XLOC_000626 (gene) - C. hemisphaerica

Overview
NameXLOC_000626
Unique NameXLOC_000626
Typegene
OrganismClytia hemisphaerica (Jellyfish)

Sequence
The following sequences are available for this feature:

gene from alignment at sc0000007:345099..357408-

Legend: gene
Hold the cursor over a type above to highlight its positions in the sequence below.
>XLOC_000626 ID=XLOC_000626|Name=XLOC_000626|organism=Clytia hemisphaerica|type=gene|length=12310bp|location=Sequence derived from alignment at sc0000007:345099..357408- (Clytia hemisphaerica)
AAGCTTTGCCAATTGCAAACAAAATGGCTGCCATATTTACAAACTCGAAC ATCTTAATTTTAATGGAAAGAATGTGAAAGGACGAAGAATGTGTATGGAA TCATAAAGCAGCATGAAATTAACTGAAATTTTGCTCAGCCTTCTATTACT AACAGGTAAGGAAAGGTATCAATCTTCAGCACGTAATGCAAATACCAAAT ATTACTGGAAAATGATGCTGGAATATCATGCAATTATTAAAGGTCAATAT GGCGAAGACTAGAGTTTCATTGAGAACCTACATAGATTTAAGGGATGTTT TTAGGAGACATCTGTAAATGAGATTTTGTCATTCTTTTTTAGTGGGTAGT TTCCGATGCAAAGAGAAGAGCAGGAGACCTCACATCACAAATAATGCCAG TTTGAAAGGGAATGTCAAAACAAGTGACCATTCCAAACGACAGACCATAC ATGGCCAAACTCACCCGAAGAAAAAGCTAGTCAACGAAGAAGAAACATTT CTTCGTGGCTTTCTGAATGACGTAAAAGAGTTGAGTAGTAGTGGTGAGCA GGACAAAAATATATTTGAATTATCCAGGACTTTGCATTCAGATACATTTT ATAAGGCGTTGGACGAGAAGAAAATCAAAGTATCCTACCATCCAACGAAA GAGAGGGAAGCCAAAAAGAGGAAAATCAAACATCCAGCCCCGCTCCTAAA ACACCCAACCAAAGTGGTAGCAGCTCAAACAAAATCAACTTCAGTAAAAC CAGTAAACAAAAATATTGCTTCAACAATATCAAATAAACAAACCAATTCT ACCCAATATTCACACAAAATCGCCAGGAAACAAGCCATCGAAAAAGAACT TCATTTCCTTGAATATCTAAATCATAAATCACCAGAAGCAAAGAATATAG ATAACCACAACAAACGAGAGAATATCACTGTTCATAACTCTGTCCAAACC AGTGCCAAGTTAGATGGCGTCAAACTTGGGAAGCGATTTGATATTGCGAC AAAAGATTTCAAACGAGAGAATATCACAGTTCATAATTCAGTAAAGAGCA CTGCAAAGCTAGATGGAGTTTCTCTTGGAAAAAGACAACACATTTTGAAA TTGAAAGTTCAAGATCCAGTCTTTTCCAAGCGGGAGAACATTTCGATTCA TAATGCAGTCAAAAGCAGCGCTAAATTAGACACAGTTCCTCTGCATGCTC CAGGTTCGCAGAAGAGGCTTTTGAAAGATGTTTCAGCTCAAAACAAAGAT GATAAAAGACAATCAAAATCAATCGGCAATTTGCTTCCTCAAAAATCAGT AATCCCACTAAATAAAAACAGCTTACAGCAAGAAACACCGATTGTTGACG GCAATATCAAAAGAGAAAACATCTCAGTTCACAACTCCGTTCAAAGTAGT GCAAAATTAGATGGAGTCAAACTCGGAAAGCGTGGCAATATCAAAACCCA GACAGTAAATGTGCTCAACCAGAGAGCTATAGCACCGCAAATTCTCACAA