Gene XfasM23_0222 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagXfasM23_0222 
Symbol 
ID6203494 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameXylella fastidiosa M23 
KingdomBacteria 
Replicon accessionNC_010577 
Strand
Start bp297100 
End bp298809 
Gene Length1710 bp 
Protein Length569 aa 
Translation table11 
GC content49% 
IMG OID641701760 
Productputative long-chain fatty acyl CoA ligase 
Protein accessionYP_001828953 
Protein GI182680793 
COG category[I] Lipid transport and metabolism
[Q] Secondary metabolites biosynthesis, transport and catabolism 
COG ID[COG0318] Acyl-CoA synthetases (AMP-forming)/AMP-acid ligases II 
TIGRFAM ID 


Plasmid Coverage information

Num covering plasmid clones24 
Plasmid unclonability p-value
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clonesn/a 
Fosmid unclonability p-valuen/a 
Fosmid Hitchhikern/a 
Fosmid clonabilityn/a 
 

Sequence

Gene sequence
ATGAGTCAAA CACGTCCTTG GCTGCAACAC TATCCATCGG GAATCTCAAT AGAGATTGAT 
ACTAACGCTT TCCGTACTAT CGCTGATGTC TTCAATACAT CAGTCATCAA ATATCGTCAT
TGTCCCGCCT ATACCAATTT CGGGAAAACA CTTACCTACG GCGAAGTCGA TCTATTAACA
AAACAATTCG CCAGCTATCT GCTCAATGTG TTGAAACTCA AAAAGGGCGA CCGAATCGCA
CTGATGATGC TCAACTGTTT GCAATATCCA GTAGCGACCT TCGGCGCACT ATGCGCCGGG
TTAACTGTTG TCAATGTCAA CCCCCTCTAC ACAGCGCGCG AACTCAAGCA CCAACTGGTT
GACGCAGGGA GCACTGTATT GGTGGTCATG GACAACTTCT GTACAACTGT GCAGCAGATC
ATTGCTGACA CCCCAATCAA ACAGGTGATT ACGACTGAAT TAGGCGACCT GCTCGATTTC
CCCAAAAGAT CACTGATCAA TTTTGCCGTC AAGCACATCA AAAAATTAGT GCCGGAATAC
CAACTGCCTC GCTCAATCCG CTTCCGTGAA GCACTCGCGC TGGGAAGCAA GCATTCCATG
CCTCCAATCC ACATCGCAAG CGACGATTTA GCTTTTCTAC AATACACCGG CGGCACAACG
GGGACACCCA AAGGCGCAAT GCTGACCCAC AGAAATATGG TCGCGAATAT GCAGCAGGTG
TCGCAGTGGC TCCAAACAAA CAACAGTCTC AAAGAAGGCT GTGAAACAGT GCTCACTGCT
CTACCGCTGT ATCACATTTT TGCGTTAACC GCGAACAGCT TAGTCTTTAT GAAAATCGGT
GGTTGCAACC ATCTGATTAG CAATCCACGC AACATGCGAA CATTCGTCAA AGAGTTGCAA
CGCGTCCGCT TCACTGTCAT CACTGGAGTC AACACACTGT TCAATAAACT CCTTAACACC
CCGGGCTTCG ACAAACTTGA TTTCTCTTCT CTGAAGATTG CCCTGGGTGG CGGCATGGTG
ATCCAGCGCT CCGTCGCCGA ACAGTGGAAG CAAGTTACTC GTGTTCCGCT GATTGAAGCT
TACGGACTTA CCGAGGCATC ACCAGCGGCA TGCATCAATC CGCTGAATCT GCAAGAACAT
AACGGTTCGA TCGGTATGCC GATCCCTAGT ACTGATGTCT GTATTAAAGA TGACACCAAC
ACCGTATTAC CTATAGGCGA AATGGGCGAA CTGTGTATTA AAGGTCCGCA AGTGATGAAA
GGCTACTGGC AACGCCCAGA AGAAACTTCA GAAGTGTTAG ATGCAGACGG TTGGCTGCAT
ACTGGGGACA TTGTCAAAAT GGACAAACAA GGGTTTCTGT ACATCATCGA CCGTAAGAAA
GAAATCATTC TTGTCTCTGG CTTCAACGTC TATCCGAAGG AAATCGAAGA AGTCATTGCA
ATGATCCCAG GCGTGGCTGA AGTCGCTGCG GTCGGAGTCC CGGACGAGCA GTCCGGCGAA
GTCGTTAAGG TAGTGATTGT CAAAAAGGAT CCCATGCTGA CCGCTGAGGA AGTAAAGGCG
CATGCTGCGA CCAACCTGAC CAGATACAAG CTACCACGCA TCATTGAGTT CCGTGCGACA
CTCCCTAAAA CCGATGTTGG CAAGATTTTG CGGCGCGAAT TGCGAGACGC AGCACCGGCA
TCAAACACAT TCACAGCTCA GCCCAAGTAG
 
Protein sequence
MSQTRPWLQH YPSGISIEID TNAFRTIADV FNTSVIKYRH CPAYTNFGKT LTYGEVDLLT 
KQFASYLLNV LKLKKGDRIA LMMLNCLQYP VATFGALCAG LTVVNVNPLY TARELKHQLV
DAGSTVLVVM DNFCTTVQQI IADTPIKQVI TTELGDLLDF PKRSLINFAV KHIKKLVPEY
QLPRSIRFRE ALALGSKHSM PPIHIASDDL AFLQYTGGTT GTPKGAMLTH RNMVANMQQV
SQWLQTNNSL KEGCETVLTA LPLYHIFALT ANSLVFMKIG GCNHLISNPR NMRTFVKELQ
RVRFTVITGV NTLFNKLLNT PGFDKLDFSS LKIALGGGMV IQRSVAEQWK QVTRVPLIEA
YGLTEASPAA CINPLNLQEH NGSIGMPIPS TDVCIKDDTN TVLPIGEMGE LCIKGPQVMK
GYWQRPEETS EVLDADGWLH TGDIVKMDKQ GFLYIIDRKK EIILVSGFNV YPKEIEEVIA
MIPGVAEVAA VGVPDEQSGE VVKVVIVKKD PMLTAEEVKA HAATNLTRYK LPRIIEFRAT
LPKTDVGKIL RRELRDAAPA SNTFTAQPK