Csor.00g213380 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSinitialstart_codonintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCTGCCGACGATATTCGGAATCTTCCAATTGACATCACATTCTCTCGTCTTGGTGGTATCAAATCCACTTTACAATCTCCGATTCTTGTTCGATTAGTGATTTTGATTTCATTACATACTTCGTTTATTGTTTGTTTGAATTGTGCTTGGTTTTTTTTCAACAATTTGATTGGGGTTGATTTTTGCACCTTCGTGGGAGTGAAGAGTGGCTTGTCGATCGGAAAAGAGTCCCTGCTGATTGGCGTAAGCGTTTGACAGCGTTGAGAGTTCGCATCTCTAAGGAGTTCTTGTCCCTTCCCAAAGATACCGATCCCTATTTCCATACCTTAGACCATGAAGGTTAGATTTGATTTTTTCAAGTTTTCTACGGAATTATTTTCTTTAATCTACTGGCATTAAGTGAAGTCTATACTCTGAATAAAATTTGATTAACAAAAGATAGAGAGAGAGAGAGAGTTCCTTCTTATCACTAGTTCTGCAATTGACGGGAGTGGAACCTTTAATTGACGCTGCTGCAAGGCTAAGAAGCAAACTTCCATTTTAGTAAAAACGAGCACTAACCTAAGATATTAAATTGTATGGGTTCCTCGATAACTTGTCATTTCTATGAGTTGCTTGATAACTTGTCTTGTGAGATTAGTCGTAAGCCGGCTGGCTTGTACATTCATGAATGGAAAAACTAAATTGGGGAGGGGTGGCGTCTTCTCAAGCAATGGCCAAACTAGGATTAAAAATCATTCTCCTATATCTTTTCTACCAGTAGGGTGATAAAATAAATTAGCTTATAGTCGTAGGAGAGGCAGGGAGTATTTGGTAAGATATCAACTGGTGTGGGGTTCACTGAAAAGGTCACATTTGAGAAAGAGTGTGACATTAATAGTATTTTAGTTGGAATTGTATTGAGAGATAGGTACTCTTTTGATTACCAGTGGCATTATGTAACAACTCACTTTTCAAGCCTTCGAATCACGAATCACCACGTGGACTCAAGTGTAAAAAATGTGGTGAATTTTTTCAATTTTGAATAAACGGGGAACATGAAGAATTCAAAGTCAAACATAAGCAGGAATTTTGATATAAAAAGTATTTAAAAGTACAAAATCACTTCCACGGAGTTGCATCAAAATAGTTTACAAAATGACTCAAGTTTCAAGATGGTGTTTAAGAATAACATTAAAATGTCAAAAGAGGAAAAACAACTTGATCTAGGGGTCCTCTTTGTAGTTGCACGGCTCCATAGGCTCCTGCTAGCAATCGAGGTGTACACTCCATTTGTAAACAAAGAATAGAGGAATGAGTATAAAAATACTCAATGAGCACCTGCTTGTAGGGTCTCATTGAAACTTCTCCTATTCAATGCTTCTTAAGCTATGTGCTCAGTCAGAATCTTACAATCGGCTAATTCCATGGCTTGGGTTCATTTCTAGCCTTCTCAATCTCTTAAGGTTCATATACCCTACTTACTCCTATTCCAAGAATGTAAGCCACCCATCGGGGTATATTTAGGTTTCAGGATACTCTTAACCTCTCGTTTCCTACTTTCCAAGGTCCATATAGTCATTGTGCTTCTTGCGCATAAGTCAGGGTGCCCTCGTATGTCTCAAGCTCAAGGAAAGTCTAACGGGTATGGAGGAGCCATCGCTCGCTATAGGTGACCTCTCAATCTACCTACATCTCCATACGCACCTACTACTAAGTGCTAGCTGGAAACTCCTCAAATGGCATATGAAAATGCTCCCTATTCCAACGTCATTCTAGGCTAGAACAATGCAACGCGTACTCTCCACTAGGTACAATCGGATCTCTCTTAGTAGTAAATAAGCGCTAGTCGGAAGCTACCATAATGGTACCAACGATGCTCCTTATTCCTATGCCATTCTAGGCTAGAATAGTGCAAAATTGGCATCCACTAGGTACAACCAGAGCTCCTTCAGTAGTACCCTCTATTGTGCCATGGGCTCTAAGTGGGTGACATTTTGTTCCTAACATGCTTCTAAGGGTGTAAATGACATGAAATCAGAAATCATACACATCTGCACAACTCCATGCATATCAGGTACAATAAGATATAACATGCCGTAGTCCTAACAAAGCATTTAAATAAATTAGTGTCATCGGTTACATGGCGGAAGTCCTAAACGTGCATATCGAGCTAAACCAACATAAATCCATCATCCAGGGTTTAACTGATCCATTTCCATGCTCAAATTATCCCTAAATCATGCTAATAGTTCATATACCCAAGTCCTAGTCCATCCCTACAAATATTTGTTTAAAAATTCAAACGGAGACTTATTTGGTTGTTAACTTCCTGGGCTCAATTCGAGTCTTCAGAAAATTCTAAATTTCCTTAAGTTCCTCCAATATGGCCTACATTAAATCAAAAGAATAAAACTAGTCACAAAAGCTTGAAGAACGAACTCCTAGAGGCTTAAAAGCTATACAAAGAGTAATGAAGTTAAAGAAACTGACAGTTGACCATACGGTCACTGACATTATGCTGACCCTCTACTGACACATGGCTGACGTTACTGATCCCTCTTTTTTCCCCCTTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTTTTTTCCCCTTTTATGGTACAAATCGAGATATTACACATTAGAAACAGGTGAGTTAGGGCAGTGTACTTCTCTGTTGAATAAATACAGAGGTTCTATCATAATTCTATTAACATCTCTAAATTCTAATTGATGTAATCTCTCTATATTGTGCATCAAATGTCCCTTGTTATTCAGTTCGTTTACTTATGAGTCATAGTTTATATCTCATTAATAACTTTTACACTGGTTGTATGGGATTTTTTTCTCTCTCAGATATTGGTTATTTAGAGGCAAAAAAAATATATAATATTCTTCTAGAGTCAACCTCAGAAAGCCGGAATATATTTGGCCGGCTATCAGGTGCTGCTGTAAGACTTGTCTTTTCCTGCTCTTTTCTCAGCCTTGACTGTACATTGGCAGGCTTGAATTAATTTAGAGCTTTAGTCCGTTTGTTTTCTAAATAAGAAATATTTTTGTCAGGGTGCTTGGGAGGTGATTGTACGAACTTATGAGAAGGATCATATTTTTCTTGGCGAGGCAGCTCAAATAATTGTTCAGAATGTGACTTATGAAATGTAAATGTCTTGTTATGAACTTTGTGTAGTAACTGATGGATATCGAAGAGCTCCATTTTCATGCTACTATTACTTTTAATGTGAAGCCCATATCAGAAGAAACAGGTCCAAAAGATTCATCAACAGCTAGCTGAGCTGGAACGTAAAGAATCTGATACTAAAAGAAATGCTTCTCTTTCGGCAGCTAGATATGTAGAGGCTTGTCAGGACCTCGGTTTGCAGGTTGTAACCTACTCTGTATATTTCCAAGCTTTAGGAGACTCTTTTTGTATCTTCCTTTTATTGCGTGGATTTATTTTTTATTGTTTTTTTTTTTTTTTTTTTTTTTTTTTTGAAGTCAAGCTTCTTCATCTTCTTCATCTTGCAGGGAAAAAATGTTAGAGATGAACTTCTGGAGACTGCAAGGTCACTTCCAAGCACATTTAGCAGAATATTAGAAGTCATAAATGGTGATTCTGTGTCACGTGCTATTGAATACTATTCCAATTTTGTAAGGGATGCTCACTCGGATAAGGATGTAAGGAAATAGTGCAATAAGCATTGTCTGATGATCATAAATGTCCAAGAGAGGAATAGAGAAATTTATTTCCTGATACTGATGACTAAATTATTGTGATGTGGACTGTTAATTCTGAGTCTCTAACATTTCATACATGTGTACAGAAACACGTGACTGTATTACCAAACCTGGGGCATATACGTGAGCATCCTCCTTCTTTACATGTGTCTGTGGGCTTTGAGATGGTTGATTCTGTAAATGTTCAGTCAAGCTATATAGAACCAGATGCTATTGGACAAACAGGAATTGCTGCTGATAATATTGACTGGGATATATCCCTGGAAAATACTCAAATTGACTGGGATATAGGTGCACTGGAGGAAACTGAGGATACAGGAAATGGTTTGGGACCTTACGAAATAGTTCATGCGAGTGAAGCTTTGGAATCATCATACCAAATGGAATCTAGTAAAGAGGGTAGTACTACATTGCCAGAGGCTACTGTGTCTGAGATTTCATGGGATGTCAGTGTTGAAACACCTCAAGTTGATATCATCGATGATGTAACCTTGCCTGATATAGAAGTGAATAATAAAACATTCGTTCCTTCAACTCATTCTGCAGAAATCACTGAAGTTAGAAGCCAGCTTTTGGAGACCGAGTATAGGAATAAGATTCTTGATGATCTATATGAGGTATATCACATAGCTTTGGTACAAAACTTAAGTGGCATTAAATACCTTATACGAAGGTTTAATGGCTATATCTATTTACAATTTCAGATAAAGGCATTTCTAAGTCAACGTTTGAATGATTTGAAGAATGATGAAACTCTGTCTTTGCAACATCAAGTCCAGGCAGTTTCTCCCTTTGTGCTGCAGCAATATACTCCTGATGCCATTGAGATGATGCTATCAGATGTTTCCATGGCTATATCATTACTGTCAAGTAGGAAAACTCAAGATTTAATTATGATTCTCAATTCTAAAAGGTACTACTGTTACTACATTGGTCATTGTTTTCTTATTTGTTTAATCCACCTCTCGTAGGGATTTTCCAGATTTTGATAAAAAAAATTCTTGAGAAATGCCAACAAAATGAGGTTACTGTTACCCGATTTCACCCACCTTTTCAGTAAAAACTAACCCACTTAATTTACTATTCTAAGTTCATATGTATTAGCATTTTCTTTGGTGCTAATATTAACGTTGCTATGTTTTGATGCAATAAGTTATTTTTGTTTTATTTGTAACTTTAGTTGATTGATGAACTAGTGCTGGTAGGTTTATAATTCTTTGTTTGACAAACTTTGCAATTACGATAATCTGCATATGTACTTTCTAAAACATATCAAATATGTAATGTGATCCTAGAAACTGTTTGGTTCAAATACTATATGATCTACAGTTAACATGTTTGACCCTTCTAATTATTAGGTTAAACTTCATTTATGGGTCCTTGTAAGCATTACGTCTAACTCAAAGGTTTTAGTTACATCTCTAGATTTTGAATTCTACTTATTTTTAGTCTTGACGATGAATATTAGTTAGCAATACACAGAAGTAGCACTCTTTACTTAAAATTTGGATGAGGTAGCATTTTACAGCTAGTTGAAAAGATTATTTATTAGATTTGATAGCATCTTCTTAGTGTTAATTGGATTTTTGGTTCTTAAAATTTCACCTGCCTAATAATGTATGAAATCCAACTAACTAGTTGTTAAATTGTCACTTCATCCAAATTTCAAGAAATGAGTTCCGCGTTTGCACTTTATCTACTGGTAACGATTATAGGCACTGGTTAAATGTAGTTCAATGTTTAGAGACATAATTGCAAACTTTAACAGTAAGGGACACAATTAATACAATGCTGAATGTCTGTGAAGGAAGTATGTATTCAATATATTTTCTATTTAATTGTCTTGTTGTCAAGAATTAGTATCGAAAACTTGGTTTTGAGTTGATGGTTTTTTCACTTATTGGGAAAAGTACATTTTTGGACCCTGCGATTTGGATCAAGGTTCACATTGGTGTACTTATTATGGGCACTTGACTTCTGTTAGTTTGTTTCATCTGTTAATAGGTCTAATTAATTTATATAATTATTAGTTTGATTATTAATTTGGCTGATTCATTTGATTAATCATTTCTTGATTAATTATGTTAATTGTCAATTTTCATTCCTAATTTTAATTAATATATTCTTTTATCAGCTAACTTACTAGCTCAGGAAGTAATACGACAAAAGTTAATGATAAAAGCAAGTCAAGAGAAGCCAATGTGAAAATATAAGTTCACTTTTTGTTATCATAGTTAACGAAGTTCTTCCTTTTTTATTATGTCAAGAACTTTAGAAGTTCAAATGGTGGATTTATAACCTGAAAGCCATGTGAAACCATTCTGAACGGGGGACCAATATTATAATTTTCTTCATAAAATTTTATTTTAGGAGACAAATTCCATACTTCGAAGGACGAAATATTGGATAAAAAGGGGAGGTGGAAAAGAGACATTCCAACTCAGAGTGAAAGTAGGCTTTCAAGAATACTCTCCATTTGATTAATGATACTCTTCTGTTTTTTTGGCGGCTTGTGTTATGGTACATCCTTGCATTCTTTCAATTTTGTTTCAACAAAAGTTCGATACTTCCAAAAAAAAAATAATAATAAATAAAAAGACAAAAAGAAGGGATAAAAATGAAGGCCAGTTGAAAAAGGCTCCTGTTAGCTCCTGTAGAGTGATCCAACTCTATTTTATAATTTTTCTCTTAAGATTTTTTTTTTTTCTAAAATTTGATCATTCTCAGGGAAACTGATGTGAACTTTGATTTCAGATTTCTAGAGAGATTAGTTAGTAAACTAGAGGAAAAGAAGCAGCGTGAAGTGAAGCTGAAGGAAGGGCTGAAGGACTTGTCTGCCAAACGTATGGAGCTTCAAAATTCATTAGCTTCATCTTGGCCAAAACAAGTAGGTTTTTCTTCCTTTTGACTTATTTATTTGTTTTATTTTAGTTTTTCTTCCTTTTTTTCTTTATTTTTATTTAATTTTTAGTTATAAAAATATTGTGTTTCAATGATGGAATAAAATATACAAAAGAAGAGGGAAAACCCGCCCCAAAGCTGATGGAAGCTACATAAAAGCCTTCTAGTTGGGCGGATGATTATTTAAACTATAATCTGTACATGGCGAGAAAAACACTTTCATAAAAATTAAAAAAAAAAATGTTTAGGGTTTAGCTAAATGAAAGTTCTAACAAGTTGTAGCCAAAGTTCTAACAAGCTGCAAAGTAGAATTCATTCCCTTTTAATTCCATGGGTTTCCTGATTGGTGGAAATTACGGGACAGTGGCGGTTTGGTATACATTTGTTGAGAAATTTTGAACTAAAGTTGTCAAATGGAGAGGGGTCTCTCTGCAATGGGGGGCGGTAACCCTTGCCTCCCATGCTATTTCTCTTACCTCATGGGAGCTCCTATGAAGGTGATCAATTGCTTAGAGAGAATTGTCAGAGATTTTATTTGGGATGGTGGTATCTTTAAACCGGGACCACCTCACCTTGTGCCTTGGAAATGGACTTCGTTGCCCACAATTTACAGTGGCCTTGTGATTGGCTCTCTCTATCAACGAAACCAATCCCTCCTAATGAAATGGTCGTGGAGGTTCACTGAGAAGAGGTATCTGTACTATTTATGGGATGGAGCTTATGGGTTGAACTACTAAAACTACCAAAAAGAAAGGGATACAGCGGCTGAGGTCAAATACCATGAAGGACAGAGACCAGTTTTTCAGTTTTGTGGAGTTTTTGTTGGGGAATGGAAGAAGAATTAATACGTGGAAAGAAAATTGGTGTGGAACAGAGTATTTGGCTATCAAATTTCCTGATATTTATTCCATTACTATAAAGAAAGGGGTCTCCATTGCTGATTGTTGGGATTGTGAGCATCAAGCATGGGACTTGGGTATTAGAAGACCGCTTTTTAACTGAGATTTGGGGAACTCGGTCCATCTGATTGCGTTCCTGTATGATTGGGCTGTAGGTAATTACCATGATAGAATAAGGTGGAAGATCGACTCATCGGGTTCTTCTACTGCTAACTCTACCTTTCTGAAGCTAACCAACGGGGAGACAAATTTGACCTACCCAATGGTGAACCTAATTGGGAACTTTAAGGTCCCAAAAAAGGTAAAGTCTTTCTTTGGTCGTTGGCTCGTTGAAGTTTGGATACCCACGGAAAAGTTTAGAGGATATTCCGAGATCGCTGATTTCCCCTTCTGTGTATTGTTTATGTTTGCGTGAGGAAGAATCCCTAGACGACTTGTTCCTTCACTGTCCTTTTGCAACTAAAGGGTGGCTTGCGTTATTTAAGAAATTTGGGGTTGAGTCTTGATTTCCTAAGAAATTCGGGGAAGGTTTGTTGGTGGTATGGGAGAAGTCCTTCGGCGTTGTACAATGCTTCCTCTTCTTTGGGGCTTTGGAGGGAAAGAAACAAGAGGGTGTTTGAAGAAGTCCTCTCCTTCTGATTCTTCTTGGCTTTTGTAATTACAATCTTTTAATGATTATAAACAATTGGAAGGCTCTCCATTGCTAGGTTTGGCAGAGAGGGTAATCTCTACTAGGCTGTCTTTTGTTATTCTTTTGATGAATATACGTATTTGTTTCCTACCAAAAAAAAAAAAAAAAAAAAAAAAAACAAGTAGATGAAAGAAAGCAGGCCTCTCATATTGGTTGCAAGAGGGGTCTGCTAGCTGAAGGAAGATAATAAAGAATTCCAAAACCTGTTACTAAGCTGCATGTAAAGAACAAATGACCTTCAGTTTCAGATTCCTTCTTACACATCACACCAATTTGGTGAGAAGGTGAGGGAGCAGATCCTTCTCTGAGTGACGTCTTGATTGTTTATGCTTTTGTGACCAAATTCCCTTGGGAAGAATTTAATACTCTTTTGAGACCTGTATTTCCAAAGTTTTCCTTGGAGGAGTCATGTTCTACTAATGGGGTGTTAGTAAGGGTTTGATGATATAGTTAACTAGAGGTGGTTTGGTTATAAATAGGAGTTAGGATTTATAGAGGGGAGGTCATATTTTGGGAAGTCGATTCATAATGAGTGGCGTAAGGCTATTTGATATTTTAATTTTAGTTTTGGGTTCCCAACGTCAACCTGATCTCAGCTCAACTAGTTTAGGCCTCTACTCTCGATTAAGATGTCAAAAGTTTGATTTCTCTACCCCATATGTTGTTGAACTAAAAAAACGTTAGATATCTAGACACAAAAACATGAGTAACAATGAAATTACAATATCTAATTCCAAAAATTTATGTTTTATTTTGTTCATTTAATCTTTGTAATGTATAATTTAATGCAAACCCAATTATCTTCTGGCTTCTCTCTACCAACACTCGGAGAGAATTTAGTGAAGATTTTCACCGTAGGGCTTATATACATCTACATGACCCCGAAGGGAGAAAAGGCTTGGTCTGTGTTTTTCCAAGTGAAATTGAAGACTAAGCCGGGAATTTGTCACTTATTCCTATAGTACATCTTGAGGCATTTTAGCCCTAGCAGGGGTAGACATGGTTTTGGTGAACGGTCATACACCCCCGTATTGACCCAATGTGAAATGGTAAATACCTATCTATCTAGGATGTAATTATGTAAAAGAGGTTTAGAATGGGCATGTGACTATGGACAACACATCCTGGACAAACAAGACTGGGACATCTGTCATGCGGTCATAGACAACACGCCTTGGACAAGCATAACCATGACATTCTCCTCCACTTAATTGGTTGACGTCTTTGTCAACCGACTCGGACAAGTAAGATTGGGACATCTATGATGCGACTATAGGCAACATGCCTTGGACAAGCATGACCGTGATATCGACAACGTTTGTATTTGCCTCTATCTTCTATGTATTATATTTTTATGAATGTTGCCGGAAATTTCATTAACCTGGATTGCATATGATGAGATACATTACCCAAAAAAAAAGGGAAACCAACACTAAAATGAGCAAATATTGGGTGGCATTGCAGGAAGCAGCTCTGACGAAAACAAGGGAGTTGAAGAAGTTATGTGAAAGCACTTTATCATCCATGTTCGATGGAAGGCCTGTAAACATTATTGGCGAGATCAATACTGTCTTAACAAGTGGCCTCACCGCGTAA ATGGCTGCCGACGATATTCGGAATCTTCCAATTGACATCACATTCTCTCGTCTTGGTGAGTGGCTTGTCGATCGGAAAAGAGTCCCTGCTGATTGGCGTAAGCGTTTGACAGCGTTGAGAGTTCGCATCTCTAAGGAGTTCTTGTCCCTTCCCAAAGATACCGATCCCTATTTCCATACCTTAGACCATGAAGATATTGGTTATTTAGAGGCAAAAAAAATATATAATATTCTTCTAGAGTCAACCTCAGAAAGCCGGAATATATTTGGCCGGCTATCAGGTGCTGCTGGTGCTTGGGAGGTGATTGTACGAACTTATGAGAAGGATCATATTTTTCTTGGCGAGGCAGCTCAAATAATTGTTCAGAATGTGACTTATGAAATCCCATATCAGAAGAAACAGGTCCAAAAGATTCATCAACAGCTAGCTGAGCTGGAACGTAAAGAATCTGATACTAAAAGAAATGCTTCTCTTTCGGCAGCTAGATATGTAGAGGCTTGTCAGGACCTCGGTTTGCAGGGAAAAAATGTTAGAGATGAACTTCTGGAGACTGCAAGGTCACTTCCAAGCACATTTAGCAGAATATTAGAAGTCATAAATGGTGATTCTGTGTCACGTGCTATTGAATACTATTCCAATTTTGTAAGGGATGCTCACTCGGATAAGGATAAACACGTGACTGTATTACCAAACCTGGGGCATATACGTGAGCATCCTCCTTCTTTACATGTGTCTGTGGGCTTTGAGATGGTTGATTCTGTAAATGTTCAGTCAAGCTATATAGAACCAGATGCTATTGGACAAACAGGAATTGCTGCTGATAATATTGACTGGGATATATCCCTGGAAAATACTCAAATTGACTGGGATATAGGTGCACTGGAGGAAACTGAGGATACAGGAAATGGTTTGGGACCTTACGAAATAGTTCATGCGAGTGAAGCTTTGGAATCATCATACCAAATGGAATCTAGTAAAGAGGGTAGTACTACATTGCCAGAGGCTACTGTGTCTGAGATTTCATGGGATGTCAGTGTTGAAACACCTCAAGTTGATATCATCGATGATGTAACCTTGCCTGATATAGAAGTGAATAATAAAACATTCGTTCCTTCAACTCATTCTGCAGAAATCACTGAAGTTAGAAGCCAGCTTTTGGAGACCGAGTATAGGAATAAGATTCTTGATGATCTATATGAGATAAAGGCATTTCTAAGTCAACGTTTGAATGATTTGAAGAATGATGAAACTCTGTCTTTGCAACATCAAGTCCAGGCAGTTTCTCCCTTTGTGCTGCAGCAATATACTCCTGATGCCATTGAGATGATGCTATCAGATGTTTCCATGGCTATATCATTACTGTCAAGTAGGAAAACTCAAGATTTAATTATGATTCTCAATTCTAAAAGATTTCTAGAGAGATTAGTTAGTAAACTAGAGGAAAAGAAGCAGCGTGAAGTGAAGCTGAAGGAAGGGCTGAAGGACTTGTCTGCCAAACGTATGGAGCTTCAAAATTCATTAGCTTCATCTTGGCCAAAACAAGAAGCAGCTCTGACGAAAACAAGGGAGTTGAAGAAGTTATGTGAAAGCACTTTATCATCCATGTTCGATGGAAGGCCTGTAAACATTATTGGCGAGATCAATACTGTCTTAACAAGTGGCCTCACCGCGTAA