XLOC_034511 (gene) - C. hemisphaerica

Overview
NameXLOC_034511
Unique NameXLOC_034511
Typegene
OrganismClytia hemisphaerica (Jellyfish)

Sequence
The following sequences are available for this feature:

gene from alignment at scaffold_245:734789..741252+

Legend: gene
Hold the cursor over a type above to highlight its positions in the sequence below.
>XLOC_034511 ID=XLOC_034511|Name=XLOC_034511|organism=Clytia hemisphaerica|type=gene|length=6464bp|location=Sequence derived from alignment at scaffold_245:734789..741252+ (Clytia hemisphaerica)
aaTTTCATAATGGAATCCCTTCATAATGGCTGCTGacacatttcaaaaaa actgaaatacACTGGTAACAAGAATCTATCTACTGCTTGTTcctgattgt tacaagaaacaGACATGATAAAGCAATCGCAAGGTATTATAATGATATCT CTATTTCCAATTTGTTTTATTCCatcttctttcatttttgacAGTTCACT atctattttgtatttttttttataacaatctGACGATAGTTCCTAGTTGC CAAGTTTAAGTTTCAGACAGTCTAAAAACTAGGAGGGTGATGCGatggaa tataaattttttactaaaataaaacaactaagaaagttatgttttttcta agaaagaaTGACCACTGAAATAATATACAGAATTTgtcagaatttgattg gctacgTCTGTGAGGACCCTGCCGatgcaccggactgtccggtgtatttg tccggtggcaaaaagtatcctattgctacaccggacgcaataagtccggt cagtacagtcaagtatcaatatttgaggtattacgaaaatcgctactttt tgccgtaatcgctttcgtttttaacataaggacttagcaacgggtacccc aggcatagttacggggcattgagaaaaaatcctgacatagaatttcaaaa agattcacgctatcatattctacattacaaaatNNNNNNNNNNNNNNNNN NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN NNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNtacattac aaaatacacctgttctatgttgggtttttttctcggtgttttgtaggctt aattatcgtcatgcaaagtaaataaaaccccctggaaatctttaggttct gataagcaaaatacttacatactattgtttacttttcaggtattcatcca atcagaattcacgctcagaaactttcaatcaatcaaaattcaaccttgag gcgggaaatgatccaatcagaatcccgaagctaaagacttacagccaatc agaatctgttagcgagcggtattcatccaattggaatcgcgtaacacgaa agcgaaagtgaaagtaaaggcggaaatatattctttttcgacgtgatttg catatattagaacagaaagaaacgccaatttgtcaaagatttgtttaaaa ccaccttattttttgttgagtatcgcctaaatttattgaaaaaatatgct tttcaacattaatcttaaaatcccTTTTATTGTTGAGTATCCCCGGGGCG CTCAacgccgaaagaaaaataagcgggcggaaccgccctcgtagtttaat cccgggattgaaaaaacctggagaaaaccttttccgtacgtagctaagga attttaaaacacggcatttaaagtgaaacaagatggcggagaagtagtga ttggaggtttttgtaattagacagcatgacaaaaaggtttgttatatttt agcataacaaagacaaactcaggaggtaaggtaaattgcgttctgactgc ttttaactgtttttctaataaagaatatcttcaaacttgacttcactgcc ggtgtcagtccggtgttgcatacagggaattttggacgccggacgacatt tatgaaacaaaaaattaagtaacACCGGAATGGTCATGTCCAGTGTTTTG ATTGtctggtggaaaaaatatccttctccgacaccgccGGACATCcaact tccttaagtccggtgtagagattgtccggtggtaaaaaaaattctcattt tacaccggactttcgcgtgtccgatGTTCGTTAAgtagtccggtgcgtcg gcagggtcctcgtCTGTGTTTTCAACTGCATTGTTTGGAGCTGGGAAATT CGAATTCATAGCCCAAACCATGCTATTCATTTTGCCATCAGGtcaggcca atttaatttgttgttttacgggtcAAGCTCCCCCAAAATAGAGGGTCGgt cagtgaaaaaataaaaataaaataaaagtcgaaagtagaatttcacaact