AACGTGAAAATATAACAGTTCACAACTCAGTAAAAAGTACGGCGAAATTA GACGGGGTATCTCTCGGTAAAAGACAAAATATAGCTAAATCATTCACCAA GCGAGAAAATGGAACGGTTCATGACCCAGTGAAAATTACAGGGAATATGG ATGGTCTTTCCATAGGCAAAAGCAAAAGGCAAAAGTTAACCAAAGCAGAA AAGTCTCTTAGCCAAATTAAGAACCAAATAAAAAGTAGGTCAGTGTCGGT AAACCAGAGACGTGATAAATCACCATCTTTTAGTGCAGTGTCCAAGAAAA CTGTAAGTGAAGCAGATAACACAAATGTCTCTATAAAAAAGAGCACTACG ACGTCCAACGCGATGCCAGAGTTGAACAGCAAAATAACTTCTGGTCAAAA GCAACCCAACCTCCAAGCAGAGATGGAGATGTTCAATCAAATCACAGAAA CTCCTTTCGACCAAATGGAATTGAGTGAAAACATGGGTTCTGTCGTAACC CAAGCTAAGATGCCGGAATTGAAAACGAAGAAGAAAAAAGGCACAGTGGT AAACGAAAATACAACAAAGAAGTTGAAGAATGAAATGAAAACACCGACTC TTAAAAGCTTCATAGGACCTATCGGTGTCACCTCACGAATGGTTGGCTCG ATGAAGAAAACAAACCACAACAATATAACACAGGCTCATCCTTACCAAAG ACATACAATCACACCCGCACGTGTTCCAACTGTAACCCGATCGGGAAATC GGAATACATCAATGGCAGATTCCTCTACGATAAGCCGTAAATCTGATCTC GTGTCTGGGCAAAGAAGAAAGAACACTGTAGTTTCGTCATCTCAGGAAGC GGAACAATCGCTGAATACCGGTTCGTCTCGCTCAAGACAAAAAAGACAGA TCAAACTTCTAGGGCAGAATACAAGACAAATAACAAGTGAGTCAATATTT CAACATCTATTTGAGAAAAAGTGTCAATAATGTCAATGCTTATAGATCAA AATACACAAAACGTTTAGAATGTTTTTAAAAGGGCACAAAATGACGCACC TCTTTCCAAAAAACTGAAAGATTCTAATTTGGACTGACAGTAATAACTTT CAGCTACAAGGGAAAAAAACTTCACTGATTTAATCACAATTCAAAGAAAT GTCCTTGCTGATAGATAGACTGACTGAAAATTACTGAAAGCTAATTAAAA AAAGTTCATAAACAAATTTGTTTGAACACGTTATTGACTTGGCATACATA TATAGAATTTCACAGAAATGACTTGCTCAATTCGAATATTAGGGAGATAA AAATCCTGACCGTGTGATTCATTGAGATTAGTTGAATTCTTAACATTCCA TGGACAGACAATAAGAATGATGAAGTATAAAGCGTTAACAATTACTTAAC AATGACTGAAAACAGAGCTACCGTTACTTTCAACATTAAGCAATAAGTGA GCAACCCAAGGCACTTTTTGATCTTATAAATATGTTCTTTCAGCGGACAT TGCAAGTCAAGATAAGAATTTCTTTTCTTTCTTGAACCACGATTCGCGAG ACGAAATCAACGATCGGATCCAACAACACCAACAAACGAATGGAGCAAAT CACCAACCTGAATATATCAGCTCATTCAAAGGTAAGTAAACCATATTCAT AATGAAGGAAATGACTTTAACAGCCAAATATAGGTAGCAGAACTCGAAGA AGCGAGATATTATCTATCCTTGTTCAGTCTAAACACCCCTTCCTTTTCAG ATAACTTTGCAGCTGAAAAGAACGTGTTACCAGTGCGTTCGAACTCTACT GGAGGGTTTGATGATGAAGATGAAAATGAAGGGACACATTACTTTGACCC TGGTACTCCTCTGCCACAGGCCAACAGTGAGGAGGAGGATCAACCTGCCG AAGGGCGGTCCACTTCCAAACCAACACGACATGGGGATGGAGGGCACGGT GATTGGTGGAAGGACTATTTCCCACACCATGGAACATGGGATGATCCTAA