Search PubMedSearch

Biomedical subjects

L J Ward

Publications and source records attributed to L J Ward.

At least 19 recordsLinked to original sources

Characterization of lactococci isolated from minimally processed fresh fruit and vegetables.

Lactic acid bacteria isolated from minimally processed fresh fruit and vegetable products were identified as Lactococcus lactis subsp. lactis on the basis of phenotypic tests, presence of lactococcal IS elements, and partial sequence analysis of the 16S rRNA gene. Isolated bacteria were differentiated using pulsed-field gel electrophoresis of SmaI digests of genomic DNA. Sprouted seeds were the best source of strains, and lactococci appear to be the dominant microflora on these products during the period they are intended to be eaten. Although these plant strains showed many similarities to strains of L. lactis used as dairy starter cultures, their carbohydrate fermentation patterns were unusual and probably reflect their environmental origin. Most strains fermented sucrose and xylose, and some also fermented raffinose and melibiose. Most of the bacteriocin-producing strains produced nisin, and nisin genes could also be detected in strains that showed no bacteriocin activity, or that produced a different bacteriocin with a narrow spectrum of activity. One strain produced nisin but was unable to ferment sucrose, properties that have been generally regarded as linked. These strains may have uses as biopreservatives for minimally processed plant products.

Blotting, Southern

Two methods for the genetic differentiation of Lactococcus lactis ssp. lactis and cremoris based on differences in the 16S rRNA gene sequence.

The 16S ribosomal RNA gene sequences of Lactococcus lactis ssp. lactis and ssp. cremoris differ by 9-10 bp (depending on strain), within the first 200 bp of the sequence. These differences were used to develop two methods of genetically differentiating lactis and cremoris strains. Primers to conserved sequences in the 16S rRNA gene were used in a PCR reaction to amplify fragments of the 16S rRNA gene. A single base difference at position 180 of the sequence was utilised to develop a ligase chain reaction to differentiate lactis and cremoris sequences. The second method involved digestion of the amplified fragments with restriction endonucleases specific for either the lactis or cremoris sequence. Resolution of the digested fragments on an agarose gel allowed the strains to be identified as genetically lactis or cremoris. This method was used to examine lactococci isolated from raw milk. Of 31 raw milk strains examined, 21 contained the cremoris 16S rRNA sequence, however, all 31 strains exhibited the phenotypic characteristics of the lactis subspecies.

Animals

Improved microscopic identification of Clavibacter michiganensis subsp. sepedonicus cells by combining in situ hybridization with immunofluorescence.

An oligonucleotide probe was selected from the 16S rRNA gene of Clavibacter michiganensis subsp. sepedonicus for specific in situ hybridization. The rhodamine-labelled oligonucleotide probe was used in conjunction with an indirect immunofluorescence procedure based on a specific monoclonal antibody detected with a fluorescein-labelled conjugate. Simultaneous labelling of bacterial cells with the oligonucleotide and antibody probes allows accurate microscopic identification of single cells when isolation and other methods of confirming bacterial identity are not possible.

Actinomycetales

Identification and sequence analysis of IS1297, an ISS1-like insertion sequence in a Leuconostoc strain.

The insertion sequence (IS) ISS1 from Lactococcus lactis was amplified from lactococcal genomic DNA using a primer to the 18-bp inverted repeat sequence. The amplified product hybridized to a single EcoRI fragment in a total genomic DNA digest of Leuconostoc mesenteroides ssp. dextranicum NZDRI 2218. The DNA sequence of this ISS1-like element (IS1297) and the Le. mesenteroides sequences flanking the IS were determined and compared with other iso-ISS1 elements. No direct repeats were found immediately flanking IS1297; however, direct repeats were present approximately 60 bp on either side of the insertion site. IS1297 contained a major open reading frame (ORF) of 681 bp, encoding a putative 226-amino-acid protein with 96.5% homology to the presumed transposase of ISS1. An overlapping ORF of 174 bp in the same orientation was also present. A putative ORF in the opposite orientation to the transposase ORF, which has been shown in some iso-ISS1 elements, was not present in IS1297. IS1297 was shown to hybridize with other dairy Leuconostoc strains. This is the first sequence of an ISS1-like element from a genus other than Lactococcus; however, IS1297 has close similarity to the lactococcal iso-ISS1 elements, especially the iso-ISS1 element from the lactose plasmid, pTD1.

Base Sequence

Detection of dairy Leuconostoc strains using the polymerase chain reaction.

