XLOC_015618



Basic Information


Item Value
gene id XLOC_015618
gene name NA
gene type non-coding
species zebrafish (Danio rerio)
category of species model fish

Chromosome Information


Item Value
chromosome id NC_007113.7
NCBI id CM002886.2
chromosome length 59640629
location 35482156 ~ 35502933 (+)
genome version GRCz11_2017_zebrafish_Genome

Sequence


>TCONS_00031181
ACCATGATCAAACCACTGCAGCCGCTTCAACAGAACCAGTGGAGGTGTGTTCAGCGTGGAGGAATACCAGCAATCACTACACATCTGAAGaaaTGCCCTCATTCCATCACATCTGCGAGAGTCAGCGCAGCAGAGACTAAAATAGAGTTGGATTCTCCAGAGGGTCTGAAGCTGAGAGGAATCCACCCAGCATAAACACGACCCACCATCCTCAATCCTCACCAGATATCAATCGTCAGAAGTCCAAGAGAAACGGTTTACGAGCGATGCTTTGTTGTCAGAGCCCAAAGGCAAGGCGTTTCATGAGATGAACACTGTAGTTTGGGATTAAAGCAATAACCGTGCGTACATGAGGATCCATCATACTACAACCAACTTGTGTGATATTTCTTCAAGATGGGACCTTCTGTGATGTCAGGAAACATTCAACAGGCCTGAATTACACTTAAACCGGACACTTTCTTGATCCTCAGATAATAATCTATGCTAATTACTGCTTTAATCAGATCTACGGTGGCTTTACATCTTAGAACGCATTGGATTTGATCTGGGAAGAACTCCCGCTCAACCATGAAGGAGGCGATCCTGCAGTTTCTGAATGATGTATGGAGCGTGGCTTCGGTCAAGCATGAGCAGGGTGTCTACAACACGGTTTGTCTTGTTGTTCTTCTGACTCTGCCGCTGGTTGTGCTCTTCACATCCGTGCTGGTCTGCTGTCACTGTTGTTGCTGTCGTAATGCTGGAGGATGCCGCTGCTGTGGACAGAAGGGTGAGACCTCGGTCACAAATGTGAAAtctgaaaagaagaagaaaaagaaaaacggCGGCCAGAACAGCGAGGACTTGTGGATCTCTGTCAAAGCAGATCCCATGAGTAGTGACAGACTGGCACTCACTATGGTGTAACGTGTTGAgcagttttctatttatttatcctTGTGGTACAAGTAAAGGTACAAATGTGGGTTTACTGAAATGTGCCTGAATGTAATAACTGTAGAGAGACGAAGTTCTGAAGTGAATGAATGCGTGGGAATATGCTGTATGATGTGTGTTTGGTCAATGAAAGGTTTTCACAGTCCATGTTTGGTAAAAagaaatacatatacagtatgtgcaATACATAAGGCCTTTATTGCTGGCGTTTAACACATCATGACTAAACAAAGGTGGCCAGTTTGATCATGTAAAAACCATGCCTTAGACTTATGGTTTCGGTTTGACTGGTTGACAATAGGGCTTGGCGATTTGGCcttaaatcaaaatcttgattaattgaacatgtttaactcgattacaattaatgaGCAATTATTTTTggctataaattttttttttcgccCTCTCCGCATGACCTACACTCGTCaatgctaccaagctgaccaaacGAAGAGCTTGCGCTATACGTTGTCGTGACATGTAGTTAAACGCGGCGTCAGTCACGTGAGGGGTACGCGCAGAATTGCCACACATGGTAgggataataattttaaaaattgtcctttaaaaatttgattgattataaGTTGTGTATGTCgttttcaattacttttcgattaatcgtccAGCCCTATTTGACAATGAAATTGGCCCTTTTGTTCATGTGACCACATCTGTTCATTAacagttttccatttatttatggttgtgaattgcatgaTGGGACCTTTATCTCTGCtatgtcaacttttgatgttgaaaattcaactctacagtttaacaaagggactttcccagcaggcacacaacatcataagacgttaatattaggttcgaTTCAGGTCATGATGtgaggtgaccaaaattcaatgtctagccagcatctaagtacaatgttattttgacgtccaaaaaTAGAGTCAAACTACcttgatatttggtttattttacaatgtgttggaaagtgaccaaaatccaacatctgatagacgtcatagtggtaacgtctacacaacgtcaccgtgtaacatgattagacgttgatatttggttgattttaggttggacctTGGACCTTGGTTCTGATGTCAACcatattttcatttccaaacaaaatccaacatccctaTGACAATGGGGTACAATGTCACTATGAAGTCATggtgatgtcctgtgcctgcagggttttatcaacattttagtagtctgaaatataaagtataagaaataatgtatagacaaataagtctgtaaaataacgtactggcagtttattacacaggttttgtagcgtaatatacaacaccaacccagacaatatataaatttaaactattaaaatgttaataaaagtctctttttggaacttttcaaggttaaaagtcattggaggaaagatcaatgttccatattgcaattcaaaagcataaacaagcagggaaaaataaaatttataaaatcaTCGACTACtaaatatgaaaaactgctaatttacagatatttttagtgTGTAGGGCTGTTGAAGCTACAGTAAACATGACTTGGTGGTGCTAAAGCAAAAAACTCTCTAGCTGAGCACATATTATTAATGAGCAAGAAGATTCACTGAGCCAAGATTGCTGCATCTCAATTCGCAtactttaagagttcacactttttGATATTGAttgacaaatgttagcaggtttggcatgctatcctgggagagaaccttaagctcggagatagttgagcacagggctcccgcctggtcagtAGAGCATGTAAGGgaagtacgagatcaggtggttctcgaaaGCTCCCCGTGGTAAAGAAGGAAAGGAGGAGAatgggtggatggggggtttcttctgAAAACGAAGGTTAGGGAGTATTTCTAGCTAGACTACTTaaagtgagtttggattaatctgattggctgtagatGGGTGACCAGCTCCAGTCAATCAtgtcacatgctcctctcaaactTAGTTTGAAAAACTTCACTTGTATAACTTCACATATAAGCCctaaaaatgttacttttttgtaaagggaaaatatatacttttgagtgtgtaacaatAGAGTATGAACACTTTGGGACACACTGCTTTCTCATTAACAGATCATCGTGTTGCTTAGTTATGACCCCTAGCTGTCATATTTCATTTGCTACCTTATTGGaaaagcagcagcaggataatctgcaATTCACCAGTCTTTCATGctgagaaatctcctcaggtgtttgtataattatgcattcagacatTAAAATCCAAACATGTCTTTGTATAAgctcagtattgttgttgcagatgaaatataacacagaaaacacaatattttccagtgggctagataataattaacagtcatacaaacaaCTTTACCAAAGCATCTCTACTTGGTCTTGCGTGTCCGCcatgtttgcagtttatttacacttttcacatgttgtagttctaatcgaattcaagTCCAACGTGCAATgtactgtgggcaatatcagcggttagagtatgAACGGTTCTACACTTAAACTTTTTCTGGAAATAGTCAACAATCCAGCAACATTTAACGTACACCTTTCAACATACTACGATTTGGGACAtgctattttatttacaaatactatttaggaaggatagtatgtgaattgggatgcagcagaTGATTGTGGAGCTGCTTGTTCACACAAAGAGCTGTATGATAAACGTGACAGTGATTATAAAAATGCAGACAGTTCTTCATTGCTGGTGCTAAAGTGAACTATTAATGATTTACTTGCCAGTAAACAAATACCATGTGAGTAGATTTAAccagcacataaacacagcctCTTTCTTCTGTGTAACAAGCAAGTGTCAGAAGTTTAAAGTTGCACAGCGCCACTTGTGTAAAGGagtattctttatttttattaagcatCATCTAATATCAGGGAGTCATTTTGTACTTTCACTTTGTTCATCCCTAGTGATAAACATCTGAGTTGACAATGTGCACGAGCAAAAATTAATGTGTGCATGAGCCTTTACCTGTGGTTCTCAGTTCTGGTCCTTGGGCCCCCCTggcctgcacattttgtatgtttttcttaTTTGACACACAAGGATCAGTTCATGAATCTCTCTATTAACAAGCTcgtgatctgaatcaggtgttttAAGTAAggaagacatacaaaatgtgccGCTCGGGGGGGCCTgaggaattgagaaccactggcctataTAGCCATGGCAAAAACTTTGATTTAAGAGGACATTTacacaaaatgctttttttatttcaaaatttgaAGTCAATATGCCTctcttttttataaaaacatcaaattttcaaaatgacttttaaatagcatttcctcatatttttattcattccaCTGACCTGTGTCTTGCAATATTAGCACTAAACCATTGCATGTTTATATGGTAAACAGTCTTCCAGTACAAGGATTTTTAATGCCAGCTTGAGAAGACACATTATGAACTAGAATTTATTGTTCAACAGCATAATCTGAAATGAAGTCTGAAGCTGGCATTACTGTCCACATTTGTGTGTTCCAGCCAGTCTAGGTGTTAGTGGTTTTAGTGACTCATTTGGCAGGTTACACTGAAAGCTTTGTAGATTGCAAGATATGGCTTCATGAGTATTTATAGATGAGTCTTCAATGATTTATTCAAGATTTTTCAAATTCATTCAGAAGTGAAACCTTTCTATGATTAACTTTTCACATTTGCATTACACAATCAGGGTGACATCATGGCtgaatggttagcactgttgcctcacagtaagaaggtcactggttcgagtcctgactaggccagttggcatttctgtgtggagtttgtatgttctcccgtgttggcgtggttttcctccgggtgctctggtttctcccacagcttaaagacatgcactataggtgaattaaataaactaaatgggcagaagtgtatgtgtgtgattgtgagagcgtatggatgtttcccagtactgggttgtagctggaagggcatccgctgtgtaaatcatatgctggataagttggtggttcattctgctgtggtgacccctgatgaataaagggatttagtaagtaaagtaaccaaaatcgaacgtcaagccaacattttaaaccaaggGCACACTGTAAAAGAAATCTGTTACTTTCCATtttacaaaacgtaaaataccagacgttaaattacagaaattgccTTAAATTTAAGTTTacggcaaatttctgtaatttaccatctgttattttacagtaaatgtttgtaatttgccggtcgttattttacgttttttccaGCACCTCAGCTGCCGgaaaaaataacagattttttttcaaaaataactgtcatagtggtaacacctacacaatgtcaaggtgtaacatcagatgttgatatttggttgactttaggacgtcagcctgacgttggATTCTGACTTCGacccgatttttatttccaaacaaaatgcaacatccccacgacatcggggtacaacatcaatctgatgttATGTTGACAGCCTGTGCTGGGAAATGACCACAGCTGTCTGCTTCTAGAGAAGATGACCCCATCACCATAAGCAGAATAATTGACTCCAAGTAGTTGAATTATTCAAAAGCAATGCACACCCAAACCATATCTCAAAGCAAAGTCCAGTATAAACATTACTGTTGTTTGTCAATGGCAGCTGTCACAGGCTTGACCATCCTATTTAACAATGTTCAGTTTTTACTTTGTAGACTTCGAAGACGATGCAGTTTGCAGCCTCTGAATTTAGACATGTAAGTTGAACTTCTTCCATATTAAAATCCTGTTTATAAGAGCTGCAAACATGTACCTGCAATATTTGAAACAAATGTGTGATGCTCGATTTACATTTCTAATCCGCTCAGATGTCAAAAACGTGTCAGATTTGTAAAGATGCTTGTAAAAGCTCCtcttaaattaaatagaaaagaaaaaaaagcacgcTGTGTTATACAAACGTCAAACTGATGCACTCAGTGGGTCACAGCCACTTGTCCTTCACtccaatgcatttaaaatgagttgcTTTAAATGGCTGGAGAAATTTTCCTTCAAAAGTTTCTCTTTAAATGTATGCTCTTCTTCCTGCCATGATCTGACTGACATAAGCATTATTTACAGGGAGACTGTGTTGGATTTGAGGCTGATAAGGATGGGTTTACTAGAGAGTAGTGCAACAACTCAGTGACACTTGTCTTATAATCTCCTCCAATGCATTGAGAATGATTATACTGAGCTCAAACACACCATTATGATCAGGGTTGTGTGTAATTGGGCTAGCTGATAAACAAACTTTGATCTTTTTTTGCACTTATGCACTTATGATATGTTTGCTGTGCCGTAATTAGATGTTTATGTGGGTACTTCAACACTTTCTGATTATGCATGTCAGAAAGTCGTGCATTAACTCTCGTCttgctctttttttctctcttaaaCTGTTGTGTTTGACTGCAATGCATTTCCATATTTCTGGTAAAGCAAAGCGCTGAATTATTCATTGCGTAATCAGTGAGGTTGGATCACACTTGCCCTTCATTGATTCGGGTTTCTGTTACAGCAGGATCAAAGGAgaacatttttcatttgtttgaacAATGAAGCTGTCGAGTTCTGTTTCGTCtgcttttgttcaacagaagtgACAGCAAAGCTTTGATCAGCCCTGTTCtgcatgaaaatgactgtcagtTTGTGCGAATATGCTGAAGAAGCATTTTCCTACTCAAAGTCTGTTGCTATGCAGATTGAtgcatgaatattttattttcagctgtctttttttaaatgccaaatttaataaaattattttttatattt
>TCONS_00031182
