATAACTAGTGATGTTCCTGAAGGTTGTGTTCTAATTCGAGAACATATTCCTATAACAAATTTATTCACTTGCCTTTGGTTCAATGAAGTTGATCGTTTTACTTCAAGAGATCAATTAAGCTTCGCCATGGTGAGAGATAAGATAATGTCTAGAGTCAATTGGAGCATTAACATGTTCTTGGACTGTGAAAGGCGCAATTTTGTTATACAGACATATCATAGAGAAATACTGGAACACATGCCACCTCCTGCCATAGCAGTTATCCGTCGTCCTCCACCGGTGCCCGACGGTCGTACTGTTTTGAAGACTCCAGTACGTACCGTTTCAAAGCCTCCAGTTCGTATTGTTCTAAAGCCTCCAGTAAAGAGAAATCCTTCCAAGCGGGGAAGAAGCGATAAGAGGTCCAGTTCGAAGCGGCATCGTAAAGTTATTGCTGGACATAGAGAGGATAATTTGTTCTAA MTGGSLGLRTGSYASLHLHLQNGALQNPGTPLHVHKASKTNFSSSRERERVIPLFYRYFGRRRVAMLLLFILALLVFVFGSFAVSRDSSDLKPPYEETTLRDLINPAVRKTEDFNYNITSTHENSIGRNEISSLLPPFPHPNRSLISDFFPRHSLPSPHPCRNFALPPPAPANGKRTGARPCPVCYIPVEQAIASMPIVPSISPVLRHLTYIHDGNPIKTEPHGGSDFGGYPSLRQRNDSFDIKESMTVHCGFVKGSKPGNQSGFDIDEADLLELEEFHEVIVASAIFGNYDVLQQPINISEESKRFVPFYMFIDEETEAYMKNSSLLDSRKRIGLWRIIVVRNVPYADSRRNGKIPKLLLHRLFPNIQYSIWIDGKLQLVVDPFQILERFLWRQNASFAISRHYKRFDVFEEADANKAAGKYDNSSIDEQIDFYVSEGLTPYSLAKLPITSDVPEGCVLIREHIPITNLFTCLWFNEVDRFTSRDQLSFAMVRDKIMSRVNWSINMFLDCERRNFVIQTYHREILEHMPPPAIAVIRRPPPVPDGRTVLKTPVRTVSKPPVRIVLKPPVKRNPSKRGRSDKRSSSKRHRKVIAGHREDNLF Homology
BLAST of Lcy12g011430 vs. ExPASy Swiss-Prot
Match: Q9FZ97 (Probable hexosyltransferase MUCI70 OS=Arabidopsis thaliana OX=3702 GN=MUCI70 PE=1 SV=1) HSP 1 Score: 591.7 bits (1524), Expect = 9.6e-168 Identity = 316/602 (52.49%), Postives = 414/602 (68.77%), Query Frame = 0
BLAST of Lcy12g011430 vs. ExPASy TrEMBL
Match: A0A1S3BTU6 (uncharacterized protein LOC103493486 OS=Cucumis melo OX=3656 GN=LOC103493486 PE=4 SV=1) HSP 1 Score: 1052.7 bits (2721), Expect = 5.6e-304 Identity = 537/603 (89.05%), Postives = 552/603 (91.54%), Query Frame = 0
BLAST of Lcy12g011430 vs. ExPASy TrEMBL
Match: A0A5A7VAS7 (Inner membrane protein oxaA OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold134G003960 PE=4 SV=1) HSP 1 Score: 1052.7 bits (2721), Expect = 5.6e-304 Identity = 537/603 (89.05%), Postives = 552/603 (91.54%), Query Frame = 0
BLAST of Lcy12g011430 vs. ExPASy TrEMBL
Match: A0A0A0L266 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_4G637690 PE=4 SV=1) HSP 1 Score: 1043.9 bits (2698), Expect = 2.6e-301 Identity = 534/601 (88.85%), Postives = 550/601 (91.51%), Query Frame = 0
BLAST of Lcy12g011430 vs. ExPASy TrEMBL
Match: A0A6J1CFM4 (uncharacterized protein LOC111010380 OS=Momordica charantia OX=3673 GN=LOC111010380 PE=4 SV=1) HSP 1 Score: 1042.0 bits (2693), Expect = 9.9e-301 Identity = 523/603 (86.73%), Postives = 550/603 (91.21%), Query Frame = 0
BLAST of Lcy12g011430 vs. ExPASy TrEMBL
Match: A0A6J1FE28 (uncharacterized protein LOC111443138 OS=Cucurbita moschata OX=3662 GN=LOC111443138 PE=4 SV=1) HSP 1 Score: 1025.8 bits (2651), Expect = 7.4e-296 Identity = 523/604 (86.59%), Postives = 546/604 (90.40%), Query Frame = 0
BLAST of Lcy12g011430 vs. NCBI nr
