AGRP Logo

AGRP

Asteraceae Genomic Research Platform

Gene Search

Example:
Example:

Gene details

leaf

Sequence information

Select Gene Cds Cds_length GC_content Pep Pep_length
Pslu1g06536 ATGGAATCCGTTGATTCAATGGGAAGAAATAGTGTTTGGATCCCGCTGACCCCTGGAAAGTCAATTTCTGCAATGTACCCGGCACCGGCAGTATTGTTTTCTGAACAGGGGACAGGAAAGGAAAGTAAAAATAAGACGTTTCAATGTATAGATTCTTTTGATACCATGAAGTATATAGATCACCGTGTAATGGATAAAATGCCAGCTGGCATTGTTGATGATGGACATGAAGCGGTTTTGCGTGTGGCTGAGAAGGATGATCCGAAACCCACTAAAGCAGTTCACTATGACACAAGCAGTGTACAAGAGGAGGCAGTCAAAGTTCCATTTTCGGAGCCTGTTCATGAGTCACAAGCTGGTGTTTATTCAATTCCAACTCCATCGAAGTCAAACTATACCAGCAAAAGGCGTAATGACAACATTGATTTGAACAAGAAGCCGAGTCAAAGACCCCGAGTGAAAAAACATAGGCCTAAAATATTTGATGATAGCAAACCGAAACTAGTCCCAAAGGTTCAAACTCCAAAGCGTTCGACCCCTAAACCAAAAGCCCCCAAACCTGCAACTCCAAAGTGTTCAACCCGTAAACCAGAAACACCAAAACCTGCAACTCCAAATCGGGTACAAGAAAGAAGGAAGAGTTCAAGAAAAAATAAAATTGCAGGATCAGCGAGTTATGACCATGGAGATGTTATGCAAGTTGTCCAAGAAGCTTCTACGGATTCCATAATTGATGTTAAGTCATGCAAGCGTGTCTTGGATTTTGACTATAATAATGTAGTTGGTAGAGAGTCGCTTCAAATGTCACAACTGGAAGAAGAATCTTCGCGACTTAGTTATGACCATGTAAATTTTGATTACATTGGTAAAATTGTTACTTCCAAGAGAAGTACACTAATGAGAAGTAGGTTTCCAAAGAATAGTCTAGAAGCTTCAGAGGGTTTGTTGGAAGATAATAATGGGCAGCAGCAACAAGGGGAAGATATTTATAATTCACGAAATCAAGAACAAGATGGTAAAAAATATGATCACGTCTATCAACGGCGAAAGAAAATCAAGGTAAAATCAGCCAGTCACACCCCTACATTGCAAGTATATCGGAGAACGTTTAGAGAAAATAATTGTTTACAAAACGTTAGAAAAATCAGACCTAATTTTCCAAAAATGTTAAAGAAATGTAGGATGTTGAGAAAAAAAGTGAGTATATGGAAAAATAAGTGTTGCGAAAAACTTGTCGAAGATACAGAGAGAAATGTGAGAAGATCACTTAGACAGCGCATACAAACTACCGGAAAAAAGGTACAAAACAGGGTCAGTAAATCAAAAGACATTATAGGGGTGGTGAAAGAATGTAATCAAGTGACACCAGGGTGGCTCTTGAGAAGAAATCGATCTGTAAGGCACGCTCGCGTGAGGAGAACTATCAACGGATTTTCTATTCCTGAAAGAATGCCTAATGATAATGAAACATATCTTCGATGTGACGAAAGTTTTCTCTCAATAACAGGATGCCTCCAACTGCAACAGGTTCCCGTCCATAGAATCGAGAGTTTTACTTCAGTGCATGTGGATGTTCAACAAGCTGATGATTCTGTAGGTAATTTGAACTGCTCCCAGTTACAAGAGGTTGAAGTACTTGAAAGTCAAAGTTTGGTACCCAGACTCGAAGAAATCTCATTAACTAAAGAAGATTTAAAAAGAGAGTTTATAACAGGATGGATCAATGTTCTAATAAGGAGGATAGCGAGTCTAGACATAATTGGTCAAAGCAAGGAGCTTGTGGTACGAGATCAAAATGTAGCGAGTCTTGACACCAATGGTCAATGCAAGGAAGTTGTGGTCGGAGATCAAAATGTTAGTGGGGCACTTGTAAAGATAGTTCCTTCCAAGAAGCGTAAGGCGTTACCCAAAGTGGATCTTGACAAAGAGTCGCTGAGAGTTTGGAAATTGCTGATGGAAAATGATGGAAGTGAACCAGTTGAAGAAACGGATATAGATAAGAAAGAGTGGTGGGAAAGACAAAGAGAAATATTTCGTGGACGAGTTGACTCATTTATTGCCAAAATGCATCTTATTCAAGGTGACAGGCGTTTTTCACCATGGAAGGGCTCAGTAACTGACTCTGTGGTTGGTGTTTATTTAACTCAAAATGTGACAGACCATCTTTCAAGTTCTGCTTTCATGTCTGTGGCGGCAAGATTTCCGGTGAAGTCCAGAACCAAAGAAATTGTTGACAATGGTGAAGTTGCATCTAGCCAAGAATTAGTCGCAAGTTATAACTTTTTTACTGAAGGTCTCTTCACAAATAATGAAATGAAACAAAATACAAGTACTTCATGTGTTGATGTGAGTGATATGACTCCAACTATGGAACCTAACCAAGATTCGGTTTCAAATCCAACTCTGCTTGCATGTAGTCAAGAATCAGTCGCAACAGGTCTCTTTACCAATAATGAAATGAAACAAAATACAAGTAAGACATGTGCTGATGTAAGCAATGTGACGCCAATTATGGAACCTAACCAAGATTCAGTTTCTCCAACTCTGGTTGCATGTAGCCAAGAATCAGTCTCTAGTAATAACCTTGTTATCGACAGTCTTGTTAGGAATAATGCATTGGAACAAAATACAAGTACGTCATGTGCTGATGTAAGAAACATGACTCCAATTCCTGTTCACGATATGCCATGTGTCAATGAAAATTCTGATAATTTCCGCAAGTGTATAGAAGTAGAGGAGATGGACTTTCTCAAGCAGTTTTATGATTCTGACGTTGATGAATCACCACCAAATGAGAGAAGAGTTATTAGGCATTTGAGCACAAGCAAAGTAGAAGGGGAAGAGCAAAGTGCAATATCTTTTGATTTTTCTATTTCTAATGAACCTTCTGCTACTCTGCCTGATTTAAATACAGGTTTATTTGAGATTCCAAGTGAATTCATAGGTCAACAAAAGTCAACTCATGAAGAGGAATCTGAAGTTGTTTATCCAGTCAACAGTGTCCCATCTGAAGTTACCATTGAACAAGAAGTAAATGCAGTAAACGATCATCGGAGAGTGAAAAATAAGCCTTTAACCGAAAGCAGTGGAAAAAAGAATAGCAAGACTGATAAAAAACACGAAAAGAAAACTAACTGGGAAGAAGTGAGGAAAACTTATTGCAAAATGGGCAGCATAGAAACCAATGACAATTACATGGATGCTGTTGATTGGGATGCAGTTAGGCTTGGTACAGTTGAAGAACTTGCTAACATCATAGCTAAGCGAGGAATGAATAATGTCCTAGCTGGAAAAATAAAAGACTTTTTAGATCGAATGTATAAAGACCATGGAACTCTTGATCTTGAGTGGTTAAGGAATGTTCCACCAGACATGGCAAAGGAATTCTTGCTGAGCATAGAAGGAATCGGTTTGAAAAGTGTGGAGTGTATACGACTTCTAACGCTACATCATCATGCTTTTCCTGTTGATACAAATGTTGGCCGGGTTGCCACTCGTCTAGGGTGGGTCCCATTGCAACCCCTTCCTGATGCAGTTCAAATTCATCTTTTGAACGCGTACCCAATGGTGGACACCATCCAGAAATACCTCTTTCCTAGGCTATGCACCCTTGATCAAAGAACTTTGTACGAGTTACATTATCAGTTAATCACATTCGGAAAGGTATTTTGCACCAAGATAAAACCTAATTGCAATGCATGTCCGATGAGAGCAGAGTGTAGGCATTATGCAAGTGCAGTTGCTAGTGGTAGGCTCGCACTTCCTGGATCAGAGGAAGGTAGTAATGTAACTTCAATTATCCCTGCTGAAAATGAACAAAACCATTCTATGTTTAGTACGTCAACATCACGCTTTGACGTAGAAGCCAACAACTTGGGTTCAACTTATCATGTTCAAGCTTGTGATCCCATTATTGAAGTTCCCCCATCTCCGGAGCCTGAAATAGAAGATACACGACCAATTATAGGCGATATTGAAGATTTATATGTAGAGTCTGATGATGAAATTCCCACCATCCAATTGAACAATGAAGAGTTTAGGGAAACATCGAAGGATACAATAGACCCACATAATTTTTCTCTTCCAGAAGGTGACAAGTCGAAAGCTCTTGCTTTGTCTGCAGAAGCGACCACATTTCGTCTGCCACAGATGAAGTTTATAGCCAAAACAAGGACTTTTCACCTTGTCCATGAGCTCCCAGACTCTCATCCGATTTTAGCCGGGTTTGATGAAAGGGAAGATGATGATCCATCTCCGTACCTTCTTAGGGTATGGCATCCAGATGAACTTCCCAAATCATTAGAAAATACTCAAAATGGAGCCTGCAATTCAATCAACAATGATAAAGAAGAAACACTTAAAGGGACGATCTTGATACCTTGTAGAACTGCAAATAGAGGGAAATTTCCCCTTAATGGAACATATTTTCAGGTTAACGAGGTATTTGCCGATGATGAAACTAGTCATTTTCCGATTGATGTTCCACGTCGTCTGGTGTGTTATTTGCCAACTCGGACATTAGGTTGTGGGTCATCTGCAACATCAATATTTAGAGGCATGTCCACCGATTTCATTCAGCGCATGTTTTGGAGAGGATCGATATGTGTGAGATCATTCAACAGAAAAACAAGGCAACCGGATACTCTTCATAGAAGATTGTATATGTCAACAACTGCTATTGCAGCAGAGAACAGAAAATCGAAGAGATAG 4710 39.58 MESVDSMGRNSVWIPLTPGKSISAMYPAPAVLFSEQGTGKESKNKTFQCIDSFDTMKYIDHRVMDKMPAGIVDDGHEAVLRVAEKDDPKPTKAVHYDTSSVQEEAVKVPFSEPVHESQAGVYSIPTPSKSNYTSKRRNDNIDLNKKPSQRPRVKKHRPKIFDDSKPKLVPKVQTPKRSTPKPKAPKPATPKCSTRKPETPKPATPNRVQERRKSSRKNKIAGSASYDHGDVMQVVQEASTDSIIDVKSCKRVLDFDYNNVVGRESLQMSQLEEESSRLSYDHVNFDYIGKIVTSKRSTLMRSRFPKNSLEASEGLLEDNNGQQQQGEDIYNSRNQEQDGKKYDHVYQRRKKIKVKSASHTPTLQVYRRTFRENNCLQNVRKIRPNFPKMLKKCRMLRKKVSIWKNKCCEKLVEDTERNVRRSLRQRIQTTGKKVQNRVSKSKDIIGVVKECNQVTPGWLLRRNRSVRHARVRRTINGFSIPERMPNDNETYLRCDESFLSITGCLQLQQVPVHRIESFTSVHVDVQQADDSVGNLNCSQLQEVEVLESQSLVPRLEEISLTKEDLKREFITGWINVLIRRIASLDIIGQSKELVVRDQNVASLDTNGQCKEVVVGDQNVSGALVKIVPSKKRKALPKVDLDKESLRVWKLLMENDGSEPVEETDIDKKEWWERQREIFRGRVDSFIAKMHLIQGDRRFSPWKGSVTDSVVGVYLTQNVTDHLSSSAFMSVAARFPVKSRTKEIVDNGEVASSQELVASYNFFTEGLFTNNEMKQNTSTSCVDVSDMTPTMEPNQDSVSNPTLLACSQESVATGLFTNNEMKQNTSKTCADVSNVTPIMEPNQDSVSPTLVACSQESVSSNNLVIDSLVRNNALEQNTSTSCADVRNMTPIPVHDMPCVNENSDNFRKCIEVEEMDFLKQFYDSDVDESPPNERRVIRHLSTSKVEGEEQSAISFDFSISNEPSATLPDLNTGLFEIPSEFIGQQKSTHEEESEVVYPVNSVPSEVTIEQEVNAVNDHRRVKNKPLTESSGKKNSKTDKKHEKKTNWEEVRKTYCKMGSIETNDNYMDAVDWDAVRLGTVEELANIIAKRGMNNVLAGKIKDFLDRMYKDHGTLDLEWLRNVPPDMAKEFLLSIEGIGLKSVECIRLLTLHHHAFPVDTNVGRVATRLGWVPLQPLPDAVQIHLLNAYPMVDTIQKYLFPRLCTLDQRTLYELHYQLITFGKVFCTKIKPNCNACPMRAECRHYASAVASGRLALPGSEEGSNVTSIIPAENEQNHSMFSTSTSRFDVEANNLGSTYHVQACDPIIEVPPSPEPEIEDTRPIIGDIEDLYVESDDEIPTIQLNNEEFRETSKDTIDPHNFSLPEGDKSKALALSAEATTFRLPQMKFIAKTRTFHLVHELPDSHPILAGFDEREDDDPSPYLLRVWHPDELPKSLENTQNGACNSINNDKEETLKGTILIPCRTANRGKFPLNGTYFQVNEVFADDETSHFPIDVPRRLVCYLPTRTLGCGSSATSIFRGMSTDFIQRMFWRGSICVRSFNRKTRQPDTLHRRLYMSTTAIAAENRKSKR 1569
leaf

