Effector profile
PlantPEAD ID: PlantPEAD02852 Uniprot ID: A0A1C9HK85 Source: Orthologous
Localization: Cytoplasmic(Pre) Pathogen taxonomy ID: 1187899 Pathogen type: Fungi
Species: Alternaria alternantherae Strain: NA-2 Other name:
Gene name: PKS6 NCBI Gene ID: KU728648
Entry name: A0A1C9HK85_9PLEO Protein name: Polyketide synthase
DOI:
Gene/Protein information
Gene sequence:
ATGGCTACGGACAAGACGACTCCCGTGGCCATCATTGGCATGAACATGAAGTTCCCAGGGGACGCAGTATCTGCACAAGCTTTCTGGGAGCTATTGATGAGCGCGAGGAACGTATCAAAGGAGATACCCTCCGACCGATTCAACGTAGATGCTTTCTACCATCCGGATCCGAACCGGTTAGACAGCTTGCGCATCCGCCATGCACATTTCATGGAAGAAGATCCCCGTAGTTTCGACGCACCCTTCTTCAACATGTCATACGCAGAGGCATCAGTTCTAGACCCGCAGCAGCGCGGTCTTCTCGAGGGCGCCTACCGCACATTTGAAAACGCAGGCATACCCATGGAAACACTATCTCGCTCTCGCACATCAGTCTACTGTGCATCTTTCTCCAGAGATGGCGAAACCATAACTGGACGCGACTTTGCCGCACAATCGCGTTATCACGCCACTGCCAATGGCTCATCCATGCTGAGCAACCGTGTCAGCCATTTCTTCGATCTAGCGGGGCCGTCTCTTACGGTTGATACAGCCTGCTCGTCGGGATTGTATGCTTTGCATCTCGGCGTGCAGAGTATCCTCGCAGGGGAGAGCGCCATGTCGCTTGTTTGCGGCGCTAATACATTCATTACACCCGAGAGCCAAGCACTTGCGCTCAGCAACGGCGGATTTCTGAGCGTTGACGGAAAGAGTTACAGCTTCGACGAGAAGGCGAATGGGTACGCGCGAGGCGAAGGGTTTGGCTTCGTCTTGCTCAAGCCGCTCGAAGCCGCAATAAGAGACAGAGACGTCATCAGGGCAGTAATTCGGGCCACAGGTGCGAATCAGGATGGTAGAACACCAAGTATCACACAGCCGAGCCAGCAGGCGCAGCTTGATTTGTTGCGAGATACATATCGTGCTGCGGGCCTTGATGTTGCTGATACGGACTATGTTGAGGCTCACGGCACCGGAACGCCGGTTGGTGACCCCATCGAAGCAGCCGCTATAGGAGAGACTTTCCGCGATGGTCGCAAGCCCGATAGGCCGCTGTATGTTGGCTCGGTCAAGTCCAATATTGGTCACTTGGAGGGCGCTTCAGGTATGGCCGGCGTGATCAAGGCCGTTCTTGCGCTGGAGAAGGCTGTGATTCCGCCCATTGCCATGTTCGAGAAGACGAATCCTGCTATTGATACGGAATATTTGCAGATTGCCTTTCCCAAGGAGCCAGTGCTATGGCCTGAAACAGAGATTCGTAGGGCATCCGTGAGCTCCTTCGGATATGGAGGGAGTAACGCTCATGTGATTCTCGACGACGCGTACAACTACCTGCGCAGTCACGGCTTGGAAGGCCCGCATCAATCGATTGGCGAGCCCACAGCTACCAATGGACACACCAACGGTCATACCAACGGATCCAAAAATGGTTACAGCAACGGGAACGGCGCTCTCCCATCCGCAACCCCCTACGCCATCATCCCCTTCTCAGCCGCAGACAGCGACGGCACGCCACGCCAAGCAGCGATCCTTCAGGACTTCCTTTCTTCACACACAATCTCTTACGCCCCAGGTTTCCTCTCAGATTTAACCTATACCCTCTCCTCACACCGATCCCTACTCAGCCACCGTTCCTTCGCCGTCGTCTCATCCCTTACCGACGATCTCGCAGCCCTCGTCTCACCAAGCATCTTCAGCAGCACCACTTCCGCTCCTGATCTCTCATTTGTCTTCACGGGCCAAGGCGCGCAATACGCACGCATGGCTATTGGCCTTCTGCACTATTCCGTGTTCCGCCAGAGTCTCACTGACTGCGATGCTTATCTCAAAACGCTGGGAAGTACATGGTCCGTGCTAGAAGAACTTGAGAAGGACAAGGACGTCAGCATAGTCAGCAAACCAGCACTATCACAGCCCCTCTGTACCGCCATACAGATTGCTCTCGTCGATCTGCTGCGCACGTGGGGCATTCTTCCCCGTGCTGTAGTTGGGCATTCGTCTGGTGAAGTCGCGGCTGCATACTGTGCGGGTGGGCTGGATCGTGAGAGTGCATGGCGGGTGGCTTACTTCCGTGGTGTTGTGGCCGACCAGCTAGCTTCTGATCAAGCGAGAGAGAAGACCACGATGATGTCGGTGGGCCTGGGTAAAGCGGCTGTTCAGGCGTTTCTCAAGGCTGAGCCGTCCGTGACGGTCGCGTGTGAGAACAGCCCCGTCAACGTCACATTGTCGGGTCCCATCATGGCAATCGCACGCTTGTGTGAGACGCTAGAGGCCGAGGAAGTTTTCGTACGGAAGCTGCCCGTGACAATCGGGTATCACTCCGAGGCACTGCGGGATGGTGCAGTGGAATACGAGGCTTTGCTGGCCGGTATATGCGCTCCAGCAAAAGACAGCAAAGCCCCGAGCACCGTCGCATTCTTCTCGTCCACCGAAGGCAGCTTCATCACGTTGGAGGGTCTTGCGAGACCAAAGTACTGGGTGAAGAACCTTCTATCGCCAGTTCTCTTCACCGATGCGGTAACAGCGCTGGTAAGCGAGCGGAAGCAAGCCACTAAATTCCTCGTTGAGATCGGTCCTCAATCTGCTCTTCGACGACCAGTCAAAGACATCCTTGCGCACCTTGATGAAGGCCAGGACAAGTGGACATATGCGGCTGTGCTTAACCCTCGTCAACCCGACATTCAGTCTCTCCTCGAAACGGTCGGTGCCCTTTGGAGCGCCGGCCTACCCATCGATCTCAACATTCCCAACCAAGCCACTTTGAAGCCAAAGACCCAGCCGAAGCGAGTAATAGACCTCCCAGCCTACCCCTTCTCCAGGGCCAAGCTTTACTGGGACGAACCCCGCATCAGTGCCCTCTACTCGCAACGGCCCTTCCGGAGGCACGCCCTCCTGGGTCTACGCGAGAATGACTTTAACCCTCAGCAACCGACATGGCACCACAAGATCCGCCTCGCTGAAGCTCCTTGGATCGTCGACCACGCGCTGGAAGGCTCGCCGCTCTACCCTGGCACAGGTATGCTAGTAATGGCTATTGAGGCCGCACGGCAACTGCTCCCACCCAACGCGGCGATCAGTGGGTACAAGCTCGAAAACGTGCGGTTTATGCGCTCTATTCCTGTGAACGAGACAGAAAAGGGTACTGAGGCGAAAATCTACCTCCAGCCGCGCCGCCATACAGCCAAAGACGCTGCTCAATGCGTGTACGACTGGCGGGTATTCACGCTCGGAGGCGACGAGTGGATCGAGTGTGCGTTTGGCAGCATTCGTGCTGAACTTGAGGATGGGGACGCCTCGCCCGAGACAATCACACGCAAAGCTAGGTGGGCAAGAGCTGTGAGCGAGGAGCACGCGACTGCCGCCAAGCAATGCACGCTGAGTGTACAGAGCGGACAACTGTACGAGAACCTGAGCAAGAAGTCTGGTTTTGACTACGGACCGTATTTCCAAGGCTTGCGGAACATCAAGTATTCCCGCAACGGGTGTGCGTCGGGTACTCTTGCGCTGCGGGATTATGCGAAGAACATGCCATACGCCGACGAGGATCCATGTGTAATCCATCCTACGACGTTCGACTCGATATTCCACGTTGGCTTTGTCTCGCTGAGTATGGGTGGGTGGGAGGCCATTCCAACACTCATGTTCAGCAACCTCAAGGAGCTTTGGGTTTCGCATAAGCTTTTCACGGTGCCTGGTAACCCATTGCTGCACGTTGCGACAAAGGAGGTCGCTCGCACATTCAGAGAGTTTGAGTGGGATGCTAGCACACTCCTTGCTGAGACTGGCGAGCCGGTTATTGTGGCGAGAGGCGAGCGTGGAACCGTGATTGCTGGCGCAGGTAGCAGCACTCGCGATGACGACGACGGTGCTAGTCGCTTTTCGTACGGCATCGACTTCAAGCCTGACTTTTCGCTGCTTGACAAAACCCAGACGGAGGCCTATCTCAAGGCGCTCTTCGCGCGTGACCCACAATTCTCACCAGACCCCAAGGATGCGGAGGCTGTCGACCGCGCAGACGCTATTGCGCTTCATTTCATTGAGCAAGCACTAGACAAGATCGAGAACGGTGAGCCAGTTCAGTTCGACAACCACTTGACCAAATACGTAGACTTCCTGCGTAAGGTCCGCGCGAACAGGGAAAAATATACGTTGGAGTCACGGGGGCTAGGTCATTTGAATATCGAAGATGTCTTACGCGAAGCCGATGACGAACCAACACAGAAGCTGGTGAAGAAAGCTGGCGAACATCTTTACGGTATTCTGGCCGGGACAGATAACGCTTTACAGATCATCTTTGAGGGAAACCTTGCCAATGACTTCTACCACTGCGACTTTTACTCGCGCCACTACCGCAAAGCTGGAGCATACATGAGCATTCTTGCACATGCAAATCCTCAGCTGAGGATTTGTGAGGTTGGTTCAGGAACAGGGAGTGCCACTTCTAAGGTCCTACCGTTTTTGGTCGACACTGAAGGTCTCCAAGGTGACCAGCTGGTGCGTTTCGGTGAGTATGCCTACACCGATGTCTCGGTCGGCTTCTTCGAGAAGGCGCGCGAGAAATTCGACTTTGCCGAAAAGCACATGCGCTTCGCAAAACTTGACCTGGAGATTGATCCCTCTCTGCAAGGCTTTGAGCTCGGCAGCTACGATGTAATCATGGCGTGCAACGTCATCCACACTACTTCGGATCTTATGAAGTGCCTCCGCGACGTCCTTGCACTCTTGCGCCCTGGCGGTAAACTCATTATGATGGAGACAACTGTCGATAACATCCGTGACGGCATCATCTTCGGTTTGCTACCGGGATGGTGGATGCGCGAGGGCCATTGGTGGGAAGGCGAGGATGTTGACGCTGTGCCTGGCGAAGATGAGGCACTGGGGCCTATCCTTACTGAAGATGGATGGGACGCTGCACTGAAAACGGCAGGCTTCTCGGGTGTGGATATGGTATTCAGAGACAACGAGTACAAACCTCGCCACCGCGTCTCAACGCTGGTCGCGACAAAACCAGAAGAGGTCAAGGTTGAAGCCGCGCGCGAGAACTGGGTTATCGTTGCGGATCCCACGCAGTCTGAATATGTCGATGTGCTAAAATCAACCCTGGCCGCTGTATCATGGACCGGAGAGACCGAGACATACACACTCGACAGTCTGGTTGCTGCTGGGCTGGAGCTAAGCAACACAAATGTCATCAGTCTGCTCGAGCTAAACACGTCGCTCCTGGGCACTATCGCAGGGCTGCAGTTTGAGGCTCTCAAGAAGATTAGCCTGGACGCTAGAACCGTCCTCTGGGTCACACGTGGTGGCGGTCCCGCTGCCAGCAACCCTACCGCCGAGATGGCAGTTGGTTTCTCGAGAAGTATCTGCTCTGAGCGAGGTGACCAGGCTTTCGTCACCCTAAGCTTGGAGACGGACGATTCGACTGAAGGAGCAAACCATATACTCCGTCTCATCGAGCACTTGCACAAGATAGGAGGAGGAAAGAGCGCAGACGCCGAATCAGAGTACGCAGTAAAGAACGGCCTTGTACATATTCCACGAGTCGTCCCACAAAAGAGCGTTAACCAGACTCTTGCCGAGCGCGCAAAGCTCCCCGACAAACTCACGTTCACGCTCGGGCAAGCTGATCTCAAACCGCGCATAAAGTTGACCATCCAGCAGCCTGGTCTCCTTGACACGCTCTACTACACTGAAACCCCGACCCCTAGCAACGAGCTGCAATCCGGCGAAATTGAAATCGAAGTAGCAGCTGCCTCTCTCAACTTCCGCGATGTAATGATCTCCTTGGGCCAAGTTCCTGGTGACGGCCTCGGCCTCGAAGGCTCTGGTACCGTGAAGCGTGTTGGACCAGACTGTAAACTGCAACCTGGCGACCGTGTCATGTACTTCATCTTCTCGACGGGCGGTTGCTGTGGGACTTACGTCCGCTGCGATGAGGCGTCGACGCGCAAGATCCCCCGCGACGATATTTCCTTCTTAGACGCAGCTGCTATTCCTGCTGTGTGGGCTACAGTTGTGTATGCATTCGACTATGTAGGCCGGCTACGCAAGGGCGAGAGCGTCTTGATTCACGCAGGCGCTGGTGCTGTAGGCCAAGCAGCTATTCAGCTGGCGCAACTTCGTGGGGCAAACGTCTTCGTCACGGTAGGAAGCAAGTGGAAGCGTGAGCTAGTGAAGGAGCTTTACGGACTTGCTGATGACCACATCTTCCACAGCAGAGAATCCAGCTTCGTCGATGATGTGTTCCACGCCACAAACAACCGCGGTATCGATGTCGTCCTCAACTCGCTTGGCGGTGAACTCCTGCAACATTCATGGCGCTGCACTGCGCCCTTTGGCCGCTTCATCGACATCGGCAAAGCCGACATTCTTGCCAACAACACACTTGAGATGGGCCATTTCTTGCGCAATGTCACCTTTGCAGCCGTAGATGTTGCAGGAATGTACGCCGAGAACAAACCATTAATGCAACTTGTACTCGACGACGTATTTAGTCTGTTTGCGGCGCATCCCGAGCTGCATAACCCCAAGCCGCTGCATGCATTCGCACCGAGTAGGATTGAGGAAGCGATGCGCGCATTGCAGGGTGGCAAGATTGCTGGAAAAGCGGTCATCGACTTTGAGACACCTGGTGATGTGGTTGTATATCAACCTGCACGAACGCCTGCGTATGGGTTTGAAGCGCAGGCCACTTACGTTATCAGTGGTGGATTGGGCGGAGTAGGGCGCGAGGTCATGCGCTGGATGGCTTCTCGCGGCGCGCGGCATTTCCTCATCACCTCATCTCGCGGTGTAGCCGGGCGCACCGATGTCATCGCCTTCATCAAAGAGATGGAGGCCCAGGGAGTTACTGTCCACGCTCCGGCATCAGATATCTCTAATCGCGCTGTCCTGCAGGCGACGCTCGATGAGGCTAGCAAGACACTACCCCCGATCAAGGGATGTATACAGGCAGCCATGGTGTTGTCGGACAACATGCTCTCGAATATGACAGCGGAGCAATTCCACCGTGCCCTGACGCCCAAGTACCAAGGCTCTTGGAACCTCCACGAGCTCCTGCCAAAGGACATGGATTTTATGGTCTTCCTCTCCTCCATGAGCGGTGTCATCGGCAACCCTGCACAAGCCAACTACGCTGCCGGCAACACATTCGAAGACGCGCTTGCACGTCACCGAGCCGCAAACGGTCTCAAGGGTGTCTCATTCGATCTCGGCTTGGTTCTGGAAGCCGGCTGGGCGAGCGACAACTTCGAGGACGTGACGAAGAGCCTGCGCGCTGGACTGGGCGGGTTGACGCAGAAGCAGCTAATGGCGATTCTGGACGTCTTGTGTGATCCATCATATGATTGCGCGGGCGGAGCAGCGCAGGTGGTGAACATCCATGATAAACCTGCGAAGCTGTACCGTATGTTTCAGGACGGCGTGCTGCACTGGGTAGGCAAGCCGCTGTTCAAGAATATCCTTCGTCTAGGACAAGTCGAGCTAGTCAACAGCACCGGAGGTGGCAGTGGAGGCGATGCGGCAGCCATCGACTACCTGGCCCTCATCAGAGCGGCGGCTGATGCTGAAGAGGCCACGCAGATTGTCACCATGGCTCTGCTTGGGAAGTTGGGCAAGTCGCTGTCAGTGCCGGCCGAGAGTCTCGATGTCGGCAAGCCGGCGTACGTGCTCGGTGTCGACTCGCTGATTGCCGTCGAGCTGCGGTACTGGTTCCTCAAGCAGTTCGGAGTCGAGGTTCCAGTCTTCGTGATTCTGAAGAAACAGCCAACCGTTGAGTTATGCCGACATGTAGCCGAGCATGTCATTGCGGCTAAATGA
Protein sequence:
MATDKTTPVAIIGMNMKFPGDAVSAQAFWELLMSARNVSKEIPSDRFNVDAFYHPDPNRLDSLRIRHAHFMEEDPRSFDAPFFNMSYAEASVLDPQQRGLLEGAYRTFENAGIPMETLSRSRTSVYCASFSRDGETITGRDFAAQSRYHATANGSSMLSNRVSHFFDLAGPSLTVDTACSSGLYALHLGVQSILAGESAMSLVCGANTFITPESQALALSNGGFLSVDGKSYSFDEKANGYARGEGFGFVLLKPLEAAIRDRDVIRAVIRATGANQDGRTPSITQPSQQAQLDLLRDTYRAAGLDVADTDYVEAHGTGTPVGDPIEAAAIGETFRDGRKPDRPLYVGSVKSNIGHLEGASGMAGVIKAVLALEKAVIPPIAMFEKTNPAIDTEYLQIAFPKEPVLWPETEIRRASVSSFGYGGSNAHVILDDAYNYLRSHGLEGPHQSIGEPTATNGHTNGHTNGSKNGYSNGNGALPSATPYAIIPFSAADSDGTPRQAAILQDFLSSHTISYAPGFLSDLTYTLSSHRSLLSHRSFAVVSSLTDDLAALVSPSIFSSTTSAPDLSFVFTGQGAQYARMAIGLLHYSVFRQSLTDCDAYLKTLGSTWSVLEELEKDKDVSIVSKPALSQPLCTAIQIALVDLLRTWGILPRAVVGHSSGEVAAAYCAGGLDRESAWRVAYFRGVVADQLASDQAREKTTMMSVGLGKAAVQAFLKAEPSVTVACENSPVNVTLSGPIMAIARLCETLEAEEVFVRKLPVTIGYHSEALRDGAVEYEALLAGICAPAKDSKAPSTVAFFSSTEGSFITLEGLARPKYWVKNLLSPVLFTDAVTALVSERKQATKFLVEIGPQSALRRPVKDILAHLDEGQDKWTYAAVLNPRQPDIQSLLETVGALWSAGLPIDLNIPNQATLKPKTQPKRVIDLPAYPFSRAKLYWDEPRISALYSQRPFRRHALLGLRENDFNPQQPTWHHKIRLAEAPWIVDHALEGSPLYPGTGMLVMAIEAARQLLPPNAAISGYKLENVRFMRSIPVNETEKGTEAKIYLQPRRHTAKDAAQCVYDWRVFTLGGDEWIECAFGSIRAELEDGDASPETITRKARWARAVSEEHATAAKQCTLSVQSGQLYENLSKKSGFDYGPYFQGLRNIKYSRNGCASGTLALRDYAKNMPYADEDPCVIHPTTFDSIFHVGFVSLSMGGWEAIPTLMFSNLKELWVSHKLFTVPGNPLLHVATKEVARTFREFEWDASTLLAETGEPVIVARGERGTVIAGAGSSTRDDDDGASRFSYGIDFKPDFSLLDKTQTEAYLKALFARDPQFSPDPKDAEAVDRADAIALHFIEQALDKIENGEPVQFDNHLTKYVDFLRKVRANREKYTLESRGLGHLNIEDVLREADDEPTQKLVKKAGEHLYGILAGTDNALQIIFEGNLANDFYHCDFYSRHYRKAGAYMSILAHANPQLRICEVGSGTGSATSKVLPFLVDTEGLQGDQLVRFGEYAYTDVSVGFFEKAREKFDFAEKHMRFAKLDLEIDPSLQGFELGSYDVIMACNVIHTTSDLMKCLRDVLALLRPGGKLIMMETTVDNIRDGIIFGLLPGWWMREGHWWEGEDVDAVPGEDEALGPILTEDGWDAALKTAGFSGVDMVFRDNEYKPRHRVSTLVATKPEEVKVEAARENWVIVADPTQSEYVDVLKSTLAAVSWTGETETYTLDSLVAAGLELSNTNVISLLELNTSLLGTIAGLQFEALKKISLDARTVLWVTRGGGPAASNPTAEMAVGFSRSICSERGDQAFVTLSLETDDSTEGANHILRLIEHLHKIGGGKSADAESEYAVKNGLVHIPRVVPQKSVNQTLAERAKLPDKLTFTLGQADLKPRIKLTIQQPGLLDTLYYTETPTPSNELQSGEIEIEVAAASLNFRDVMISLGQVPGDGLGLEGSGTVKRVGPDCKLQPGDRVMYFIFSTGGCCGTYVRCDEASTRKIPRDDISFLDAAAIPAVWATVVYAFDYVGRLRKGESVLIHAGAGAVGQAAIQLAQLRGANVFVTVGSKWKRELVKELYGLADDHIFHSRESSFVDDVFHATNNRGIDVVLNSLGGELLQHSWRCTAPFGRFIDIGKADILANNTLEMGHFLRNVTFAAVDVAGMYAENKPLMQLVLDDVFSLFAAHPELHNPKPLHAFAPSRIEEAMRALQGGKIAGKAVIDFETPGDVVVYQPARTPAYGFEAQATYVISGGLGGVGREVMRWMASRGARHFLITSSRGVAGRTDVIAFIKEMEAQGVTVHAPASDISNRAVLQATLDEASKTLPPIKGCIQAAMVLSDNMLSNMTAEQFHRALTPKYQGSWNLHELLPKDMDFMVFLSSMSGVIGNPAQANYAAGNTFEDALARHRAANGLKGVSFDLGLVLEAGWASDNFEDVTKSLRAGLGGLTQKQLMAILDVLCDPSYDCAGGAAQVVNIHDKPAKLYRMFQDGVLHWVGKPLFKNILRLGQVELVNSTGGGSGGDAAAIDYLALIRAAADAEEATQIVTMALLGKLGKSLSVPAESLDVGKPAYVLGVDSLIAVELRYWFLKQFGVEVPVFVILKKQPTVELCRHVAEHVIAAK
Protein structure:
NONE
download
Loading ...
Main properties of effector
Molecular weight Sequence length Theoretical pI GRAVY Instability index
282702 2597 5.52 -0.118 34.77
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.