Gene search


Sequence information


Select Gene Cds Cds_length GC_content Pep Pep_length
Lal1g0004 ATGGAGGTGTTGAAGATCGACGTTGATGTTGTTGATGATGATGCTGCTCAAGAGAAGATGGAGGTGTTGAAGATCGACGTTGATGTTGATGATGATGATGCTGCTCAAGAGAAGATGGAGGTGTTGAAGATCGACGTTGATGTTGATGATGATGATGCTGCTCAAGAGAAGATGGAGGTGTTGAAGATCGACGTTGATGTTGATGTTGATGATGATGAGGGTTTTGATTGGGAAGCAGCTGCTCAAGAGATCGACGTTGTTTGCCAATTCACTTCGAGGCAATCACCAAAAACTCACATTCTCCCAAATTCAAATTTCAAAGAAGAAGAAGAAGAAGAAGAAAAAGGACCCACTCCCCACCCCATTGACCCTCACGCTGCCAAAACCTGGATATACCCTGTTAATGTTCCTCTCCGTGACTATCAATTTGATATAACCCACACCGCACTCTTTTCAAACACATTGGTTGCATTGCCTACTGGTCTTGGAAAAACCCTCATTGCCGCTGTAGTCATGTTCAACTACTTCCGATGGTTCCCTCATGCTAAGATTGTATTCACTGCTCCCTCTCGCCCCCTTGTCATGCAGCAGATTGAAGCCTGCCATAACATTGTTGGTATTCCTCAGCAATGGACCATCGATATGACTGGTCACCTTACTCCTCCAAAAAGAGCTCGCTTTTGGAAAACTAAGCGTGTCTTTTTTGTCACTCCACAAGTCTTGGAAAAGGATATCCAATCTGGTATATGTTTGCTTCACCACTTGGTTTGTTTAGTCATCGATGAAGCTCACAGAGCAACAGGAAATTACTCCTATTGTGAAGCAATCCGCCAGTTAATGGCTGTGCCCGTGCAACTTCGAATATTGGCCTTAACCGCAACACCAGGATCAAAGCAGCAGACGGTTCAGGATGTTATTGATAATCTGCATATCTCCAAGCTTGAATATCGCAGTGAAACTGACCATGATGTTATCTCATACATTCATGATAGGAAGATAGAGTTGATACAGGTTGCAATGGGACAAGATGCTGTAGAAATAAACAATTGTTTTTTGAAAGTAATACGCCCAATAGTAGCTAGGCTTACTGCTATTGGGGCCATTCAGAACAGAGATTACAGCACTTTGAGCCCGTGTGTACTACTTGAGATGAGGGAAAAGTTTCGATCTAGGCAAGATCTTGCTCATGTAAACTATGGAGATGTTGAAGGATATTTTGGAGTTCTTATTACTCTTTATTACATCCATAAGCTACTTTCAAGTCATGGAATAAGGCCAGCATATGAGATGCTTGAAAGAAAGTTGAAGCAAGGGTTTTTTGCAAAATTTATGAGTAAAAATGAAGTTATTCTGAATGCAAAGCAACTTATGCAGCAAAGCTTGTCTCATGGAGCGCCGAGTCCCAAATTGTCTAAAATGGACATAATGGATGCCCTTGGAGGTATCGGTGAACCAATCAGAGCTACACAGTTTATTGGTCAAAGTTCAGGGAAAGCAATGAAAGGTCAGTCCCAAAAAGTTCAACAGGCTGTGCTGAAGAAATTTCGGTCTGGTTCCTACAATGTCATTGTTGCTACATCAATTGGTGAAGAAGGTCTTGATATCATGGAAGTTGATCTTGTCATATCTTTTGATGCAAATATTTCACCACTTAGAATGATTCAGCGAATGGGGAGAACTGGAAGAAAGCATGATGGGCGATTGTTACTAGTTTTAGCTTGTGAAGGGGCAGAGTTGAAAGGCTACTTCCGAAAACAGGCGAAGAGCAAAACTATAAGTAAACACATGCGAAATGGGGGCATAAATAGCTTTACCTTTCATCCTAGTCCAAGGATGATTCCACACGTCTTTAAACCAGAAGTTCAATATGTTGAGCTGTCCATCGAGAAATTTATTCCTCGTGAAAAGAATGTGAAAGACAAACCTCTTCAGATTTCTGCATCCAAGGACAAACTCACTGTTGCTGAAGTTGATTTGCTTGAAACATATTTTCAACCCACTGGGGAAAATACATGTAGATTGTCTCTTATTGCCTTTCCTCACTTTCAGACCTTTCCTTCTAGAGTGCATAAAGTGAAGCATTCCTGTGGAACAATGATGCTTATAGGCATGATGCAGCATTTGCAAGGACTAGTACCATTTACCGAAGATAGCAAAACTTCTTTTCTTCAGGAATGTCAGTGTTTAGGGAATAGCAAGCCAGTTGCTGTTAATGAGCTTGATGAAGCTAAAAAGGACAACGAATCAAGCTCTAGGCATACAGTGGAAAGGAACTTAGCCTCTGTAAATTGTCCGAATCTGGATTCCTGTCATTTCGGGATTCAAACCAAAGACTCTGTTGTTGATCCAACTCTACAAGATAGTGTGTGTGAGGGTGATGAGACGATTCCTGAGACTCCTCCAAGTGCTAAGGGAAGTGTGTCAAATGAATGGGTTAATGCTTGTGAAACAGCCAATCTTGTGGAGATCGAGACCTCATTGTTGCTAGAAGGTTCTTGCATTGATGGCATGAAAGATGAAGAACTTAGTCCTCGTTTAACTGATTTCATTCTAAGTGGTGTTGTTCCAGAGTCTCCCATTGATGAAAGAGGGCAATCAAGAAATAAGTTTGTCATTCGAGACCTTTTACCTGTTCATCCCCATGAAAGACAGGATGTTAGTTCCTTAAGTTTTAGGGAGACTGAAAAGGTTATTATTGATTGTGGCACTAGCAATAATGTCTCCCCTGCTGTTGATAATGAAACCCAAACCCCTTTTCTTGAGCTGAAGAACCGTGCAATTAAAAGAGGACGTGTCTTCCTTTCTCCAACTGGCGAAGGCATTCCCAACCCAAGCTTCAGTGAAGAGTCACATTTAGGTTGTGGTGAAATGCCAGTAAGCATTAAACCTACACGCAAATTTAAAAGGTTGCGGAAAGCCGGAGATTGTGAAAACTATATCAATCAGAACAACAATAATCTGGTTGATTCAACAGCAAACCTTTTCAAAACATCTTCTATCTCCGATACCAGTCAATATAGGCAAGACCAAGGTAAAAGGAAATCGGTGCATGATGTGAGAGACTTCATTGAGGAGGAAGCTGAGGTATCTTCAGATGCTTCTGCATCTAATGATGAAGATGACGAGGATGTCAATTCATTTGACAGTTTCATAGATGACAGGACGAACCTTACAGCAGCTAGTCAGCCTGAAGCTAGTAGAATCGACATGATGGCAATTTACAGGCGCTCTTTGCTTAGTCAAACACCGATGAGTGAAGAGCTCAAATTTTCTGCATTCAGTCCTGACCATGTGATTTTGACAACCAGCGGAGATTCTTCAAGCAAGGTGATGAGTCATTTGCAGGCAGAGCCAACCAATAAGAGTCCAGAATCAGTTCATATCAATCAAATAACCTCAGATGCTGTGCCTCCAACTAGTTCCTCGACTGTGATAAGCCATAAGAGAAGATTGACATTTTATCATTCTCAACACTTTCCAAATAAGAACCTTGACCAAGAATTTGCTTGCCAATCAAAGAAAGAATCGGTGGTTGCAACCGTGGATGTTCTATGTGATGATCAATTTTATAATGATCTTGATCTTGACGAGTTGGAGGCACAAGCAACTTGTCTTCTTAAACGTAAAGTAGATTTGTCAGTTCAGAAGCAAGATACAACTATCCCTCTATCTCACTCTCAGGACCTTGATATTCTTATTCTTCTTCTTCTTGTTGTTGTTGCTGTTACTGGTTGTATTGTTAAGAACATTGAATTGAATCCAATGAAAGGGAAAACCAAGCAAGAAGTGTTGAGAGATATGGGATGTGAAACCATTGAGAGAAGAACGAGATGCGTTAATGAAACCACGCAATATAAGAGTGATGCCGTCTTCAGTCTCAACAACATTGGCTTCAAGATGGGGGTTTTAGTGATGAGTTCAGGCTCAGGCTTAGGCTTATCTACCACCACACAACTACGCTTACCATCCCAGCGTGTGGATAATAAATGTTCGCTTTCATTCCGTTCTTCATTTCCCACCACTCTCACTCTTACCACTACTCTTACTCCTCCTTCTCCCACCTACAACGGTGGTGGTTGTTCTTTCATCCAAGCTGCATGGACACGAAGATCCCGAGGTGAAGCTGCTAAGAAACCAAACAAGAAATCATGGAAGCAGAGGACAGATATGTACATGAGGCCATTCTTATTGAATGTATTCTTTTCAAAGAGATTTGTTCATGCGAAAGTAATGCACAGAGGAACGAGCAAAGTGATATCTGTAGCTACAACTAATGCAAAAGATCTTAGAAATTCACTTCCATCACTCACGGATAATAATGCCTGCAGACTCATTGGAAAGCTTATTGCTGAACGATCAAAGGAAGCAGATGTATATGCACTCGCTTATGAACCAAGAAAGGATGAAAGGATTGAAGGTAAACTAGGAATCATCCTTGATACTATCAAAGAGAACGGAATTCTTTTTATTCTTCTTGCTGAAATCATAAAAACAATAATTTCATTATTTCCCAAAACAGAGAAAGAGAGAGTGACTAACAGTTCCACTGATAGAGACAATGATGGTGCCAACAAGAGGTCCAAAAAGAAGTCCAGCAGACATGGGCCAATTTGGGTTACAGTGTGCAAATTCAGGGAGGAAATGGATGTTTTTTTTTATAATGTTAATATGATGGAGATGGAGCAATTAAGTATGCTAACAGAACCAAAACCCCCAACTAGACCGACCAGCAGTAGAGCCGCGAGGAGAGTACCTTTCATGGCAGTAGAGCCACCCTCCTCCAAACCCAACTCTTTATCGCTCTTCTTCTGCTTTTTCTTCACCTTGTCATCGTCATCATCGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTTTTGGGGCTAAATAAACGCTTTATGATAACAAAATCTGAAGACAATGCTTTCTTCTTATTCCTATTCCAATTCCAATACCAAAACCAAAACCAATACATTCATACAATGGCATTCTGGGGAGTGGAAGTGAAACCAGGAAAGCCTTTTAGTCATAAATATGATGATTTGAAAGGTCGGCTTCATATATCTATGGCCACTTTGGGTTTTGGTTCTTCTACTTCGAAAAGCATTCTCCAATGTAACATTGGTAACAGAAGTCCTATTTATCTATGCTCTCTCTATCCTGGTAACACTGAATCACTCCAATTGAATTTGGAATTGGAAGAAGAAGCTGATGAAGTTATCTTCTCTGTTATTGGTCCTCGCAGTATTCATATATGTGGTTATTATCTCTCTTCATCATCTTCCAATCCCACCAATCACCTTTCTGAAGATGAGTCATTTGGTGAAGACATTGCTAACACTGAGTCTGACAACTCTGCTGATGATGATCACTATGATGATAGTTTTATCGATGATGAAGATCACCCTCACGTTTTCCCATCATCACCCCTTTCTCATCAAGGCACGTTCCTTCACCTCTTTATCATCAATCACTCATTATTTTCCAATTACAATTTCATTCCTTTCGAAACTTCCATTGATGACAACAAACCAAAACGTAAGAAAACTGGCCTCAGAAGGCTAAGGAAGTACCAATCAGTAGAGTCTGATGCTGATGATAATTGTTCCGAAGAAAAGAACACTACCCACAATGATGAAACAAAGGAAATTATTGATGATGATCATGATGATGATCATGATGATGATTCCCTGCCAATTTCATCTCTTTATAAAAATAAAGCCTCTGAAAGGGTATTGCATCAGGAAATGGATGATGACAGAGCAGCAGGTGATACCACTCACAAGAATGCTGAAGATGGTGCCAATAATATAATTGAAACAACCCTAAAAACTGACGATGTCATTGTACATAGTCAGACACATAGGGAAGTGGAAGTATTAGATCCTTGCACTGTTCTGGATGTTGGAAGTATTAAAAAGGAAAAAAAGAAGAAAAAGGGAAAGACAAAAGAAACAAAGAATTTTTGTAATGACCATTCTATCAAACCAGATAGTGATGTGCAAGAAGAGCCAAAAATGGACAAGATGACCCATGATCTTCTGGCAGGAAATGAACAATACCAGGAGCATGCTGATAACAAGGAAACTGAAACTTCGGATAAAATGGTAGCTTCCTCTGAGGTTAGACATGAACAAGGTGAGAAGCCAAAGAGAAAAAGGAAAGAACGGTCAAAGGAAGAGGGAATAATTCCCATTGTTATTGGTTCTGATCATAGCAATATTGTTAATGATGCATCACCTTCAGCTGAAACGCCTGAAAAGAGGAAAAAGAGGAAAAAGAAAGAGCATGTAAAAGAAGACTCACACCTTGAAGGTGATATTGCACACCATGAAGATATTGTGAACAAGCACAAATCCCGCAGAGATGCAGCAGAATTCGATAATGTGATTCATAACTTTCCTGAAGGAAAAGAGCAACATCTGAAAGTAATAAAAGAAAATGTTGTGGACATCGGTGCTCATGACCTTCCTGATGGAAATCAATCTGAGGATAGAAAAGTTAAGAAAAAGAAGAAAAAGAGTAAAAGTCGGGGGGATGAGGAAGTTGCAAAATCTTTTGAGCAAAGTAGTGACATGGTGAAGGAGGATGGAAACAAGAGGGCTGATGCAAAGCCTTCCAATGTTAAAACATTGTCAAATGGAGTAGTTATTGAAGAGCTAGGAATGGGGATAAAAGATGGCAAAATTGCGGAATCAGGAAAAAGGATTAGCGTCCATTACACTGGCATGTTGAAGGAAAATGGAGTAGTGTTTGAGTCAAATGCTGGGCAAGCTCCTTTTAAATTTCGTCTTGGTAAAGGAGAAGTTTGCGAGGGTTGGGATGTTGGCCTTGAAGGCATGCGAGTTGGAGAAAAAAGGAGACTTGTAATCCCACCATCAATGATGTCTAAGAGTGAAGGACAGAGTGCAACGATACCACCAAATTCATGGCTGGTTTATGAGTTGGAATTGCTGTATGATATCATTTATCTGTTGAATTCAGATTATGATGGGTTTTTGGTGTACAAGATTCCAACCAAATCGAAGGTTTTGTTTCTTTTAAGAACACGTGTTATAGATATCAAATATGAATTTTGGGTGGCTTTTCTATGGAAACGATTGACGATGATGAGTGTGAGTAACTGCAAGAAGAAGATTGAAGATATGAAGAATGAAGATTTAGCACTCTACTTCCTCCAACAACAAATTGGATCAAATGATGATGATTCATCTGTTGATTCATCTGTTCCAACGGAGCTGAACACAATAAACAGTTCAGGTGGATTCGCGGTGGTGTCTAGGGATAAGCTTTCAGTGAAATACACAAACGTGAATCTACACGGCCACGACGTTGGAGTTATACAATCAAACAACCCTGCTCCAACAAACACAATGATTTACTATTTCGAGATATTTGTTAAAGACGCTGGTGCTAAAGGTCACATTTCTATTGGATTCACTTCTAATAACTTCAAAATGAGAAGACAACCTGGTTGGGAACCCAATAGTTGCGGTTATCATGGTGACGATGGTCTTCTTTATTGTGGTCATGCCAAGGGTGAACCCTTTGGTCCTACTTACACTTCTGGTGATATTGTTGGTGCTGGTATTAACTATGCTCAACGTCTTTTCTTTTTCACTAAGAATGCTCAACTTGTCGGCACTGCTTATAAAGACAACACTATGAACCCTCCTCTTTTCCCAACCATTGCTGTTCACAGCCTTAACGAAGAGGTGCATGTCAACTTTGGCCAGAAACCATTTACTTTTGATCTAAAGGAATTTGAAGCACAAGAAAGAATGAAGCAGCAAGTCAAAATAGAGGAAATACCTCTTCCCCCAAATCTTAGCTACGGAATTGTGCGTTCCTACCTGCTACACTATGGCTATGAAGATACATTGGATTCATTTGATATGGCTAGTAGAAGTACCGTTCCTCCTATATGTATAGCTCAAGAAAATGGAATTGATGAGCAGGAAATAACATATGCCCTAAATCATAGAAAGACTCTACGGCAGCTAATCAGGGATGGGGAGATTGATACTGCATTTGGTAAATTGCGTGAATGGTATCCCCAGATTGTTGAGGACAACACATCAGCTACATGCTTTCTACTTCATTCTCAAAAATTTATCGAATTGGTTCGGGTTGGAGCACTGGAGGAGGCTGTGAGATATGGAAGAACAGAATTGTCAACTTTTTTTGGGTTGCCTGTCTTTCAGGATTTAGTTAAGGACTGTGTTGCTTTACTGGCATATGAACGACCATTGGAATCCTCAGTAGGTTATCTTTTAAAAGACTCGCAGCGTGAAGTTGTGGCTGACACAGTAAATGCCATGATCTTGTCCACAAATCCAAATATGAAGGAATCAAAAAATTGTTTGCACTCCTATCTTGAGAGGTTACTTAGACAGCTCACTGCTTGTTGTTTAGAGAGACGATCTTTAAGTGGAGATCAAGGAGAAGCTTTCCAACTTCAGCGAGTGCTTAGCGCTGGTAAAAGGGCCTAG 8487 0.4029 MEVLKIDVDVVDDDAAQEKMEVLKIDVDVDDDDAAQEKMEVLKIDVDVDDDDAAQEKMEVLKIDVDVDVDDDEGFDWEAAAQEIDVVCQFTSRQSPKTHILPNSNFKEEEEEEEKGPTPHPIDPHAAKTWIYPVNVPLRDYQFDITHTALFSNTLVALPTGLGKTLIAAVVMFNYFRWFPHAKIVFTAPSRPLVMQQIEACHNIVGIPQQWTIDMTGHLTPPKRARFWKTKRVFFVTPQVLEKDIQSGICLLHHLVCLVIDEAHRATGNYSYCEAIRQLMAVPVQLRILALTATPGSKQQTVQDVIDNLHISKLEYRSETDHDVISYIHDRKIELIQVAMGQDAVEINNCFLKVIRPIVARLTAIGAIQNRDYSTLSPCVLLEMREKFRSRQDLAHVNYGDVEGYFGVLITLYYIHKLLSSHGIRPAYEMLERKLKQGFFAKFMSKNEVILNAKQLMQQSLSHGAPSPKLSKMDIMDALGGIGEPIRATQFIGQSSGKAMKGQSQKVQQAVLKKFRSGSYNVIVATSIGEEGLDIMEVDLVISFDANISPLRMIQRMGRTGRKHDGRLLLVLACEGAELKGYFRKQAKSKTISKHMRNGGINSFTFHPSPRMIPHVFKPEVQYVELSIEKFIPREKNVKDKPLQISASKDKLTVAEVDLLETYFQPTGENTCRLSLIAFPHFQTFPSRVHKVKHSCGTMMLIGMMQHLQGLVPFTEDSKTSFLQECQCLGNSKPVAVNELDEAKKDNESSSRHTVERNLASVNCPNLDSCHFGIQTKDSVVDPTLQDSVCEGDETIPETPPSAKGSVSNEWVNACETANLVEIETSLLLEGSCIDGMKDEELSPRLTDFILSGVVPESPIDERGQSRNKFVIRDLLPVHPHERQDVSSLSFRETEKVIIDCGTSNNVSPAVDNETQTPFLELKNRAIKRGRVFLSPTGEGIPNPSFSEESHLGCGEMPVSIKPTRKFKRLRKAGDCENYINQNNNNLVDSTANLFKTSSISDTSQYRQDQGKRKSVHDVRDFIEEEAEVSSDASASNDEDDEDVNSFDSFIDDRTNLTAASQPEASRIDMMAIYRRSLLSQTPMSEELKFSAFSPDHVILTTSGDSSSKVMSHLQAEPTNKSPESVHINQITSDAVPPTSSSTVISHKRRLTFYHSQHFPNKNLDQEFACQSKKESVVATVDVLCDDQFYNDLDLDELEAQATCLLKRKVDLSVQKQDTTIPLSHSQDLDILILLLLVVVAVTGCIVKNIELNPMKGKTKQEVLRDMGCETIERRTRCVNETTQYKSDAVFSLNNIGFKMGVLVMSSGSGLGLSTTTQLRLPSQRVDNKCSLSFRSSFPTTLTLTTTLTPPSPTYNGGGCSFIQAAWTRRSRGEAAKKPNKKSWKQRTDMYMRPFLLNVFFSKRFVHAKVMHRGTSKVISVATTNAKDLRNSLPSLTDNNACRLIGKLIAERSKEADVYALAYEPRKDERIEGKLGIILDTIKENGILFILLAEIIKTIISLFPKTEKERVTNSSTDRDNDGANKRSKKKSSRHGPIWVTVCKFREEMDVFFYNVNMMEMEQLSMLTEPKPPTRPTSSRAARRVPFMAVEPPSSKPNSLSLFFCFFFTLSSSSSLLLLLLLLLFLGLNKRFMITKSEDNAFFLFLFQFQYQNQNQYIHTMAFWGVEVKPGKPFSHKYDDLKGRLHISMATLGFGSSTSKSILQCNIGNRSPIYLCSLYPGNTESLQLNLELEEEADEVIFSVIGPRSIHICGYYLSSSSSNPTNHLSEDESFGEDIANTESDNSADDDHYDDSFIDDEDHPHVFPSSPLSHQGTFLHLFIINHSLFSNYNFIPFETSIDDNKPKRKKTGLRRLRKYQSVESDADDNCSEEKNTTHNDETKEIIDDDHDDDHDDDSLPISSLYKNKASERVLHQEMDDDRAAGDTTHKNAEDGANNIIETTLKTDDVIVHSQTHREVEVLDPCTVLDVGSIKKEKKKKKGKTKETKNFCNDHSIKPDSDVQEEPKMDKMTHDLLAGNEQYQEHADNKETETSDKMVASSEVRHEQGEKPKRKRKERSKEEGIIPIVIGSDHSNIVNDASPSAETPEKRKKRKKKEHVKEDSHLEGDIAHHEDIVNKHKSRRDAAEFDNVIHNFPEGKEQHLKVIKENVVDIGAHDLPDGNQSEDRKVKKKKKKSKSRGDEEVAKSFEQSSDMVKEDGNKRADAKPSNVKTLSNGVVIEELGMGIKDGKIAESGKRISVHYTGMLKENGVVFESNAGQAPFKFRLGKGEVCEGWDVGLEGMRVGEKRRLVIPPSMMSKSEGQSATIPPNSWLVYELELLYDIIYLLNSDYDGFLVYKIPTKSKVLFLLRTRVIDIKYEFWVAFLWKRLTMMSVSNCKKKIEDMKNEDLALYFLQQQIGSNDDDSSVDSSVPTELNTINSSGGFAVVSRDKLSVKYTNVNLHGHDVGVIQSNNPAPTNTMIYYFEIFVKDAGAKGHISIGFTSNNFKMRRQPGWEPNSCGYHGDDGLLYCGHAKGEPFGPTYTSGDIVGAGINYAQRLFFFTKNAQLVGTAYKDNTMNPPLFPTIAVHSLNEEVHVNFGQKPFTFDLKEFEAQERMKQQVKIEEIPLPPNLSYGIVRSYLLHYGYEDTLDSFDMASRSTVPPICIAQENGIDEQEITYALNHRKTLRQLIRDGEIDTAFGKLREWYPQIVEDNTSATCFLLHSQKFIELVRVGALEEAVRYGRTELSTFFGLPVFQDLVKDCVALLAYERPLESSVGYLLKDSQREVVADTVNAMILSTNPNMKESKNCLHSYLERLLRQLTACCLERRSLSGDQGEAFQLQRVLSAGKRA 2828
       

Annotation information


Select Seq ID Length Analysis Description Start End IPR GO
Lal1g0004 2828 ProSiteProfiles Superfamilies 1 and 2 helicase ATP-binding type-1 domain profile. 145 313 IPR014001 -
Lal1g0004 2828 CDD Ribosomal_L18_L5e 1384 1487 - -
Lal1g0004 2828 PANTHER FANCONI ANEMIA GROUP M FANCM FAMILY MEMBER 74 767 - -
Lal1g0004 2828 PANTHER FANCONI ANEMIA GROUP M FANCM FAMILY MEMBER 827 1204 - -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 1510 1526 - -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 1026 1049 - -
Lal1g0004 2828 ProSiteProfiles Superfamilies 1 and 2 helicase C-terminal domain profile. 423 609 IPR001650 -
Lal1g0004 2828 SMART toby_final6 2710 2811 IPR013144 -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 2018 2118 - -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 1971 2004 - -
Lal1g0004 2828 Gene3D - 2392 2596 IPR043136 -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 1983 2004 - -
Lal1g0004 2828 Pfam Nucleoplasmin-like domain 1662 1755 IPR041232 -
Lal1g0004 2828 Pfam Type III restriction enzyme, res subunit 152 295 IPR006935 GO:0003677|GO:0005524|GO:0016787
Lal1g0004 2828 ProSiteProfiles FKBP-type peptidyl-prolyl cis-trans isomerase domain profile. 2232 2320 IPR001179 GO:0003755
Lal1g0004 2828 Pfam SPRY domain 2458 2577 IPR003877 GO:0005515
Lal1g0004 2828 MobiDBLite consensus disorder prediction 99 124 - -
Lal1g0004 2828 SUPERFAMILY Concanavalin A-like lectins/glucanases 2416 2582 IPR013320 -
Lal1g0004 2828 Gene3D - 134 328 IPR027417 -
Lal1g0004 2828 CDD FANCM_ID 351 457 - -
Lal1g0004 2828 Gene3D Nucleoplasmin core domain 1657 1760 - -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 2020 2060 - -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 1031 1047 - -
Lal1g0004 2828 Pfam Ribosomal L18 of archaea, bacteria, mitoch. and chloroplast 1392 1489 IPR005484 GO:0003735|GO:0005840|GO:0006412
Lal1g0004 2828 ProSiteProfiles B30.2/SPRY domain profile. 2390 2580 IPR001870 -
Lal1g0004 2828 SUPERFAMILY P-loop containing nucleoside triphosphate hydrolases 153 571 IPR027417 -
Lal1g0004 2828 SMART SPRY_3 2456 2579 IPR003877 GO:0005515
Lal1g0004 2828 PANTHER FANCONI ANEMIA GROUP M PROTEIN 74 767 IPR039686 GO:0006281|GO:0043138
Lal1g0004 2828 PANTHER FANCONI ANEMIA GROUP M PROTEIN 827 1204 IPR039686 GO:0006281|GO:0043138
Lal1g0004 2828 Coils Coil 1195 1215 - -
Lal1g0004 2828 Pfam CTLH/CRA C-terminal to LisH motif domain 2658 2800 IPR024964 -
Lal1g0004 2828 Gene3D Ribosomal protein S11 1362 1494 IPR036967 GO:0003735|GO:0005840|GO:0006412