CCACGTCTATGGAGATGCTCAGATGGTCCACCATGTCCCTTGGAATGCCA TGTTTCCTCGCCACAGCTACCTTCCACATGAAGACCTTTTGAATCATCAG CAACATTCTTACATGGGGAACCAATTTCACCATTCATACGAGCGCCATAA TCCAAAACAGAACCCAGGTTTTCTTGGAGCGAGCCCAGCGAGTGCAGAAG TCAATTTCTACGATGGTTCCTTAGTGGAAGGGGCCCCACGCAAAACTCAC AGACATGGTCACCCTTATGGACACAACACACCATATCTTGCTGGTGACGG AATGGAGTCGGACCATGAAGGAGCGAACGAAGATGAGGGTGATGGAAGAG AGGATGTCGTTGAAAGTGTTCATGGTGATCTCTGTGTAGAGAAACGAGAT GGAATATGCTCATATAGTGGTAAGTAGAGACGTAGTTCAAGAAACACCAT CTTAGAACAAACTTATATTTTGAGGCCATTAGGATATTAGAAGGAAGTCC TTCACCTTTGTAGCATTATTATCTTATCATTTCAGGAACTCGAAGAACTC AAGAAAACAATCACGATGTTGAGCATCACGAACATCACGATCACACACAT GAACATGTAGATCACCATCACGACCACGCCCATCATCACCACCATCACCA TGACGACCATGAAACAGATCACCATGACGACGAAGGTGATGGAGACGTAG AATACCATGATGATGGTGAAGGAGAGCAAAGTTATTACGGTGACCATGGT AACGGTGGAGGATATGGAGGGCATCACGATGGTTGTCATGATCACCATGA CGACTGTCACCATGAAGACGTGCATCATCACCATGACCACCACCACCATC ATCACGAGCACGTTCATCACGACCACGAACACCACCATCATCACCATCAT CACGACCATCACGACCATCATCATGATCACCATCACCATGACGACCACGG TCACTATGGAGGGTATGGTGTGCACCACCGCTCCACAACAGAAGAAAGCA TGGTGGAATTTCAACGCAACCCATTAGATCCACACAGTGTGGACATCAGT GATCATCATGATCAGGACGAACATCACCACGAAGCTCTCATCTCACCCAT ACCTCAAGCTGTTGAACAAATCGCTGTCGATCCTTCCAATCACGTCCACT ACTTGTCACGTGATGACTTGCATGATCTACATTATGATAACGGACTACTT CAACATCACGATATTGAACGGTTTCACGATGACGACCATCACCATGACGA CCATGAAACCGAACACCATTACCATGACGACGATCACGAGGATCACCATG GAGACGAGCACCATTACCATGACGACCATCACGATGATCACCATGGAGAT GAACACCATAACAGCCACCATGAACATCACCATGACGACCATCATGATCA AGGGTAAGTTTAACCTNACAGATTCCTCTACGATAAGCCGTAAATCTGAT CTCGTGTCTGGGCAAAGAAGAAAGAACACTGTAGTTTCGTCATCTCAGGA AGCGGAACAATCGCTGAATACCGGTTCGTCTCGCTCAAGACAAAAAAGAC AGATCAAACTTCTAGGGCAGAATACAAGACAAATAACAAGTGAGTCAATA TTTCAACATCTATTTGAGAAAAAGTGTCAATAATGTCAATGCTTATAGAT CAAAATACACAAAACGTTTAGAATGTTTTTAAAAGGGCACAAAATGACGC ACCTCTTTCCAAAAAACTGAAAGATTCTAATTTGGACTGACAGTAATAAC TTTCAGCTACAAGGGAAAAAAACTTCACTGATTTAATCACAATTCAAAGA AATGTCCTTGCTGATAGATAGACTGACTGAAAATTACTGAAAGCTAATTA AAAAAAGTTCATAAACAAATTTGTTTGAACACGTTATTGACTTGGCATAC ATATATAGAATTTCACAGAAATGACTTGCTCAATTCGAATATTAGGGAGA TAAAAATCCTGACCGTGTGATTCATTGAGATTANGTTAAGAACCAAATAA AAAGTAGTTCGGTGTTGGTAAATCAGAGACATGATAAATCACCATCTTTT