ATGGCTGCCGACGATATTCGGAATCTTCCAATTGACATCACATTCTCTCGTCTTGGTGAGTGGCTTGTCGATCGGAAAAGAGTCCCTGCTGATTGGCGTAAGCGTTTGACAGCGTTGAGAGTTCGCATCTCTAAGGAGTTCTTGTCCCTTCCCAAAGATACCGATCCCTATTTCCATACCTTAGACCATGAAGATATTGGTTATTTAGAGGCAAAAAAAATATATAATATTCTTCTAGAGTCAACCTCAGAAAGCCGGAATATATTTGGCCGGCTATCAGGTGCTGCTGGTGCTTGGGAGGTGATTGTACGAACTTATGAGAAGGATCATATTTTTCTTGGCGAGGCAGCTCAAATAATTGTTCAGAATGTGACTTATGAAATCCCATATCAGAAGAAACAGGTCCAAAAGATTCATCAACAGCTAGCTGAGCTGGAACGTAAAGAATCTGATACTAAAAGAAATGCTTCTCTTTCGGCAGCTAGATATGTAGAGGCTTGTCAGGACCTCGGTTTGCAGGGAAAAAATGTTAGAGATGAACTTCTGGAGACTGCAAGGTCACTTCCAAGCACATTTAGCAGAATATTAGAAGTCATAAATGGTGATTCTGTGTCACGTGCTATTGAATACTATTCCAATTTTGTAAGGGATGCTCACTCGGATAAGGATAAACACGTGACTGTATTACCAAACCTGGGGCATATACGTGAGCATCCTCCTTCTTTACATGTGTCTGTGGGCTTTGAGATGGTTGATTCTGTAAATGTTCAGTCAAGCTATATAGAACCAGATGCTATTGGACAAACAGGAATTGCTGCTGATAATATTGACTGGGATATATCCCTGGAAAATACTCAAATTGACTGGGATATAGGTGCACTGGAGGAAACTGAGGATACAGGAAATGGTTTGGGACCTTACGAAATAGTTCATGCGAGTGAAGCTTTGGAATCATCATACCAAATGGAATCTAGTAAAGAGGGTAGTACTACATTGCCAGAGGCTACTGTGTCTGAGATTTCATGGGATGTCAGTGTTGAAACACCTCAAGTTGATATCATCGATGATGTAACCTTGCCTGATATAGAAGTGAATAATAAAACATTCGTTCCTTCAACTCATTCTGCAGAAATCACTGAAGTTAGAAGCCAGCTTTTGGAGACCGAGTATAGGAATAAGATTCTTGATGATCTATATGAGATAAAGGCATTTCTAAGTCAACGTTTGAATGATTTGAAGAATGATGAAACTCTGTCTTTGCAACATCAAGTCCAGGCAGTTTCTCCCTTTGTGCTGCAGCAATATACTCCTGATGCCATTGAGATGATGCTATCAGATGTTTCCATGGCTATATCATTACTGTCAAGTAGGAAAACTCAAGATTTAATTATGATTCTCAATTCTAAAAGATTTCTAGAGAGATTAGTTAGTAAACTAGAGGAAAAGAAGCAGCGTGAAGTGAAGCTGAAGGAAGGGCTGAAGGACTTGTCTGCCAAACGTATGGAGCTTCAAAATTCATTAGCTTCATCTTGGCCAAAACAAGAAGCAGCTCTGACGAAAACAAGGGAGTTGAAGAAGTTATGTGAAAGCACTTTATCATCCATGTTCGATGGAAGGCCTGTAAACATTATTGGCGAGATCAATACTGTCTTAACAAGTGGCCTCACCGCGTAA MAADDIRNLPIDITFSRLGEWLVDRKRVPADWRKRLTALRVRISKEFLSLPKDTDPYFHTLDHEDIGYLEAKKIYNILLESTSESRNIFGRLSGAAGAWEVIVRTYEKDHIFLGEAAQIIVQNVTYEIPYQKKQVQKIHQQLAELERKESDTKRNASLSAARYVEACQDLGLQGKNVRDELLETARSLPSTFSRILEVINGDSVSRAIEYYSNFVRDAHSDKDKHVTVLPNLGHIREHPPSLHVSVGFEMVDSVNVQSSYIEPDAIGQTGIAADNIDWDISLENTQIDWDIGALEETEDTGNGLGPYEIVHASEALESSYQMESSKEGSTTLPEATVSEISWDVSVETPQVDIIDDVTLPDIEVNNKTFVPSTHSAEITEVRSQLLETEYRNKILDDLYEIKAFLSQRLNDLKNDETLSLQHQVQAVSPFVLQQYTPDAIEMMLSDVSMAISLLSSRKTQDLIMILNSKRFLERLVSKLEEKKQREVKLKEGLKDLSAKRMELQNSLASSWPKQEAALTKTRELKKLCESTLSSMFDGRPVNIIGEINTVLTSGLTA Homology
BLAST of Csor.00g213380 vs. ExPASy Swiss-Prot
Match: Q9FG23 (CDK5RAP3-like protein OS=Arabidopsis thaliana OX=3702 GN=At5g06830 PE=2 SV=2) HSP 1 Score: 676.8 bits (1745), Expect = 2.1e-193 Identity = 367/562 (65.30%), Postives = 453/562 (80.60%), Query Frame = 0
BLAST of Csor.00g213380 vs. ExPASy Swiss-Prot
Match: Q9JLH7 (CDK5 regulatory subunit-associated protein 3 OS=Rattus norvegicus OX=10116 GN=Cdk5rap3 PE=1 SV=1) HSP 1 Score: 181.8 bits (460), Expect = 2.1e-44 Identity = 156/547 (28.52%), Postives = 270/547 (49.36%), Query Frame = 0
BLAST of Csor.00g213380 vs. ExPASy Swiss-Prot
Match: Q99LM2 (CDK5 regulatory subunit-associated protein 3 OS=Mus musculus OX=10090 GN=Cdk5rap3 PE=1 SV=1) HSP 1 Score: 181.0 bits (458), Expect = 3.6e-44 Identity = 153/546 (28.02%), Postives = 262/546 (47.99%), Query Frame = 0
BLAST of Csor.00g213380 vs. ExPASy Swiss-Prot
Match: Q96JB5 (CDK5 regulatory subunit-associated protein 3 OS=Homo sapiens OX=9606 GN=CDK5RAP3 PE=1 SV=2) HSP 1 Score: 178.7 bits (452), Expect = 1.8e-43 Identity = 156/548 (28.47%), Postives = 261/548 (47.63%), Query Frame = 0
BLAST of Csor.00g213380 vs. ExPASy Swiss-Prot
Match: Q5REX6 (CDK5 regulatory subunit-associated protein 3 OS=Pongo abelii OX=9601 GN=CDK5RAP3 PE=2 SV=1) HSP 1 Score: 176.8 bits (447), Expect = 6.8e-43 Identity = 154/548 (28.10%), Postives = 260/548 (47.45%), Query Frame = 0
BLAST of Csor.00g213380 vs. NCBI nr
Match: KAG6603173.1 (CDK5RAP3-like protein, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1063 bits (2749), Expect = 0.0 Identity = 557/557 (100.00%), Postives = 557/557 (100.00%), Query Frame = 0
BLAST of Csor.00g213380 vs. NCBI nr
Match: XP_022928745.1 (CDK5RAP3-like protein isoform X1 [Cucurbita moschata]) HSP 1 Score: 1061 bits (2744), Expect = 0.0 Identity = 556/557 (99.82%), Postives = 556/557 (99.82%), Query Frame = 0
BLAST of Csor.00g213380 vs. NCBI nr
Match: XP_023545085.1 (CDK5RAP3-like protein isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1055 bits (2728), Expect = 0.0 Identity = 552/557 (99.10%), Postives = 554/557 (99.46%), Query Frame = 0
BLAST of Csor.00g213380 vs. NCBI nr
