Effector profile
PlantPEAD ID: PlantPEAD02454 | Uniprot ID: A0A066XWM1 | Source: Orthologous |
Localization: Cytoplasmic(Pre) | Pathogen taxonomy ID: 1173701 | Pathogen type: Fungi |
Species: Colletotrichum sublineola | Strain: TX430BB | Other name: Sorghum anthracnose fungus |
Gene name: | NCBI Gene ID: JMSE01000052 | |
Entry name: A0A066XWM1_COLSU | Protein name: Putative AMP-binding enzyme | |
DOI: |
Gene/Protein information
Gene sequence:
ATGATTTGCGACGAGACAACGTCTGTTTGGCCTCTCGGCCATGGTGATGTTTTCTTCAACGGTGACGGTGCCGATGCCAACGCCGAAACCCTCGGTTACCGCCTCCGTCACGCCGTCCTTTACGCCCTGCAGGACACGCCCTTGTCATTGTCCAACACGACGACCAATATCCGACTCGTGCCTATAGCACAAATCGCCAAGGCAGCCTCGGGTGACGCCGGCGCATTGCTGCCAAAGGCCACCGAGCTGCGTGTCGTCGTCGAGTGGGACGGCGTCGACGAGAGTCTGGTCAACGTGACGACGATCGACCAGCAGCTTCAGCTCCACCAGCAGCCCCAGGAACAGCACCTGTTTTCCGACACCAAGACGTACTGGCTCGCCGGGCTCACGGGCGGCCTGGGCCTGTCCCTATGCGAATGGATGGTCGGCCAAGGGGCCAGCGACCTCACCGACTTGCAACAGACGGAAGCGCTGCTGCGGGACATGCACGCCGTCATGCCGCCGCTCGGAGGCGTGGCCATGGGCGCCATGGTGCTAAAAGACATGGCCTTTGACAACATGTCGCTGCGAGACATGCGCGTGGTGACGGACCCCAAGGTCAGGGGCAGCGTGCACCTCGAGAGCCTCCTGGGCAACATGGACCTCGACTTTTTCGTCTTCCTGTCCTCCCTCACTGCCGTCACCGGAAACCCGGGCCAGTCCAACTACTCGGCGGCGAATCTGTTCATGGCGGGACTGGCGGGTGCGCGGAGGCGGAGAGGGCTCGCCGCCACCGTCATGCACATCGCGGCCGTCCTGGGCGTCGGTTACGTCTCGGAAAAGACGGAAGCATCAAAGACCAACTTTTCCCGCACCTCGGGCTACACGCTCACCTCCGAACAGGACTTCCATCAGCACTTCGCCGAGGCCGTCGTCGCCGGACGCGCCCGCGACGTCTCTGGCCGTCGCTGCGGGCCTCTGGAGATCGCCATGGGGCTGCAGAAAGAGAACGCAAACGCCGACAAGAAAGCCTTTTGGTTCGGCAACCCCACCATCACGCACTTCATCCGCAACGAAGACGGAAACACGGGCGAAGACGCAGGCGCCGCGGGGACTGCACGCGGCGGCTCGCGAGACAGCAGGGCGTCCGTCAGGGCCCTGCTCGCGTCGGCCACGTCCCGCGCAGAGGCCGTCCGCATCGTCAAGGACGGATTCGTACCCTTTGTCCGCTCTCTGTTCCAGTTTCCGGGCGGTGACGATCAGGCCAGCGTCGACGAGCTCTCGCGCGTGAAGCTCGACGACATGGGCCTCGACTCTCTCCTCGCTGTGGAGATCAGGACGTGGTGGTTGAAGACGATCAATGTGAACTTGCCCGTCATGAAGATCCTCAGCGGCGTGTCCGTCGACCAGCTGGTGGACATGGGCGTCGACCAGCTGCCCCGCAACTTGGTACCCAATGTGGAACAACAACGCACGCCCGCCGACCCCCCATCTCCGGATCGTTCTGCGTCTCTTGTGGATACTGTAGGGTCGGCGTCGGAGGAGACGGAACCGGAGATACAATCCGATCTCGGCAGCAGTAGCGACAACACACCGTCCGCCTCTTTGGGCGACATAACCACTGCTACCACGTCCCGAGCCGTCACCCCCCCAGCGGTGGCCGAAGACGCCCCAGACGGACATGGGAAGCTCTTGGAAGCGAGGCCGGCTGTATCCCGCTGGCTGGAGCCCTCCTTCAGCCAAAAGATGTTCTGGTTCGTGCTTTCGTTTGTCGACCATGGTGCTGGCCTGAACCACACTGGCATGTTCCGTCTGACGGGTCCTGTAGACGTCGACAAGCTGGAGAGGGCTGTACTGCAGCTCGGACAGCGCCACGATATCCTCCGAACCTGCTTTGAGAATGTCGACGGGCGAACCAAGGCGGGCATCATGGAGCGGAGCCTCTTGAAGCTGGAACGACGGCGCATCGTCGAGGAGCACGAGGCTCACGACGTCGCCCGAGAACTCCACGCCTACAGCTACGACGTTTCGGCTGGAGAGTGTCTGAGGATGGTGTTGCTGACCCTGGCCCTCACTACACACTTTTTGTTGTACGGAACGCACTCGCTGGTCCTGGACGGCTTCTCGTCCGCCATCCTCAACAACGAGCTGATCCGACTGTACAAGGATGACGGCGACATGACTCCCGCCGATGCCGTCTATCAGTACTCGTCGTTTGCCCAGAGCCAGATCCAGGCCATGCACGAGGGGGCGTGGGAAAGCGACCTCGCCTTCTGGAGGAAAACCTTCGCGTCGTGCCCGTCTCCGCTGCCGTTGTTGAGCGTCTCGTCGGTCGCGAGCCGCCCGGAGCAAGGCGCCTACAGGAACCATCAGGCCAAGCTGCAAGTCGAGGCCTCTACCAAGTCTCGCATCTGGGACCTTTGTCGGCACCACAGAGTGCGGCCGTTCCACTTCTTCCTCACCGTCTTCCGAGCCTGCCTGGCACGCTTCGCGGACGCCGACGAGGTCGCCATCGGCATAGCCGACGCCAACCGGGTCCACGACGACGCCATGGAGAGCCTGGGCCCTTACGTCAACATGATCCCGCTGCGATTCCTCAGCGATCCGCAGCTGGCCTTTGACGAGGCGGTCCGAGACACCAAGCAGACGACTGACGAGGCCCTGGCGCACTCGGCCGTTCCCTTTCAGGCCCTACTCGACGACCTCGGCGTCCCCCGTTCGTCGACACATCCGCCCATCTTCCAGACCTTTTTCGACTACCGCCAGGGCCTGCCCAAACGGCAACAATGGGGGGATTGCGAGCTCGAGATGCTCTCGTTCGCGCTGCCACCGGTGCCGTACGACGTGGCACTCGACATCACCGACGATGGCAAAGACGGCGGCTGCCATCTGATGCTAATTGTTCGCCAGGACATGTACACTGAACGAGATGCCGAGATCATCCTCGGGGCCTATGAGAAGTTGTTGATGGCCTTTGTGACGAATCCCGGAGACTTCTCGCCGTCCGAGTGGACAAGGACTTACGGTTCGGTCCTGGGAAGAATCGAGGCACTCGCAGAAGAACACCCGCACTCGCTGGCACTCAAGTCACCCCACGGCGGCCCGTCCATGACATACCGAGACATGATTGCCAAGTCGCGAGCCATCGGTGCCGCCCTCGTGGCGGTGGGATGCGCCCCCGGAGCGTCCGTGGTTGTTTACCAGGACTCGACGCCCGACTGGATCTGTTCGGTGCTGGGAACCTTTAGCATCAACGGAGTGTGCGTTCCTTGCGACGCCGGCACCCCTGTCAAGCGTCTTGCCGACATGGTTGCCTCCAGCAAGGCCACCGTCCTCCTCGTCGACGCGTCGACGGCGGAGCAGGCCGCGGGGGCGTTGAGCACCACCATCAGCGACCGAGAGCGCGTGAGAATACTCAGAGTCGACCGCATCGAGGCGGCGACATTGGGACATGCCTCATCGACCGCACGTGGTCGGCCACCGCCGGGACCCCAAGACCCAGCGATGATGCTCTACACCAGCGGATCGACGGGGACGCCCAAGGGTATCCGCCTGAAGCACGAGGGGTTCACCAATTGGGCCGAGTTTACCGTGCCCCGGTTGCTGACGGACAACACATGCACTGGAAGTGGCGGAGGCGGCGACCTCGTCGTCCTCCAACAGAGCTCCATCGGCTTCGACATGGCTTACCTGCAGGCTTTCCTGGCCCTCGCGTACGGCGGCGCACTCTGCATCGTGCCGCGGGCGCAGCGCGTCGATGCCGGCGCCATTACCAGAATCATGGCGGCCGAGGGTGTGACCGTGACATGCGCAGTGCCGTCCGAGTACAAGAACTGGCTGACCTACGGAGACCGAGCCCTGTTGGCCGCTGGGTTGAGCAGCTGGAGGACGGCCGTGAGCGGAGGAGAGCCCGGCAGCGACGCTGTGGTCGAGCTCCTGGCAGTCCGCGGCCCGCGCCAGAGCAAAGGACAACAACTGCCGCGTGTCATGCACATCTACGGCCCTACCGAGATCACCTTCTTCGCGACGTTCGGGGCTCTGGGCCCTGACGACGCGAAGCAGCTGCCTGCCGCCGCGGGCAGGCCATTGCATAATTATTCCGTATACGTGCTCGACGAGAGCCTCCGCCCCGTGCCACCGGGCGTGGTAGGTGAGATATTCGTCGGCGGAGCCGGCGTTGCTGCTGGCTACGTCTCGGGAGAGACAGAGACGGAGAGCGCCACGGCCGACAAGTTCCTCCCAGACCACCTGGCGCCGGCAGCATTCGTCTCGCAAGGCTGGACCACCATGCACCGCACCGGCGATAACGGCCGCTGGCGGGCCGACGGTCAGCTCGTGATCCAAGGTCGTCGGTCCGGAGACACGCAACACAAGATCCGGGGATTGCGGGTCGACTTTCAGGAAGTGGAGAAGGCGATCCTTGAAGAGTCGCACGGCTTCCTGTCCGAAGTTGTCGTCACCGCCCGTCGTTCGACGCCGCAAAGCGCCGAGTTCCTGGTGGCACACGTCAAGCTGAATCAGGACGAGGCCCCGGCCGATGCTCACGAGCGGCAGACGCTTCTCGGTCGCCTCTCCTCGGGCCTGCCGCTACCGCAGTACATGTGGCCTGCCATCGTGGTGCCGGTGCCCGACTTTCCCAGGACCATGTCTGGTAAGCTGGACCGCAGGGCCGTTGCCCTGTTTCCGTTGCCCGAGGCGGCATCTGCAGACGACGATGGAAGCGACGACAACGGCGAAAGAGCAGCCGCCTTGTCTCTGACGGAAGCCCGGCTGAAGGGCGTTTGGTACGACGTCATCTCGACTGCCGTCACAAGTCGGCGCACCGTGACGAGCGAGACGGACTTCTTTCACGTCGGAGGCACCTCGCTGCTGCTGCTTCAACTGCAAGCGCGCATCCACCGCGAGTTCGGGCTGCGCGTTCCCTTGGTGAACTTGTTCGCCTCCAGCAGCCTGGCAGCCATGGCCAAGTTGATTGACGACGCTGGTTCGGCATCACCCGGGAGGTTGTCGTCTTCCGAGCCGGCCACCACGTGCACTTTCGACTGGGATGCCGAGACGGACATGACCGAGACAACGTTGGCAGCGCTCAAGATGTCGGTCCCTCATCGACCGGCATCGCCCAGCGCGGTCGTCGTCGTCTTGACGGGCGCGACGGGGTTGCTGGGGCAAGCGTACTTGCAAGCCTTGATCGCCGATTCGGGCGTCCACCGGGTTCACTGCATCGGGGTGAGAGACGCCGCTGCCCGCCTGTCATCCCTCCCACTTCTGAGGCACGGCAAGGTAGTCGTGAGCGAGGGAGACCTCGGGCTCGCCCGCCTGGGCCTGGGCGAGTCCCGGGCCCGCACCATTTTCGGCGAGGCGGACCTCATCATCCATAACGGCGCCGACACCTCCCACCTCAAGACGTATTCATCCCTGCGCAGGACCAACGTGGGAGCCACCCGGGAGATTGTGGATATGTGTTTGCTGGTCGGCAAGAGGATCCCCATCCATTACGTGTCGACGGCAAGCGTTCTGCAATACGCCGGCCTGGACGAGTTCGGCGAGGAGTCCGCCGCACGTTATCCACCTGCCCCCGACGCTTTCGACGGGTATAGCGCGTCCAAATGGGCCAGCGAACGATATCTGGAGAAATTAAACGACCGCTGTGCCGAAGAGCGAGGAGGTGGTGGCGACGGATGGCCAGTCTGGATTCACCGCCTCACCAGTGTGCAGCGCGGCGGCAGCGGCGATGACAATAACAGCAGTCATAACAAGGCGCCAGGGCAGGATGCGTCGGAGGAGCCAACCAACATGGACATCGTCTGGAACCTGTTCAAATACTGCAAGCTGGCAAAGGCAGTATGCGTGCTTCCAAACTGGAGCGGCTTTCTCAACATGGTTCCCTTGGAGCAGGCGGTTAAGAGCATGATGCGCAACATCCACGCCGGCATCATCGAGGAACAGGCAAATAGAGAGGCAGGTGTCCGCTATCGACACGTCGTGGGCGACGTCGACGTACCCTTGTCGGGCTTCAGACAGTCTATGGAGGGCATCCTCGGCGAGCCCGTTGCTGAGCTCACCCTTGAGGAATGGGTCCGAGAGGCGGCTGGGTTTGGAATGAACCCCGTGCTGTCGGCCTTCTTCGGGAGCTTGGGAGAATTGCGACCGGTTACCTGGCCGCGACTCTTGGGCTCACGATATCAATAG
Protein sequence:
MICDETTSVWPLGHGDVFFNGDGADANAETLGYRLRHAVLYALQDTPLSLSNTTTNIRLVPIAQIAKAASGDAGALLPKATELRVVVEWDGVDESLVNVTTIDQQLQLHQQPQEQHLFSDTKTYWLAGLTGGLGLSLCEWMVGQGASDLTDLQQTEALLRDMHAVMPPLGGVAMGAMVLKDMAFDNMSLRDMRVVTDPKVRGSVHLESLLGNMDLDFFVFLSSLTAVTGNPGQSNYSAANLFMAGLAGARRRRGLAATVMHIAAVLGVGYVSEKTEASKTNFSRTSGYTLTSEQDFHQHFAEAVVAGRARDVSGRRCGPLEIAMGLQKENANADKKAFWFGNPTITHFIRNEDGNTGEDAGAAGTARGGSRDSRASVRALLASATSRAEAVRIVKDGFVPFVRSLFQFPGGDDQASVDELSRVKLDDMGLDSLLAVEIRTWWLKTINVNLPVMKILSGVSVDQLVDMGVDQLPRNLVPNVEQQRTPADPPSPDRSASLVDTVGSASEETEPEIQSDLGSSSDNTPSASLGDITTATTSRAVTPPAVAEDAPDGHGKLLEARPAVSRWLEPSFSQKMFWFVLSFVDHGAGLNHTGMFRLTGPVDVDKLERAVLQLGQRHDILRTCFENVDGRTKAGIMERSLLKLERRRIVEEHEAHDVARELHAYSYDVSAGECLRMVLLTLALTTHFLLYGTHSLVLDGFSSAILNNELIRLYKDDGDMTPADAVYQYSSFAQSQIQAMHEGAWESDLAFWRKTFASCPSPLPLLSVSSVASRPEQGAYRNHQAKLQVEASTKSRIWDLCRHHRVRPFHFFLTVFRACLARFADADEVAIGIADANRVHDDAMESLGPYVNMIPLRFLSDPQLAFDEAVRDTKQTTDEALAHSAVPFQALLDDLGVPRSSTHPPIFQTFFDYRQGLPKRQQWGDCELEMLSFALPPVPYDVALDITDDGKDGGCHLMLIVRQDMYTERDAEIILGAYEKLLMAFVTNPGDFSPSEWTRTYGSVLGRIEALAEEHPHSLALKSPHGGPSMTYRDMIAKSRAIGAALVAVGCAPGASVVVYQDSTPDWICSVLGTFSINGVCVPCDAGTPVKRLADMVASSKATVLLVDASTAEQAAGALSTTISDRERVRILRVDRIEAATLGHASSTARGRPPPGPQDPAMMLYTSGSTGTPKGIRLKHEGFTNWAEFTVPRLLTDNTCTGSGGGGDLVVLQQSSIGFDMAYLQAFLALAYGGALCIVPRAQRVDAGAITRIMAAEGVTVTCAVPSEYKNWLTYGDRALLAAGLSSWRTAVSGGEPGSDAVVELLAVRGPRQSKGQQLPRVMHIYGPTEITFFATFGALGPDDAKQLPAAAGRPLHNYSVYVLDESLRPVPPGVVGEIFVGGAGVAAGYVSGETETESATADKFLPDHLAPAAFVSQGWTTMHRTGDNGRWRADGQLVIQGRRSGDTQHKIRGLRVDFQEVEKAILEESHGFLSEVVVTARRSTPQSAEFLVAHVKLNQDEAPADAHERQTLLGRLSSGLPLPQYMWPAIVVPVPDFPRTMSGKLDRRAVALFPLPEAASADDDGSDDNGERAAALSLTEARLKGVWYDVISTAVTSRRTVTSETDFFHVGGTSLLLLQLQARIHREFGLRVPLVNLFASSSLAAMAKLIDDAGSASPGRLSSSEPATTCTFDWDAETDMTETTLAALKMSVPHRPASPSAVVVVLTGATGLLGQAYLQALIADSGVHRVHCIGVRDAAARLSSLPLLRHGKVVVSEGDLGLARLGLGESRARTIFGEADLIIHNGADTSHLKTYSSLRRTNVGATREIVDMCLLVGKRIPIHYVSTASVLQYAGLDEFGEESAARYPPAPDAFDGYSASKWASERYLEKLNDRCAEERGGGGDGWPVWIHRLTSVQRGGSGDDNNSSHNKAPGQDASEEPTNMDIVWNLFKYCKLAKAVCVLPNWSGFLNMVPLEQAVKSMMRNIHAGIIEEQANREAGVRYRHVVGDVDVPLSGFRQSMEGILGEPVAELTLEEWVREAAGFGMNPVLSAFFGSLGELRPVTWPRLLGSRYQ
Loading ...
Main properties of effector
Molecular weight | Sequence length | Theoretical pI | GRAVY | Instability index |
---|---|---|---|---|
222312 | 2055 | 5.47 | -0.131 | 41.48 |
Plant infestation information
Experimental plant: | |
Susceptible plant: | Disease name: |
Host classification: | NCBI Species: |
Pathogen-plant protein interaction
Uniprot ID | Protein name | Gene name | Species | Protein sequence |
---|
No Record found.
External Links
Interpro: IPR036736,IPR045851,IPR020845,IPR000873,IPR042099,IPR023213,IPR001242,IPR013120,IPR036291,IPR013968,IPR020806,IPR009081
Pfam: PF00501,PF00668,PF08659,PF07993,PF00550
SMART: SM00822,SM00823
KEGG:
PRINTS: