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1 nd norovirus GII) and infectivity assays (F+ coliphage).
2 asured by culture, somatic coliphage, and F+ coliphage.
3 li infection by the Ff family of filamentous coliphage.
4 and studied in the limited context of T-even coliphages.
5 olved during infection of six newly isolated coliphages.
6 liphages (0.25 +/- 0.02 day(-1)) and somatic coliphages (0.12 +/- 0.01 day(-1)) in winter were consid
8 omes included a homologue of the tum gene of coliphage 186, which encodes a LexA-repressed cI antirep
12 In contrast, soil bacteria do not propagate coliphages and hindered T4 diffusion through the biofilm
14 demonstrated that RNA-binding proteins from coliphages and yeast can function as translational repre
19 ompared to fecal indicator bacteria, somatic coliphage, Bacteroidales 16S rRNA marker AllBac, four hu
22 5.5 and iron dose of 20 mg/L reduced the MS2 coliphage below detection limits (LRVs 6.7) in just 11.5
24 he well-studied F pilus-specific filamentous coliphages, CTXphi integrates site-specifically into its
26 s (Escherichia coli) and viral pathogens (T4 coliphage) distributed across a large network of subpopu
27 Molecules of dissimilar lengths (T2 and T7 coliphage DNA) were inserted into this region in such a
28 cosahedral, single-stranded DNA PhiX174-like coliphages do not fall into these well-defined infection
29 function in a manner similar to that of the coliphage fd protein pIII and mediate CTXphi infection a
33 Bacteriophages infecting Escherichia coli (coliphages) have been used as a proxy for faecal matter
36 The amino-terminal arginine-rich motif of coliphage HK022 Nun binds phage lambda nascent transcrip
39 Head assembly in the double-stranded DNA coliphage HK97 involves initially the formation of the p
40 sid) were conserved between straight phiC31, coliphage HK97, staphylococcal phage straight phiPVL, tw
41 oocysts, Bacillus atrophaeus spores, and MS2 coliphage in a model buffered water and (2) evaluate the
42 ndogenous sunlight inactivation rates of MS2 coliphage in photosensitizer-free water were measured (k
43 ovirus, norovirus genogroup II (GII), and F+ coliphage in the influent wastewater, the solid and liqu
48 oited the novel substrate specificity of the coliphage K5 lyase in studies of the domain organization
51 ed holins S105 (3 TMDs; N(out)-C(in)) of the coliphage lambda and S68 (2 TMDs; N(in)-C(in)) of the la
52 Coliphage HK022 Nun blocks superinfection by coliphage lambda by stalling RNA polymerase (RNAP) trans
54 t the role of the tsp region variants of the coliphage lambda cro gene terminator, tR1, containing in
57 frames encoding proteins closely related to coliphage lambda's terminase protein (the large subunit)
63 ce for translational activation of the Qbeta coliphage maturation cistron, mediated by the presence o
64 bited similar mass recovery as commonly used coliphage MS2 and were 7-fold better transported than kn
67 face properties of six marine phages and two coliphages (MS2, T4) on transport in sand-filled percola
69 nome shares synteny and gene similarity with coliphage N15 and vibriophages VP882 and VHML, suggestin
72 Unlike other characterized phages, the lytic coliphage N4 must inject the 360-kDa virion RNA polymera
79 rm, the prototype SAR endolysin, Lyz(P1), of coliphage P1, has an active-site Cys covalently blocked
81 ke phage family, with strong similarities to coliphages P2 and 186 and some similarity to the retronp
84 out with endospores of Bacillus subtilis and coliphage phiX174 over a distance of 25 m in an alluvial
85 III-N1 and V. cholerae TolA-C are similar to coliphage pIII-N1 and E. coli TolA-C, respectively, yet
86 Classification of purified large (60 nm) coliphage PR772 particles leads to broad peaks, due to b
87 7 diverged from its common ancestor with the coliphage prior to the ancient split between these gener
89 quenced and annotated the T4-like genomes of coliphage RB16 (a close relative of RB43), A. salmonicid
90 ves of the bacteriophage T4, including three coliphages (RB43, RB49 and RB69), three Aeromonas salmon
96 the efficacy of polyvalent phage PEf1 versus coliphage T4 in suppressing a model enteric bacterium (E
98 il metagenomic DNA library(3) with the lytic coliphage T4 to isolate clones carrying protective genes
101 equences of the packaging/terminase genes of coliphages T4 and RB49 and vibriophages KVP40 and KVP20
104 le expression vector utilizing a promoter of coliphage T5, P(N25) and a derivative of the IncW broad-
105 nt and organization clearly place SP6 in the coliphage T7 group of phages, but there is approximately
107 haring of conserved structural modules among coliphage tail-fiber genes to which gp37 was previously
108 Here, we build on the recent discovery of coliphages that have the outer membrane (OM) lipopolysac
110 E. coli, intestinal enterococci and somatic coliphages through cultivation and for human (BacH) and
111 Here, we investigated the resistance of MS2 coliphage to inactivation by chlorine dioxide (ClO2).
115 reduction of both male specific and somatic coliphages was seen at specific ozone doses as low as 0.
116 g a suite of thirty environmentally-isolated coliphages, we demonstrate multi-layered and robust phag
117 ), but the decay rates of male-specific (F+) coliphages were not significantly different between sunl
118 nts revealed that the decay rates of somatic coliphages were significantly higher in sunlight (1.29 +
119 remely facile reduction of P1 suggested that coliphages with myovirus morphology may not be conservat