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Mycoplasma and Bartonella in cats from the tropical tourist Gili Islands, Indonesia.

Bartonella spp. and haemotropic Mycoplasma spp. are important vector-borne bacteria of veterinary and zoonotic relevance, yet information on their circulation in Indonesian island ecosystems remains limited. We investigated their occurrence and molecular diversity in 117 domestic and free-roaming cats from the Gili Islands, Indonesia, using full-length 16S rRNA nanopore metagenomics followed by targeted PCR, sequencing, phylogenetic analysis and multilocus sequence typing (MLST). Bartonella DNA was detected in 18/117 (15.4%) cats and haemotropic Mycoplasma DNA in 40/117 (34.2%). Sequence analysis identified Bartonella henselae as the predominant species together with Bartonella clarridgeiae. MLST of B. henselae revealed three sequence types (ST1, ST16 and ST42), with ST1, a lineage reported in both feline and human isolates, predominating. Comparison with the PubMLST database showed significant geographical differences in the distribution of ST1 and ST42, supporting regional variation in the circulation of B. henselae lineages. Haemoplasma characterization identified Candidatus Mycoplasma haemominutum, Mycoplasma haemofelis, Candidatus Mycoplasma turicensis and a Mycoplasma feliminutum-like organism, comprising ten distinct sequence variants. Haemoplasma positivity was significantly associated with age, with adults showing higher positivity than younger animals (P < 0.001), whereas Bartonella infection was not associated with age, sex or island of origin. The detection of zoonotically relevant B. henselae lineages and the genetic diversity of feline haemoplasmas provide evidence of the circulation of vector-borne bacteria among cats in this tropical island ecosystem. These findings provide the first molecular epidemiological baseline for this region and contribute to understanding the circulation and genetic diversity of feline vector-borne pathogens in Southeast Asia.

Animals

Complete nucleotide sequence of type 6 M protein of the group A Streptococcus. Repetitive structure and membrane anchor.

The DNA sequence of the gene for type 6 M protein of Streptococcus pyogenes contains two extended tandem repeat regions and one nontandem repeat region. We suggest that the duplication and deletion of these repeats generates the observed diversity in size and sequence among the family of M proteins in the group A streptococci. In addition, the DNA sequence reveals the presence of a 42-amino-acid signal peptide, a region rich in proline that is thought to be located in the cell wall, and a membrane anchor sequence at the carboxyl-terminal end of the protein. Signals similar to the consensus sequences recognized for the initiation of transcription and translation in Gram-positive bacteria have been identified in the DNA sequence. Codon usage is similar to that of other Gram-positive bacteria and significantly different from that of Escherichia coli.

Amino Acid Sequence

Prevalence, genomic characterization, and biofilm-forming capacity of extended-spectrum &#x3b2;-lactamase-producing Escherichia coli from faecal samples of broiler chickens in Jinan City, China.