This paper reports the design of a Leuconostoc-specific oligonucleotide based on 16S rRNA sequence data. When this oligonucleotide was used in a polymerase chain reaction (PCR) in conjunction with an oligonucleotide to a conserved region of the 16S rRNA sequence, a Leuconostoc-specific PCR product of approximately 470 bp was produced. The use of a second oligonucleotide to a conserved region allowed the production of an approximately 350 bp product in all PCRs, acting as a positive control. The PCR procedure described was particularly useful for detecting the presence of Leuconostoc in mixed mesophilic starter cultures. The Leuconostoc-specific oligonucleotide was used also as a specific hybridization probe.

Base Sequence

Molecular biology of lactococcal bacteriophage c2.

The 22163 bp genome of the lytic prolate-headed lactococcal phage c2 was fully sequenced. Mapping of restriction sites and RNA transcripts demonstrated the presence of early and late genes. Early and late promoters were identified. The early region contained 21 ORFs, with predicted protein products of 4.4-32.9 kDA, all reading right to left. Significant similarity was found between a putative protein encoded by an early region ORF and the erf (essential recombination function) gene product of Salmonella phage P22. The late genes for which a function has been identified, all of which read from left to right, included a possible holin gene, and genes encoding three major and six minor phage structural proteins. Analysis of the cohesive termini revealed complementary, non-symmetrical, 9-base single-stranded 3' extended DNAs. The exploitation of phage sequence data and analysis of phage genomes to find ways of inhibiting phage replication is discussed.

Bacteriolysis

Sequencing and analysis of the cos region of the lactococcal bacteriophage c2.

The cohesive termini of the DNA genome of the lactococcal bacteriophage c2 were directly sequenced and appeared to be complementary, non-symmetrical, 9-nucleotide single-stranded, 3' extended DNAs, with the following sequence: 5'-GTTAGGCTT-3' 3'-CAATCCGAA-5'. DNA located on either side of the cohesive ends was sequenced and several repeats and a region with the potential for a DNA bend were found. Previously sequenced cos regions of 13 other bacteriophages were also examined for similar sequence features. All of the bacteriophages from gram-positive hosts had 3' extended DNA termini, in contrast to the bacteriophages from gram-negative hosts, which had 5' extended DNA termini. All bacteriophages had a region of dyad symmetry close to the cohesive termini. A 7.3 kb DNA fragment of the c2 genome containing the cos sequences was cloned; transduction experiments demonstrated that these cloned sequences could act as a substrate for packaging enzymes of phage c2.

Bacteriophages

Application of the ligase chain reaction to the detection of nisinA and nisinZ genes in Lactococcus lactis ssp. lactis.

This paper reports on the application of the ligase chain reaction (LCR) to the specific detection of variants of the nisin structural gene (nisinA and nisinZ) in nisin producing strains of Lactococcus lactis ssp lactis. The LCR assay was used to screen nisin producing strains to determine which form of the nisin structural gene they contained. This method of differentiating the nisin structural gene variants provides a useful alternative to the only other available genetic differentiation, that of sequencing the gene.

Base Sequence

Rapid isolation and purification of lactococcal bacteriophage DNA without the use of caesium chloride gradients.

Intact bacteriophage of Lactococcus lactis were recovered from small volumes of lysate by centrifugation at 15,000 g without precipitation with polyethylene glycol and sodium chloride, or ultracentrifugation in a caesium chloride gradient. DNA was then extracted and purified by standard protocols. This DNA was readily digested with restriction endonucleases and used successfully in hybridization experiments.

Bacteriophages

Insertion sequence analysis of protoplast fused strains of Lactococcus lactis ssp. cremoris.

The use of insertion sequence probes for the analysis of fusants obtained following protoplast fusion is described. Hybridization of both total and plasmid DNA from parent and fusant strains with probes to IS904 and ISS1 showed that of the four protoplast fusions examined, three appeared to involve a rearrangement of genetic material while in the fourth the fusant appeared similar to one of the parental strains. This method of analysis provides more information about the changes induced by protoplast fusion than that obtained by monitoring the acquisition or loss of individual characteristics.

Base Sequence

Sequence analysis of the lysin gene region of the prolate lactococcal bacteriophage c2.

