XLOC_009234



Basic Information


Item Value
gene id XLOC_009234
gene name NA
gene type non-coding
species zebrafish (Danio rerio)
category of species model fish

Chromosome Information


Item Value
chromosome id NC_007126.7
NCBI id CM002899.2
chromosome length 48040578
location 24901551 ~ 24927093 (-)
genome version GRCz11_2017_zebrafish_Genome

Sequence


>TCONS_00019158
GACTCAGGACGCAGCGTTATGTGGGCTAGATTGGGAAATTTAGGACGTAAGAGTAATGGTGTTGCGTTGAAGTTGAGTAATGTTATTGTTAATGATTTGTCTAGTAGTCTGTTGAGTAGTCTGAGTGGGTTTTAGATTAGATATTTCAGCTGAGTCGCGCTTTAGCTCTTTGATGTCAGGAGTGATTTGAGGTTAAGGTGTGGCTTTCAGCAAAAGGGCGAATTACTTAAACTGTAGCAGAACTTGTGTGTTTCTTTCGGCTTTCGTattaattcagtgttaaatgcgtTATAGTGGGCGAGACAGACTGTGAATTGTATTGGAATATAACCAGGTCGGATTTGAACTTGTGGTCCCAATGAGCCAACCGTTTATTTTAATTGTCGAATGTCCTCGAGCTTGTGCGTCAACGCTCGGAATGAATCTATGTTTTCTAGGTTTTTTTCGAGATAATTCTGCGCGCGTGTCACTAGAGAGATATTTAAATCCAGGAAGCGTTCGATTACACAACGGGATTCGAATCGTTCCATGACCGCTGCAGCGTTCGATATAACTTTTCGGAAGTGTTTGAATCCGCTTCAGAACGAATGGAATCTGTTACATTCCATTGGAAGAGATCGCGAGAGCGTTCAGTTCAGAGTTGAGCACACAGGGCGTGAGCCGTCTGCTAGTAGACGGTCTGTAATCTGAATATGAAGGGGGGATAAAAGCCCATTGCGAAAATAAAGGATGTTACGCGAATATTCTATGGTATCTGGGAGTTGATCCGCTTATCATTGTGACATACGAAGCGATCGACGACGGAAATCGAAAATTCTGCTAGCTGAACCAAACATATGGATGAAGACCTCAGTTTCTTTCCAGTGTCAACAGTATGCCGTTGCATGGATTGCCTCTTCTTACGTCTGAATTACGTCCGACTGATAAATGGTTAAAGCTGCTTAACCAGATTACCGTGAGTTCCCGGCAAGCAGGAGATCATTCACCTGACGAAACGTCCATGTCGCAACACTGTTCCAGCGTCCCGCAATCCTGCCTGACCTTTGCCCTTAGGATTGTGGCCCGCCGGTACCTTTTTCCTTTTACCGGGTCAATGTAGCGCAGTCTGCCTGTTGCTCAGCGGGTGTCATGTAACCTGTCTGACTGGCAGCACAATGTGTAATTCAGCACCGAACAATGGCCTCAAGAGACTGAGGGTGATTCATGGTGACTGTTCCGTCTTATAGCCTGGAAGAAAACCACTGCTTGGTAAAATGGACAGAGTGTAAGACTTTTACTCTCATTTACATTACAGGGCTCTGTGTTTATATATGCATCCCAGCTGATCTTTGCAGCTCATGTTGAGTCACTGCCCAGATTTAGTCAAAATGTTTCTCAGTTCGTACATGCTTTCCTCtccttttaaagggacagttcaaacaaaaatgaaaatcattaaCTCCGCTTCATGTAGTGCCAAACCtgaatggctttttttttttcaatggatcACAAAATATATAGGGTTCAGCATGAATGAAtgctgatttcttttttctttaaaaaaaaacacggtTCATTTCTTCTCAGTGGGGTGTGAATAATGTGGTTAGATATTATGTTGTGTAGTTTGCATAGTATTGTGTAGTGTTGTGCAGCATTATCTctggttgtttttttctgttgcattaGCCTCCACCATCAACCATTTTAaattcactattattattattattattattattattattgatgtgaGGGGGAAAGAACAGGGAATTTACACTGTAACTAAGTGCTAAATAAATGAGGCTCTTGtagtttatttgttgttttgcaAAGCATTAGCAATCACATTTGTAACAACTTTTCGGGGTATTCAATAAGCTCAATTAAAACCTATAACTATGATGGTTAGTTGATTTTTTGATGCAGTGCATTACAGTATGTattgtttcatttcattatttgttttcacattttatagtattttaaccCTTTGACCGCCTGctttaccaaatggttgaccatgttttgcctgttttaaatagactgttaaagtcatttaaagaatgatttgctttaaataatggtttac
>TCONS_00019159
AGGAGAGACCGGTTCTGTGCACCAGGGTTAAAGCTGCTTAACCAGATTACCGTGAGTTCCCGGCAAGCAGGAGATCATTCACCTGACGAAACGTCCATGTCGCAACACTGTTCCAGCGTCCCGCAATCCTGCCTGACCTTTGCCCTTAGGATTGTGGCCCGCCGGTACCTTTTTCCTTTTACCGGGTCAATGTAGCGCAGTCTGCCTGTTGCTCAGCGGGTGTCATGTAACCTGTCTGACTGGCAGCACAATGTGTAATTCAGCACCGAACAATGGCCTCAAGAGACTGAGGGTGATTCATGGTGACTGTTCCGTCTTATAGCCTGGAAGAAAACCACTGCTTGGTAAAATGGACAGAGTGTAAGACTTTTACTCTCATTTACATTACAGGGCTCTGTGTTTATATATGCATCCCAGCTGATCTTTGCAGCTCATGTTGAGTCACTGCCCAGATTTAGTCAAAATGTTTCTCAGTTCGTACATGCTTTCCTCtccttttaaagggacagttcaaacaaaaatgaaaatcattaaCTCCGCTTCATGTAGTGCCAAACCtgaatggctttttttttttcaatggatcACAAAATATATAGGGTTCAGCATGAATGAAtgctgatttcttttttctttaaaaaaaaacacggtTCATTTCTTCTCAGTGGGGTGTGAATAATGTGGTTAGATATTATGTTGTGTAGTTTGCATAGTATTGTGTAGTGTTGTGCAGCATTATCTctggttgtttttttctgttgcattaGCCTCCACCATCAACCATTTTAaattcactattattattattattattattattattattgatgtgaGGGGGAAAGAACAGGGAATTTACACTGTAACTAAGTGCTAAATAAATGAGGCTCTTGtagtttatttgttgttttgcaAAGCATTAGCAATCACATTTGTAACAACTTTTCGGGGTATTCAATAAGCTCAATTAAAACCTATAACTATGATGGTTAGTTGATTTTTTGATGCAGTGCATTACAGTATGTattgtttcatttcattatttgttttcacattttatagtattttaaccCTTTGACCGCCTGctttaccaaatggttgaccatgttttgcctgttttaaatagactgttaaagtcatttaaagaatgatttgctttaaataatggtttac