Match: XP_038897638.1 (uncharacterized protein LOC120085624 isoform X2 [Benincasa hispida] >XP_038897639.1 uncharacterized protein LOC120085624 isoform X2 [Benincasa hispida] >XP_038897640.1 uncharacterized protein LOC120085624 isoform X2 [Benincasa hispida]) HSP 1 Score: 1074.3 bits (2777), Expect = 4.6e-310 Identity = 542/603 (89.88%), Postives = 560/603 (92.87%), Query Frame = 0
BLAST of Lcy12g011430 vs. NCBI nr
Match: XP_008452456.1 (PREDICTED: uncharacterized protein LOC103493486 [Cucumis melo] >XP_008452457.1 PREDICTED: uncharacterized protein LOC103493486 [Cucumis melo] >XP_008452458.1 PREDICTED: uncharacterized protein LOC103493486 [Cucumis melo] >XP_008452460.1 PREDICTED: uncharacterized protein LOC103493486 [Cucumis melo]) HSP 1 Score: 1052.7 bits (2721), Expect = 1.2e-303 Identity = 537/603 (89.05%), Postives = 552/603 (91.54%), Query Frame = 0
BLAST of Lcy12g011430 vs. NCBI nr
Match: KAA0064330.1 (Inner membrane protein oxaA [Cucumis melo var. makuwa] >TYK20256.1 Inner membrane protein oxaA [Cucumis melo var. makuwa]) HSP 1 Score: 1052.7 bits (2721), Expect = 1.2e-303 Identity = 537/603 (89.05%), Postives = 552/603 (91.54%), Query Frame = 0
BLAST of Lcy12g011430 vs. NCBI nr
Match: XP_031740483.1 (uncharacterized protein LOC101219639 [Cucumis sativus] >KGN55129.1 hypothetical protein Csa_012323 [Cucumis sativus]) HSP 1 Score: 1043.9 bits (2698), Expect = 5.4e-301 Identity = 534/601 (88.85%), Postives = 550/601 (91.51%), Query Frame = 0
BLAST of Lcy12g011430 vs. NCBI nr
Match: XP_038897636.1 (uncharacterized protein LOC120085624 isoform X1 [Benincasa hispida] >XP_038897637.1 uncharacterized protein LOC120085624 isoform X1 [Benincasa hispida]) HSP 1 Score: 1043.1 bits (2696), Expect = 9.2e-301 Identity = 526/584 (90.07%), Postives = 542/584 (92.81%), Query Frame = 0
BLAST of Lcy12g011430 vs. TAIR 10
Match: AT1G53040.1 (Protein of unknown function (DUF616) ) HSP 1 Score: 610.1 bits (1572), Expect = 1.9e-174 Identity = 324/570 (56.84%), Postives = 402/570 (70.53%), Query Frame = 0
BLAST of Lcy12g011430 vs. TAIR 10
Match: AT1G53040.2 (Protein of unknown function (DUF616) ) HSP 1 Score: 610.1 bits (1572), Expect = 1.9e-174 Identity = 324/570 (56.84%), Postives = 402/570 (70.53%), Query Frame = 0
BLAST of Lcy12g011430 vs. TAIR 10
Match: AT1G28240.1 (Protein of unknown function (DUF616) ) HSP 1 Score: 591.7 bits (1524), Expect = 6.8e-169 Identity = 316/602 (52.49%), Postives = 414/602 (68.77%), Query Frame = 0
BLAST of Lcy12g011430 vs. TAIR 10
Match: AT1G34550.1 (Protein of unknown function (DUF616) ) HSP 1 Score: 273.1 bits (697), Expect = 5.4e-73 Identity = 148/325 (45.54%), Postives = 206/325 (63.38%), Query Frame = 0
BLAST of Lcy12g011430 vs. TAIR 10
Match: AT4G09630.1 (Protein of unknown function (DUF616) ) HSP 1 Score: 271.9 bits (694), Expect = 1.2e-72 Identity = 148/325 (45.54%), Postives = 207/325 (63.69%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (P93075) v1
Date Performed: 2021-12-06
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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