TGTCAGGCGAAAGAGCTGCGAGCAGACAGAGGCTCTTTCTTATAGAGTTTAGCCCAGGAAAAAGACTCAGAAACAGAGCGACTCGACTCCTCCTCTCCCTctcactctctcttacacacacacaggctccAGGTACAGCAGTGAGTGTGTCCTGCGTGACATCCATGCTGAACAGCAGATTGCGTGGCTGAAACCAGGGTTATGTGATGCCCGCAGAGACGTCTGGACTGACCCTGATCAGAGCCGaaaTGCCCTCATTCCATCACATCTGCGAGAGTCAGCGCAGCAGAGACTAAAATAGAGTTGGATTCTCCAGAGGGTCTGAAGCTGAGAGGAATCCACCCAGCATAAACACGACCCACCATCCTCAATCCTCACCAGATATCAATCGTCAGAAGTCCAAGAGAAACGGTTTACGAGCGATGCTTTGTTGTCAGAGCCCAAAGGCAAGGCGTTTCATGAGATGAACACTGTAGTTTGGGATTAAAGCAATAACCGTGCGTACATGAGGATCCATCATACTACAACCAACTTGTGTGATATTTCTTCAAGATGGGACCTTCTGTGATGTCAGGAAACATTCAACAGGCCTGAATTACACTTAAACCGGACACTTTCTTGATCCTCAGATAATAATCTATGCTAATTACTGCTTTAATCAGATCTACGGTGGCTTTACATCTTAGAACGCATTGGATTTGATCTGGGAAGAACTCCCGCTCAACCATGAAGGAGGCGATCCTGCAGTTTCTGAATGATGTATGGAGCGTGGCTTCGGTCAAGCATGAGCAGGGTGTCTACAACACGGTTTGTCTTGTTGTTCTTCTGACTCTGCCGCTGGTTGTGCTCTTCACATCCGTGCTGGTCTGCTGTCACTGTTGTTGCTGTCGTAATGCTGGAGGATGCCGCTGCTGTGGACAGAAGGGTGAGACCTCGGTCACAAATGTGAAAtctgaaaagaagaagaaaaagaaaaacggCGGCCAGAACAGCGAGGACTTGTGGATCTCTGTCAAAGCAGATCCCATGAGTAGTGACAGACTGGCACTCACTATGGTGTAACGTGTTGAgcagttttctatttatttatcctTGTGGTACAAGTAAAGGTACAAATGTGGGTTTACTGAAATGTGCCTGAATGTAATAACTGTAGAGAGACGAAGTTCTGAAGTGAATGAATGCGTGGGAATATGCTGTATGATGTGTGTTTGGTCAATGAAAGGTTTTCACAGTCCATGTTTGGTAAAAagaaatacatatacagtatgtgcaATACATAAGGCCTTTATTGCTGGCGTTTAACACATCATGACTAAACAAAGGTGGCCAGTTTGATCATGTAAAAACCATGCCTTAGACTTATGGTTTCGGTTTGACTGGTTGACAATAGGGCTTGGCGATTTGGCcttaaatcaaaatcttgattaattgaacatgtttaactcgattacaattaatgaGCAATTATTTTTggctataaattttttttttcgccCTCTCCGCATGACCTACACTCGTCaatgctaccaagctgaccaaacGAAGAGCTTGCGCTATACGTTGTCGTGACATGTAGTTAAACGCGGCGTCAGTCACGTGAGGGGTACGCGCAGAATTGCCACACATGGTAgggataataattttaaaaattgtcctttaaaaatttgattgattataaGTTGTGTATGTCgttttcaattacttttcgattaatcgtccAGCCCTATTTGACAATGAAATTGGCCCTTTTGTTCATGTGACCACATCTGTTCATTAacagttttccatttatttatggttgtgaattgcatgaTGGGACCTTTATCTCTGCtatgtcaacttttgatgttgaaaattcaactctacagtttaacaaagggactttcccagcaggcacacaacatcataagacgttaatattaggttcgaTTCAGGTCATGATGtgaggtgaccaaaattcaatgtctagccagcatctaagtacaatgttattttgacgtccaaaaaTAGAGTCAAACTACcttgatatttggtttattttacaatgtgttggaaagtgaccaaaatccaacatctgatagacgtcatagtggtaacgtctacacaacgtcaccgtgtaacatgattagacgttgatatttggttgattttaggttggacctTGGACCTTGGTTCTGATGTCAACcatattttcatttccaaacaaaatccaacatccctaTGACAATGGGGTACAATGTCACTATGAAGTCATggtgatgtcctgtgcctgcagggttttatcaacattttagtagtctgaaatataaagtataagaaataatgtatagacaaataagtctgtaaaataacgtactggcagtttattacacaggttttgtagcgtaatatacaacaccaacccagacaatatataaatttaaactattaaaatgttaataaaagtctctttttggaacttttcaaggttaaaagtcattggaggaaagatcaatgttccatattgcaattcaaaagcataaacaagcagggaaaaataaaatttataaaatcaTCGACTACtaaatatgaaaaactgctaatttacagatatttttagtgTGTAGGGCTGTTGAAGCTACAGTAAACATGACTTGGTGGTGCTAAAGCAAAAAACTCTCTAGCTGAGCACATATTATTAATGAGCAAGAAGATTCACTGAGCCAAGATTGCTGCATCTCAATTCGCAtactttaagagttcacactttttGATATTGAttgacaaatgttagcaggtttggcatgctatcctgggagagaaccttaagctcggagatagttgagcacagggctcccgcctggtcagtAGAGCATGTAAGGgaagtacgagatcaggtggttctcgaaaGCTCCCCGTGGTAAAGAAGGAAAGGAGGAGAatgggtggatggggggtttcttctgAAAACGAAGGTTAGGGAGTATTTCTAGCTAGACTACTTaaagtgagtttggattaatctgattggctgtagatGGGTGACCAGCTCCAGTCAATCAtgtcacatgctcctctcaaactTAGTTTGAAAAACTTCACTTGTATAACTTCACATATAAGCCctaaaaatgttacttttttgtaaagggaaaatatatacttttgagtgtgtaacaatAGAGTATGAACACTTTGGGACACACTGCTTTCTCATTAACAGATCATCGTGTTGCTTAGTTATGACCCCTAGCTGTCATATTTCATTTGCTACCTTATTGGaaaagcagcagcaggataatctgcaATTCACCAGTCTTTCATGctgagaaatctcctcaggtgtttgtataattatgcattcagacatTAAAATCCAAACATGTCTTTGTATAAgctcagtattgttgttgcagatgaaatataacacagaaaacacaatattttccagtgggctagataataattaacagtcatacaaacaaCTTTACCAAAGCATCTCTACTTGGTCTTGCGTGTCCGCcatgtttgcagtttatttacacttttcacatgttgtagttctaatcgaattcaagTCCAACGTGCAATgtactgtgggcaatatcagcggttagagtatgAACGGTTCTACACTTAAACTTTTTCTGGAAATAGTCAACAATCCAGCAACATTTAACGTACACCTTTCAACATACTACGATTTGGGACAtgctattttatttacaaatactatttaggaaggatagtatgtgaattgggatgcagcagaTGATTGTGGAGCTGCTTGTTCACACAAAGAGCTGTATGATAAACGTGACAGTGATTATAAAAATGCAGACAGTTCTTCATTGCTGGTGCTAAAGTGAACTATTAATGATTTACTTGCCAGTAAACAAATACCATGTGAGTAGATTTAAccagcacataaacacagcctCTTTCTTCTGTGTAACAAGCAAGTGTCAGAAGTTTAAAGTTGCACAGCGCCACTTGTGTAAAGGagtattctttatttttattaagcatCATCTAATATCAGGGAGTCATTTTGTACTTTCACTTTGTTCATCCCTAGTGATAAACATCTGAGTTGACAATGTGCACGAGCAAAAATTAATGTGTGCATGAGCCTTTACCTGTGGTTCTCAGTTCTGGTCCTTGGGCCCCCCTggcctgcacattttgtatgtttttcttaTTTGACACACAAGGATCAGTTCATGAATCTCTCTATTAACAAGCTcgtgatctgaatcaggtgttttAAGTAAggaagacatacaaaatgtgccGCTCGGGGGGGCCTgaggaattgagaaccactggcctataTAGCCATGGCAAAAACTTTGATTTAAGAGGACATTTacacaaaatgctttttttatttcaaaatttgaAGTCAATATGCCTctcttttttataaaaacatcaaattttcaaaatgacttttaaatagcatttcctcatatttttattcattccaCTGACCTGTGTCTTGCAATATTAGCACTAAACCATTGCATGTTTATATGGTAAACAGTCTTCCAGTACAAGGATTTTTAATGCCAGCTTGAGAAGACACATTATGAACTAGAATTTATTGTTCAACAGCATAATCTGAAATGAAGTCTGAAGCTGGCATTACTGTCCACATTTGTGTGTTCCAGCCAGTCTAGGTGTTAGTGGTTTTAGTGACTCATTTGGCAGGTTACACTGAAAGCTTTGTAGATTGCAAGATATGGCTTCATGAGTATTTATAGATGAGTCTTCAATGATTTATTCAAGATTTTTCAAATTCATTCAGAAGTGAAACCTTTCTATGATTAACTTTTCACATTTGCATTACACAATCAGGGTGACATCATGGCtgaatggttagcactgttgcctcacagtaagaaggtcactggttcgagtcctgactaggccagttggcatttctgtgtggagtttgtatgttctcccgtgttggcgtggttttcctccgggtgctctggtttctcccacagcttaaagacatgcactataggtgaattaaataaactaaatgggcagaagtgtatgtgtgtgattgtgagagcgtatggatgtttcccagtactgggttgtagctggaagggcatccgctgtgtaaatcatatgctggataagttggtggttcattctgctgtggtgacccctgatgaataaagggatttagtaagtaaagtaaccaaaatcgaacgtcaagccaacattttaaaccaaggGCACACTGTAAAAGAAATCTGTTACTTTCCATtttacaaaacgtaaaataccagacgttaaattacagaaattgccTTAAATTTAAGTTTacggcaaatttctgtaatttaccatctgttattttacagtaaatgtttgtaatttgccggtcgttattttacgttttttccaGCACCTCAGCTGCCGgaaaaaataacagattttttttcaaaaataactgtcatagtggtaacacctacacaatgtcaaggtgtaacatcagatgttgatatttggttgactttaggacgtcagcctgacgttggATTCTGACTTCGacccgatttttatttccaaacaaaatgcaacatccccacgacatcggggtacaacatcaatctgatgttATGTTGACAGCCTGTGCTGGGAAATGACCACAGCTGTCTGCTTCTAGAGAAGATGACCCCATCACCATAAGCAGAATAATTGACTCCAAGTAGTTGAATTATTCAAAAGCAATGCACACCCAAACCATATCTCAAAGCAAAGTCCAGTATAAACATTACTGTTGTTTGTCAATGGCAGCTGTCACAGGCTTGACCATCCTATTTAACAATGTTCAGTTTTTACTTTGTAGACTTCGAAGACGATGCAGTTTGCAGCCTCTGAATTTAGACATGTAAGTTGAACTTCTTCCATATTAAAATCCTGTTTATAAGAGCTGCAAACATGTACCTGCAATATTTGAAACAAATGTGTGATGCTCGATTTACATTTCTAATCCGCTCAGATGTCAAAAACGTGTCAGATTTGTAAAGATGCTTGTAAAAGCTCCtcttaaattaaatagaaaagaaaaaaaagcacgcTGTGTTATACAAACGTCAAACTGATGCACTCAGTGGGTCACAGCCACTTGTCCTTCACtccaatgcatttaaaatgagttgcTTTAAATGGCTGGAGAAATTTTCCTTCAAAAGTTTCTCTTTAAATGTATGCTCTTCTTCCTGCCATGATCTGACTGACATAAGCATTATTTACAGGGAGACTGTGTTGGATTTGAGGCTGATAAGGATGGGTTTACTAGAGAGTAGTGCAACAACTCAGTGACACTTGTCTTATAATCTCCTCCAATGCATTGAGAATGATTATACTGAGCTCAAACACACCATTATGATCAGGGTTGTGTGTAATTGGGCTAGCTGATAAACAAACTTTGATCTTTTTTTGCACTTATGCACTTATGATATGTTTGCTGTGCCGTAATTAGATGTTTATGTGGGTACTTCAACACTTTCTGATTATGCATGTCAGAAAGTCGTGCATTAACTCTCGTCttgctctttttttctctcttaaaCTGTTGTGTTTGACTGCAATGCATTTCCATATTTCTGGTAAAGCAAAGCGCTGAATTATTCATTGCGTAATCAGTGAGGTTGGATCACACTTGCCCTTCATTGATTCGGGTTTCTGTTACAGCAGGATCAAAGGAgaacatttttcatttgtttgaacAATGAAGCTGTCGAGTTCTGTTTCGTCtgcttttgttcaacagaagtgACAGCAAAGCTTTGATCAGCCCTGTTCtgcatgaaaatgactgtcagtTTGTGCGAATATGCTGAAGAAGCATTTTCCTACTCAAAGTCTGTTGCTATGCAGATTGAtgcatgaatattttattttcagctgtctttttttaaatgccaaatttaataaaattattttttatattt
>TCONS_00033277
ATGAAGGAGGCGATCCTGCAGTTTCTGAATGATGTATGGAGCGTGGCTTCGGTCAAGCATGAGCAGGGTGTCTACAACACGGTTTGTCTTGTTGTTCTTCTGACTCTGCCGCTGGTTGTGCTCTTCACATCCGTGCTGGTCTGCTGTCACTGTTGTTGCTGTCGTAATGCTGGAGGATGCCGCTGCTGTGGACAGAAGGGTGAGACCTCGGTCACAAATGTGAAAtctgaaaagaagaagaaaaagaaaaacggCGGCCAGAACAGCGAGGACTTGTGGATCTCTGTCAAAGCAGATCCCATGAGTAGTGACAGACTGGCACTCACTATGGTGTAA