Annotation information

Select Seq ID Length Analysis Description Start End IPR GO
Pslu1g06536 1569 Pfam RRM in Demeter 1455 1555 IPR028925 -
Pslu1g06536 1569 Gene3D Hypothetical protein; domain 2 1067 1151 - -
Pslu1g06536 1569 MobiDBLite consensus disorder prediction 156 170 - -
Pslu1g06536 1569 SUPERFAMILY DNA-glycosylase 680 1245 IPR011257 GO:0003824(InterPro)|GO:0006281(InterPro)
Pslu1g06536 1569 MobiDBLite consensus disorder prediction 1011 1044 - -
Pslu1g06536 1569 MobiDBLite consensus disorder prediction 83 225 - -
Pslu1g06536 1569 MobiDBLite consensus disorder prediction 1010 1044 - -
Pslu1g06536 1569 PANTHER TRANSCRIPTIONAL ACTIVATOR DEMETER 105 1567 IPR044811 GO:0019104(InterPro)|GO:0035514(InterPro)|GO:0141166(InterPro)
Pslu1g06536 1569 MobiDBLite consensus disorder prediction 317 342 - -
Pslu1g06536 1569 MobiDBLite consensus disorder prediction 317 332 - -
Pslu1g06536 1569 Gene3D - 1152 1240 IPR023170 -
Pslu1g06536 1569 SMART ccc3 1223 1243 IPR003651 GO:0051539(InterPro)
Pslu1g06536 1569 SMART endo3end 1058 1222 IPR003265 GO:0006284(InterPro)
leaf

Pathway information

Select Query KO Definition Second KO KEGG Genes ID GHOSTX Score
Pslu1g06536 - -
leaf

Duplication type information

Select Gene1 Location1 Gene2 Location2 Duplicated-type
Pslu Pslu-Chr1:44835730 Pslu6g01758 Pslu-Chr6:11491547 dispersed
Pslu Pslu-Chr1:44835730 Pslu4g01081 Pslu-Chr4:7079622 transposed