Spg018794 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGCTCGGGTAAATGAGTTCTTTTATTTATCTCGTAGGTTTCTTGTAGAATTTTGATATTTCTTATAGTTTTATATTAGAATTTAATATAATAAAGGGATTCTATCATTTCTCTTATCCAGGCCCGTCCGAAATGAGATGGAGCCCTGTGATAGTTTTTAAAATGAGATTCTAAAATATTTTATAATCTAGTCAAAATTGTAAAATATTAATTTGCACCCAAGAAATTGGAGACGTTATGTGGGGCTAGATGAATTCTTTTATTTGACTCCACGCTTTCTTGAATTTTAGTTTAGTATTACAATTCAATATAATAAATATTTTTTTTCCTTCATGTCTTCTTTTGAATTCACACCCTTTCAAAATTATATATATATATATATATATATATATATATAATTATACATTTATACATACATCCATGTATATGTACATACATATGTATATATATACGTACAATAAAAAAATGTCACAAAGAAACTATATAACAATGATATTTTATTTTAAAAATGTTAGCTTTCGAAGTAGTTAGGTTTAGTATAATTGAAGAAATATTAAAACTAGAACGAGGATAAATAAAATTTACACAGTGAACCATTCTCTAAACTCTTGTATATAAGTCTGCCACCTCTTGTATTACATAGTGAGCAATAATATATAGAAGTCTTGTAAATTCACAATACATACATACATATATATGCATATATGTATATATTCAAGAGACGACCTTTGACTGAAAAATTAAAAAAAAAAAAAAAAGGCAGAAGTGAGAGAGACTGTTCTTGAGGGCGCAAGTGGTACATAATACGTTGGAAATATGGTTTTGAGATACTGTATTATTGGCAGAGAGGAAAGAAAACCAAATAAGATGGAAGCTATTATTTGTTTATTAATTGACCTTCATTTGTCATTATTAATTGGCCTTCATTCGATATGACAACTCAAATTAGGACTTAGTTTATTGGACTTAGTTTTATAATAGACGTTGATTAGTTATTGGATTAAAATTTGTTATAGGAAGCCAATGTGCTATTTTTTGAAAATTTGAAATTCTCGAATGCATAAGAGTCCAAAAAGTTTTTGTGTAATAAAAGGTGTTGTAACGTACCGTGTTTCGAAATCGAGTCGTTTTGGAATATATTGGACGTTCTTATTCTAATTTGGAAAATTATAATTTAAGTGTAGCCTTCTAAAATTTAGGAGAAAGAAATTTTTAATTAAATCTTTAAATTCCTTTTTGGAGGTTTAAGATTCGATATTTATTTTAAATATCAAAAAACCCAAATCCCAATCAATTGGATTATTTTCTTTCCAGAGTTTTTAAGAGTTAAGTTTGAGAATTTTAATCCTAATAATTAAGGTTTAACTCGTAATTAAATGAGTTTTTCTTTTCTTAATTTGTTTTTTTTAAAAGAAAAGAAATAAGAAAAAAAAGTAGTAAACCTAATCCTTCTCCTTCTTTCTCTAGCCGCCAGCCCCCCTAACTCTTCTCCTTCTCGTGAAGCAGGCCAGCCGCAGCCCCCTCAACTCACGTTTTCTTCTTCCTCTCTCGCCGGCGCCGTCCTCTCTCGCGCGTTTGTCCGCCGGTCAGCACCCACGCTTCAACCCGTCGCCCCCAGCCCAGCCGTCGCGCCGTCCTTTCTCGCGCGAATCTCTCCCTGTCTCTCTCGGGTTCTCTTTCGCGTGAAGTCGCGCCGCCATCGACCAAAGCCCGTCCCGCGTCGCCTCCGTCGTTGCCCAGCCCTCTGTCGCCATCGTGCCTCGAGCAGCAGCTGCTAGTCGTTGTGGTGCTCGAGTTGCCGTGCGTTTTCTGTGGGTCTTCGTCAAGCTCTTCCTTCTCCCGCGTCGTCGCGTCCGCAGGCAGCAGCAGACCGCCGCCGTTCAAGCTTGCGCTGTCATCTCGTCTCCCTCACCCGCGAGCAGCCGTAAGTTGCTGTTTCCTTCGATTTCCTTCATCTTGTTTAGTTAGCTTCGTTATCGTTTGTTCGTTTCTATCAAGTTCAACAAAAAAGACAACGAGTTTAATCCCTTCCTTGCATTCTTTTTCGGTTAGACTTGTGAGTAGAAGGCAGAAAGTTCGCTATTCTTGCGTTTTGGGCACGTTCAAGCTAGATTAGAGTCCGTTTCGGCGTGTTCGGACTCTCTTGGTAGGTTTTCATTTTTGCCCATGCTTCGTTTAACTCAAATTCAGTTTACCCACTCTTGCTCGATGTTTAAATTGACTTTCGTGGTTGATTCCCATGTTTCCAGCGTTGTTCGGAGCCGTTGTGTGGTTCGAAATCATCCCTGTCTGGTGACCCATCGTCGGTGGAGCCTTAAACTTGAACACCCAGTGCTTAAGGTCTCTAAGCAAGTGGTTTTAAACCTCTTTGCTTGCTGGACAGCACGTGTTCGAGGTCTTTCGGACGCTGAACGGTAACTTCCACACCTTTCGTTTCCTTTATTAAGTCTATTAGGTGCTCTAAATTAATTTCTATCCCTTAGAAGTTGTTGGTTGTAGTTCGGGCTCTTTAGGCTCTTCCGGTTCATCCTGTTGGTTTTTAGGTTCGCTTAGAAGCGTTAGAGCTTCCGGTAAGTAGTTCTTACTTGATGTAGTCTGCTTGATTGTGTGTTGCATGCTGAATGATTACTCGCTTTATAATTACTCTCATGTTTCTTGTTTTTCTGAATATGTGTATAAACGTATGATATCGTTGAAAAGCATGACTGTTGTTGCGCGTTGATTGGGTGTAAGCATGTTGGTTTGTTGCATTAGTGCGTTAAGCATGAGTTGAGAGCATGTGGTCATACGTATATGCTTGGTGGGCATAGTACGTGAGTCTAGAAGTGTTGTAGGCATATGCATTCTAGATAGGTGTGAGATAGAGGTCAGGGACCTAAAATGTGAACAAGGGCAAGATGGTGAATGTCAGTGCACCTCGGGTACAAATGGTCGAGGGGTGACATGTCACCATGGGTTTAAAGAGGACTAGCATTGTGGTTGAGATATCAGGGCCTCGGGTATAAATGGTCGATGACTGATATTGTTTCGAGGAAAGTAAAGTGATTATCAGAGCCACGGGTATAAATGGTTGGGGACTGATATATCACTATTGGATGTCGATGCCTCGGGTATAAATGGTCGAGGGTCGATATGCCAATGTTAGATAAAGAGGAGCATCGAGGCCTTGGGTATAAATGGTCAAGGGTCAATACGTTGCTTAGTCATCGAGGCCTTGGGTGTAAATGGTCAAGGGTCGATGCACAGTTCGAGGCCTTGGGTATAAATGGTCAAGGGTCGAACGCCGAGCTCTGTAGAGAAGTGTCGAGGCCCTGGGTATAAATGGTCAGGGGTCGATGCAACTCGAAGGGTCAGTCTTAGAGAGTTTTGCGGAGCGTGACGCGGAAATCACGTGTGGAGAGCCATGTGAGGGCTAAGCATGAGCGTTGAGTGAGCTCGTGGAGCTTGAGTGGTTAGCAAGTTGCATATAGAAGGATGCAGGAGTTATGGCTTAGGAGAGTCGTTTGTTTACTAGCTTTTGAGCATGACATGTGTTTATCGCTTTAAGAAGCATGTTGTTTGCGCATGAAAAGCATGTAAGATGTAGGGGAATGCCGGGGCCGTGAGGTGCCGAATTCGGATTCCGAATCCTGGGCCTGGGGCGTTACAGGTGTAAATGGCAAAGCCAGCTTGTTGAGGTTGTAGAAATAAGAGCATGAATCTAGACATTATATATATTTGAATATAAATTAATCACTCTGAGAAGTTGAAACCTGATTAAAACATGAGCCTATAAATATTTTTAAATTTCCAATCAAATGGTAGTTATCCCATCACTTTGTCCATGAATGTAGATTATTTTTTCTGTAAAGTTCAAGTATTGTGTTTTTTTATATTATAATCTATAGATATAGATATAGATTAAGCATTTGTTCAGTTGAAAATTGAGAAAAACAGTTCACACTGGTATTGACCAAATTATATGCCTGGGTCAAAACCCTAAACCCCTTTTGTATTATTTGTCTTCCTTATATCTTCCATAGCCCTAATTGGTTGCTCGTTCTTGTTCGCTTTGTAGTTCAAGGTAGGGGTGTACAAAAAACCCGACAACCCGAACAACTCGGACTACCCAACCCAAACCGTAAGGGTTAGGTTGGGTTAGGATTTTTTTCGGTTTGGGTTGGGTTAAAATTTTATGAAACCGAAAAGTCGGTTCGGTTCACGGGTTTAGGAAATTTTGGCTCGGTTCAACCCGAACCGAACCGAAAATATATATAATATTTGCTGTTTAGTTTCTATGTTATGTGTATGGCTAAGTGGTTGCAGTCCACTCTAATATTCTGGATGTATTGCGTTCAAGGCTCATAAAGTGCATAAATATTTTTATTTTTTATATATTTTACTTATTGATGTTTTTTTAATATTATTTCTTTTTATGTTTTTTCTTTTCCTTTTTTTAATTTATTTCAATGATAACTTGTCTTTTTGTGTTTTTTTTTATTTTATTTAATTATTCAAACTTCAAATAATTATATATACTTTTTTCCTTCAAATTCCATAAAGCCAATATTATTTTTTCCTTTTCTTTTTTGTTTTTTTTAACTTCTTTTTTATTTAATCTAAATAATTTAGACTTTTATGTCTTGAAATTTACATTATAATATTGTGGATAAGCATAAATCTTTAAAAAAAAATAATTTTTAAGTATTAAAAAAAAAAGAGAACCCGACAACCCAACCCAACCCAACCCGAATTTTATAGGTTGGGTTGGGTTGCCATATACATTCGGTTTATTCAGGTCGACAACCCGACCAACCTGAAAAAATCCCCCTAATCCAACCCAACCCATGTACACCCCTATTCAAGGTTTCAGAGGGGTTTTGTTGAGCTATAAAATCTAGCATCTTTTCTAATTTCAACAGCTTCAATGGCTGCCGCCAAATTCAACAAAAAGAAGGGTGTGAAACGGGATGATCCTCCATCAAAAAGGAAGAAGAAGGACGAGCTCTTTACGCCTAAACGTTCCAAGGAGGAGGAGGATGATTCTGACCTTTCTGATGGTCTTGATGTTGATGGTGATGAAGAAGGATCTGTGTCTGGTTTTTCTGATGGTGAGTCTGGTTCTTCTGACGGTGATGACCCTTTGGCTGATGATTTCCTCCAAGGAAGTGATGAAGGTGATTACCCTTTTCTTTTGTTTCGCTAATAATGCCTTTTTCTTCTCATGTTATTTTATTTAGGTGGGTTTTATTGAAAAATTTTGTTTTATTATTATTCTTATTATTTTTTAATTCTTTACTGCAGAGAATGGTTCGGGCTCGGTTTTAGGTTCTGATGAATCTGACATCGAAGATAAGTCAAGAATTATCGATGAAGAAAGGGAGAGGGAAGAAAAAGATGCAGTGGATGAAATGCAGCTCAATATTAGAGAAGAATCTGACGAGTTTAGATTACAAACCAAGGAGGTTACATTTATATGCAGTTTCACTATGTTTAATTTATGTGACTTTTATAATTGTTGGTTTGTATGTTTTTCTTTATTTTTGTAATGTTTTTGTTATTACCACGTTTTACCAGGAGCTTGAAGAAGAGGCCCTTAGACCTCCTGACCTTTCAAATTTACAAAGGCGAATAAGAGAGAGTATGCATTTTCATTTGTTTTCTGTGATTTATTCTTTTACCTGTCTTCTCCTGTACTTATGTTGCCCCATGTTTGCTGAAATGTAATTTTAGTTGTTCGAGTGCTTACAAATTTCAAGGCTTTGAGGCAAGAGGGGGCAACCCGGAAGGATTATGTCAAACATCTTAAGAAAGATATTGGTTCCTACTATGGCTATAACGAATTTCTTATTGGGGTTCTAGTTGAGGTAATAAGTCATGTATATTTATTTTCTTATAACATGTTAGTGTTGGGAGTAAATGTTGATATGAAAGTTAATGATCAACCTGCTTCGTCTTCAGATGTTTCCAGTTGTTGAGCTAATGGAACTTATTGAAGCTTTTGAAAAGCCTAGGCCAATATGTTTGCGGACTAACACCTTAAAGGTAATTAACATACGGTATCCCTGTTTGTTATACGAAACTAGTTATAATTTGTATCTTATTCAAATACTCCTCTTTGCTCTTAGACAAGAAGGCGGGATCTGGCTGATGTTCTGATTAACAGAGGAGTAAACCTAGATCCTCTAAGCAAGTGGTCAAAGGTAAGGTGCTTCGTTTCTGCAAATTTATCCTCCATTCCAACGTCTTTCTTTTTTGTAATTAAGTAGTTATATATTTCCTATACAAAATGCAGGTTGGACTTGTTGTATATGATTCCCAAGTGCCAATTGGAGCTACTCCTGAATATATGGCTGGTTTTTACATGGTAAGCTGTGTACTAATCATATTACATCCTTATCTCCATTCCACATCGCTTTAAGTAGTGAATATGTATGTTTTGTTTGTTCAGCTACAAGGGGCGAGCTCCTTTCTGCCTGTTATGGCCCTTGCTCCTCAGGAAAAAGAACGAATCATTGACATGGCGTAAGTGAATAAAGTACTTCTAAAACGTCGTATGCCAAAAAGTTGGTTTATTTGAAATCTATTCTCTATCTCTTGTTCATGGCCACTGGCTTTAACCTTGTGTCTTTTTCTTACACTTTGTTAAAATGAAATTTGCTTGATTCTAAAAACTAGCTAATAGCAATTCATTATATGCTACAGTAGCATTGCTATGCTAGCATCAATGGAATTTATTACACATTTTTTTCATCAATGTCTCCTCTTATAAGGGTTTGAAACTATTGCAGGGCTGCTCCTGGTGGTAAAACAACTTACATAGCGGCACTCATGAAAAATAGTGGTACGTAGTACCTAATTCAGATATGTTGATGTTAATCATATATTCCTCCGCATGTCATAAAGAAAAATTATGTGGAATCCGTCTTGGAATGCCAAGTCGATATACAGGCTCTAGTTATTGAAGTAATTTGCTGAACATATCCTTTTATTAAATGTCTTTCTATGGAGTAAGTATATTATTCTTATGCGAAACAAGAACTAGTTGAAGCAGTAGGATATTGCAAAAAGAGGTAAGGAGTAGGGGTGTTAATGGGTTCAGTTTTTTGAGGTCAATTTTAACCAAACTAGAACAAACTGACAGAAAAAGTCCTATAGAATGCCACTGAATCAAACCAATTAAGGACTGCAAACCTATTTTAAATATAAGTGGTCAGTTCAGTTCAATCCAATTCAGTTCTTAGTTTTAAACAATTATGAAAATGGATGCCTACGAGTTCAAGTTCTATGGATATTAGTGCCAGGTTTTTTAGTTTCTTGAAGAAATTGCAATTAAAAAAGAGCCCACAAATAATCAAAGAATCGAAAAGTAGAGACCAGAGATTATCAACTCTTATAGCTCAATGGAGATCCTTTTTGTAACTATCCCGGAGAAAAACATGAGAAAGCCACATTTCATATAAAATTGAACCAAAATCTTGGTCTGGATTTAATTTTTCTTGCCTTTTGTTACCCCTATTTGGAGGATGATTGGGCACACCGAGGGAAGATGAAGAAAAATTGGCAAGATCAGTTTCGAAATTAAACTACCATGGATTGGTGTAGTTTATGAAAAAGTTAATGGGTTTGGATGGTAGTCTCGGACCTAGGATGTATAATCCTACAAGTTTTCTTGATAACCAAATCTAGTAGTGTAGTGTTAGATGGTTGTTCCATGAGATTTGATGAAATGCATGCAAGTGGTCTCGGATGCTCATGGATATGAAAAGAAACTGGTTTCTAATTTTGCTTAAATTTGCATGGAAGAATTAGTTAAAAATCTGTATTTGAAGCCCAAAACAAAGAAGTAGGATGTGAAATTTTGGAAGTAGTTTCATCTAATTAGGCGGATAAGCATTAGAGAAATGTTGTTGGCTCTTTGTTTCTTTTGAGAAACGTCCACATTATGATTCCTCAAAGACATAAAAGGCGGCTCATCTTGTACCATGGCACGTGTGCTCATTGTTGCATGTGTAATAACTTTGTTTATTTTATTTGCCAATGGTGATGTAGAATTCCTTATGATCTGATTCTATTTTTTCTAAAATTCTTCAACTATCTCAGGTATAATATATGCTAATGAGATGAAAGCACCAAGACTGAAGTCACTAACTGCGAATATACATCGGATGGGAGTGACGAATACTGTTGTCTGTAACTATGATGGGAAGGAGGTCTGTTTTTCATTATTCTTACCTCCATCTCCGTTACTACTATCTAATTTATTATATTATGTGTTAGAATTTTCTATATAGTTGGGTTTGGTTTAAATATGCAAATATTATTTCATATTACTTTTTTTATTGGGGAAAATACATAACCATGTAAGTCGGAAGCTTATACTAAAGTTTTTTTCTTTCTTTCTATTGTATATTCAAATTCAGCTCCCAAAAGTATTGGGCATGAATACAGCCGATAGAGTTCTATTAGATGCCCCTTGCAGTGGATCTGGAGTAAGTACCTTGTGTCTATATAATGTTCTCTTTATTTCCTCGGAAGATTATTTAAAAACTAGCAATTTTTAATTCCCCATCCCCAGGCCCTATGAAAAGAAAAATCATATTGCTAAATCAGAGTACATTACTTCGTTTGATCTCTCCAATAATGGCTTATTCTCTTCCTTCATTGTTCTTTAAACTGAATCTTGGTTTTATTCCTTAGGTTGTATCTAAGGATGAATCTGTTAAAACCTCAAAAAGCCTAGAAGAAATCCAGAAATGTGCTCAGTTGCAGAAGGTATTTCTGATCGTTATGTGTTTTTGGGTGTGACTCATAAAATATTCCGTGAATTACTTTGGTACCGTTGCACAAAGGTGAATTTCCTAAAAATCTCAATCTGTGTTCCACACAGCAACTTATACTTGCTGCGATTGACATGGTTGATGCAAATTCAAAATCTGGGGGATATGTTGTTTACTCCACATGCTCCATAATGGTTGATGAGGTTTGTATGAATGCATCCTGTCATCATTCTTTCTTGTTGATGCTATATTCATATTGTCTATTACTAATTGCACATTCACATCTTGCAGAATGAAGGAGTTGTTGACTATGCACTAAAAAAGAGGGATGTGAAGCTTGTGCCATGTGGCCTTGATTTTGGACGTCCTGGGTAG ATGCTCGGTCGCGCCGCCATCGACCAAAGCCCGTCCCGCGTCGCCTCCGTCGTTGCCCAGCCCTCTGTCGCCATCGTGCCTCGAGCAGCAGCTGCTAGTCGTTGTGGTGCTCGAGTTGCCGTGCGTTTTCTGTGGGTCTTCGTCAAGCTCTTCCTTCTCCCGCGTCGTCGCGTCCGCAGGCAGCAGCAGACCGCCGCCGTTCAAGCTTGCGCTGTCATCTCCGTTGTTCGGAGCCGTTGTGTGGTTCGAAATCATCCCTGTCTGGTGACCCATCGTCGGTGGAGCCTTAAACTTGAACACCCAGTGCTTAAGGTTCGCTTAGAAGCGTTAGAGCTTCCGTGCGTTAAGCATGAGTTGAGAGCATGTGGTCATACGTATATGCTTGGTGGGCATAGTACGGTCAATACGTTGCTTAGTCATCGAGGCCTTGGGTGTAAATGGTCAAGGGTCGATGCACAGTTCGAGGCCTTGGGTATAAATGGTCAAGGGTCGAACGCCGAGCTCTGTAGAGAAGTGTCGAGGCCCTGGAGCCATGTGAGGGCTAAGCATGAGCGGGAATGCCGGGGCCGTGAGGTGCCGAATTCGGATTCCGAATCCTGGGCCTGGGGCGTTACAGGTGTAAATGGCAAAGCCAGCTTGTTGAGCCCTAATTGGTTGCTCGTTCTTGTTCGCTTTGTAGTTCAAGCTTCAATGGCTGCCGCCAAATTCAACAAAAAGAAGGGTGTGAAACGGGATGATCCTCCATCAAAAAGGAAGAAGAAGGACGAGCTCTTTACGCCTAAACGTTCCAAGGAGGAGGAGGATGATTCTGACCTTTCTGATGGTCTTGATGTTGATGGTGATGAAGAAGGATCTGTGTCTGGTTTTTCTGATGGTGAGTCTGGTTCTTCTGACGGTGATGACCCTTTGGCTGATGATTTCCTCCAAGGAAGTGATGAAGAGAATGGTTCGGGCTCGGTTTTAGGTTCTGATGAATCTGACATCGAAGATAAGTCAAGAATTATCGATGAAGAAAGGGAGAGGGAAGAAAAAGATGCAGTGGATGAAATGCAGCTCAATATTAGAGAAGAATCTGACGAGTTTAGATTACAAACCAAGGAGGAGCTTGAAGAAGAGGCCCTTAGACCTCCTGACCTTTCAAATTTACAAAGGCGAATAAGAGAGATTGTTCGAGTGCTTACAAATTTCAAGGCTTTGAGGCAAGAGGGGGCAACCCGGAAGGATTATGTCAAACATCTTAAGAAAGATATTGGTTCCTACTATGGCTATAACGAATTTCTTATTGGGGTTCTAGTTGAGATGTTTCCAGTTGTTGAGCTAATGGAACTTATTGAAGCTTTTGAAAAGCCTAGGCCAATATGTTTGCGGACTAACACCTTAAAGACAAGAAGGCGGGATCTGGCTGATGTTCTGATTAACAGAGGAGTAAACCTAGATCCTCTAAGCAAGTGGTCAAAGGTTGGACTTGTTGTATATGATTCCCAAGTGCCAATTGGAGCTACTCCTGAATATATGGCTGGTTTTTACATGCTACAAGGGGCGAGCTCCTTTCTGCCTGTTATGGCCCTTGCTCCTCAGGAAAAAGAACGAATCATTGACATGGCGGCTGCTCCTGGTGGTAAAACAACTTACATAGCGGCACTCATGAAAAATAGTGGTATAATATATGCTAATGAGATGAAAGCACCAAGACTGAAGTCACTAACTGCGAATATACATCGGATGGGAGTGACGAATACTGTTGTCTGTAACTATGATGGGAAGGAGCTCCCAAAAGTATTGGGCATGAATACAGCCGATAGAGTTCTATTAGATGCCCCTTGCAGTGGATCTGGAGTTGTATCTAAGGATGAATCTGTTAAAACCTCAAAAAGCCTAGAAGAAATCCAGAAATGTGCTCAGTTGCAGAAGCAACTTATACTTGCTGCGATTGACATGGTTGATGCAAATTCAAAATCTGGGGGATATGTTGTTTACTCCACATGCTCCATAATGGTTGATGAGAATGAAGGAGTTGTTGACTATGCACTAAAAAAGAGGGATGTGAAGCTTGTGCCATGTGGCCTTGATTTTGGACGTCCTGGGTAG ATGCTCGGTCGCGCCGCCATCGACCAAAGCCCGTCCCGCGTCGCCTCCGTCGTTGCCCAGCCCTCTGTCGCCATCGTGCCTCGAGCAGCAGCTGCTAGTCGTTGTGGTGCTCGAGTTGCCGTGCGTTTTCTGTGGGTCTTCGTCAAGCTCTTCCTTCTCCCGCGTCGTCGCGTCCGCAGGCAGCAGCAGACCGCCGCCGTTCAAGCTTGCGCTGTCATCTCCGTTGTTCGGAGCCGTTGTGTGGTTCGAAATCATCCCTGTCTGGTGACCCATCGTCGGTGGAGCCTTAAACTTGAACACCCAGTGCTTAAGGTTCGCTTAGAAGCGTTAGAGCTTCCGTGCGTTAAGCATGAGTTGAGAGCATGTGGTCATACGTATATGCTTGGTGGGCATAGTACGGTCAATACGTTGCTTAGTCATCGAGGCCTTGGGTGTAAATGGTCAAGGGTCGATGCACAGTTCGAGGCCTTGGGTATAAATGGTCAAGGGTCGAACGCCGAGCTCTGTAGAGAAGTGTCGAGGCCCTGGAGCCATGTGAGGGCTAAGCATGAGCGGGAATGCCGGGGCCGTGAGGTGCCGAATTCGGATTCCGAATCCTGGGCCTGGGGCGTTACAGGTGTAAATGGCAAAGCCAGCTTGTTGAGCCCTAATTGGTTGCTCGTTCTTGTTCGCTTTGTAGTTCAAGCTTCAATGGCTGCCGCCAAATTCAACAAAAAGAAGGGTGTGAAACGGGATGATCCTCCATCAAAAAGGAAGAAGAAGGACGAGCTCTTTACGCCTAAACGTTCCAAGGAGGAGGAGGATGATTCTGACCTTTCTGATGGTCTTGATGTTGATGGTGATGAAGAAGGATCTGTGTCTGGTTTTTCTGATGGTGAGTCTGGTTCTTCTGACGGTGATGACCCTTTGGCTGATGATTTCCTCCAAGGAAGTGATGAAGAGAATGGTTCGGGCTCGGTTTTAGGTTCTGATGAATCTGACATCGAAGATAAGTCAAGAATTATCGATGAAGAAAGGGAGAGGGAAGAAAAAGATGCAGTGGATGAAATGCAGCTCAATATTAGAGAAGAATCTGACGAGTTTAGATTACAAACCAAGGAGGAGCTTGAAGAAGAGGCCCTTAGACCTCCTGACCTTTCAAATTTACAAAGGCGAATAAGAGAGATTGTTCGAGTGCTTACAAATTTCAAGGCTTTGAGGCAAGAGGGGGCAACCCGGAAGGATTATGTCAAACATCTTAAGAAAGATATTGGTTCCTACTATGGCTATAACGAATTTCTTATTGGGGTTCTAGTTGAGATGTTTCCAGTTGTTGAGCTAATGGAACTTATTGAAGCTTTTGAAAAGCCTAGGCCAATATGTTTGCGGACTAACACCTTAAAGACAAGAAGGCGGGATCTGGCTGATGTTCTGATTAACAGAGGAGTAAACCTAGATCCTCTAAGCAAGTGGTCAAAGGTTGGACTTGTTGTATATGATTCCCAAGTGCCAATTGGAGCTACTCCTGAATATATGGCTGGTTTTTACATGCTACAAGGGGCGAGCTCCTTTCTGCCTGTTATGGCCCTTGCTCCTCAGGAAAAAGAACGAATCATTGACATGGCGGCTGCTCCTGGTGGTAAAACAACTTACATAGCGGCACTCATGAAAAATAGTGGTATAATATATGCTAATGAGATGAAAGCACCAAGACTGAAGTCACTAACTGCGAATATACATCGGATGGGAGTGACGAATACTGTTGTCTGTAACTATGATGGGAAGGAGCTCCCAAAAGTATTGGGCATGAATACAGCCGATAGAGTTCTATTAGATGCCCCTTGCAGTGGATCTGGAGTTGTATCTAAGGATGAATCTGTTAAAACCTCAAAAAGCCTAGAAGAAATCCAGAAATGTGCTCAGTTGCAGAAGCAACTTATACTTGCTGCGATTGACATGGTTGATGCAAATTCAAAATCTGGGGGATATGTTGTTTACTCCACATGCTCCATAATGGTTGATGAGAATGAAGGAGTTGTTGACTATGCACTAAAAAAGAGGGATGTGAAGCTTGTGCCATGTGGCCTTGATTTTGGACGTCCTGGGTAG MLGRAAIDQSPSRVASVVAQPSVAIVPRAAAASRCGARVAVRFLWVFVKLFLLPRRRVRRQQQTAAVQACAVISVVRSRCVVRNHPCLVTHRRWSLKLEHPVLKVRLEALELPCVKHELRACGHTYMLGGHSTVNTLLSHRGLGCKWSRVDAQFEALGINGQGSNAELCREVSRPWSHVRAKHERECRGREVPNSDSESWAWGVTGVNGKASLLSPNWLLVLVRFVVQASMAAAKFNKKKGVKRDDPPSKRKKKDELFTPKRSKEEEDDSDLSDGLDVDGDEEGSVSGFSDGESGSSDGDDPLADDFLQGSDEENGSGSVLGSDESDIEDKSRIIDEEREREEKDAVDEMQLNIREESDEFRLQTKEELEEEALRPPDLSNLQRRIREIVRVLTNFKALRQEGATRKDYVKHLKKDIGSYYGYNEFLIGVLVEMFPVVELMELIEAFEKPRPICLRTNTLKTRRRDLADVLINRGVNLDPLSKWSKVGLVVYDSQVPIGATPEYMAGFYMLQGASSFLPVMALAPQEKERIIDMAAAPGGKTTYIAALMKNSGIIYANEMKAPRLKSLTANIHRMGVTNTVVCNYDGKELPKVLGMNTADRVLLDAPCSGSGVVSKDESVKTSKSLEEIQKCAQLQKQLILAAIDMVDANSKSGGYVVYSTCSIMVDENEGVVDYALKKRDVKLVPCGLDFGRPG Homology
BLAST of Spg018794 vs. NCBI nr
Match: XP_038897895.1 (probable 28S rRNA (cytosine(4447)-C(5))-methyltransferase [Benincasa hispida]) HSP 1 Score: 801.2 bits (2068), Expect = 7.0e-228 Identity = 430/475 (90.53%), Postives = 444/475 (93.47%), Query Frame = 0
BLAST of Spg018794 vs. NCBI nr
Match: XP_008463018.1 (PREDICTED: probable 28S rRNA (cytosine(4447)-C(5))-methyltransferase [Cucumis melo] >KAA0048267.1 putative 28S rRNA (cytosine(4447)-C(5))-methyltransferase [Cucumis melo var. makuwa] >TYK07989.1 putative 28S rRNA (cytosine(4447)-C(5))-methyltransferase [Cucumis melo var. makuwa]) HSP 1 Score: 793.5 bits (2048), Expect = 1.5e-225 Identity = 428/477 (89.73%), Postives = 444/477 (93.08%), Query Frame = 0
BLAST of Spg018794 vs. NCBI nr
Match: XP_022981419.1 (probable 28S rRNA (cytosine(4447)-C(5))-methyltransferase [Cucurbita maxima]) HSP 1 Score: 786.2 bits (2029), Expect = 2.3e-223 Identity = 424/476 (89.08%), Postives = 438/476 (92.02%), Query Frame = 0
BLAST of Spg018794 vs. NCBI nr
Match: XP_023525424.1 (probable 28S rRNA (cytosine(4447)-C(5))-methyltransferase [Cucurbita pepo subsp. pepo]) HSP 1 Score: 785.4 bits (2027), Expect = 4.0e-223 Identity = 426/476 (89.50%), Postives = 439/476 (92.23%), Query Frame = 0
BLAST of Spg018794 vs. NCBI nr
Match: KAG6607741.1 (26S rRNA (cytosine-C(5))-methyltransferase NOP2B, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 784.3 bits (2024), Expect = 8.9e-223 Identity = 423/476 (88.87%), Postives = 440/476 (92.44%), Query Frame = 0
BLAST of Spg018794 vs. ExPASy Swiss-Prot
Match: Q8VYM6 (26S rRNA (cytosine-C(5))-methyltransferase NOP2B OS=Arabidopsis thaliana OX=3702 GN=NOP2B PE=1 SV=1) HSP 1 Score: 599.4 bits (1544), Expect = 5.3e-170 Identity = 328/482 (68.05%), Postives = 385/482 (79.88%), Query Frame = 0
BLAST of Spg018794 vs. ExPASy Swiss-Prot
Match: Q9FG73 (25S rRNA (cytosine-C(5))-methyltransferase NOP2A OS=Arabidopsis thaliana OX=3702 GN=NOP2A PE=1 SV=1) HSP 1 Score: 568.2 bits (1463), Expect = 1.3e-160 Identity = 320/489 (65.44%), Postives = 373/489 (76.28%), Query Frame = 0
BLAST of Spg018794 vs. ExPASy Swiss-Prot
Match: Q922K7 (Probable 28S rRNA (cytosine-C(5))-methyltransferase OS=Mus musculus OX=10090 GN=Nop2 PE=1 SV=1) HSP 1 Score: 434.9 bits (1117), Expect = 1.7e-120 Identity = 241/442 (54.52%), Postives = 315/442 (71.27%), Query Frame = 0
BLAST of Spg018794 vs. ExPASy Swiss-Prot
Match: P46087 (Probable 28S rRNA (cytosine(4447)-C(5))-methyltransferase OS=Homo sapiens OX=9606 GN=NOP2 PE=1 SV=2) HSP 1 Score: 424.9 bits (1091), Expect = 1.8e-117 Identity = 243/467 (52.03%), Postives = 331/467 (70.88%), Query Frame = 0
BLAST of Spg018794 vs. ExPASy Swiss-Prot
Match: O94268 (25S rRNA (cytosine-C(5))-methyltransferase nop2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=nop2 PE=1 SV=1) HSP 1 Score: 404.8 bits (1039), Expect = 1.9e-111 Identity = 246/483 (50.93%), Postives = 326/483 (67.49%), Query Frame = 0
BLAST of Spg018794 vs. ExPASy TrEMBL
Match: A0A5D3CCE3 (Putative 28S rRNA (Cytosine(4447)-C(5))-methyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold265G001250 PE=3 SV=1) HSP 1 Score: 793.5 bits (2048), Expect = 7.1e-226 Identity = 428/477 (89.73%), Postives = 444/477 (93.08%), Query Frame = 0
BLAST of Spg018794 vs. ExPASy TrEMBL
Match: A0A1S3CJU2 (probable 28S rRNA (Cytosine(4447)-C(5))-methyltransferase OS=Cucumis melo OX=3656 GN=LOC103501261 PE=3 SV=1) HSP 1 Score: 793.5 bits (2048), Expect = 7.1e-226 Identity = 428/477 (89.73%), Postives = 444/477 (93.08%), Query Frame = 0
BLAST of Spg018794 vs. ExPASy TrEMBL
