
ClCG10G002040 (gene) Watermelon (Charleston Gray) v2.5
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.TCACACTCTCTCCCTAGCTCTGCATCTCAAAATACACACACACACACACAAAAATGGAGGGTTTAATCAAGGGTCTCATAGATGTTGCAATCGGCCACGACGGCGACGACAACGATCAACAGTCTCGCGACGACCGATCCAGATCCACTTGGGCTCAGGTCAGTCAGTGAGTTCTGTATTAGTGTCTCTATTGGGAGATTGGGGGCTCGATTTCGTTTAGGTTTTGTAAAGATTTGGTGTTGAAATTCTTCAGGTGGTTACTGGGGAGGAAGATGGGGGAGATCGGAGACAGGGGTATGATCGGAATCGGAGGGACAATGAGGTTTGTTTTGGGCAGCGATTGATTCTGGAATTGGGTGTATTTTGAGGGTTTTGGATTGGATTTGATGTGGAATTGAAATGTGGGGTTTTATTGATTGATTTTTTAGGAAGAGGGTCGTTCACGGCGTGAGGAGTGGGAGGTTCAGGGTTCGAGGATTTCTGGTCAACGGCAACAGGTTAGATCTGTTTACTTCACCATTCCAAAAAGTTGAGATCGTTTTTTCTTTGTTCTTCTCATTATTGTACTACTCTCAAGACGCTTTAATGCTGTTTACTTTGAATGAGATTGTAGCATTTTGAAAGCTTAAGAAGTCAAGAAATTACAATGTTGAATGTATGAGAGAACTATCTTCTATCAAAGTATTTTGAATTCGTATCTAATGGTTATTAGGGGTGTGCAGGTTTTTGAATCTATATTCAACGGTTAATTATAAGCTGTCACATCAAAATAATTTTTTTTAGGGAGTGGGGTCTTGATCCTATGCTTAGTATATATTAAACTCACTTGAAGGTTCGAACTTGGGACCTCTTAGCCAGTATGACCAAGAGACCCCAAGCCCTTGCCAATAGGACCGTCCCTTAAGGGCCTAATAAAATAACATTTTCTATTAGAAAAATATAATATCATAAAGAAATCAAGGAGAAAATTTTTGGTTTCTACCTAAAACACTTTGTAAGAAGGGAGATGGTATCATTATTTTATCTATGTAACCAAGGTCTTATCTACTTCTAATCAATTTGGGGCCGTGTTAATTATTTGGAACGTCAAATCTCATTGATATTTATTCATTGAGCCTAAAACAATGGAATCTCAACCTTTCTTTTACATGCCCGGTGTTGTAAAGATTTATATACTTTTCTTCATTATTTCTTTAAATTCTATTTATCTATACTGGGTATCCCCATATGTATATCGGGTAATGCTTCATTATTTCAGCCTCTTCCTATGACTTATGATTTAATTCATATCTTGGTATCATTCAAGTAGCTTATTTTAGAAAGAGTACGTTTCCTTCAAGTGATGATAAATAGTGTAGTGGCTTTGATTAGATTCACTTATGTGGCTTGGTGTTTTCATCTATTTTTTTAGTATTTTAGTCCTAATAGCAGTTTCATTTCCCCCACTCTGATTGATATATTGCTGACTCACGTATCAAATGCATGAACAGAGTGAATATGGTAGTGAGCATGGTTACAACAGAAACCAGTGGCCTAAAGAGGTCATTTTTCTTGTTCTTTATTTCTCAGTGTTGTTTTTATTCAGTGAAATCAGTCAGTTTTTTTCACTCATATGTAAACTGCACTGTCCAGGAGAGCTCCGAGGAGAAAAATGATGGGTGGGAGACTGTCCACAAAAAGCCGCCTAGGAGACAACACAAGGTTACTTAATTAACATACGAAAAATATTTTGACAAAATGCATATTGGGTGTGTTATTTTATATGATTAATTAGTCTGAATACTTCCTTAGGAGAGAAGCTGAAGCAAAATTTCAGTTCTTTTATACATTGACGAGAGTTAGTGTTATGGCAAGATCTAATTGGGTTTAATGTCTGAAACGGATGGTTTTGTAACATATCGATCAGAATTAGTGGTATAGCTCTTGAAGTAAGCAACGTTTATAAGCATGAAAATCATGGGCATTTACGATAGTTTTCCATATAACTGGGGTGTACAATAGCATTACTGATGGTTAGTAAACCTCGAGTGTGGCATGTTTTTATTATACCTTTGCCGAACATGTTTAATCTGCAAAGGGTGTTCATCTTGGGATCGTGCTTCTTACTTAGCATCTGTGTGGTAGTCTGCTGTTTGGAGGATCAGTGATGTTTCTAATACAACATTATGTTAGCTTATGTTTTCATTTTCATTTTTGACAAAAGTTGTCCTTTCACCTAATTTTCTGCAAACTTTCCAGATTTTTTTACTAGTAATGAATTAGGTTTCATGGTAGTTGTTTGGACTTAAAATATTTGCTCCAAAACTTACTCGTGCAACAAATTTGTAGGTGCAAAAAGATAATTGGGAAGGATACAAACGGCCTGCCAGTGAACAAAATTACTCCGATGAGGTGGAAGTTGGTGCTGAGCTAGAACCCTCAGAAGATGAGCTTGCTGATTTGTCCTATGCATGTAACAAGCTTTGGGAACTTGATTTAAATCGTTTGGTACCTGGAAAAGATTATGAAATTGATTGTGGTGAAGGGAAGAGGGTCAGTGGAAGGGAAGATATGGCACAAGGAAGCCTCTTTAGTTGGGTTAGCGAAGACGTATTTAGGAAACCAACATTTTCACGCTTTTGTTCTCTACTTGATAACTACAATCCGTATCAAGGGAGCAAAGAAGTTGTGACACCTGAGGAAAAGCAAGAGCAGGAAGCATTCATTGAAGAAATTAGTAGAACTGCACCAATTAAGTACCTTCACAAGTATCTTTCATCCAAGGGAGTTGCATCCAATAACTATCAAGATTTTAAACGTTTACTGACTAGCCTGTGGTTCGATCTTTATGGTCGGGGTGGAACATCTGGTTCCTCTTCTGCTTTTGAGCATGTTTTTGTGGGAGAAATCAAGCAAAAAGGAGAACAAGAGGTTTCTGGTTTCCACAACTGGCTTCAGGTTAGTGCCCTTCTGAAATTCCTTTTCATACATTCGATAAGGCAATGGCAACAGGGGCGGAATGAGGGAGGAGAATTTTTCCCCTCTTGCTCATTTTTAGATTAGAAAGTTAAGCATAAAAAGTCAAGATATGAGATTTTTCTTCTTTACTTTGCTAAATTCAAAATTGAAAGATTATACATACATCTAAAAAGTTAGGAAGTGAAGTTTGCTCCTCCCTTTGTAAATTTTTGGCTCTGCCCCCTAAATGGCAACGAGCAACTTGTTAACCAATGACCGGTCTTTGAAAAGCTTGGCTCATTTCTTCTGTTTCGCTGTATTATAAAGCCTTAGACAACGACTGGATAAAAGCTTTGAACTTATAGGCTTATTAGTCGCCCCTATACGTTTTTTGACATGTGAAGTTGGCTGAGTCTTGTGGTCTAAAATGCGCAAATGATATACAACTTTTTGTCCGTAAATCTACCAGTCTATCATTTTCTTAGTATTAGTATTTTTCTTTGCTGGAGTTTCCTGAACTTGCTATATTTCTTATATCTGTTGTCCATGTTCATTTATTCCAAATACAGTTTTACCTTGAAGAAGCTAAAGGGAATGTTGACTATCAAGGTTACATTTTCCCCCGACGACGTGGCCAGTTTGTAAGTAACTCAACTTAACACTTTTTTTTTTCTTTTATTTTGGGGTAATTGATCATGAGATGTAAAAAACATAAATTGTAAATTTCCATGTCTTGCAGCATCACAGTGGAATTTTCTTAAGTCATTTGAAACTGCATCTGGCTGTTAGCATTAAATCAGGGGCAAACAATGAAACCAAACTTAAAGACTTCAAACGGAAAGATGATTATAGAACCCCCATTTCCATGTTCAGCACTATAAAAGAAACTACATATTTATTTATCAGAAAGCCAAAAAATTTGTGAACCTTTTGGTAGTTTCCATAAAAGATTAACCTTCATATACCTAATGTTGAGGAAATTGGCACCAAAGAAAAAGAGACCATCACTGGAAAGAAAGAAATTTTTATTAAGAAATTACAAAACTTTTTCACTCTCATTACTCACTACTTTTCTCATTTTAATTTTGTCCAACTTTCTCTAACTTTTCTTGGCTTACGTATGGGGACACACCTCCTATTTTTATCCTTGGAGCCCAAACAGAAGATTTTTCTAGGTTCTTCTTGGATCCATGATATCCTAGATACTTTTACGAATATATTATTATCTAAAGGAATATATTCTTTGGAGCCTAAAAAAAGGTTAGGATATGTCTATATCCTTACATTTGAGATATTTATTTATAATTTACATATTTCAACATAACTCTAGAATATTCTAATTTACACATTTAAGTCATATTGTAGATACTTGAAGAACCAACCTTCTAGATTAGTTAGTGCTCTTTCTATTTTAACACCTAACATTCTTCCCGCTATTAAATTTGCTTTGTTCCATCAAGTTGGATGGGAACAGCCTTTCCCACTTATAACTCAAGAGTTTGCCTCACTTTGTAGAAGATAAGCATTCTCTTCTGCGTAATCTAATACATGTCTCTTACTTAACGACTTGTTTGCCAACCCTGCAGCCTGATTCAGAAACTCAATTGCTTACCATTCAGTTTGAATGGAATGGTGTTCTCAAATCTGTCTCAAGCACTTTAATAGGAGTTAGCCCTGAGTTTGAAGTTGCACTCTATACACTATGCTTCTTCCTTGGTGGAGAGGACAACCATGTTGAGCTCGGACCGTATGCTGTTAATATCAAATGTTATCGATTAGGAAACAAAATCGGGTCTGTATTTCCTGTAGCAGACTCTTGAGTTCCTTCATTGAGATTAATCCAGTAAACTTATAAGAAAGGATTGTAACATAGATTAAGAGATAATTAGTATGAGATGTAACACCTGTAGAAGGTGACAACAATAGTATGTGATGGAAGAAGATGCTTCTCAGGATGATGTACTCATTGATTCCTAGGAGGATACTGAAACTTTTGTATTATTACATGGATTTGCAAAGGGTGTATTTCATATCTTCTTTACCTTATAAATGGTTTGTCAAGATACTGAGTCAAGCAACTGATGTTTGCTTTCATTTCTTCCCAAAACTGAATGCTTATTCTATAACATGAGGGAGAATCAGTACTTTGTGAACTGACTGCTGAAAATTTGAGTATTTTGTCATGTCTTGGAATGTTGAGAGCAGGGGATTTTGTTCTTTATTTGAGTGGCTGCCCCAACTAAGCAATGGTAATGGGAAAAGAACAAAGACTAGATGAAGGGGGAATAATGGCGATTCCCTCTTTTGATTCTGTCTAAAATATCAGCAGATCATCCTTGGGATAAACTTGAGATAATACATTTGAGTAAATATCTTTGGATTGGAGTTAGAAAGATATTTTAGGGGAAAGGTCTACGTCATAATCCTTATGGAAAGGAAGTTCCATTTTTTTTTTCTTTTTGTTGTAGATTATTGCCCATTTGATAACCATTTAGGCTCCGTTTAGTAACTATTTTGTTTTTTGTTTTTGGTTTCTGAAAATTAAGTTTATTTCCCCTTAGTTTCTTACCATGATTTGTATATTTCTAAAAGTAAAAAAACCAAATGATTACCAAAGGGAGCCTTAGCTCTTGATTTTTGGTTTTTTGAAAATTACATTCATAAATACTATACTACTTTCCATCTATAAGTTTTTGTGTTTTGTTATCCATTCTAATCTACTAATATTTTCAAAAACCAAACAAGTTTTGAAAACTAAAAAAACGTAGTTTTCAAAAGCTTTTTGTTTTTAGAATTTGACTAGAAATTCAAGTGTTTTCTTATAATAGGTGAAAACCATACTAAAAAAATTGCAAGATAACAAACTTAATTTTAAAAAGAGAACTAAAAATGAGATAGTTATCAAGGCTAACCTTGGTTTTAATTTTTAGAAAATTAAGCTTAAAAACCCTACTTCCACCTAAGGATATCTTTGTATTGCCACATATATTTTAGAGACATTTTCAATTCAAGTGAAGTTGTAAAAAACTTGAAAAGGTAGTTCTAGTTTTTAGAATTTGGTCGTTGAATCCAATGTTTCCTCAAAAAAGATAAAAACTATGGTAAAACGGGCTCTTAAACTTACAAATACCCATATTATTGTCTCATCTTTGTGAAATTAGAACACTTTTTTCTTATGGCTTCACTTATCAAGGGTTAGGTCGCGTTAGGTCACCTAGGAAATTTTACTTTTTTCTTATGCGCACTTCAACTAATTTCACGGACATACTGATGATTGATATTTCTCCCAACAATGAACAAGCCAATTGTAAGATTCTATTTATAAGTCAATTCAAGCACAATTCAATATAGTTACCATTTTAAAAGTCCATGTTCCCTTTTCTATTGTTGAACTAAAAAAAACTTTTGTTTATAAATGATTCTTTTATGCATGAAGCATGGTGTTCTGTACCTTATGGTTTAGGAAGAAAACAATTTCCTAAACCAATCCAATTGTTCTATTTTTCATATTTTTGAGCTAAAATATTCCAAAGAGATGATAACTGGTTTCATTAAATATTCTACTTTTTATGATCTAGGCTTTTATGAAAGTCTTGTAACTTATTCTACATCTTGCTAAATTTTTAATAATACAACGACATAACTAATACAAGTTGTCATAGCCAAAATGAGGATAATTCAATTGGCTTACAGATGAGTTAGGAACCAAAAGAGATGTTCGAATTCAACTATCTCTATTGAACTAGAAAGCAAATTGTCATAGAACTATCCATAATTACTTGTCCGGGCACTCTCATTTCAAGATTATTTTGAAAGAAATTAAGGATAAGAACTCATATTATAGGTTTTAGTTTTATTCCTCGAGATACCAATTTTTGTAACCCAGGGATGATTTCGTTTAATGAAGGTTCATGATATTTTTTTTCAAAAAAAAAAAAAAATTACAATTAGTTTGTTTGCTCCAAATTTCTCAAAATATTATCTTTAAACAAACATTCTCAACTAAAATATTAAATAACAAATACAATTATGTATAAAACATTTTAAATTAAATTGTCACAACTTTTGAACTTAGGTAATATTGCAATTTTGAAATAACAGCTCTGCCCGGGCCACGCCGGCGCCGGTGGTGAGATCGCGTCGCCCGACGCCCTTTGCACTCACCGCCGTTACGTTTTGATTTTTTTGTTTGTCAGAAAATTGTGTTCTCCGGCGACGAAGAAAATCAAATCAATGGCGCTTGATGAGCATATGTTCGAAGCTTTAAACCCTTCTCGTTTCATATCATTCTCTTTCCCCAATCCATGTAACTCTCATTCTTCTCTCCGAATTGCCGTGCTCGATTCGCCGATCGAACCCACCGGTTCCCCTTCGGTGGCCGCCATGTTCGTTCCGCCGGGCCTTGAAACCGACTGGATTTTTTCCACGGAATCTGGACACTATCACCTTCTGTTCGATTCCCCTGGAATTTCGCGCTTGATTCTAGTCGGAGATCAAGAATCGGTGACCGGCCATGATTCTCTTCTGATCTACAAGCGTCAGGATTCGGCTTCGACCTGGAGTCGACTGGTGGTAAGTTTACAGCCACTTCTTCTTGCTTTATTTCCCAAATCATGTTTCAAAAATGGTATTCCTGAAGTTCCGATTCTTAGTTTCGTCGATAACGTGATATGTAGTGTAGTTTTAGAGAGATGCATCGGTTCTTCAGTCGGTGAATTTCTGGTTGAGAATGTGGAAATTGAGAGAGAATCATTTGAAACTAGGGAATTTAGGAGACGTTTGAGGTTCAAGAGAATGCCGAACTTGATTCAAACAGAAATTCGTATAATTCCTGAGGCTAATCTTAATCTAGATGGTGTTGAAATTCAAAACATCGAGTTCCAACCAGATACTAGGGTTTTGGTTCATCCTTACTTACCTCCAATGGCAGCAAGCCTTTCATTGATTGCCTCCTCCATTGACGAACAGATTCAAACTGGTCATAGACCGAAAGCCCTGTGTGTTGGAGTTGGGGGTGGGGCTCTGCTTTCCTTCCTTGCAACCCATTTGGATTTTGAAGTTGTGGGTGTGGAAATGGACATGGAGGTTCTCAGAGTTGCACAACAGTATTTTGGATTGGTAGAGAATGAATTTCTTCACATCTCCATTGGAGATGCCACTGAATTTCTTGAAAATGCTTCAAAGTCAAATAAGAAACAGAAGTGTGGATCCTTTGGTGTTCATATGTCTTCTGAGTATGATGTGATCATGGTTGATTTGGATTCAAGTGATGCTCAAAACGGCATGAGTTCGCCGCCATTGGAGTTTGTTGGGAGAGATGTTCTTCTGAGTGCTAGATCAGTTCTTTCTGAACATGGGATTCTTGTAATGAATGTGATTCCTCTTGACAAGTTGTTCTTTGAGACATTGGTAGATGAATTCAGATCAGTTTTTGATGATTTGTTCCAGATAGATGTTGATAATGATGAAAATTTTGTCGTTATTGCTTCTGTGTGCCCAATCAAGTCTTTCCCTAATGTTACAAAGAATGAGATGAACAGCTTTTCATCCAGATTGAGATTACTCCTCTCAGGAGCATACATGGACTCCATAAAAAGGATATGA TCACACTCTCTCCCTAGCTCTGCATCTCAAAATACACACACACACACACAAAAATGGAGGGTTTAATCAAGGGTCTCATAGATGTTGCAATCGGCCACGACGGCGACGACAACGATCAACAGTCTCGCGACGACCGATCCAGATCCACTTGGGCTCAGGTGGTTACTGGGGAGGAAGATGGGGGAGATCGGAGACAGGGGTATGATCGGAATCGGAGGGACAATGAGGAAGAGGGTCGTTCACGGCGTGAGGAGTGGGAGGTTCAGGGTTCGAGGATTTCTGGTCAACGGCAACAGAGTGAATATGGTAGTGAGCATGGTTACAACAGAAACCAGTGGCCTAAAGAGGAGAGCTCCGAGGAGAAAAATGATGGGTGGGAGACTGTCCACAAAAAGCCGCCTAGGAGACAACACAAGGTGCAAAAAGATAATTGGGAAGGATACAAACGGCCTGCCAGTGAACAAAATTACTCCGATGAGGTGGAAGTTGGTGCTGAGCTAGAACCCTCAGAAGATGAGCTTGCTGATTTGTCCTATGCATGTAACAAGCTTTGGGAACTTGATTTAAATCGTTTGGTACCTGGAAAAGATTATGAAATTGATTGTGGTGAAGGGAAGAGGGTCAGTGGAAGGGAAGATATGGCACAAGGAAGCCTCTTTAGTTGGGTTAGCGAAGACGTATTTAGGAAACCAACATTTTCACGCTTTTGTTCTCTACTTGATAACTACAATCCGTATCAAGGGAGCAAAGAAGTTGTGACACCTGAGGAAAAGCAAGAGCAGGAAGCATTCATTGAAGAAATTAGTAGAACTGCACCAATTAAGTACCTTCACAAGTATCTTTCATCCAAGGGAGTTGCATCCAATAACTATCAAGATTTTAAACGTTTACTGACTAGCCTGTGGTTCGATCTTTATGGTCGGGGTGGAACATCTGGTTCCTCTTCTGCTTTTGAGCATGTTTTTGTGGGAGAAATCAAGCAAAAAGGAGAACAAGAGGTTTCTGGTTTCCACAACTGGCTTCAGTTTTACCTTGAAGAAGCTAAAGGGAATGTTGACTATCAAGGTTACATTTTCCCCCGACGACGTGGCCAGTTTCCTGATTCAGAAACTCAATTGCTTACCATTCAGTTTGAATGGAATGGTGTTCTCAAATCTGTCTCAAGCACTTTAATAGGAGTTAGCCCTGAGTTTGAAGTTGCACTCTATACACTATGCTTCTTCCTTGGTGGAGAGGACAACCATGTTGAGCTCGGACCGTATGCTGTTAATATCAAATGTTATCGATTAGGAAACAAAATCGGGTCTCTCTGCCCGGGCCACGCCGGCGCCGGTGGTGAGATCGCGTCGCCCGACGCCCTTTGCACTCACCGCCGTTACGTTTTGATTTTTTTGTTTGTCAGAAAATTGTGTTCTCCGGCGACGAAGAAAATCAAATCAATGGCGCTTGATGAGCATATGTTCGAAGCTTTAAACCCTTCTCGTTTCATATCATTCTCTTTCCCCAATCCATGTAACTCTCATTCTTCTCTCCGAATTGCCGTGCTCGATTCGCCGATCGAACCCACCGGTTCCCCTTCGGTGGCCGCCATGTTCGTTCCGCCGGGCCTTGAAACCGACTGGATTTTTTCCACGGAATCTGGACACTATCACCTTCTGTTCGATTCCCCTGGAATTTCGCGCTTGATTCTAGTCGGAGATCAAGAATCGGTGACCGGCCATGATTCTCTTCTGATCTACAAGCGTCAGGATTCGGCTTCGACCTGGAGTCGACTGGTGGTAAGTTTACAGCCACTTCTTCTTGCTTTATTTCCCAAATCATGTTTCAAAAATGGTATTCCTGAAGTTCCGATTCTTAGTTTCGTCGATAACGTGATATGTAGTGTAGTTTTAGAGAGATGCATCGGTTCTTCAGTCGGTGAATTTCTGGTTGAGAATGTGGAAATTGAGAGAGAATCATTTGAAACTAGGGAATTTAGGAGACGTTTGAGGTTCAAGAGAATGCCGAACTTGATTCAAACAGAAATTCGTATAATTCCTGAGGCTAATCTTAATCTAGATGGTGTTGAAATTCAAAACATCGAGTTCCAACCAGATACTAGGGTTTTGGTTCATCCTTACTTACCTCCAATGGCAGCAAGCCTTTCATTGATTGCCTCCTCCATTGACGAACAGATTCAAACTGGTCATAGACCGAAAGCCCTGTGTGTTGGAGTTGGGGGTGGGGCTCTGCTTTCCTTCCTTGCAACCCATTTGGATTTTGAAGTTGTGGGTGTGGAAATGGACATGGAGGTTCTCAGAGTTGCACAACAGTATTTTGGATTGGTAGAGAATGAATTTCTTCACATCTCCATTGGAGATGCCACTGAATTTCTTGAAAATGCTTCAAAGTCAAATAAGAAACAGAAGTGTGGATCCTTTGGTGTTCATATGTCTTCTGAGTATGATGTGATCATGGTTGATTTGGATTCAAGTGATGCTCAAAACGGCATGAGTTCGCCGCCATTGGAGTTTGTTGGGAGAGATGTTCTTCTGAGTGCTAGATCAGTTCTTTCTGAACATGGGATTCTTGTAATGAATGTGATTCCTCTTGACAAGTTGTTCTTTGAGACATTGGTAGATGAATTCAGATCAGTTTTTGATGATTTGTTCCAGATAGATGTTGATAATGATGAAAATTTTGTCGTTATTGCTTCTGTGTGCCCAATCAAGTCTTTCCCTAATGTTACAAAGAATGAGATGAACAGCTTTTCATCCAGATTGAGATTACTCCTCTCAGGAGCATACATGGACTCCATAAAAAGGATATGA ATGGAGGGTTTAATCAAGGGTCTCATAGATGTTGCAATCGGCCACGACGGCGACGACAACGATCAACAGTCTCGCGACGACCGATCCAGATCCACTTGGGCTCAGGTGGTTACTGGGGAGGAAGATGGGGGAGATCGGAGACAGGGGTATGATCGGAATCGGAGGGACAATGAGGAAGAGGGTCGTTCACGGCGTGAGGAGTGGGAGGTTCAGGGTTCGAGGATTTCTGGTCAACGGCAACAGAGTGAATATGGTAGTGAGCATGGTTACAACAGAAACCAGTGGCCTAAAGAGGAGAGCTCCGAGGAGAAAAATGATGGGTGGGAGACTGTCCACAAAAAGCCGCCTAGGAGACAACACAAGGTGCAAAAAGATAATTGGGAAGGATACAAACGGCCTGCCAGTGAACAAAATTACTCCGATGAGGTGGAAGTTGGTGCTGAGCTAGAACCCTCAGAAGATGAGCTTGCTGATTTGTCCTATGCATGTAACAAGCTTTGGGAACTTGATTTAAATCGTTTGGTACCTGGAAAAGATTATGAAATTGATTGTGGTGAAGGGAAGAGGGTCAGTGGAAGGGAAGATATGGCACAAGGAAGCCTCTTTAGTTGGGTTAGCGAAGACGTATTTAGGAAACCAACATTTTCACGCTTTTGTTCTCTACTTGATAACTACAATCCGTATCAAGGGAGCAAAGAAGTTGTGACACCTGAGGAAAAGCAAGAGCAGGAAGCATTCATTGAAGAAATTAGTAGAACTGCACCAATTAAGTACCTTCACAAGTATCTTTCATCCAAGGGAGTTGCATCCAATAACTATCAAGATTTTAAACGTTTACTGACTAGCCTGTGGTTCGATCTTTATGGTCGGGGTGGAACATCTGGTTCCTCTTCTGCTTTTGAGCATGTTTTTGTGGGAGAAATCAAGCAAAAAGGAGAACAAGAGGTTTCTGGTTTCCACAACTGGCTTCAGTTTTACCTTGAAGAAGCTAAAGGGAATGTTGACTATCAAGGTTACATTTTCCCCCGACGACGTGGCCAGTTTCCTGATTCAGAAACTCAATTGCTTACCATTCAGTTTGAATGGAATGGTGTTCTCAAATCTGTCTCAAGCACTTTAATAGGAGTTAGCCCTGAGTTTGAAGTTGCACTCTATACACTATGCTTCTTCCTTGGTGGAGAGGACAACCATGTTGAGCTCGGACCGTATGCTGTTAATATCAAATGTTATCGATTAGGAAACAAAATCGGGTCTCTCTGCCCGGGCCACGCCGGCGCCGGTGGTGAGATCGCGTCGCCCGACGCCCTTTGCACTCACCGCCGTTACGTTTTGATTTTTTTGTTTGTCAGAAAATTGTGTTCTCCGGCGACGAAGAAAATCAAATCAATGGCGCTTGATGAGCATATGTTCGAAGCTTTAAACCCTTCTCGTTTCATATCATTCTCTTTCCCCAATCCATGTAACTCTCATTCTTCTCTCCGAATTGCCGTGCTCGATTCGCCGATCGAACCCACCGGTTCCCCTTCGGTGGCCGCCATGTTCGTTCCGCCGGGCCTTGAAACCGACTGGATTTTTTCCACGGAATCTGGACACTATCACCTTCTGTTCGATTCCCCTGGAATTTCGCGCTTGATTCTAGTCGGAGATCAAGAATCGGTGACCGGCCATGATTCTCTTCTGATCTACAAGCGTCAGGATTCGGCTTCGACCTGGAGTCGACTGGTGGTAAGTTTACAGCCACTTCTTCTTGCTTTATTTCCCAAATCATGTTTCAAAAATGGTATTCCTGAAGTTCCGATTCTTAGTTTCGTCGATAACGTGATATGTAGTGTAGTTTTAGAGAGATGCATCGGTTCTTCAGTCGGTGAATTTCTGGTTGAGAATGTGGAAATTGAGAGAGAATCATTTGAAACTAGGGAATTTAGGAGACGTTTGAGGTTCAAGAGAATGCCGAACTTGATTCAAACAGAAATTCGTATAATTCCTGAGGCTAATCTTAATCTAGATGGTGTTGAAATTCAAAACATCGAGTTCCAACCAGATACTAGGGTTTTGGTTCATCCTTACTTACCTCCAATGGCAGCAAGCCTTTCATTGATTGCCTCCTCCATTGACGAACAGATTCAAACTGGTCATAGACCGAAAGCCCTGTGTGTTGGAGTTGGGGGTGGGGCTCTGCTTTCCTTCCTTGCAACCCATTTGGATTTTGAAGTTGTGGGTGTGGAAATGGACATGGAGGTTCTCAGAGTTGCACAACAGTATTTTGGATTGGTAGAGAATGAATTTCTTCACATCTCCATTGGAGATGCCACTGAATTTCTTGAAAATGCTTCAAAGTCAAATAAGAAACAGAAGTGTGGATCCTTTGGTGTTCATATGTCTTCTGAGTATGATGTGATCATGGTTGATTTGGATTCAAGTGATGCTCAAAACGGCATGAGTTCGCCGCCATTGGAGTTTGTTGGGAGAGATGTTCTTCTGAGTGCTAGATCAGTTCTTTCTGAACATGGGATTCTTGTAATGAATGTGATTCCTCTTGACAAGTTGTTCTTTGAGACATTGGTAGATGAATTCAGATCAGTTTTTGATGATTTGTTCCAGATAGATGTTGATAATGATGAAAATTTTGTCGTTATTGCTTCTGTGTGCCCAATCAAGTCTTTCCCTAATGTTACAAAGAATGAGATGAACAGCTTTTCATCCAGATTGAGATTACTCCTCTCAGGAGCATACATGGACTCCATAAAAAGGATATGA MEGLIKGLIDVAIGHDGDDNDQQSRDDRSRSTWAQVVTGEEDGGDRRQGYDRNRRDNEEEGRSRREEWEVQGSRISGQRQQSEYGSEHGYNRNQWPKEESSEEKNDGWETVHKKPPRRQHKVQKDNWEGYKRPASEQNYSDEVEVGAELEPSEDELADLSYACNKLWELDLNRLVPGKDYEIDCGEGKRVSGREDMAQGSLFSWVSEDVFRKPTFSRFCSLLDNYNPYQGSKEVVTPEEKQEQEAFIEEISRTAPIKYLHKYLSSKGVASNNYQDFKRLLTSLWFDLYGRGGTSGSSSAFEHVFVGEIKQKGEQEVSGFHNWLQFYLEEAKGNVDYQGYIFPRRRGQFPDSETQLLTIQFEWNGVLKSVSSTLIGVSPEFEVALYTLCFFLGGEDNHVELGPYAVNIKCYRLGNKIGSLCPGHAGAGGEIASPDALCTHRRYVLIFLFVRKLCSPATKKIKSMALDEHMFEALNPSRFISFSFPNPCNSHSSLRIAVLDSPIEPTGSPSVAAMFVPPGLETDWIFSTESGHYHLLFDSPGISRLILVGDQESVTGHDSLLIYKRQDSASTWSRLVVSLQPLLLALFPKSCFKNGIPEVPILSFVDNVICSVVLERCIGSSVGEFLVENVEIERESFETREFRRRLRFKRMPNLIQTEIRIIPEANLNLDGVEIQNIEFQPDTRVLVHPYLPPMAASLSLIASSIDEQIQTGHRPKALCVGVGGGALLSFLATHLDFEVVGVEMDMEVLRVAQQYFGLVENEFLHISIGDATEFLENASKSNKKQKCGSFGVHMSSEYDVIMVDLDSSDAQNGMSSPPLEFVGRDVLLSARSVLSEHGILVMNVIPLDKLFFETLVDEFRSVFDDLFQIDVDNDENFVVIASVCPIKSFPNVTKNEMNSFSSRLRLLLSGAYMDSIKRI Homology
BLAST of ClCG10G002040 vs. NCBI nr
Match: KAA0041033.1 (methyltransferase-like protein 13 [Cucumis melo var. makuwa] >TYK12076.1 methyltransferase-like protein 13 [Cucumis melo var. makuwa]) HSP 1 Score: 1590.5 bits (4117), Expect = 0.0e+00 Identity = 812/925 (87.78%), Postives = 852/925 (92.11%), Query Frame = 0