>TCONS_00019160
TTAGAAcgttgacacatgcactccggtgctcacggcAACCTGAGGTCGATTCCCACCTCaaggtcctatgctgatcctttcCCTCTCACTGCTCTGCATGCTTTACTGTTAATGTTCTCTACTGTACTATCCATTTAAAGGTAAAAActctgattaaaaaataaataatgttttaacctTTTCatgaaaaatgatttttaaatgatgaagttttttctgaattttttttttttttaattcaaacctATATCTTATTCTCCATCCTTTCTTTGTTTCTACAGAATATATCACTTCCTGATCCCTGTTGTTTGGAGAAATATCAGGGACCGACTCCGTGAAGCCACTGGCTGACCTGCAGCAGTTCTTCACTGGCAAGCTTTATGTCCTTGTGTACCAGCTAAAGCTGCCAGCTGAAGAACTGTTGTGGTTGGCTCTTTCCTGGCACATCAGCACACAAGATGGCAATACAGAGGTAACGACATTGTCAGCTCAACCCTTAATTTGCTCCAAACTGATGAGGCCTCCTCAAGCAATCCCGATCAGACGGATCCCATTTTTGTCTTTCCCTCAAGCAGCCTGCTTACGTGAGCATGGCCATTCGTTCCTCTCAGGCATAAACAAAGACTACCATACGGGGTCCATGCTGACTCAGCCACATTCCTGTCCCGGTGAGGTCCTCTTGCCCTTATTTGGGTGTAGAGCAGGCAGGGAGTGGCGCATGTGCTTTCAGTAGAGCCGACAGAGGTGGCCATCTTGCTCTTCTGCTGTAGCAAAATGTTGTACTGCCTGATGTGTTTTTAacgcactgtaaaacccaacagccaactttaccaaatgaaatgagtgtagttaactcaaaatggacTTAAGGTTAACTCTActcatttgaaacattttaaactcagtgttgaaggtagtaagttaattaaatacctcattacttcaacctaaatggagtaagttcacagtactcgtatagattagtttttcaactcaaatggtttcctcgaacggtttgagttgccttaacttatcatgttttacagtactcagttggtttgagttctcttcatttattgggttttactgtgctcaaattgcttcgtttactcaaatggattaagctcacagtactcattagcataagtttttgaacttaaatggtttgttgctatcggtttcctcaaatggtttgagttaccttaaccttgTGGGTTTTACACTGCACTACTGAACCGAGCATTTTCATTGACTTGATTGACTTGTATTGTGAAATTTCTGCAAATGTTAGAACAACTTATTTACCATTTATGAGTAAAAGACTAGAAAAACAAATGACAGTAAACTGCCAAACTACTTGCGCTACAGACCAATGTGCTTATGACACtacatttcaattaaaatgttCTGATATACACCAGTTTGCCacaaaatcaatggaagtgaatgagactagAAGTCTCAACACATTTAGTTTACAATGGCCTCTTCTGCATGTACGTGAAGAATAAGGTGGATGGTTACTTCCGTGTTTTCTGGAAAAGAGCCCAAGCTTTGACGTGTTTGTGTGTTAAAAGTCGCAAAGATCCTCGAGGGAGTGACTGATGAAAGACTGGAGAGCGTATGTTACTTCCTCTTTCCCTTCCGTGGCTGTTCTATGGCATAAATATGATTTGTGTGTGTACAAATCTGACCTTGGTCACATGCAGAGATCATCATGTATACACACTCTTCTTGTCGCAAGCTTACGCAAGCCGTAAACTCCTCAAGGCTGAGTTCTGCGCCTCAGAAAACAGGATATGAAAAAGCGTCTCTCCAAATCCTCCCAGCCAGATGAAAACCCAGAATATTCTAGGCATTTAGTAGAACCAGATGCCAGAATGGCTGAAATGTGCTTTCCATTTTTTACCTCCCCTATCAAACAAGCACAAGACGCAGCGTCACTGCATACCTATAGCTCTGACCTCGTCTCGAGTGCTTCCTCAGGTCATGGGCGAAGATGGCCTACGTGATCCGCTCTAATGTCAATCTCCCTGCAAGTGCATTAAAAGATTGTTGAGGGTCGTCGTCTCATCTGCTCTTACAGAAACAGCACACGCATAAGAGGCTCGCTCAGACTGTGTTGCATGAGCTCTTAGGCTGTAGATAGTACACTACGGTCAGAAGCTCCCTCTCTAACCCTCTTTAGAGTCAGGCGGTCAGGTCAACAACGACATTTAGATTAGATTACTACATAGGGCCAAATGAGCAGACTTTCACAACAGACCAAATGTGAGTTGAATGATTGATTGCACAAATAAAATGGCTTTTGGGGAACACATGCTTTTGTTATCTTTACTGGCAATGAAATGTGTGGTTTTATTGTACTGAATGAATGGATATGACTTGAGTCATGTTTTAGAAAACTTCATAAGAAGATTAACCCTCAAAAACAACACTAAAATTAAACCCTATATTATGTTGGAGCTGTTTTAAAACTAGGCCGATGACCTGCTGTTCAGAAAGGTCACTTTCGAGCCTCTTTCCCACCACTTAATACAGTGGTGCTAATTGACTTGACTTCTGATTATGGTGAcgtgagaaagccaacatactgttatactacagtACATACACTTAATATTCTTCTTCTGAAACTAATTTCTATATGCGTCTCCTCCtcctagaccacaggtgtcaaactcagttccaaaagggccgcagctctgcacagtttagttccaaccctaattaaacacacctgatcaaactaattcagtccttcaggcttgtttgaaacctaccggtaagtgtgttggagcagggttggaactaaactgtgcagggcttcggccctccaggaattgagtttgacacccctgtcctagaccattcatactacaaccaccaaactaacaccaaacctccaaactggtctgactctagTTGCTCTATCGTTTCTAATTGATCTGACTTACGGTTGTCTAAaaaaactgacctggaaaattcACAAAAGTTAACTTAACATTGGAAACTTAACTTTccaccagactgtcatacagacttaatgtTGGACTCATTTAACTACCAATCTGAttacctttcaacttactagccacaccctagcaaccatttacggtgcctagcaactgtcctatagaattcTGTTgttaaaaaactgccattgactttacattggacataccaACAACATACCAGTTCATACTagcaaacatactaatcataataAGAAACATAAGCTGTGTCTCATTTTAGAGGCTGCATCCTACGAAGGATGCGGATTTTAAAGGTGTATCCTTCTAAATCATACTATAAACACACTACCAACAGGCAACTTCATAcaaaattcatgctaacaacaagctagcgacatgctaattcatactataaccatgctaatttatgttagcaactgcctagcaaccactcagaacgccttagcaactgcctaacaacaccttagcaaccactcagaacactttagcaaccgcCAAGCAACAGCTTGGTATCCacataaaacaccctagcaaccgcctagcaaccactcagaaaatcctagcaacgccttagacgccacctagcaaccactcagaacaccatagcaactactcaaacatcctagcaaccacctagcaacacttttTGAAACAACCtaagcaactactcagaacaccttagaaaccacctAGGACACCATAGTAATGCCTTAGCAACCGCTCCGTGGTTAACCTAGCAACAACATAACTACCTGGTACACTCGAGCAACACCTTAACAAGCGGCGAGCAACTGTTTAGAACACCTCAGCAACACTAATTGTGTGAATTAAGTGAAACACTATTAAATCTAGATTTCCATTTCATCCTGCTTCTCAAAGCATTCTTCTAGAGAACATGGTGTTGTGTGCTACAATTCCCCGAAGACGTGTAGCTGCAGTTTTTCATTATTTCTCAGCTGAAATATTTTGTGAACTGCTTGTTGAACTGGAATATTCTATGAATGTGAAATGGCTCACAGAGACCTTTTTGTTGAATTTCACTCGAAAGGGCCTCACAAGTGCAAAGTAATCCCAAATGGCAGAGGTCAGATGCCTCTCAGTTACTTTGCACCCGGGTGAAAGGTGCTCAGATCAGCCATCAGGGATCTTTCACATACTTTAGATATATTCAAACTAACAGGCTAGCAAAGGGGAAAGCGCATACAATGTCATATATAAGGATTTGcgtttatttattgtaaatataaactatttttaaaaagtttacgtAAATGGAGTTTCCTAAATGTAGCCTGTTTTATTAATCGCACTTCATTATACTGTAATTCAACTTTAATTAAACAATGAATGCGTTTACACTACATTCACTTTCTTTTGTAAAGGCATATTTTACTCAaattaaaatggccattatttactcatccaaac
>TCONS_00019161
GACTCAGGACGCAGCGTTATGTGGGCTAGATTGGGAAATTTAGGACGTAAGAGTAATGGTGTTGCGTTGAAGTTGAGTAATGTTATTGTTAATGATTTGTCTAGTAGTCTGTTGAGTAGTCTGAGTGGGTTTTAGATTAGATATTTCAGCTGAGTCGCGCTTTAGCTCTTTGATGTCAGGAGTGATTTGAGGTTAAGGTGTGGCTTTCAGCAAAAGGGCGAATTACTTAAACTGTAGCAGAACTTGTGTGTTTCTTTCGGCTTTCGTattaattcagtgttaaatgcgtTATAGTGGGCGAGACAGACTGTGAATTGTATTGGAATATAACCAGGTCGGATTTGAACTTGTGGTCCCAATGAGCCAACCGTTTATTTTAATTGTCGAATGTCCTCGAGCTTGTGCGTCAACGCTCGGAATGAATCTATGTTTTCTAGGTTTTTTTCGAGATAATTCTGCGCGCGTGTCACTAGAGAGATATTTAAATCCAGGAAGCGTTCGATTACACAACGGGATTCGAATCGTTCCATGACCGCTGCAGCGTTCGATATAACTTTTCGGAAGTGTTTGAATCCGCTTCAGAACGAATGGAATCTGTTACATTCCATTGGAAGAGATCGCGAGAGCGTTCAGTTCAGAGTTGAGCACACAGGGCGTGAGCCGTCTGCTAGTAGACGGTCTGTAATCTGAATATGAAGGGGGGATAAAAGCCCATTGCGAAAATAAAGGATGTTACGCGAATATTCTATGGTATCTGGGAGTTGATCCGCTTATCATTGTGACATACGAAGCGATCGACGACGGAAATCGAAAATTCTGCTAGCTGAACCAAACATATGGATGAAGACCTCAGTTTCTTTCCAGTGTCAACAGTATGCCGTTGCATGGATTGCCTCTTCTTACGTCTGAATTACGTCCGACTGATAAATAATATATCACTTCCTGATCCCTGTTGTTTGGAGAAATATCAGGGACCGACTCCGTGAAGCCACTGGCTGACCTGCAGCAGTTCTTCACTGGCAAGCTTTATGTCCTTGTGTACCAGCTAAAGCTGCCAGCTGAAGAACTGTTGTGGTTGGCTCTTTCCTGGCACATCAGCACACAAGATGGCAATACAGAGGTAACGACATTGTCAGCTCAACCCTTAATTTGCTCCAAACTGATGAGGCCTCCTCAAGCAATCCCGATCAGACGGATCCCATTTTTGTCTTTCCCTCAAGCAGCCTGCTTACGTGAGCATGGCCATTCGTTCCTCTCAGGCATAAACAAAGACTACCATACGGGGTCCATGCTGACTCAGCCACATTCCTGTCCCGGTGAGGTCCTCTTGCCCTTATTTGGGTGTAGAGCAGGCAGGGAGTGGCGCATGTGCTTTCAGTAGAGCCGACAGAGGTGGCCATCTTGCTCTTCTGCTGTAGCAAAATGTTGTACTGCCTGATGTGTTTTTAacgcactgtaaaacccaacagccaactttaccaaatgaaatgagtgtagttaactcaaaatggacTTAAGGTTAACTCTActcatttgaaacattttaaactcagtgttgaaggtagtaagttaattaaatacctcattacttcaacctaaatggagtaagttcacagtactcgtatagattagtttttcaactcaaatggtttcctcgaacggtttgagttgccttaacttatcatgttttacagtactcagttggtttgagttctcttcatttattgggttttactgtgctcaaattgcttcgtttactcaaatggattaagctcacagtactcattagcataagtttttgaacttaaatggtttgttgctatcggtttcctcaaatggtttgagttaccttaaccttgTGGGTTTTACACTGCACTACTGAACCGAGCATTTTCATTGACTTGATTGACTTGTATTGTGAAATTTCTGCAAATGTTAGAACAACTTATTTACCATTTATGAGTAAAAGACTAGAAAAACAAATGACAGTAAACTGCCAAACTACTTGCGCTACAGACCAATGTGCTTATGACACtacatttcaattaaaatgttCTGATATACACCAGTTTGCCacaaaatcaatggaagtgaatgagactagAAGTCTCAACACATTTAGTTTACAATGGCCTCTTCTGCATGTACGTGAAGAATAAGGTGGATGGTTACTTCCGTGTTTTCTGGAAAAGAGCCCAAGCTTTGACGTGTTTGTGTGTTAAAAGTCGCAAAGATCCTCGAGGGAGTGACTGATGAAAGACTGGAGAGCGTATGTTACTTCCTCTTTCCCTTCCGTGGCTGTTCTATGGCATAAATATGATTTGTGTGTGTACAAATCTGACCTTGGTCACATGCAGAGATCATCATGTATACACACTCTTCTTGTCGCAAGCTTACGCAAGCCGTAAACTCCTCAAGGCTGAGTTCTGCGCCTCAGAAAACAGGATATGAAAAAGCGTCTCTCCAAATCCTCCCAGCCAGATGAAAACCCAGAATATTCTAGGCATTTAGTAGAACCAGATGCCAGAATGGCTGAAATGTGCTTTCCATTTTTTACCTCCCCTATCAAACAAGCACAAGACGCAGCGTCACTGCATACCTATAGCTCTGACCTCGTCTCGAGTGCTTCCTCAGGTCATGGGCGAAGATGGCCTACGTGATCCGCTCTAATGTCAATCTCCCTGCAAGTGCATTAAAAGATTGTTGAGGGTCGTCGTCTCATCTGCTCTTACAGAAACAGCACACGCATAAGAGGCTCGCTCAGACTGTGTTGCATGAGCTCTTAGGCTGTAGATAGTACACTACGGTCAGAAGCTCCCTCTCTAACCCTCTTTAGAGTCAGGCGGTCAGGTCAACAACGACATTTAGATTAGATTACTACATAGGGCCAAATGAGCAGACTTTCACAACAGACCAAATGTGAGTTGAATGATTGATTGCACAAATAAAATGGCTTTTGGGGAACACATGCTTTTGTTATCTTTACTGGCAATGAAATGTGTGGTTTTATTGTACTGAATGAATGGATATGACTTGAGTCATGTTTTAGAAAACTTCATAAGAAGATTAACCCTCAAAAACAACACTAAAATTAAACCCTATATTATGTTGGAGCTGTTTTAAAACTAGGCCGATGACCTGCTGTTCAGAAAGGTCACTTTCGAGCCTCTTTCCCACCACTTAATACAGTGGTGCTAATTGACTTGACTTCTGATTATGGTGAcgtgagaaagccaacatactgttatactacagtACATACACTTAATATTCTTCTTCTGAAACTAATTTCTATATGCGTCTCCTCCtcctagaccacaggtgtcaaactcagttccaaaagggccgcagctctgcacagtttagttccaaccctaattaaacacacctgatcaaactaattcagtccttcaggcttgtttgaaacctaccggtaagtgtgttggagcagggttggaactaaactgtgcagggcttcggccctccaggaattgagtttgacacccctgtcctagaccattcatactacaaccaccaaactaacaccaaacctccaaactggtctgactctagTTGCTCTATCGTTTCTAATTGATCTGACTTACGGTTGTCTAAaaaaactgacctggaaaattcACAAAAGTTAACTTAACATTGGAAACTTAACTTTccaccagactgtcatacagacttaatgtTGGACTCATTTAACTACCAATCTGAttacctttcaacttactagccacaccctagcaaccatttacggtgcctagcaactgtcctatagaattcTGTTgttaaaaaactgccattgactttacattggacataccaACAACATACCAGTTCATACTagcaaacatactaatcataataAGAAACATAAGCTGTGTCTCATTTTAGAGGCTGCATCCTACGAAGGATGCGGATTTTAAAGGTGTATCCTTCTAAATCATACTATAAACACACTACCAACAGGCAACTTCATAcaaaattcatgctaacaacaagctagcgacatgctaattcatactataaccatgctaatttatgttagcaactgcctagcaaccactcagaacgccttagcaactgcctaacaacaccttagcaaccactcagaacactttagcaaccgcCAAGCAACAGCTTGGTATCCacataaaacaccctagcaaccgcctagcaaccactcagaaaatcctagcaacgccttagacgccacctagcaaccactcagaacaccatagcaactactcaaacatcctagcaaccacctagcaacacttttTGAAACAACCtaagcaactactcagaacaccttagaaaccacctAGGACACCATAGTAATGCCTTAGCAACCGCTCCGTGGTTAACCTAGCAACAACATAACTACCTGGTACACTCGAGCAACACCTTAACAAGCGGCGAGCAACTGTTTAGAACACCTCAGCAACACTAATTGTGTGAATTAAGTGAAACACTATTAAATCTAGATTTCCATTTCATCCTGCTTCTCAAAGCATTCTTCTAGAGAACATGGTGTTGTGTGCTACAATTCCCCGAAGACGTGTAGCTGCAGTTTTTCATTATTTCTCAGCTGAAATATTTTGTGAACTGCTTGTTGAACTGGAATATTCTATGAATGTGAAATGGCTCACAGAGACCTTTTTGTTGAATTTCACTCGAAAGGGCCTCACAAGTGCAAAGTAATCCCAAATGGCAGAGGTCAGATGCCTCTCAGTTACTTTGCACCCGGGTGAAAGGTGCTCAGATCAGCCATCAGGGATCTTTCACATACTTTAGATATATTCAAACTAACAGGCTAGCAAAGGGGAAAGCGCATACAATGTCATATATAAGGATTTGcgtttatttattgtaaatataaactatttttaaaaagtttacgtAAATGGAGTTTCCTAAATGTAGCCTGTTTTATTAATCGCACTTCATTATACTGTAATTCAACTTTAATTAAACAATGAATGCGTTTACACTACATTCACTTTCTTTTGTAAAGGCATATTTTACTCAaattaaaatggccattatttactcatccaaac