Match: XP_022967759.1 (CDK5RAP3-like protein isoform X1 [Cucurbita maxima]) HSP 1 Score: 1047 bits (2707), Expect = 0.0 Identity = 548/557 (98.38%), Postives = 553/557 (99.28%), Query Frame = 0
BLAST of Csor.00g213380 vs. NCBI nr
Match: XP_022156811.1 (CDK5RAP3-like protein [Momordica charantia]) HSP 1 Score: 976 bits (2523), Expect = 0.0 Identity = 506/556 (91.01%), Postives = 536/556 (96.40%), Query Frame = 0
BLAST of Csor.00g213380 vs. ExPASy TrEMBL
Match: A0A6J1ESG0 (CDK5RAP3-like protein isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111435562 PE=3 SV=1) HSP 1 Score: 1061 bits (2744), Expect = 0.0 Identity = 556/557 (99.82%), Postives = 556/557 (99.82%), Query Frame = 0
BLAST of Csor.00g213380 vs. ExPASy TrEMBL
Match: A0A6J1HXN0 (CDK5RAP3-like protein isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111467185 PE=3 SV=1) HSP 1 Score: 1047 bits (2707), Expect = 0.0 Identity = 548/557 (98.38%), Postives = 553/557 (99.28%), Query Frame = 0
BLAST of Csor.00g213380 vs. ExPASy TrEMBL
Match: A0A6J1DW37 (CDK5RAP3-like protein OS=Momordica charantia OX=3673 GN=LOC111023647 PE=3 SV=1) HSP 1 Score: 976 bits (2523), Expect = 0.0 Identity = 506/556 (91.01%), Postives = 536/556 (96.40%), Query Frame = 0
BLAST of Csor.00g213380 vs. ExPASy TrEMBL
Match: A0A1S3B4X6 (CDK5RAP3-like protein isoform X1 OS=Cucumis melo OX=3656 GN=LOC103486056 PE=3 SV=1) HSP 1 Score: 968 bits (2503), Expect = 0.0 Identity = 506/556 (91.01%), Postives = 529/556 (95.14%), Query Frame = 0
BLAST of Csor.00g213380 vs. ExPASy TrEMBL
Match: A0A0A0L183 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_4G507440 PE=3 SV=1) HSP 1 Score: 902 bits (2330), Expect = 0.0 Identity = 469/515 (91.07%), Postives = 492/515 (95.53%), Query Frame = 0
BLAST of Csor.00g213380 vs. TAIR 10
Match: AT5G06830.1 (unknown protein; CONTAINS InterPro DOMAIN/s: Protein of unknown function DUF773 (InterPro:IPR008491); Has 365 Blast hits to 359 proteins in 109 species: Archae - 9; Bacteria - 13; Metazoa - 209; Fungi - 7; Plants - 47; Viruses - 0; Other Eukaryotes - 80 (source: NCBI BLink). ) HSP 1 Score: 676.8 bits (1745), Expect = 1.5e-194 Identity = 367/562 (65.30%), Postives = 453/562 (80.60%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Silver-seed gourd (sororia) v1
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
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