BLAST of ClCG10G002040 vs. NCBI nr
Match: XP_038906139.1 (eEF1A lysine and N-terminal methyltransferase [Benincasa hispida]) HSP 1 Score: 846.7 bits (2186), Expect = 1.9e-241 Identity = 431/456 (94.52%), Postives = 440/456 (96.49%), Query Frame = 0
BLAST of ClCG10G002040 vs. NCBI nr
Match: XP_008448758.1 (PREDICTED: methyltransferase-like protein 13 [Cucumis melo]) HSP 1 Score: 816.6 bits (2108), Expect = 2.1e-232 Identity = 416/456 (91.23%), Postives = 434/456 (95.18%), Query Frame = 0
BLAST of ClCG10G002040 vs. NCBI nr
Match: XP_004147265.1 (eEF1A lysine and N-terminal methyltransferase [Cucumis sativus] >KGN55807.1 hypothetical protein Csa_010037 [Cucumis sativus]) HSP 1 Score: 808.1 bits (2086), Expect = 7.6e-230 Identity = 415/456 (91.01%), Postives = 429/456 (94.08%), Query Frame = 0
BLAST of ClCG10G002040 vs. NCBI nr
Match: XP_038904723.1 (poly(U)-specific endoribonuclease-B-like [Benincasa hispida]) HSP 1 Score: 792.0 bits (2044), Expect = 5.6e-225 Identity = 392/425 (92.24%), Postives = 409/425 (96.24%), Query Frame = 0
BLAST of ClCG10G002040 vs. ExPASy Swiss-Prot
Match: Q503V9 (Poly(U)-specific endoribonuclease-B OS=Danio rerio OX=7955 GN=endoub PE=2 SV=1) HSP 1 Score: 213.8 bits (543), Expect = 8.3e-54 Identity = 118/271 (43.54%), Postives = 157/271 (57.93%), Query Frame = 0
BLAST of ClCG10G002040 vs. ExPASy Swiss-Prot
Match: B1WBB4 (Poly(U)-specific endoribonuclease-B OS=Xenopus laevis OX=8355 GN=endou-b PE=2 SV=1) HSP 1 Score: 203.8 bits (517), Expect = 8.6e-51 Identity = 118/274 (43.07%), Postives = 156/274 (56.93%), Query Frame = 0
BLAST of ClCG10G002040 vs. ExPASy Swiss-Prot
Match: Q8JFY9 (Poly(U)-specific endoribonuclease-A OS=Xenopus laevis OX=8355 GN=endou-a PE=1 SV=1) HSP 1 Score: 201.1 bits (510), Expect = 5.6e-50 Identity = 118/274 (43.07%), Postives = 154/274 (56.20%), Query Frame = 0
BLAST of ClCG10G002040 vs. ExPASy Swiss-Prot
Match: B1H3D5 (Poly(U)-specific endoribonuclease OS=Xenopus tropicalis OX=8364 GN=endou PE=2 SV=1) HSP 1 Score: 197.6 bits (501), Expect = 6.2e-49 Identity = 115/274 (41.97%), Postives = 153/274 (55.84%), Query Frame = 0
BLAST of ClCG10G002040 vs. ExPASy Swiss-Prot
Match: Q1LUM3 (Poly(U)-specific endoribonuclease-C OS=Danio rerio OX=7955 GN=endouc PE=2 SV=1) HSP 1 Score: 183.7 bits (465), Expect = 9.2e-45 Identity = 109/275 (39.64%), Postives = 153/275 (55.64%), Query Frame = 0
BLAST of ClCG10G002040 vs. ExPASy TrEMBL