>TCONS_00019162
CGGGAGGAGAAGCCGGTATGAGGGGAGTAGAAGCAGAGACTCAGGACGCAGCGTTATGTGGGCTAGATTGGGAAATTTAGGACGTAAGAGTAATGGTGTTGCGTTGAAGTTGAGTAATGTTATTGTTAATGATTTGTCTAGTAGTCTGTTGAGTAGTCTGAGTGGGTTTTAGATTAGATATTTCAGCTGAGTCGCGCTTTAGCTCTTTGATGTCAGGAGTGATTTGAGGTTAAGGTGTGGCTTTCAGCAAAAGGGCGAATTACTTAAACTGTAGCAGAACTTGTGTGTTTCTTTCGGCTTTCGTattaattcagtgttaaatgcgtTATAGTGGGCGAGACAGACTGTGAATTGTATTGGAATATAACCAGGTCGGATTTGAACTTGTGGTCCCAATGAGCCAACCGTTTATTTTAATTGTCGAATGTCCTCGAGCTTGTGCGTCAACGCTCGGAATGAATCTATGTTTTCTAGGTTTTTTTCGAGATAATTCTGCGCGCGTGTCACTAGAGAGATATTTAAATCCAGGAAGCGTTCGATTACACAACGGGATTCGAATCGTTCCATGACCGCTGCAGCGTTCGATATAACTTTTCGGAAGTGTTTGAATCCGCTTCAGAACGAATGGAATCTGTTACATTCCATTGGAAGAGATCGCGAGAGCGTTCAGTTCAGAGTTGAGCACACAGGGCGTGAGCCGTCTGCTAGTAGACGGTCTGTAATCTGAATATGAAGGGGGGATAAAAGCCCATTGCGAAAATAAAGGATGTTACGCGAATATTCTATGGTATCTGGGAGTTGATCCGCTTATCATTGTGACATACGAAGCGATCGACGACGGAAATCGAAAATTCTGCTAGCTGAAGTAAGTCAATCCTCATTCAGAAGTTTTTGCTCCCAAtgtgttttgtgaaaaaaaaaaactcaatactgCACTGATACTGATTTATCAGCTCTAGTATATTTACAGATTTTAGAATGAAGCAGATGAGTATTAACACTGAATACTCATATTTAACAGTGGGCGTTGCTCTTCTTTCAGTTAACATTAGAATATAGCTTCTAAATTTACGTATATCGGGcgaattattaaatataattggcTTCGGGTTTAGTTTGCTGGCTTGCTTTTtcgtatttgttttatatgtGAACTCATTTTGAACTTGGAATATGCGACATGGAATAGGCCCTAAAAGAACAAGCTAAATTAACGTTTAGCTTCTATTTACTCGCTCTCATGATGTTTATGACCTGTATAAACATCTCCAAATGAATATTACAGCTAGTCCCCATTTATTTTGCAGAATAAAAACTGCATCAACGTGAAAGGTTAGCTATTAAGGCGTTCATGCATATATTCCTATTTGGACCTTGTTTTGTGTTCTAATTAACTCAAACACTTTTGTAAAAACAGTCGAGAAGACTAAGCagcgattttatttttttgagtgaactgtcactttaagttaAAGcctaatttacagtttttttaaatcgtacgccttttgaaaattaataaaaggaGCAACAGGAGATTCAGCTATGAAATATGgtgaatattacaatattaatttgGGTAGTTTGATAGTAGTAGCCTACTTAAAACCTGGATTTGGTCATGAGAGAACGCATATACATCGTCATTGATTCCTGTGAGGCGAGAGCATGGCACATTCCTCAAGACCCCACCCTGTACGCCAAACATATGGATGAAGACCTCAGTTTCTTTCCAGTGTCAACAGTATGCCGTTGCATGGATTGCCTCTTCTTACGTCTGAATTACGTCCGACTGATAAATAATATATCACTTCCTGATCCCTGTTGTTTGGAGAAATATCAGGGACCGACTCCGTGAAGCCACTGGCTGACCTGCAGCAGTTCTTCACTGGCAAGCTTTATGTCCTTGTGTACCAGCTAAAGCTGCCAGCTGAAGAACTGTTGTGGTTGGCTCTTTCCTGGCACATCAGCACACAAGATGGCAATACAGAGCCTGCTTACGTGAGCATGGCCATTCGTTCCTCTCAGGCATAAACAAAGACTACCATACGGGGTCCATGCTGACTCAGCCACATTCCTGTCCCGGTGAGGTCCTCTTGCCCTTATTTGGGTGTAGAGCAGGCAGGGAGTGGCGCATGTGCTTTCAGTAGAGCCGACAGAGGTGGCCATCTTGCTCTTCTGCTGTAGCAAAATGTTGTACTGCCTGATGTGTTTTTAacgcactgtaaaacccaacagccaactttaccaaatgaaatgagtgtagttaactcaaaatggacTTAAGGTTAACTCTActcatttgaaacattttaaactcagtgttgaaggtagtaagttaattaaatacctcattacttcaacctaaatggagtaagttcacagtactcgtatagattagtttttcaactcaaatggtttcctcgaacggtttgagttgccttaacttatcatgttttacagtactcagttggtttgagttctcttcatttattgggttttactgtgctcaaattgcttcgtttactcaaatggattaagctcacagtactcattagcataagtttttgaacttaaatggtttgttgctatcggtttcctcaaatggtttgagttaccttaaccttgTGGGTTTTACACTGCACTACTGAACCGAGCATTTTCATTGACTTGATTGACTTGTATTGTGAAATTTCTGCAAATGTTAGAACAACTTATTTACCATTTATGAGTAAAAGACTAGAAAAACAAATGACAGTAAACTGCCAAACTACTTGCGCTACAGACCAATGTGCTTATGACACtacatttcaattaaaatgttCTGATATACACCAGTTTGCCacaaaatcaatggaagtgaatgagactagAAGTCTCAACACATTTAGTTTACAATGGCCTCTTCTGCATGTACGTGAAGAATAAGGTGGATGGTTACTTCCGTGTTTTCTGGAAAAGAGCCCAAGCTTTGACGTGTTTGTGTGTTAAAAGTCGCAAAGATCCTCGAGGGAGTGACTGATGAAAGACTGGAGAGCGTATGTTACTTCCTCTTTCCCTTCCGTGGCTGTTCTATGGCATAAATATGATTTGTGTGTGTACAAATCTGACCTTGGTCACATGCAGAGATCATCATGTATACACACTCTTCTTGTCGCAAGCTTACGCAAGCCGTAAACTCCTCAAGGCTGAGTTCTGCGCCTCAGAAAACAGGATATGAAAAAGCGTCTCTCCAAATCCTCCCAGCCAGATGAAAACCCAGAATATTCTAGGCATTTAGTAGAACCAGATGCCAGAATGGCTGAAATGTGCTTTCCATTTTTTACCTCCCCTATCAAACAAGCACAAGACGCAGCGTCACTGCATACCTATAGCTCTGACCTCGTCTCGAGTGCTTCCTCAGGTCATGGGCGAAGATGGCCTACGTGATCCGCTCTAATGTCAATCTCCCTGCAAGTGCATTAAAAGATTGTTGAGGGTCGTCGTCTCATCTGCTCTTACAGAAACAGCACACGCATAAGAGGCTCGCTCAGACTGTGTTGCATGAGCTCTTAGGCTGTAGATAGTACACTACGGTCAGAAGCTCCCTCTCTAACCCTCTTTAGAGTCAGGCGGTCAGGTCAACAACGACATTTAGATTAGATTACTACATAGGGCCAAATGAGCAGACTTTCACAACAGACCAAATGTGAGTTGAATGATTGATTGCACAAATAAAATGGCTTTTGGGGAACACATGCTTTTGTTATCTTTACTGGCAATGAAATGTGTGGTTTTATTGTACTGAATGAATGGATATGACTTGAGTCATGTTTTAGAAAACTTCATAAGAAGATTAACCCTCAAAAACAACACTAAAATTAAACCCTATATTATGTTGGAGCTGTTTTAAAACTAGGCCGATGACCTGCTGTTCAGAAAGGTCACTTTCGAGCCTCTTTCCCACCACTTAATACAGTGGTGCTAATTGACTTGACTTCTGATTATGGTGAcgtgagaaagccaacatactgttatactacagtACATACACTTAATATTCTTCTTCTGAAACTAATTTCTATATGCGTCTCCTCCtcctagaccacaggtgtcaaactcagttccaaaagggccgcagctctgcacagtttagttccaaccctaattaaacacacctgatcaaactaattcagtccttcaggcttgtttgaaacctaccggtaagtgtgttggagcagggttggaactaaactgtgcagggcttcggccctccaggaattgagtttgacacccctgtcctagaccattcatactacaaccaccaaactaacaccaaacctccaaactggtctgactctagTTGCTCTATCGTTTCTAATTGATCTGACTTACGGTTGTCTAAaaaaactgacctggaaaattcACAAAAGTTAACTTAACATTGGAAACTTAACTTTccaccagactgtcatacagacttaatgtTGGACTCATTTAACTACCAATCTGAttacctttcaacttactagccacaccctagcaaccatttacggtgcctagcaactgtcctatagaattcTGTTgttaaaaaactgccattgactttacattggacataccaACAACATACCAGTTCATACTagcaaacatactaatcataataAGAAACATAAGCTGTGTCTCATTTTAGAGGCTGCATCCTACGAAGGATGCGGATTTTAAAGGTGTATCCTTCTAAATCATACTATAAACACACTACCAACAGGCAACTTCATAcaaaattcatgctaacaacaagctagcgacatgctaattcatactataaccatgctaatttatgttagcaactgcctagcaaccactcagaacgccttagcaactgcctaacaacaccttagcaaccactcagaacactttagcaaccgcCAAGCAACAGCTTGGTATCCacataaaacaccctagcaaccgcctagcaaccactcagaaaatcctagcaacgccttagacgccacctagcaaccactcagaacaccatagcaactactcaaacatcctagcaaccacctagcaacacttttTGAAACAACCtaagcaactactcagaacaccttagaaaccacctAGGACACCATAGTAATGCCTTAGCAACCGCTCCGTGGTTAACCTAGCAACAACATAACTACCTGGTACACTCGAGCAACACCTTAACAAGCGGCGAGCAACTGTTTAGAACACCTCAGCAACACTAATTGTGTGAATTAAGTGAAACACTATTAAATCTAGATTTCCATTTCATCCTGCTTCTCAAAGCATTCTTCTAGAGAACATGGTGTTGTGTGCTACAATTCCCCGAAGACGTGTAGCTGCAGTTTTTCATTATTTCTCAGCTGAAATATTTTGTGAACTGCTTGTTGAACTGGAATATTCTATGAATGTGAAATGGCTCACAGAGACCTTTTTGTTGAATTTCACTCGAAAGGGCCTCACAAGTGCAAAGTAATCCCAAATGGCAGAGGTCAGATGCCTCTCAGTTACTTTGCACCCGGGTGAAAGGTGCTCAGATCAGCCATCAGGGATCTTTCACATACTTTAGATATATTCAAACTAACAGGCTAGCAAAGGGGAAAGCGCATACAATGTCATATATAAGGATTTGcgtttatttattgtaaatataaactatttttaaaaagtttacgtAAATGGAGTTTCCTAAATGTAGCCTGTTTTATTAATCGCACTTCATTATACTGTAATTCAACTTTAATTAAACAATGAATGCGTTTACACTACATTCACTTTCTTTTGTAAAGGCATATTTTACTCAaattaaaatggccattatttactcatccaaac
>TCONS_00018151
GCTGACCTGCAGCAGTTCTTCACTGGCAAGCTTTATGTCCTTGTGTACCAGCTAAAGCTGCCAGCTGAAGAACTGTTGTGGTTGGC