ctcgggtgcctaataaacgtacatgtgtCAAATTTCCCGTCTGTACGCac cttatagacctttttttaaagaggcagcgaagttgaataattatgtactc cagcataaaaacaatgacacagccatgcataattactgtatatatcatgt atattttaaaaattatgcatggctgtatcattgtttttatgatggagtac ataattattcaacatggctgcctctttaaaaaaaggtctattaggaCCTG cacgtttatttaatttgacccAATATTTTCCGATTCATACTGGaaaatat ttgttatttttctgtTCAAATAAGACGTGTAGAAAGGCCGTTAATTGCAT TCAAACACTATTGTGGGAGATTTCGAATGTTACATGAGTAAAGTCGAACG TTTTGCTAGAAATTCAAGCGTTTGATTTGAactctacttttgaaaaattg atagATTTTTCCCTGTATACTGTATGTTTATTTTAATAGCCtatacgttt atttattttagctctgatttctcgcGTGTACatttatttcagcctgtacg tttattaattccaattttattcccccccccctgtacgtttatttggCCCA TGAGagtataaaatctcctaaaatggcagcaaaaactactgcATCTTGAC GAAAATGcaaaatgcaaaataaaaagacataaaaaggttgcattcatgga taaaatgaaaaaatgaacataaaattctgacagtctgtaaagcaatgaaa ataaatatatatataccaccaaaatcaattttatttttattacaattttt ggttgggtccgtaaaacaactaatcaaattggtctcatttcagaaaaaaa gtgAGACCAAGTTTGTAGTTACTGTATTAGTATTTTTACTTTGACAACTT TGtgcaaaaaggaaaatatgtgaagttttctttttttgttggttCAATCA AAATGTTTGGTGTGTTCACAAGCCCCTGTAACTTTGAGCAAGCATCCCAT CGCTAAGTTAAGATGTTTGCTTGAAATAGAAAATCTATATTAACTTAGTT TCATCCAAATAGAACTATAATATATACGCAATATGGTTTTGATGAAATAT ATGAAGACAATAAAAAAGTCTTGACATTTCTTAAATAAAAATACATGACA TTTACTAACCTGCCAGAACCATGCATCCTCACATCAAAATAAGGAACTTG TTACGGTTATTTAGTGATTAAAATATAGGAATTGTTTATATATAAAAGTT ATACTCTGATCACAATGAGGGCTTCCCTATCCAAGCTCATCTTTGATATT AGATTGATACTTTAAAGGATTTAAAGAAATTGTATTATATATAATAAAAG CTATTTATACTTTCATAGAACAATATAACAAAATGATGCTTGGTAGCAAT ATACGTTTATCCAAAGTTTCTATATTGTTGACAGTTTTGTCATGTATGCT GGTTATTATTTATATGTGGGATACATATGGGGTTGGAAGTCGATCGGGAG ACACACAGACAGTTTCATTGGTCAATTTGTTGATTGCGAGTATCGAAGCT GCAAAACGTGGTGGTGTGATGGTGAAAAGAGTGAAAGAAGGCAAAGATTT AGGGGTAAGGTTTATTACTTACTTGTTTTACAGTTTTTGATGTACttatt gaatttttctttccttgatctccaaaaatgttggttcttcttacaagaaa agtGCTGGAAAAGTGTTATATAATGTATATGCTGTGTGTATAAAACATAT AGATACCTAACAACTCAAACAGATACGAGAAGAAGGAAGGAATAAGAAAT ACTAAATATAACGCTTGGAATCAGAATAGTTAGATATGAcgtttggttgt ttttttcgatTTGTTATAATTAGACTGGATAATTTAATAAAACCTTGAAT ATGGTCATATTGATTAGGTCTTTGAGAAACAGAAATTTACAGTGAGATAC TTTAGGCATACAAACTTTCGGAGGCAGATACTTTcgcaattttcgcgaat ttttcccatttttacgAAAGTATGGAAAGTATATATGTGtttaaaaattc ttgacaaaatagaaaatttgtaaaacttgaaatgaaattaaaaagattta tggcacttttttaGCCTGTTTTTAAACCTCAtaagtcaaaagaaaaaatt tttaaccatttcaagaagaattttttcgtgtgaaattttttaatttttat gtctttattcgcgaaagtttatgctcgcaaaaaagattttttcgccaaat tcgcgaaagtagatgttttaaatttcgcgtttttcgacgtcgcgaaagtt tctgctcgcgaaagtttgtacgcctaaagtaatgcttgatttttcttata tttttactGCGGGAAATACAGCATTTGGCGTATTGTTTTCACGTTTTTCT GAAACGCGAAATATGCACCCTTACTGGTTGCTCTACTGCAAAAATTAATT ATTCCACTTTAGTTGGCCCCTTAccgttttttttcttattctaaGAAAAA TCCAAgacttttaaatatttcaattcttaGGAGAAAAGCAAAGGGAAAAC AAAAGAAGGTGTCAATGATCCGGTAACTCAAGGAGACATGTTATCTCATG