Function


GO:

id name namespace
GO:0006883 cellular sodium ion homeostasis biological_process
GO:0006887 exocytosis biological_process
GO:0099643 signal release from synapse biological_process
GO:0016079 synaptic vesicle exocytosis biological_process
GO:0006906 vesicle fusion biological_process
GO:1902600 proton transmembrane transport biological_process
GO:0048489 synaptic vesicle transport biological_process
GO:0065008 regulation of biological quality biological_process
GO:0051179 localization biological_process
GO:0034220 ion transmembrane transport biological_process
GO:0007267 cell-cell signaling biological_process
GO:0007268 chemical synaptic transmission biological_process
GO:0045161 neuronal ion channel clustering biological_process
GO:0007269 neurotransmitter secretion biological_process
GO:0045162 clustering of voltage-gated sodium channels biological_process
GO:0001505 regulation of neurotransmitter levels biological_process
GO:0036376 sodium ion export across plasma membrane biological_process
GO:0032940 secretion by cell biological_process
GO:0140029 exocytic process biological_process
GO:0046903 secretion biological_process
GO:0051234 establishment of localization biological_process
GO:0098916 anterograde trans-synaptic signaling biological_process
GO:0098655 cation transmembrane transport biological_process
GO:0048284 organelle fusion biological_process
GO:0055067 monovalent inorganic cation homeostasis biological_process
GO:0042551 neuron maturation biological_process
GO:0099500 vesicle fusion to plasma membrane biological_process
GO:0055075 potassium ion homeostasis biological_process
GO:0017156 calcium-ion regulated exocytosis biological_process
GO:0099504 synaptic vesicle cycle biological_process
GO:0031629 synaptic vesicle fusion to presynaptic active zone membrane biological_process
GO:0055078 sodium ion homeostasis biological_process
GO:0007626 locomotory behavior biological_process
GO:0140115 export across plasma membrane biological_process
GO:0023061 signal release biological_process
GO:0061024 membrane organization biological_process
GO:0061025 membrane fusion biological_process
GO:0099536 synaptic signaling biological_process
GO:0099537 trans-synaptic signaling biological_process
GO:0030004 cellular monovalent inorganic cation homeostasis biological_process
GO:0072524 pyridine-containing compound metabolic process biological_process
GO:0097479 synaptic vesicle localization biological_process
GO:0097480 establishment of synaptic vesicle localization biological_process
GO:0030007 cellular potassium ion homeostasis biological_process
GO:0090174 organelle membrane fusion biological_process
GO:0099003 vesicle-mediated transport in synapse biological_process
GO:0006810 transport biological_process
GO:0006811 ion transport biological_process
GO:0006812 cation transport biological_process
GO:0006836 neurotransmitter transport biological_process
GO:0051640 organelle localization biological_process
GO:1990573 potassium ion import across plasma membrane biological_process
GO:0016050 vesicle organization biological_process
GO:0045055 regulated exocytosis biological_process
GO:0030672 synaptic vesicle membrane cellular_component
GO:0097060 synaptic membrane cellular_component
GO:0030133 transport vesicle cellular_component
GO:0042995 cell projection cellular_component
GO:0043005 neuron projection cellular_component
GO:0098590 plasma membrane region cellular_component
GO:0044456 obsolete synapse part cellular_component
GO:0070032 synaptobrevin 2-SNAP-25-syntaxin-1a-complexin I complex cellular_component
GO:0120025 plasma membrane bounded cell projection cellular_component
GO:0045202 synapse cellular_component
GO:0045211 postsynaptic membrane cellular_component
GO:0099501 exocytic vesicle membrane cellular_component
GO:0099503 secretory vesicle cellular_component
GO:0097458 obsolete neuron part cellular_component
GO:0070382 exocytic vesicle cellular_component
GO:0008021 synaptic vesicle cellular_component
GO:0031982 vesicle cellular_component
GO:0016020 membrane cellular_component
GO:0031201 SNARE complex cellular_component
GO:0098793 presynapse cellular_component
GO:0098796 membrane protein complex cellular_component
GO:0005391 sodium molecular_function
GO:0005484 SNAP receptor activity molecular_function
GO:0022804 active transmembrane transporter activity molecular_function
GO:0019829 ATPase-coupled cation transmembrane transporter activity molecular_function
GO:0046873 metal ion transmembrane transporter activity molecular_function
GO:0017075 syntaxin-1 binding molecular_function
GO:0022853 active ion transmembrane transporter activity molecular_function
GO:0022857 transmembrane transporter activity molecular_function
GO:0022890 inorganic cation transmembrane transporter activity molecular_function
GO:0000149 SNARE binding molecular_function
GO:0015318 inorganic molecular entity transmembrane transporter activity molecular_function
GO:0019905 syntaxin binding molecular_function
GO:0005215 transporter activity molecular_function
GO:0008556 potassium transmembrane transporter activity, phosphorylative mechanism molecular_function
GO:0015662 ion transmembrane transporter activity, phosphorylative mechanism molecular_function
GO:0015075 ion transmembrane transporter activity molecular_function
GO:0015077 monovalent inorganic cation transmembrane transporter activity molecular_function
GO:0016887 ATPase activity molecular_function
GO:0015079 potassium ion transmembrane transporter activity molecular_function
GO:0042625 ATPase-coupled ion transmembrane transporter activity molecular_function
GO:0042626 ATPase-coupled transmembrane transporter activity molecular_function
GO:0008324 cation transmembrane transporter activity molecular_function
GO:0015399 primary active transmembrane transporter activity molecular_function