Lal1g0004 2828 CDD DEXDc_FANCM 136 317 IPR044749 GO:0005524
Lal1g0004 2828 SMART ctlh 2656 2714 IPR006595 -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 1853 1882 - -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 1837 1906 - -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 1764 1790 - -
Lal1g0004 2828 Gene3D - 2164 2319 IPR046357 GO:0003755
Lal1g0004 2828 SMART ultradead3 134 327 IPR014001 -
Lal1g0004 2828 Pfam FKBP-type peptidyl-prolyl cis-trans isomerase 2227 2317 IPR001179 GO:0003755
Lal1g0004 2828 SMART helicmild6 474 564 IPR001650 -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 103 121 - -
Lal1g0004 2828 SUPERFAMILY FKBP-like 2189 2317 - -
Lal1g0004 2828 ProSiteProfiles LIS1 homology (LisH) motif profile. 2605 2637 IPR006594 GO:0005515
Lal1g0004 2828 MobiDBLite consensus disorder prediction 2173 2202 - -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 1510 1530 - -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 2152 2205 - -
Lal1g0004 2828 ProSiteProfiles C-terminal to LisH (CTLH) motif profile. 2656 2714 IPR006595 -
Lal1g0004 2828 Gene3D - 471 599 IPR027417 -
Lal1g0004 2828 Pfam Helicase conserved C-terminal domain 502 563 IPR001650 -
Lal1g0004 2828 CDD SPRY_RanBP_like 2444 2576 IPR044736 -
Lal1g0004 2828 SUPERFAMILY Translational machinery components 1392 1487 - -
Lal1g0004 2828 MobiDBLite consensus disorder prediction 2096 2118 - -
       

Duplication type information


Select Gene Chromosome Start End Duplicated_type
Lal1g0004 Lal-Chr1 81848 120096 Dispersed/Transposed
       

Functional genes information


Select Gene Gene_start Gene_end Function Ath_gene Identity(%) E-value Score
Lal1g0004 2230 2317 Calmodulin-binding Proteins AT5G48570 42.697 7.15e-15 79.0
       

Pathway information


Select Query KO Definition Second KO KEGG Genes ID GHOSTX Score
Lal1g0004 K10896 - gmx:100820078 1449.49
       

Event-related genes


Select Gene_1 Chr_1 Start_1 End_1 Gene_2 Chr_2 Start_2 End_2 Event_name
Lal1g0004 1 81848 120096 Lal1g0004 1 81848 120096 ECH