Pre_GI: BLASTP Hits

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Query: NC_010723:173280:214638 Clostridium botulinum E3 str. Alaska E43, complete genome

Start: 214638, End: 215276, Length: 639

Host Lineage: Clostridium botulinum; Clostridium; Clostridiaceae; Clostridiales; Firmicutes; Bacteria

General Information: This strain was probably isolated from salmon eggs associated with a foodborne case of botulism in Alaska, however the exact details are not available. This genus comprises about 150 metabolically diverse species of anaerobes that are ubiquitous in virtually all anoxic habitats where organic compounds are present, including soils, aquatic sediments and the intestinal tracts of animals and humans. This shape is attributed to the presence of endospores that develop under conditions unfavorable for vegetative growth and distend single cells terminally or sub-terminally. Spores germinate under conditions favorable for vegetative growth, such as anaerobiosis and presence of organic substrates. It is believed that present day Mollicutes (Eubacteria) have evolved regressively (i.e., by genome reduction) from gram-positive clostridia-like ancestors with a low GC content in DNA. This organism produces one of the most potent and deadly neurotoxins known, a botulinum toxin that prevents the release of acetylcholine at the neuromuscular junction, thereby inhibiting muscle contraction and causing paralysis. In most cases the diseased person dies of asphyxiation as a result of paralysis of chest muscles involved in breathing. The spores are heat-resistant and can survive in inadequately heated, prepared, or processed foods. Spores germinate under favorable conditions (anaerobiosis and substrate-rich environment) and bacteria start propagating very rapidly, producing the toxin.Botulinum toxin, and C. botulinum cells, has been found in a wide variety of foods, including canned ones. Almost any food that has a high pH (above 4.6) can support growth of the bacterium. Honey is the most common vehicle for infection in infants. Food poisoning through C. botulinum is the most frequent type of infection caused by this bacterium. The wound botulism that occurs when C. botulinum infects an individual via an open wound is much rarer and is very similar to tetanus disease. There are several types of botulinum toxin known (type A through type F), all of them being neurotoxic polypeptides. The most common and widely distributed are strains and serovars of C. botulinum that produce type A toxin.




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SubjectStartEndLengthSubject Host DescriptionCDS descriptionE-valueBit score
NC_010674:192951:212846212846213484639Clostridium botulinum B str. Eklund 17B, complete genomehypothetical protein3e-101367
NC_015519:2526047:255363425536342554272639Tepidanaerobacter sp. Re1 chromosome, complete genomeZn-dependent hydrolase1e-42172
NC_014328:180482:184034184034184666633Clostridium ljungdahlii ATCC 49587 chromosome, complete genomeputative hydrolase3e-39161
NC_017297:122383:122383122383123021639Clostridium botulinum F str. 230613 chromosome, complete genomeputative zinc-dependent hydrolase1e-35149
NC_009699:122000:122117122117122755639Clostridium botulinum F str. Langeland chromosome, complete genomezinc-dependent hydrolase1e-35149
NC_009697:120117:120117120117120755639Clostridium botulinum A str. ATCC 19397 chromosome, completezinc-dependent hydrolase3e-35148
NC_009698:120119:120119120119120757639Clostridium botulinum A str. Hall chromosome, complete genomezinc-dependent hydrolase3e-35148
NC_010516:127000:127095127095127733639Clostridium botulinum B1 str. Okra, complete genomeputative zinc-dependent hydrolase8e-35146
NC_010520:121077:121077121077121715639Clostridium botulinum A3 str. Loch Maree, complete genomeputative zinc-dependent hydrolase9e-35146
NC_013849:933913:956159956159956788630Ferroglobus placidus DSM 10642 chromosome, complete genomeZn-dependent hydrolase of the beta-lactamase fold-like protein8e-33140
NC_008262:2649289:265914326591432659796654Clostridium perfringens SM101, complete genomezinc-dependent hydrolase, putative6e-32137
NC_003366:2788268:279295327929532793606654Clostridium perfringens str. 13, complete genomehypothetical protein6e-32137
NC_008261:3014373:301559230155923016245654Clostridium perfringens ATCC 13124, complete genomeputative zinc-dependent hydrolase2e-31135
NC_011297:1296968:131464513146451315283639Dictyoglomus thermophilum H-6-12, complete genomeZn-dependent hydrolase of the metallo-beta-lactamase superfamily5e-31134
NC_020291:1045058:104699210469921047636645Clostridium saccharoperbutylacetonicum N1-4(HMT), complete genomeputative Zn-dependent hydrolase7e-31133
NC_013926:289511:303790303790304473684Aciduliprofundum boonei T469 chromosome, complete genomebeta-lactamase domain protein9e-1476.6
NC_016779:4361140:438392043839204384603684Bacillus cereus F837/76 chromosome, complete genomeMetal-dependent hydrolase8e-1373.6
NC_015320:1399589:141515814151581415844687Archaeoglobus veneficus SNP6 chromosome, complete genomehypothetical protein3e-1272
NC_010184:4425676:444678944467894447475687Bacillus weihenstephanensis KBAB4, complete genomebeta-lactamase domain protein4e-1271.6
NC_016051:1849905:186491418649141865585672Thermococcus sp. AM4 chromosome, complete genomemetal-dependent hydrolase4e-1271.2
NC_011725:4562709:458095745809574581640684Bacillus cereus B4264 chromosome, complete genomemetal-dependent hydrolase9e-1270.1
NC_013790:1081757:108175710817571082470714Methanobrevibacter ruminantium M1 chromosome, complete genomemetallo-beta-lactamase superfamily protein3e-1168.6
NC_014171:4447856:446989544698954470578684Bacillus thuringiensis BMB171 chromosome, complete genomemetal-dependent hydrolase6e-1167.4
NC_009454:1462930:147027314702731470959687Pelotomaculum thermopropionicum SI, complete genomeZn-dependent hydrolase3e-0962
NC_013156:154233:156961156961157614654Methanocaldococcus fervens AG86, complete genomebeta-lactamase domain protein1e-0756.2
NC_014614:2500301:251969625196962520367672Clostridium sticklandii, complete genomeYtkL9e-0753.5