KEGG:

id description
ko03230 Viral genome structure
ko05164 Influenza A
ko03200 Viral proteins

RNA


RNA id representative length rna type GC content exon number start site end site
TCONS_00031181 False 6806 lncRNA 0.38 2 35482156 35502933
TCONS_00031182 False 6962 lncRNA 0.39 2 35488415 35502933
TCONS_00033277 True 336 lncRNA 0.50 1 35496698 35497033

Neighbor


gene id symbol gene type direction distance location
XLOC_015617 tnr coding upstream 8041 35240485 ~ 35474115 (+)
XLOC_015616 NA coding upstream 266669 35146296 ~ 35215487 (+)
XLOC_015615 cop1 coding upstream 344939 35116627 ~ 35137217 (+)
XLOC_015613 astn1 coding upstream 497901 34572690 ~ 34984255 (+)
XLOC_015614 NA coding upstream 659272 34822568 ~ 34822884 (+)
XLOC_015619 FP236741.1 coding downstream 9069 35512002 ~ 35581291 (+)
XLOC_015620 mrps14 coding downstream 88490 35591423 ~ 35594184 (+)
XLOC_015621 cacybp coding downstream 92521 35595454 ~ 35601370 (+)
XLOC_015622 plk3 coding downstream 100704 35603637 ~ 35611789 (+)
XLOC_015623 NA coding downstream 109622 35612555 ~ 35614298 (+)
XLOC_015612 NA non-coding upstream 1003278 34477999 ~ 34478878 (+)
XLOC_015611 NA non-coding upstream 1042425 34439445 ~ 34439731 (+)
XLOC_015610 NA non-coding upstream 1125487 34181145 ~ 34356669 (+)
XLOC_015626 BX571812.1 non-coding downstream 328396 35831329 ~ 35831445 (+)
XLOC_015636 BX681417.2 non-coding downstream 590020 36092953 ~ 36094319 (+)
XLOC_015646 BX681417.3 non-coding downstream 596036 36098969 ~ 36099028 (+)

Expression



Co-expression Network