AGTGCAGTGTCCAAGAAAACTGTAAGTGAAGAAGATAACACAAATGTCTC TATGAAAAAGAGCACTACGACGTCCAACGCGATGCCAGAGTTGAACAGCA AAATAACTTCTGGTCAAAAGCAACCCAACCTCCAAGCAGAGATGGAGATG TTCAATCAAATCACAGAAACTCCTTTCGACCAAATGGAATTGAGTGAAAA CATGGGTTCTGTCGTAACCCAAGCTAAGATGCCGGAATTGAAAACGAAGA AGAAAAAAGGCACAGTGGTAAACGAAAATACAACAAAGAAGTTGAAGAAT GAAATGAAAACACCGACTCTTAAAAGCTTCATAGGACCTATCGGTGTCAC CTCACGAATGGTTGGCTCGATGAAGAAAACAAACCACAACAATATAACAC AGGCTCATCCTTACCAAAGACATACAATCACACCCGCACGTGTTCCAACT GTAACCCGATCGGGAAATCGGAATACATCAATGGCAGATTCCTCTACGAT AAGCCGTAAATCTGATCTCGTGTCTGGGCAAAGAAGAAAGAACACTGTAG TTTCGTCATCTCAGGAAGCGGAACAATCGCTGAATACCGGTTCGTCTCGC TCAAGACAAAAAAGACAGATCAAACTTCTAGGGCAGAATACAAGACAAAT AACAAGTGAGTCAATATTTCAACATCTATTTGAGAAAAAGTGTCAATAAT GTCAATGCTTATAGATCAAAATACACAAAACGTTTAGAATGTTTTTAAAA GGGCACAAAATGACGCACCTCTTTCCAAAAAACTGAAAGATTCTAATTTG GACTGACAGTAATAACTTTCAGCTACAAGGGAAAAAAACTTCACTGATTT AATCACAATTCAAAGAAATGTCCTTGCTGATAGATAGACTGACTGAAAAT TACTGAAAGCTAATTAAAAAAAGTTCATAAACAAATTTGTTTGAACACGT TATTGACTTGGCATACATATATAGAATTTCACAGAAATGACTTGCTCAAT TCGAATATTAGGGAGATAAAAATCCTGACCGTGTGATTCATTGAGATTAG TTGAATTCTTAACATTCCATGGACAGACAATAAGAATGATGAAGTATAAA GCGTTAACAATTACTTAACAATGACTGAAAACAGAGCTACCGTTACTTTC AACATTAAGCAATAAGTGAGCAACCCAAGGCACTTTTTGATCTTATAAAT ATGTTCTTTCAGCGGACATTGCAAGTCAAGATAAGAATTTCTTTTCTTTC TTGAACCACGATTCGCGAGACGAAATCAACGATCGGATCCAACAACACCA ACAAACGAATGGAGCAAATCACCAACCTGAATATATCAGCTCATTCAAAG GTAAGTAAACCATATTCATAATGAAGGAAATGACTTTAACAGCCAAATAT AGGTAGCAGAACTCGAAGAAGCGAGATATTGTCTATCCTTGTTCAGTCTA AACACCCCTTCCTTTTCAGATAACTTCGCAGCTGAAAAGAACGTGTTACC AGTGCGTTCAAACTCTACTGGAGGGTTTGATGATGAAGATGAAAATGAAG GGACACATTACTTTGACCCTGGTACTCCTCTGCCACAGGCCAACAGTGAG GAGGAGGATCAACCTGCCGAAGGGCGGTCCACTTCCAAACCAACACGACA TGGGGATGGAGGGCACGGTGATTGGTGGAAGGACTATTTCCCACACCATG GAACATGGGATGATCCTAACCACGTCTATGGAGATGCTCAGATGGTCCAC CATGTCCCTTGGAATGCCATGTTTCCTCGCCACAGCTACCTTCCACATGA AGACCTTTTGAATCATCAGCAACATTCTTACATGGGGAACCAATTTCACC ATTCATACGAGCGCCATAATCCAAAACAGAACCCAGGTTTTCTTGGAGCG AGCCCAGCGAGTGCAGAAGTCAATTTCTACGATGGTTCCTTAGTGGAAGG GGCCCCACGCAAAACTCACAGACATGGTCACCCTTATGGACACAACACAC