AACAAATGTATTTCAGCTTGTTGAAAATGTTCCCTGAAGTCAAGATTGTT TCTGAAGAGAAATCTAGTGAAGTTCCTGACGTTGGTGATATTAAACCTAT CAATTTGGATAACACGGACGTCATTGAAAAATTGGGTAAGCGAATTCGTC GAGCACCTAATTTTAAACTATTGAATAGAACTACTGACCTTTACTATTGG TTCGTCTAGAGTAAACTGTTACACTGTCTTCtctgtcttctttttttctc aataagGGCAAATACGGTATATATCCCACATCCACGTAATGTATTTGATC AATGAAATCACTAGAATCTTTCTTATGCGGGATAAAGTAGCCTATTTTGC TTCCAAAGCATAATCTTTTCTAAATCAATCTATTTAACTGTTAATAAAAA CCAATCAGATGATTtagacagaccctggaaaaccaGGGTTAAACCTTAAA AAACAGGCCTTTAAAGAATATACATTCTTATAACTgataaatgtttcttt ttatctttCCAGGTAGTACGTTTCAATCTGATGTCAACATTGATGACGTT ACAGTATGGATCGACCCACTGGATGCGACTAAGGAGTATACTGAAGATTT ACGTCAATATGTCACCACAATGGTTTGTGTGGCTCATAAAGGTTCGAAAT TTTATTTGCCATTTCTTTACATCTGGTAGATTAATCCGGAGGTCTGGGCA TGAATCTttttatatcaaaagaaaatctaaTAATCTTTAAATCACGATTA GGTTTGTATCATGTCACTAAGCTTTCTGGTTTTATAATACTATTAAAACC TTGAAATATTTTCCCTTCAGCATCACTAATTCAAAGACATTAGGAGCTAA AActatgtttgtttatttttttatataggaCAACCTGTGATTGGAGTCAT CCATAAACCATTCGAAGATGTGACAGTGTGGGCGTGGAAAGGTCATGGAA GATCACCAATACCTGGATTCAAAACACTTTCTGATCGCAAGGACTTCAAT GATCTAAATATAATTGTGTCTAGATCACATCAAGGAGCTGTTAAGGAGCT TGCAGCTTCGgcttttggtgaaaattcgaaAGTGACGGCAGCCGGAGGTG CTGGGTACAAAGCTTTAAGTGTGGCGCAAAGGGAATCTGATGCTTATATC CATAACACGGCAATCAAGAAGTGGGATATCTGTGCTGGTAACGCCCTTCT CTTAACAATGGGCGGAGATATGACTGATCTGGTGGGTAATAAGATTGATT ATTCCCCGCCCACTGGCCCCGATAGGATTGGCGTTAAATTGACTGGTGGG TTAGTAGCTACTTTTCAGAATCATGGTATTATTGTGAAGAAAATTAAGAA AGCTATGaacgagaaaaagaaaattacagtAGCATGAAAGGAGCTAAATT TTATGTAggatatttgaatttttattagaaatttattttaaatgagTGTT CTGTTGAAATCTTTCTGTTCGTCGTttgtcaattttaaaagttggataaa cttgaaaaattagaaaatatcaaaattcttggtaaatttttactttcttt tgagTTTAATTTGCTTTTTTATCGTCTGTCTTTGTAGGTACAGTAGGAAG CTAAATAGGCCTTTTAATATGTAGTAAGTaattttttaacgttttattTG CAgttccttttgaatttatttttaaacctTATTTTTGTTACCATTTTATG AAAGGTTTGTTGGTGTTTATTGGTATTGGTTTACTGCACTGTTACAATTG TTGTGAAGATTCTATCTCTAGAGTACGCATATTTCAAAAGCTAATGTTCT TAACCCTTTGTGcg
Gene-mRNA-Prot
The following transcript feature(s) are a part of this gene:
Feature NameUnique NameSpeciesType
TCONS_00054788TCONS_00054788Clytia hemisphaericatranscript
The following polypeptide feature(s) derives from this gene:
Feature NameUnique NameSpeciesType
TCONS_00054788-proteinTCONS_00054788-proteinClytia hemisphaericapolypeptide
Position
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
scaffold_245supercontigscaffold_245:734789..741252 +
Orthologs
The following orthologs are found for this feature:
Ortholog NameDescriptionOrganism
IMPAD1inositol monophosphatase 3 Homo Sapiens
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
11.59 9.36 5.7 7.23 16.03 12.66 31.99 33.03 28.79 31.49 18.8 16.59 11.58 9.49 8.9 9.54 21.53 18.04 6.62 11.34 13.7 12.99 14.91 13.45 13.45 15.4 19.05 12.53 14.76 12.71