The emergence of extended-spectrum &#x3b2;-lactamase (ESBL)-producing Escherichia coli in food animals threatens both veterinary and human medicine by compromising critically important antimicrobials. This study characterized the prevalence, antimicrobial resistance profiles, molecular epidemiology, and virulence attributes of ESBL-producing E. coli isolated from broiler farms in Jinan City, China. From 600 faecal samples, 537 E. coli isolates were recovered (89.5 % isolation rate), with 71 (13.2 %) identified as ESBL producers. Antimicrobial susceptibility testing revealed markedly more severe resistance among ESBL-producing isolates, with complete ampicillin resistance (100 %) and high-level resistance to sulfamethoxazole/trimethoprim (94.37 %), streptomycin (87.32 %), chloramphenicol (78.87 %), and tetracycline (70.42 %). Resistance to extended-spectrum cephalosporins cefuroxime and ceftriaxone reached 43.66 % and 36.62 %, respectively, while amoxicillin/clavulanic acid susceptibility declined to 61.97 %. Whole-genome sequencing identified blaCTX-M-55 (29.58 %) as the predominant ESBL genotype, followed by blaCTX-M-64 (23.94 %), blaCTX-M-15 (19.71 %), blaCTX-M-14 (12.68 %), and blaCTX-M-65 (9.86 %). The plasmid-mediated colistin resistance gene mcr-1 was detected in 25.35 % of ESBL-producing isolates, indicating a substantial reservoir of last-resort antibiotic resistance determinants, though physical linkage between mcr-1 and ESBL-encoding genes remains undetermined due to short-read sequencing limitations. Multilocus sequence typing revealed ST117 (18.3 %) as the predominant sequence type, associated mainly with serogroup O78 (25.4 %). Virulence gene profiling demonstrated high prevalence of the serum survival gene iss (85.9 %), commonly associated with avian pathogenic E. coli, though avian pathogenicity was not experimentally confirmed. Notably, 90.14 % of ESBL-producing isolates demonstrated biofilm-forming capacity, with 16.90 % classified as strong biofilm producers forming mature, mushroom-shaped microcolonies. These findings demonstrate that broiler chickens in the sampled Jinan farms constitute a significant reservoir of multidrug-resistant, biofilm-forming ESBL-producing E. coli harboring clinically relevant genotypes, including mcr-1. The predominance of ST117, reported in both poultry and human clinical settings, along with extensive co-resistance profiles, underscores the value of integrated surveillance and antimicrobial stewardship in poultry production, though direct zoonotic transmission evidence requires further comparative genomic and epidemiological investigation.

Antimicrobial resistance

Identification of transcriptional regulatory activity within the 5' A-type monomer sequence of the mouse LINE-1 retroposon.

LINE-1 (L1) is a retroposon found in all mammals. In the mouse, approximately 10% of L1 elements are full-length and can be grouped into two classes, A or F, based upon the type of monomer sequence repeated at the 5' end. In order to test for promoter activity in the 5' end of the A-type mouse L1 element, we cloned several different A-monomers into a promoterless chloramphenicol acetyltransferase (CAT) vector. The A-monomer constructs varied in their ability to regulate transcription of the CAT gene, exhibiting CAT activity 16-37% of that detected with the Rous sarcoma virus promoter and enhancer. A series of A-monomer deletions were tested for their ability to regulate CAT expression and gel retardation experiments were performed to identify regions of the A-monomer that may be involved in L1 transcriptional regulation. A-monomer sequences are usually found repeated 2-5 times at the 5' end of a full-length mouse L1. In the absence of long terminal repeats or an internal promoter, the tandem array of A-monomers may provide a mechanism for A-type L1 elements to generate transcripts containing transcriptional regulatory sequences.

Animals

Transmission of extended spectrum &#x3b2;-lactamase-producing Escherichia coli and antimicrobial resistance gene flow across One Health compartments in eastern Africa: a whole-genome sequence analysis from a prospective cohort study.