CATATCTTGCTGGTGACGGAATGGAGTCGGACCATGAAGGAGCGAACGAA GATGAGGGTGATGGAAGAGAGGATGTCGTTGAAAGTGTTCATGGTGATCT CTGTGTAGAGAAACGAGATGGAATATGCTCATATAGTGGTAAGTAGAGAC GTAGTTCAAGAAACACCATCTTAGAACAAACTTATATTTTGAGGCCATTA GGATATTAGAAGGAAGTCCTTCACCTTTGTAGCATTATTATCTTATCATT TCAGGAACTCGAAGAACTCAAGAAAACAATCACGATGTTGAGCATCACGA ACATCACGATCACACACATGAACATGTAGATCACCATCACGACCACGCCC ATCATCACCACCATCACCATGACGACCATGAAACAGATCACCATGACGAC GAAGGTGATGGAGACGTAGAATACCATGATGATGGTGAAGGAGAGCAAAG TTATTACGGTGACCATGGTAACGGTGGAGGATATGGAGGGCATCACGATG GTTGTCATGATCACCATGACGACTGTCACCATGAAGACGTGCATCATCAC CATGACCACCACCACCATCATCACGAGCACGTTCATCACGACCACGAACA CCACCATCATCACCATCATCACGACCATCACGACCATCATCATGATCACC ATCACCATGACGACCACGGTCACTATGGAGGGTATGGTGTGCACCACCGC TCCACAACAGAAGAAAGCATGGTGGAATTTCAACGCAACCCATTAGATCC ACACAGTGTGGACATCAGTGATCATCATGATCAGGACGAACATCACCACG AAGCTCTCATCTCACCCATACCTCAAGCTGTTGAACAAATCGCTGTCGAT CCTTCCAATCACGTCCACTACTTGTCACGTGATGACTTGCATGATCTACA TTATGATAACGGACTACTTCAACATCACGATATTGAACGGTTTCACGATG ACGACCATCACCATGACGACCATGAAACCGAACACCATTACCATGACGAC GATCACGAGGATCACCATGGAGACGAGCACCATTACCATGACGACCATCA CGATGATCACCATGGAGATGAACACNAGCCCCACGCAAAACTCACAGCCA CGGTCACCCCTATGGACACAACACACCATATCTTGCTGGTGACGGAATGG AGTCGGACCATGAAGGAGCGAACGAAGATGAGGGTGATGGAAGAGAGAAT GTCGTTGAAAGTGTTCATGGTGATCTCTGTGTAGAGAAACGAGATGGAAT ATGCTCATACAGTGGTAAGTAGAGACGTAGTTCAAGAAACACCATCTTAG AACAAACTTATATTTTGAGGCCATCAGGATATTCGAAGGAAGTCCTTCAC CTTTGTAGCATTATTATCTTATCATTTCAGGAACTCGAAGAACTCAAGAA AACAATCACGATGTTGAGCATCACGAACATCACGATCACACACATGAACA TGTAGATCACCATCACGACCACGCCCATCATCACCACCATCACCATGACG ACCATGAAACAGATCACCATGACGACGAAGGTGATGGAGACGTAGAATAC CATGATGATGGTGAAGGAGAGCAAAGTTATTACGGTGACCATGGTAACGG TGGAGGATATGGAGGGCATCACGATGGTTGTCATGATCACCATGACGACT GTCACCATGAAGACGTGCATCATCACCATGACCACCACCACCATCATCAC GAGCACGTTCATCACGACCACGAACACCACCATCATCACCATCATCACGA CCATCACGACCATCATCATGATCACCATCACCATGACGACCACGGTCACT ATGGAGGGTATGGTGTGCACCACCGCTCCACAACAGAAGAAAGCATGGTG GAATTTCAACGCAACCCATTAGATCCACACAGTGTGGACATCAGTGATCA TCATGATCAGGACGAACATCACCACGAAGCTCTCATCTCACCCATACCTC AAGCTGTTGAACAAATCGCTGTCGATCCTTCCAATCACGTCCACTACTTG