Function


GO:

id name namespace
GO:0072068 late distal convoluted tubule development biological_process
GO:0048731 system development biological_process
GO:0009259 ribonucleotide metabolic process biological_process
GO:0048468 cell development biological_process
GO:0009260 ribonucleotide biosynthetic process biological_process
GO:1902600 proton transmembrane transport biological_process
GO:0046034 ATP metabolic process biological_process
GO:0006935 chemotaxis biological_process
GO:0030154 cell differentiation biological_process
GO:0048513 animal organ development biological_process
GO:0000902 cell morphogenesis biological_process
GO:0006091 generation of precursor metabolites and energy biological_process
GO:0000904 cell morphogenesis involved in differentiation biological_process
GO:0031290 retinal ganglion cell axon guidance biological_process
GO:1901293 nucleoside phosphate biosynthetic process biological_process
GO:0030182 neuron differentiation biological_process
GO:0048812 neuron projection morphogenesis biological_process
GO:0042773 ATP synthesis coupled electron transport biological_process
GO:0042775 mitochondrial ATP synthesis coupled electron transport biological_process
GO:0006119 oxidative phosphorylation biological_process
GO:0006120 mitochondrial electron transport, NADH to ubiquinone biological_process
GO:0007275 multicellular organism development biological_process
GO:0019857 5-methylcytosine metabolic process biological_process
GO:0120039 plasma membrane bounded cell projection morphogenesis biological_process
GO:0022900 electron transport chain biological_process
GO:0022904 respiratory electron transport chain biological_process
GO:0006163 purine nucleotide metabolic process biological_process
GO:0006164 purine nucleotide biosynthetic process biological_process
GO:0017144 drug metabolic process biological_process
GO:0048858 cell projection morphogenesis biological_process
GO:0009117 nucleotide metabolic process biological_process
GO:0009123 nucleoside monophosphate metabolic process biological_process
GO:0048869 cellular developmental process biological_process
GO:0009124 nucleoside monophosphate biosynthetic process biological_process
GO:0009126 purine nucleoside monophosphate metabolic process biological_process
GO:0009127 purine nucleoside monophosphate biosynthetic process biological_process
GO:0032989 cellular component morphogenesis biological_process
GO:0032990 cell part morphogenesis biological_process
GO:0046390 ribose phosphate biosynthetic process biological_process
GO:0055086 nucleobase-containing small molecule metabolic process biological_process
GO:0019637 organophosphate metabolic process biological_process
GO:0006753 nucleoside phosphate metabolic process biological_process
GO:0006754 ATP biosynthetic process biological_process
GO:0009141 nucleoside triphosphate metabolic process biological_process
GO:0009142 nucleoside triphosphate biosynthetic process biological_process
GO:0009144 purine nucleoside triphosphate metabolic process biological_process
GO:0009145 purine nucleoside triphosphate biosynthetic process biological_process
GO:0009150 purine ribonucleotide metabolic process biological_process
GO:0009152 purine ribonucleotide biosynthetic process biological_process
GO:1901135 carbohydrate derivative metabolic process biological_process
GO:1901137 carbohydrate derivative biosynthetic process biological_process
GO:0009156 ribonucleoside monophosphate biosynthetic process biological_process
GO:0040011 locomotion biological_process
GO:0072521 purine-containing compound metabolic process biological_process
GO:0021954 central nervous system neuron development biological_process
GO:0072522 purine-containing compound biosynthetic process biological_process
GO:0006211 5-methylcytosine catabolic process biological_process
GO:0009161 ribonucleoside monophosphate metabolic process biological_process
GO:0009165 nucleotide biosynthetic process biological_process
GO:0097485 neuron projection guidance biological_process
GO:0009167 purine ribonucleoside monophosphate metabolic process biological_process
GO:0009168 purine ribonucleoside monophosphate biosynthetic process biological_process
GO:0061564 axon development biological_process
GO:0015980 energy derivation by oxidation of organic compounds biological_process
GO:0048666 neuron development biological_process
GO:0048667 cell morphogenesis involved in neuron differentiation biological_process
GO:0007399 nervous system development biological_process
GO:0015985 energy coupled proton transport, down electrochemical gradient biological_process
GO:0019693 ribose phosphate metabolic process biological_process
GO:0015986 ATP synthesis coupled proton transport biological_process
GO:0007409 axonogenesis biological_process
GO:0007411 axon guidance biological_process
GO:0009199 ribonucleoside triphosphate metabolic process biological_process
GO:0042330 taxis biological_process
GO:0009201 ribonucleoside triphosphate biosynthetic process biological_process
GO:0072025 distal convoluted tubule development biological_process
GO:0009205 purine ribonucleoside triphosphate metabolic process biological_process
GO:0009206 purine ribonucleoside triphosphate biosynthetic process biological_process
GO:0022008 neurogenesis biological_process
GO:0031175 neuron projection development biological_process
GO:0045333 cellular respiration biological_process
GO:0098803 respiratory chain complex cellular_component
GO:0005743 mitochondrial inner membrane cellular_component
GO:0005746 mitochondrial respirasome cellular_component
GO:0005747 mitochondrial respiratory chain complex I cellular_component
GO:0005753 mitochondrial proton-transporting ATP synthase complex cellular_component
GO:0030964 NADH dehydrogenase complex cellular_component
GO:0044429 obsolete mitochondrial part cellular_component
GO:0016469 proton-transporting two-sector ATPase complex cellular_component
GO:0044455 obsolete mitochondrial membrane part cellular_component
GO:0033177 proton-transporting two-sector ATPase complex, proton-transporting domain cellular_component
GO:0019866 organelle inner membrane cellular_component
GO:0070069 cytochrome complex cellular_component
GO:0005581 collagen trimer cellular_component
GO:0032991 protein-containing complex cellular_component
GO:1990204 oxidoreductase complex cellular_component
GO:0031090 organelle membrane cellular_component
GO:0045259 proton-transporting ATP synthase complex cellular_component
GO:0045261 proton-transporting ATP synthase complex, catalytic core F(1) cellular_component
GO:0045263 proton-transporting ATP synthase complex, coupling factor F(o) cellular_component
GO:0045271 respiratory chain complex I cellular_component
GO:0045277 respiratory chain complex IV cellular_component
GO:0031966 mitochondrial membrane cellular_component
GO:0031967 organelle envelope cellular_component
GO:0031975 envelope cellular_component
GO:0000275 mitochondrial proton-transporting ATP synthase complex, catalytic sector F(1) cellular_component
GO:0000276 mitochondrial proton-transporting ATP synthase complex, coupling factor F(o) cellular_component
GO:0070469 respirasome cellular_component
GO:0098796 membrane protein complex cellular_component
GO:0098798 mitochondrial protein-containing complex cellular_component
GO:0005739 mitochondrion cellular_component
GO:0098800 inner mitochondrial membrane protein complex cellular_component
GO:0005740 mitochondrial envelope cellular_component
GO:0009055 electron transfer activity molecular_function
GO:0044769 ATPase activity, coupled to transmembrane movement of ions, rotational mechanism molecular_function
GO:0070579 methylcytosine dioxygenase activity molecular_function
GO:0022890 inorganic cation transmembrane transporter activity molecular_function
GO:0015002 heme-copper terminal oxidase activity molecular_function
GO:0046933 proton-transporting ATP synthase activity, rotational mechanism molecular_function
GO:0005201 extracellular matrix structural constituent molecular_function
GO:0015318 inorganic molecular entity transmembrane transporter activity molecular_function
GO:0015075 ion transmembrane transporter activity molecular_function
GO:0015077 monovalent inorganic cation transmembrane transporter activity molecular_function
GO:0015078 proton transmembrane transporter activity molecular_function
GO:0008324 cation transmembrane transporter activity molecular_function
GO:0004129 cytochrome-c oxidase activity molecular_function
GO:0016675 oxidoreductase activity, acting on a heme group of donors molecular_function
GO:0016676 oxidoreductase activity, acting on a heme group of donors, oxygen as acceptor molecular_function