Match: A0A6J1J1T4 (probable 28S rRNA (Cytosine(4447)-C(5))-methyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111480547 PE=3 SV=1) HSP 1 Score: 786.2 bits (2029), Expect = 1.1e-223 Identity = 424/476 (89.08%), Postives = 438/476 (92.02%), Query Frame = 0
BLAST of Spg018794 vs. ExPASy TrEMBL
Match: A0A6J1FRL9 (probable 28S rRNA (Cytosine(4447)-C(5))-methyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111446614 PE=3 SV=1) HSP 1 Score: 779.2 bits (2011), Expect = 1.4e-221 Identity = 418/470 (88.94%), Postives = 436/470 (92.77%), Query Frame = 0
BLAST of Spg018794 vs. ExPASy TrEMBL
Match: A0A6J1FCL8 (probable 28S rRNA (Cytosine(4447)-C(5))-methyltransferase isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111442793 PE=3 SV=1) HSP 1 Score: 778.9 bits (2010), Expect = 1.8e-221 Identity = 425/475 (89.47%), Postives = 439/475 (92.42%), Query Frame = 0
BLAST of Spg018794 vs. TAIR 10
Match: AT4G26600.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 599.4 bits (1544), Expect = 3.8e-171 Identity = 328/482 (68.05%), Postives = 385/482 (79.88%), Query Frame = 0
BLAST of Spg018794 vs. TAIR 10
Match: AT5G55920.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 568.2 bits (1463), Expect = 9.4e-162 Identity = 320/489 (65.44%), Postives = 373/489 (76.28%), Query Frame = 0
BLAST of Spg018794 vs. TAIR 10
Match: AT3G13180.1 (NOL1/NOP2/sun family protein / antitermination NusB domain-containing protein ) HSP 1 Score: 106.7 bits (265), Expect = 7.7e-23 Identity = 70/173 (40.46%), Postives = 104/173 (60.12%), Query Frame = 0
BLAST of Spg018794 vs. TAIR 10
Match: AT1G06560.1 (NOL1/NOP2/sun family protein ) HSP 1 Score: 69.7 bits (169), Expect = 1.0e-11 Identity = 74/283 (26.15%), Postives = 102/283 (36.04%), Query Frame = 0
BLAST of Spg018794 vs. TAIR 10
Match: AT4G17590.1 (CONTAINS InterPro DOMAIN/s: Bacterial Fmu (Sun)/eukaryotic nucleolar NOL1/Nop2p (InterPro:IPR001678); BEST Arabidopsis thaliana protein match is: S-adenosyl-L-methionine-dependent methyltransferases superfamily protein (TAIR:AT4G26600.1); Has 459 Blast hits to 368 proteins in 186 species: Archae - 2; Bacteria - 0; Metazoa - 137; Fungi - 144; Plants - 100; Viruses - 0; Other Eukaryotes - 76 (source: NCBI BLink). ) HSP 1 Score: 68.6 bits (166), Expect = 2.3e-11 Identity = 43/98 (43.88%), Postives = 64/98 (65.31%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (cylindrica) v1
Date Performed: 2022-08-01
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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