TCACGTGATGACTTGCATGATCTACATTATGATAACGGACTACTTCAACA TCACGATATTGAACGGTTTCACGATGACGACCATCACCATGACGACCATG AAACCGAACACCATTACCATGACGACGATCACGAGGATCACCATGGAGAC GAGCACCATTACCATGACGACCATCACGATGATCACCATGGAGATGAACA CCATAACAGCCACCATGAACATCACCATGACGACCATCATGATCAAGGGT AAGTTTAACCTTTTGAACCTATCAAAACGTGTTTTAATTCACACAAAAGA TCTATCTTCAACTACACATTGTATAAAGGGATTGATTTGTTTTTCTTCAC AACAGATACGTAAAACATCACAATCCTCACCAATACGAACACCATGAATT GGACCATCCAGCACGTGATCATTACCATCAGACGACTGACCATGGAAGTT TTCATGGATCTCACCATGGCAACGATGATCACCATGATGATGATTTGTAT TACGAGCATGAGCACACTTTCCCTACACCTTTGCACCAGTCATACCACAC ACCTTTATTCGCACCACCACAAAGAGAACTTCCCATGTTTCAAGTCCGAT ATCCTCACCATGATGATGAATACCATGACCATCATCACCGAAGAACTAAC ATCCAAGACCACAACAACAACTTTCAACCGCTCATAAAGAGAATAATCAA CAGTCTGAACATTGAAATTGTTGATATCAAGAAAAAATAAAATCGAGATT TTTGAATTCTTCTGTTGCAGACATCGAACAAATATGGTTGGTCGTATTTT TCGAATAATACTTTAACAGTGTTAAGACAACCTATGATACAGAGGCTTCT TTGTCGCAACCTTCTGCAAAAATAATGAACTATGGATATTTAATTTCATG TTGTCATGAATTTCGATTGATACATGTAATTCTTCTGGAAAAAAAGAAGA GAATGAAAATTAACCTATGCACATGGTGTTTAGTCCAAAACAAGATTTAT GTAACATAGAAATAATAAATTATAAGATTTGTCAAATCTATTTACAGGGG TTGATCTACTTTAGATCGGTTATTTTTTTAAAGAAAAAATTATAAATACA AAAAACAGTTTTTTGGGCTTTCTCTGAAAAGAGTCAAACAATTTACAATT TCACGCATTACTGTGGGATTCTTAAAATTGATAATTAGCGTAAGGGATAA GGTCATATTTTAGCATATGAATTAGCAAATTGTAACACATGAAAAAATAT TTTAAAAGTTCCCTATCTGATAACTTAAGTTAGGTAAACAGCCAATATGT ACATTCACTTGAGTAAGGGTGAACCTTGTAATGTAATGACTCTTATTATA AGAATTCCCAGGCTGTTAAAAATTTACTTTTCATGAAAATATATAAATAT GAGAATTTCTGTCTAAAAAAATAAAATTACTATGTACATTGTCAATGCTT AAAGAAAATTTCAAATAACACTATTGTCGAAAAGCCAATCCCTACATTGC ATTTCACAGTATATCTCCTGAATTTCGAAACCTAACTATAACTCCTATTT CTCCTAAATTCAAATTAATACACTCTTCTCGAGATGCATAAATTTATTGT TGCCCTCGTTTTCAAACAGATTTTATTGCTATAAAATTACATATTCACAA TGATAATTGTGTTGTTCACACCTCATGAGACATTTTGAATTTCAAGTACT TTTGTTGCCTTTTGGGAATTTAAATTGGTTTAAATGTATAATTTCATAGC AATGAAATGTGTTGAAAACGAGGACAACAATAAATTTATGCATCTCGAGA AGAGCGTATTGGTACAGTAAAAATTTCGTGAAAATGCAAAACAACATTTT TACAAAAACATTACTGAAAGAGGAATCTAATAAATCGGATCAGAACCCAA AACCTAAATGCCGCATTACCTCGCACCATAAAGTAAATGGAAACCTTGCT ATGCTTTTTCCTTAATATTTGAGCACTGGATATTTTATATAGATGCAGAA ATGGCTCATATATTAGTTAGTTGGAATACTAAAAGGATATGTTTATTATC