KEGG:

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

Ensembl:

ensembl_id ENSDARG00000083597

RNA


RNA id representative length rna type GC content exon number start site end site
TCONS_00019158 False 2074 lncRNA 0.40 3 24901551 24922411
TCONS_00019159 False 1170 lncRNA 0.38 2 24901551 24927093
TCONS_00019160 False 4424 lncRNA 0.40 1 24904402 24908825
TCONS_00019161 False 5072 lncRNA 0.41 3 24904402 24922411
TCONS_00019162 False 5841 lncRNA 0.40 4 24904402 24922448
TCONS_00018151 True 86 miRNA 0.51 1 24908394 24908479

Neighbor


gene id symbol gene type direction distance location
XLOC_009233 aipl1 coding downstream 16767 24873388 ~ 24884784 (-)
XLOC_009232 trarg1a coding downstream 31725 24845145 ~ 24869826 (-)
XLOC_009231 tmem199 coding downstream 225236 24673283 ~ 24676315 (-)
XLOC_009230 NA coding downstream 282646 24592325 ~ 24618905 (-)
XLOC_009229 gemin4 coding downstream 312902 24583682 ~ 24588649 (-)
XLOC_009235 abhd15a coding upstream 19228 24946321 ~ 24960781 (-)
XLOC_009236 NA coding upstream 40999 24968092 ~ 24974112 (-)
XLOC_009237 si:ch211-198e20.10 coding upstream 80116 25007209 ~ 25010400 (-)
XLOC_009238 pimr190 coding upstream 108854 25035947 ~ 25039083 (-)
XLOC_009239 pimr191 coding upstream 152948 25080041 ~ 25083200 (-)
XLOC_009228 NA non-coding downstream 338490 24561821 ~ 24563061 (-)
XLOC_009227 CU313324.1 non-coding downstream 742484 24158953 ~ 24159067 (-)
XLOC_009205 NA non-coding downstream 1747291 23144954 ~ 23154260 (-)
XLOC_009204 BX572079.1 non-coding downstream 1946419 22955017 ~ 22955132 (-)
XLOC_009254 NA non-coding upstream 771719 25698812 ~ 25876120 (-)
XLOC_009256 CR848822.3 non-coding upstream 1067887 25994980 ~ 25995095 (-)
XLOC_009257 CR848822.2 non-coding upstream 1148270 26075363 ~ 26075480 (-)
XLOC_009258 NA non-coding upstream 1190101 26117194 ~ 26183974 (-)

Expression



Co-expression Network