Approximately 80% of the genome of the prolate-headed lactococcal bacteriophage c2 was cloned into shuttle vectors pSA3 and pFX3 in Escherichia coli and transferred to Lactococcus lactis. A 1.67-kilobase EcoRV fragment containing the gene for the phage lysin was identified and the position and orientation of the phage lysin gene in the physical map of the phage were determined. The phage lysin was expressed in E. coli and its sequence was determined and compared with the sequences of other bacteriophage lytic genes. The sequence was similar, but not identical, to that of the related lactococcal phage m13, having a number of silent substitutions and an apparent deletion that altered the carboxy terminus of the protein. Possible alternative translation initiation codons for the lysin gene and two possible alternative mechanisms for access of the lysin enzyme to the cell wall are discussed. An open reading frame upstream of the putative lysin gene was found to be 177 base pairs longer than that reported for phage m13. A codon usage table for the lysin genes of several phages as well as for reported gene sequences from L. lactis and lactococcal bacteriophages is presented.

Amino Acid Sequence

Tight linkage of the gene for spinocerebellar ataxia to D6S89 on the short arm of chromosome 6 in a kindred for which close linkage to both HLA and F13A1 is excluded.

A locus for an autosomal dominant form of spinocerebellar ataxia (SCA1) has been assigned to the short arm of chromosome 6 on the basis of linkage to the major histocompatibility system (HLA). In this study of a five-generation American black family, close linkage between the disease locus and both HLA and the coagulation factor XIIIA (F13A1) locus was excluded, and lod scores for all locations of the disease locus between HLA and F13A1 were less than -1.4. These results suggest that the locus causing spinocerebellar ataxia in this family is not in this region. However, the disease locus was found to be closely linked to a microsatellite polymorphism, D6S89, which is between HLA and F13A1. The maximum lod score for SCA1 and D6S89 is 4.90 at a recombination fraction of 0, both in males and in females. These data show that exclusion of close linkage to the HLA complex and F13A1 in a kindred with spinocerebellar ataxia does not rule out the possibility that the disease locus in that family is on 6p. Accordingly, all families segregating a dominantly inherited ataxia should be evaluated for linkage to D6S89, to determine whether the locus causing the disease is SCA1.

Adolescent

Gametic equilibrium between 24 polymorphic markers.

Pairs of unlinked genetic markers (blood cell antigens and enzymes and serum proteins) were tested for gametic equilibrium (GE) in data from 508 unrelated individuals from different regions of North America. A total of 24 markers were considered in the study. Only 14 of 262 pairs (5.3%) of markers deviated from GE at the 5% significance level and only 6 pairs (2.3%) remained in significant disequilibrium after accounting for genetic heterogeneity among regional groups. The particular combinations of alleles or one-locus genotypes that showed significant association were identified in case they might be replicated in future studies. On the basis of this study alone, however, there is no reason to suspect disequilibrium between the pairs of markers studied.

Alleles

"Acadian" and "classical" forms of Friedreich ataxia are most probably caused by mutations at the same locus.

"Acadian ataxia" is a form of Friedreich ataxia found in individuals of Acadian ancestry. It was described by Barbeau (in Sobue I (ed): Spinocerebellar Degeneration; Tokyo: Univ. Tokyo Press, pp 121-142, 1980) as having a slower course of degeneration and less severe secondary symptoms than "classical" Friedreich ataxia. He suggested that these 2 forms of the disease may be distinct. The mutation causing "classical" Friedreich ataxia has recently been mapped to chromosome 9 through genetic linkage studies, and here we show that the locus causing Friedreich ataxia in Acadian families from southwestern Louisiana is tightly linked to the same DNA marker, D9S15. Thus, these 2 disorders, which may be differentiated clinically, are most probably due to mutation(s) at the same locus on chromosome 9.

Chromosome Mapping

Characterization of a monoclonal antibody against active pectate lyase from Erwinia carotovora.

A monoclonal antibody (2E2) produced against pectate lyase from Erwinia carotovora ssp. carotovora reacted with a 41- and a 44-kilodaltion protein on Western blots of concentrated Erwinia culture supernatants resolved by sodium dodecyl sulfate - polyacrylamide gel electrophoresis. It was unequivocally shown that monoclonal 2E2 reacted with an active form of pectate lyase by affinity purifying the antigen with the monoclonal. The affinity-purified antigen was enzymatically active and moved as a single protein band in a nonequilibrium isoelectric focusing gel. Monoclonal 2E2 reacted with the pectate lyases of a diverse range of E. carotovora ssp. carotovora, ssp. atroseptica, and ssp. betavasculorum strains, as well as with one of three strains of E. chrysanthemi. The electrophoretic mobility of the major protein (44 kilodaltons) that reacted with 2E2 was identical within a subspecies but differed among subspecies.

Antibodies, Bacterial