ATGTATCTCAGTGTTTTTCTTTAAAACCTGTATTATGGGGGAAAGCATGT AAGCATTAGTAAATAGTATTCAATGATCCCTAAAAACGAAACAAAACACC AACAAAAAAGCGACGATAATCAGCTTAAGATGTTATCCCCCGTCCCATCA AATGATGACTAATGATGACTATTGAATATTGGACGGGAACTGTCAATTTT AACATATACTCAAATACAAGTATTTTCTGCGTTCGACGAGAAATGAAGAG TGGCTACCCTTTTCTAGATTCGAGTCGTATTCCGGGCAGTTCGTTATCAT TTTGTGCGTGTCAGAATGTGACATTAGTTAGTACACCAGTCAATAGAGTA GCAAACTTTTTATTCGGAATTTTTTCACCGCTCACCTTATAATGATACGA AATCGTATTCTATTACCACCACCCCCGCCACCACCACCGCCTCCATTTTC ATCATCATCATCATCTCCGTCGTCACTACTGAAAGAGTCCTCATCGCTGG AAAATGTTCGATGCTTTTTCAATGAAACTGGCTTAGGGTGGTTGGCGTCG CGAAAATATCGCAAATATTTGATCAATATTCTAGGTAATGGTAAGTCATC TAAAATATCTAGTTGAGCGAAGGAGATTTCATCTTCGGGTGCGGTCAAAG TGAAGACACTTTGTAGAATGATTTGACGAGAAAGTTCTTTCAGTGTTGGT GGTTGTGTAT
Gene-mRNA-Prot
The following transcript feature(s) are a part of this gene:
Feature NameUnique NameSpeciesType
TCONS_00001115TCONS_00001115Clytia hemisphaericatranscript
TCONS_00001114TCONS_00001114Clytia hemisphaericatranscript
TCONS_00001113TCONS_00001113Clytia hemisphaericatranscript
TCONS_00001112TCONS_00001112Clytia hemisphaericatranscript
TCONS_00001111TCONS_00001111Clytia hemisphaericatranscript
TCONS_00001110TCONS_00001110Clytia hemisphaericatranscript
TCONS_00001109TCONS_00001109Clytia hemisphaericatranscript
The following polypeptide feature(s) derives from this gene:
Feature NameUnique NameSpeciesType
TCONS_00001114-proteinTCONS_00001114-proteinClytia hemisphaericapolypeptide
Position
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
sc0000007supercontigsc0000007:345099..357408 -
Expression

Hover the mouse over a column in the graph to view expression values in transcripts per million (tpm).
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Values :
    GrOo_1	 GrOo_2	 FGOo_1	 FGOo_2	 EG_1	 EG_2	 P1_1	 P1_2	 P2_1	 P2_2	 P3_1	 P3_2	 PoPr_1	 PoPr_2	 St_1	 St_2	 GO_1	 GO_2	 PH_1	 PH_2	 BMF_1	 BMF_2	 MMF_1	 MMF_2	 M_1	 M_2	 GEC_1	 GEC_2	 GEN_1	 GEN_2
0.02 0.09 0.05 0.08 0.26 0.25 3.74 4 1.1 1.46 3.15 2.2 6.83 6.42 3.19 9.98 5.01 4.61 0.61 1.61 3.45 3.47 2.4 2.97 8.35 10.31 1.12 0.38 0.54 0.39