Effector profile
PlantPEAD ID: PlantPEAD02411 Uniprot ID: T0KDX7 Source: Orthologous
Localization: Cytoplasmic(Pre) Pathogen taxonomy ID: 474922 Pathogen type: Fungi
Species: Colletotrichum gloeosporioides Strain: strain Cg-14 Other name: Glomerella cingulataļ¼ŒGlomerella rufomaculans-vaccinii
Gene name: NCBI Gene ID: AMYD01001330
Entry name: T0KDX7_COLGC Protein name: Beta-ketoacyl synthase domain-containing protein
DOI:
Gene/Protein information
Gene sequence:
ATGAATCCCAAGATTGACTCTTCTAGGCTCGAGGTCGTCCGCCGTCCCACGCCATGGGTTCCTCCCGAATCAAGGCCCAGACGCGCAGTGGTCACCAATTTCGGCTTTGGCGGGAGCAATGCGGCCGTGTTGATTGAGGAGTACAAGGTCAACGAAGACTCCTCTTCGCCGACGAAAACGTCTCATCCTTCTCAAATGCTGTTTCCCATCTCCGCACAGTCCCTTGCCTCTCTTTCTAGCTATCAATCCCAGCTAGAGTCTCATCTCGAGAAGGTTTCCGCTGATGATTCGGTTGGGGGCTCATCTTCCTCCTCTTCGTCCTACTTGGGTGACCTGGGCTACACCCTCGGCCTGAGACGGACGCACTTCGCTCACCGCATGGCCCTCGTCGCGGGATCCCTATCGGAGCTCCGCGAGCAACTTGTCTCCCCTTCGCTGTCCAGCACGGGAGGCAGAGTGTCCGCGGGCCAGAAGCCTGCCCCATGCTTCGTCTTCACGGGCCAGGGTGCTCAGTCCGCCCGCATGGCCGCAGATCTCGGGCCCCAGTACCCGGTGTTCGCGAAGGCGATGGAAGACGCAGAGAAGCACCTCCGAGCGTTCGGCGCGACATGGTCGCTGGGCGAGGAGCTGGCCAAGTCTGAAGGGTCACGCATCAATGAGGCGGAGATCAGCCAGCCGGCGTGCACCGCCGTCCAACTGGGCCTTGTCGAGCTCCTCCGCAGCTGGGGCGTCTCGCCGATGGCCGTGGTAGGCCACAGCTCGGGCGAGATCGCCGCCGCCTATGCTGCCGGGCTCTTGTCATTTAAGACGGCCTTGGCCCTCGCCTTCTTCCGAGGCCGGTCTACCGTCGAGCTGCTAGCCCAGCAAGCCGAGAACGCCGAGGAAGGCGGCGGTATGCTGGCCGTCGGCGCGGACGTCAACACGGCCGACGAGCTTCTGCGGCACACTGCCAGCGTGGGTCGTGCCGGCATTGCTGCCATCAACAGTCCCAACAGCGTCACTCTGTCCGGAGACGTGGCTGTGATCGACGCCGTCGAGCGCATCGCCAACGCGCAGGGTATCTTCAACCGCAGACTGCGAGTCAATGTTGCGTACCACTCCCACCACATGGAGTGTGTTGCCAGCTCGTATGTTGCTGCCATCGAGCCGTACTGTGCGGACGATCGCAAGAGCCGCTTGGCGCTAAATGGCGACGACGAGAAGAGAAAAGAGTCGTTACCCCTTTTCTCCTCTGTCACCGGCCAAGTCGAGGGCGCGGAAACCGTCACCTGCGCGCAGTATTGGGCCAAGAACCTCGTCAGTCCCGTCAGGTTCTCCGAGGCGATCACGCTCGCGGCCAACGAGTCCTCGGCGAACGTCCTCGTCGAAGTCGGTCCGCATGCCGCCCTTAAGGGGCCCATCAACCAGACCTTGCAGTTGTTAGAGCAGAAGAAGGACAGCATCACGTATATCCCCTCGCCTGTTCGCGGCACTGATGACGCCAAGGCCGTGCTGCAACTCGCTGGCCGCCTGTATGCCATGGGGCTCAGCGTCGACTTTCTCGCCGTCAACGGAACCGGGCCGAAGAGTGGTCACCGCGTATTGGCTGATCTCCCTTCGTATGAGTGGGATAAGAAGGCGAGGTTCATCCACAGATCGCCCGTCTCGGTCGGTAAGTTCCACTCTGGCCACACCTTCACGCCCCTCCTTGGCTGGAAAATGGCTTCTCAGGGCCGGGATCATGTCTTCCGCCAGGTCTTTACGCTGGACGAGTTGCCATGGGTTCGGGACCATAAGGTTGTCGGTGACGTTCTCTTCCCCTTTACGGGCTTCTTGAGTCTGGCGGTGGATGCTTTCCGATCCATCACCACCAGCGATGCTGCCATGTCTTTTTCCATCTGCGAAATGCACATCGAGCGCGGTTTGCACATCAAGGAAGAGCAGCGTGTTGATATCTGCACCAAGCTCAGGCCCGTAGAGACGGGAACGGGTCACCTCTCGTCTTCCACGTGGGCCTTCGAGGTCATGACCTGGGGCGAGCAGACAAGCTGGGTCACCCACGTCCATGGCAGAATCGAAGCCGGACCAGAGGGGGAGAATTCCCTCGGTGCGTCTGAAAGCCCGGTGTGGCAGGACGCCGAGAAGATCCTGCAAGGCGTCAATGCTGCCGAGCTGGACGAAGCCACCGCCCTGTCGGGCTATAATACTCTCGACCGGTCCGGAGTCTGTTACGGTTCAAGCTTCAAGAACATCTTCGAGATGTGGAGATCCCCCGGTAAGACGGTTCACCGAACACGTCTTCGACAAACCAACGACGAGGAGCCGCTCTCCATCCCGAAACGAGGATCCGCTATGACGGTCGATCCTCCCATGCTCGACTCCGTGCTGAGCTCCGCCCTCCTCGCCGTCGGCGACGGCCTTCCGGAGCCGCGGCCGGCTTTTGTGCCGACGTACGTCCGCCGGATGCAGCTCTCCAACACCATCCCCTGCGAGCCGGGCCAGCTCTTCACCACCGTCTCACATCGCAAGACCTTCCAGGAGAAGACAGGTCGGTCAGATGTCAGCATCGTCGTGTGGGCGGATGGCCCGTCGGGCTCCAATACGCGCGTGCCCTGTGTCGAGATGGAACTCACGTACCAGCGCATCAACGATGCCGGCCAAGACGACGAGGAGGATCACGTCAAGCGCAGTCTGCCCCGTGGCTATCAAGAGGTCTTGGTCCCGCATGTCGACCTCTCCGACAACAAGGTCCTCTCGGAGACCATCATGGACCGTTCTTGGACTCCGGAGGAGTTGCTCCCCCGACACAAGCACAATGCCGTCGGCCGGCATTTCCTCAATCGTGCAATCCAAGTCGCCTCCGGCCTCGATGAAACTACACTGCCGAAGCACCTCAAGGCCTTTTTGGCATGGGCCGAGGTCCAAGTCCGCGGCGTCGTTGACGAGCCAGAAGCCAACGCCGAGTTGCTACAGGAGGTTTCCAAAGACGATGCCTTTGGCGAACTCATCTGCGCCGTGGGCAACGCCATCCCCCAGATTCTGCGCGGCGAGGTCGAGCCTCTGGAGGTGATGATGAAGAACGGGCTTCTCATGAAGCACTACGACGACATCCGCACCATGGCCAGGGGCAACCAGGCTCTCGCCAGGTACATCGCCAACCTCGGCGAGCTGAACCCGGACTTGAGGATCATCGAAGTCGGCGCCGGGACGGGTGCAGCCACCACCAAGGTCCTGCAGGCCTTGTCCGCCGCGGAGCCGGAGGAGGAGGACAACTTCTCCGCGTACACATACACGGACATCTCGCCCGGCTTCTTTGACGCCGCGCGCAAGAAGCTGGCGAGATGGCCGCAGGTGACCTACACCAAGCTCGACATTAGCCAGGACCCGGCCGAGCAGGGCATCGAAGTGGGCACCTACGACGTCGTCATCGCGTCCAATGTTCTGCACGCGACGCAAGATATTGAGGAGACTGTTCGCAACATCGGCAGCCTTCTCAGGCCAGGCACGGGCAAGCTTGCCATTGTCGAGTCGCTGCCGGAGAGCTGCGACGCCGCGTTCCTCCCGTACACCATCCTGCCGGGCTGGTGGCTGACGGAGGATAGCTGGAGACAGGGTAATGACGGCCCGCTCATGTCCCAGGAGACATGGGACCGGCTGCTCGTTACCCTCGGCTTCAACGGTGTCGAAGGCGCGGTGGCGGACTGGCCCGGTGCGGATATTTGCATTGTCAAGACCATGTGGTCCACCAAATTGTCCGAGGACATCCAAGACGAAGAGGAAGAGTCCGACGCGGCTGGAGAGTTGACGATCTGTGGCACCATCACCGGGGAGCAGCGGCAGCTTGCCGGGGCTGTTCAGAGCAAGCTGGAGCATCTCAAGCCACAGATGATCAAGTCCGTCCCAGAGCCCCAACAGATCAGTGACAAGTTCTGCATCTTCCTAGACTGCGGCGAGACCAGCTTTGTCGCCGACGTGGCCACGGAGGAGGCCTTTGCGGCACTCAGGACCATGGTGCTCGACACGCGCGGTCTCCTTTGGGTGACACCAGACACCGACAACCCCGAGTTTGCCCGCGTTCAAGGCCTGCTCCGCACGCTGCGGCTGGAGGATCCGACGAAGAAGCTCTTCTGGCTCAGCAAGGCACCAACTAGCGACCCGACGCAGACAGCTGAGTTAGTCGACAAGCTCACGGAGAGACTTGTCAAGGATTCTTCTTCGTCGCCCGCAGAGCTCCTCGAGCAGGACTTCGTATGGCAGGACGGCATGTTCCAAGTGCCTCGCCTCCGCAGACTCCCTGAGACGACGAGGACGTTTGCCATCGACAAGGGCCTCCCGGTCAGACGGGAGCAGAATCTCTGGGAGGGCTCAAGCCCCAGCAGCGCCCTCTTCATGACCATGGACACGCCAGGCGTCATGGACTCGGTGTACTTCAAGCGCCACGACTTGATGGCCCCCGCCGAGAAGCTGCTGGGCGACGACGAGATCATCGTCAAGGTCGACGCTTGCGGCATCAACTTCCGAGACGTGCTCGCACTCCTCAACACCATACCCTGGAGTTTACCGGGCCGTGAAGGAGCTGGCACCGTAGTCGCCGCCGGCTCAAATGTCTCCCATGTCCGGCCGGGAGACAGTGTGTTCTACATGATCGCCCAGGGAGGCCTCGCGACGCATGTTCGTATCCCCGCTGCACATGCTTGTAAGCTGCCGTCGGGCCTCTCCCCCGCCGAGGCCGCCTCCATGGCGGTCGCCTACGTTACCGCTCTCGTGTGTCTCGACGACGTCGCCAGGCTCCGGCCGGGCGAGTCCGTCCTCGTCCACGCAGCCTCGGGCGCCGTCGGCCAGGCGTGCGTGCGCATCGCCCAGAGCATGGGCGCTGCCGTCTTCGCCACGGCCGGATCAGAAGAAAAGAGGACGTTTGTCCATGAGACGCTTGGCGTGCCGCGAGACCACATCTACTCGAGCCGCAAGCGGGGGTTCGCTGCTGGAATCCTCAACGTGACGTGCGGCCGCGGCGTCGACGTGGTCGTCAATTCCCTCAGCGGCGAGCTGCTCCAGGACACTTGGTCGCTCGTCACCGAGTTCGGCCGCTTCGTCGAGATCGGGAAGAAGGACATTCTTGCCAACTCGCACCTCAACATGAGGCAGTTTGAGCGCAACGTCTCCTTCTTCGCGGTGGACCTCGTGCCGTACCTCTCGCACAAGTCGGATAGCATCCAGGCTTGTCTGGCGAAGATGGTGAGCCTGTTCGAGGCCAAGGTTATCCAACCTATTCAGCCCATTCACGAGGTCCCCGTCTCCAATATCGTCTCCGGCTTCCGTGCTCTCCAGAGTGGTCAGAACATCGGCAAGATTGTCGCGATCATGGGTGAGGATGACAGGGTCGTGGCAGATGTGGCATCGCCGCTCCGCCGGGACGATGGGAGCGCCTTGCTTCGCGGTGATGCGACGTATCTCATCACTGGTGGAACCGGTGGCATTGGCAAATCCCTCGTGCCTTGGATGCTGGAGAACGGTGCTTCCAACGTTGTCGTGCTCGGCCGGTCAGCCACCACCAACGCTGAAGTGGCGAAGCTAATCAGCGAATACGACTCGCCTTCAACGGGCGTTCACGTGCGGCCCGTAGCGTGTGACGTCTCCTCTCGAGACAGCCTCCTTTCCGCGTTTGAGGCAGTTAAGGACCTTCCTCCCGTCAAGGGCGTGATCCACGGCTCAATGTACCTTCGCGACTCCATCTTCTTCAACGCCTCCTTCGATGACTGGAAGGCGATCAACGGCCCCAAGATCGACGCCGCTTGGAATCTCCACCACCTCCTCCCCGATCTTGACTTCTTTGTCGCCCTCGCATCCGGGGCCAACGTCGTCGGCAACGTCGGCCAGTCCATCTACTGCCAGACGTCATCTTTCCTCGACGCCTTCGCGCAGTGGAGGAGCCGCGCTGGCAAGCCAACCATTTCCATTAGCTTGCCTGTCGTGGACGATGTCGGCTACGTCATCCAGCAAGGCATGCGCGAGCAGCTCCTGGAGAAGCTGGGCTTCTACATCTCCATCGCCCAGGTCCACACCGTTATCAAGGGCGCCATCATCGGCCCGTCGTCAGGCTTGAACATCGACTCGCGAGCCATTGCATTTGTGCTCTACGACTCGCCCCAGAGCAAGTCGCATGGGCTGGAAGAGCGGTCGCGCTACCTCGAGGTCGCCGCCGGAGGAGAGCTGAGCCTTCTGGACGCTCTGGCCGGGAAGATCTCGTCTATTACGATGATGAGCCGCGAGGATGTGACGCCGACGCGCAGTCTCATCGAGTACGGCTTGGACTCGCTCGTGTCGGTGGAGCTGCGTAACTGGATCAAGAGGGAATACGGAGCTGATTTGGCTCTCACACAGATTGTTGGCGCCCCTGATTTGCAGGCGTTGGCGGATGTGATTGTTGCTCGTCAGAAGGCGTGA
Protein sequence:
MNPKIDSSRLEVVRRPTPWVPPESRPRRAVVTNFGFGGSNAAVLIEEYKVNEDSSSPTKTSHPSQMLFPISAQSLASLSSYQSQLESHLEKVSADDSVGGSSSSSSSYLGDLGYTLGLRRTHFAHRMALVAGSLSELREQLVSPSLSSTGGRVSAGQKPAPCFVFTGQGAQSARMAADLGPQYPVFAKAMEDAEKHLRAFGATWSLGEELAKSEGSRINEAEISQPACTAVQLGLVELLRSWGVSPMAVVGHSSGEIAAAYAAGLLSFKTALALAFFRGRSTVELLAQQAENAEEGGGMLAVGADVNTADELLRHTASVGRAGIAAINSPNSVTLSGDVAVIDAVERIANAQGIFNRRLRVNVAYHSHHMECVASSYVAAIEPYCADDRKSRLALNGDDEKRKESLPLFSSVTGQVEGAETVTCAQYWAKNLVSPVRFSEAITLAANESSANVLVEVGPHAALKGPINQTLQLLEQKKDSITYIPSPVRGTDDAKAVLQLAGRLYAMGLSVDFLAVNGTGPKSGHRVLADLPSYEWDKKARFIHRSPVSVGKFHSGHTFTPLLGWKMASQGRDHVFRQVFTLDELPWVRDHKVVGDVLFPFTGFLSLAVDAFRSITTSDAAMSFSICEMHIERGLHIKEEQRVDICTKLRPVETGTGHLSSSTWAFEVMTWGEQTSWVTHVHGRIEAGPEGENSLGASESPVWQDAEKILQGVNAAELDEATALSGYNTLDRSGVCYGSSFKNIFEMWRSPGKTVHRTRLRQTNDEEPLSIPKRGSAMTVDPPMLDSVLSSALLAVGDGLPEPRPAFVPTYVRRMQLSNTIPCEPGQLFTTVSHRKTFQEKTGRSDVSIVVWADGPSGSNTRVPCVEMELTYQRINDAGQDDEEDHVKRSLPRGYQEVLVPHVDLSDNKVLSETIMDRSWTPEELLPRHKHNAVGRHFLNRAIQVASGLDETTLPKHLKAFLAWAEVQVRGVVDEPEANAELLQEVSKDDAFGELICAVGNAIPQILRGEVEPLEVMMKNGLLMKHYDDIRTMARGNQALARYIANLGELNPDLRIIEVGAGTGAATTKVLQALSAAEPEEEDNFSAYTYTDISPGFFDAARKKLARWPQVTYTKLDISQDPAEQGIEVGTYDVVIASNVLHATQDIEETVRNIGSLLRPGTGKLAIVESLPESCDAAFLPYTILPGWWLTEDSWRQGNDGPLMSQETWDRLLVTLGFNGVEGAVADWPGADICIVKTMWSTKLSEDIQDEEEESDAAGELTICGTITGEQRQLAGAVQSKLEHLKPQMIKSVPEPQQISDKFCIFLDCGETSFVADVATEEAFAALRTMVLDTRGLLWVTPDTDNPEFARVQGLLRTLRLEDPTKKLFWLSKAPTSDPTQTAELVDKLTERLVKDSSSSPAELLEQDFVWQDGMFQVPRLRRLPETTRTFAIDKGLPVRREQNLWEGSSPSSALFMTMDTPGVMDSVYFKRHDLMAPAEKLLGDDEIIVKVDACGINFRDVLALLNTIPWSLPGREGAGTVVAAGSNVSHVRPGDSVFYMIAQGGLATHVRIPAAHACKLPSGLSPAEAASMAVAYVTALVCLDDVARLRPGESVLVHAASGAVGQACVRIAQSMGAAVFATAGSEEKRTFVHETLGVPRDHIYSSRKRGFAAGILNVTCGRGVDVVVNSLSGELLQDTWSLVTEFGRFVEIGKKDILANSHLNMRQFERNVSFFAVDLVPYLSHKSDSIQACLAKMVSLFEAKVIQPIQPIHEVPVSNIVSGFRALQSGQNIGKIVAIMGEDDRVVADVASPLRRDDGSALLRGDATYLITGGTGGIGKSLVPWMLENGASNVVVLGRSATTNAEVAKLISEYDSPSTGVHVRPVACDVSSRDSLLSAFEAVKDLPPVKGVIHGSMYLRDSIFFNASFDDWKAINGPKIDAAWNLHHLLPDLDFFVALASGANVVGNVGQSIYCQTSSFLDAFAQWRSRAGKPTISISLPVVDDVGYVIQQGMREQLLEKLGFYISIAQVHTVIKGAIIGPSSGLNIDSRAIAFVLYDSPQSKSHGLEERSRYLEVAAGGELSLLDALAGKISSITMMSREDVTPTRSLIEYGLDSLVSVELRNWIKREYGADLALTQIVGAPDLQALADVIVARQKA
Protein structure:
NONE
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Main properties of effector
Molecular weight Sequence length Theoretical pI GRAVY Instability index
232138 2140 5.35 -0.118 45.24
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.