Match: A0A5A7TD16 (Methyltransferase-like protein 13 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1017G00920 PE=3 SV=1) HSP 1 Score: 1590.5 bits (4117), Expect = 0.0e+00 Identity = 812/925 (87.78%), Postives = 852/925 (92.11%), Query Frame = 0
BLAST of ClCG10G002040 vs. ExPASy TrEMBL
Match: A0A1S3BKG2 (methyltransferase-like protein 13 OS=Cucumis melo OX=3656 GN=LOC103490826 PE=4 SV=1) HSP 1 Score: 816.6 bits (2108), Expect = 1.0e-232 Identity = 416/456 (91.23%), Postives = 434/456 (95.18%), Query Frame = 0
BLAST of ClCG10G002040 vs. ExPASy TrEMBL
Match: A0A0A0L5C4 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G017010 PE=4 SV=1) HSP 1 Score: 808.1 bits (2086), Expect = 3.7e-230 Identity = 415/456 (91.01%), Postives = 429/456 (94.08%), Query Frame = 0
BLAST of ClCG10G002040 vs. ExPASy TrEMBL
Match: A0A0A0L6P1 (XendoU domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_3G017000 PE=3 SV=1) HSP 1 Score: 788.5 bits (2035), Expect = 3.0e-224 Identity = 391/425 (92.00%), Postives = 406/425 (95.53%), Query Frame = 0
BLAST of ClCG10G002040 vs. ExPASy TrEMBL
Match: A0A1S3BLB7 (poly(U)-specific endoribonuclease-B OS=Cucumis melo OX=3656 GN=LOC103490825 PE=3 SV=1) HSP 1 Score: 771.2 bits (1990), Expect = 5.0e-219 Identity = 383/425 (90.12%), Postives = 402/425 (94.59%), Query Frame = 0
BLAST of ClCG10G002040 vs. TAIR 10
Match: AT4G17100.1 (CONTAINS InterPro DOMAIN/s: Endoribonuclease XendoU (InterPro:IPR018998); Has 943 Blast hits to 770 proteins in 162 species: Archae - 0; Bacteria - 61; Metazoa - 472; Fungi - 40; Plants - 78; Viruses - 35; Other Eukaryotes - 257 (source: NCBI BLink). ) HSP 1 Score: 578.9 bits (1491), Expect = 7.0e-165 Identity = 301/435 (69.20%), Postives = 347/435 (79.77%), Query Frame = 0
BLAST of ClCG10G002040 vs. TAIR 10
Match: AT4G17100.2 (EXPRESSED IN: 23 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: Endoribonuclease XendoU (InterPro:IPR018998). ) HSP 1 Score: 536.6 bits (1381), Expect = 4.0e-152 Identity = 285/438 (65.07%), Postives = 334/438 (76.26%), Query Frame = 0
BLAST of ClCG10G002040 vs. TAIR 10
Match: AT5G04610.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 394.8 bits (1013), Expect = 1.9e-109 Identity = 228/459 (49.67%), Postives = 304/459 (66.23%), Query Frame = 0
BLAST of ClCG10G002040 vs. TAIR 10
Match: AT2G31740.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 113.6 bits (283), Expect = 8.3e-25 Identity = 108/452 (23.89%), Postives = 197/452 (43.58%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (Charleston Gray) v2.5
Date Performed: 2022-01-31 Position : 0 Zoom : x 1
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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