BACKGROUND: The One Health paradigm considers interdependence of human, animal, and environmental health. However, there is little evidence from high-income countries to support the importance of a One Health approach to addressing spread of antimicrobial resistance (AMR). Given AMR is a global threat, understanding how the close interactions of humans with animals and the environment in low-income settings affect the spread of AMR is important. We aimed to investigate diversity and transmission of extended spectrum &#x3b2;-lactamase (ESBL)-producing Escherichia coli across household-linked One Health compartments using genomic data. METHODS: We sequenced whole genomes of ESBL-producing E coli isolates from humans, animals, and the environment from a prospective, longitudinal cohort study conducted in Malawi (April 29, 2019, to Dec 3, 2020) and Uganda (July 16, 2020, to Aug 6, 2021). In the cohort study, 259 households were enrolled at baseline in Malawi and 92 in Uganda from a mix of urban, peri-urban, and rural areas. Households were followed up at months 1, 3, and 6 in Malawi and at months 1, 2, and 4 in Uganda. Samples collected at each visit included human and animal stool, environmental samples from hand-contact areas, food, and water, and broader environmental samples such as river water. Samples were cultured in buffered peptone water and then ESBL chromogenic agar to isolate ESBL-producing E coli. ESBL-producing E coli isolates underwent whole-genome sequencing. We performed phylogenetic analyses, and in-silico multi-locus sequence typing, characterised AMR determinants and linked genotypes with sample location, ecological source, and other covariates. We performed fine-scale single nucleotide polymorphism (SNP) and network analysis to infer strain and plasmid transmission across ecological compartments. The primary outcome was colonisation with ESBL-producing E coli. Secondary outcomes were genomic clusters and ESBL genomic determinants within and between One Health compartments. FINDINGS: We found high diversity of ESBL-producing E coli, with 170 sequence types and 166 genomic clusters identified from 2344 genomes, including 1814 genomes from Malawi (907 human, 221 animal, and 686 environmental) and 530 genomes from Uganda (380 human, 147 animal, and three environmental). Sequence type (ST)131 dominated in Malawi (209 [11&#xb7;5%] of 1814 genomes), and ST10 dominated in Uganda (45 [8&#xb7;5%] of 530 genomes). Common ESBL genes blaCTX-M-15 (1604 [68&#xb7;4%] of 2344 genomes) and blaCTX-M-27 (336 [14&#xb7;3%] of 2344 genomes) were carried on a complex network of 55 and 30 different plasmids. This diversity of plasmids presented multiple pathways for dissemination and revealed high force of selection. Phylogenetic analyses revealed common intermixing of isolates between humans, animals, and the environment. SNP transmission analysis revealed ecologically overlapping clusters, suggesting ESBL-producing E coli co-circulation both within and between compartments with frequent spillover events. Applying a five-SNP threshold, we inferred 463 human-environment transmission events, 146 human-animal events, and 142 animal-environment events. INTERPRETATION: Our work suggests that a One Health approach is crucial to addressing AMR in eastern Africa. Improving water, sanitation, and hygiene systems will create a safer environment, reduce spillovers of AMR bacteria between compartments, and eventually reduce AMR reservoirs in the environment and in animals. FUNDING: Medical Research Council, National Institute for Health and Care Research, and Wellcome Trust.

Humans

Sensitivity of the polymerase chain reaction for detecting human T-cell leukemia virus type I sequences in paraffin-embedded tissue. Effect of unbuffered formalin fixation.

Recently, the application of the polymerase chain reaction (PCR) to formalin-fixed paraffin-embedded tissue has been reported. But formalin, especially unbuffered formalin, is known to break DNA into small fragments. DNA extracted from MT-2 cells fixed in unbuffered formalin for various periods of time were subjected to the PCR and the effect of unbuffered formalin fixation on the ability of the PCR to detect exogenous sequences; i.e., human T-cell leukemia virus type I (HTLV-I) proviral DNA, was examined. The sensitivity of the PCR decreased as a function of both the duration of fixation and the length of the expected DNA products. When the expected length of the PCR product was about 200 bp, a slight decrease in the sensitivity was observed after 4-day fixation. When it was about 300 bp, a similar decrease was observed following 4-h fixation. In the case of a 500 bp product, the sensitivity began to decrease after 30-min fixation and a 100-fold decrease was observed after 10-day fixation. A decrease was not observed, however, with a 100 bp product. The appropriate design of primers, especially with regard to the length of the amplified product, is essential to keep the sensitivity of the PCR, particularly when the target tissues have been fixed in unbuffered formalin.

Base Sequence

Multidrug resistance and genomic characteristics of nontypeable Haemophilus influenzae isolates from the respiratory tract of pediatric patients.

UNLABELLED: Nontypeable Haemophilus influenzae (NTHi) is a common colonizer of the human upper respiratory tract and one of the major pathogens responsible for pediatric respiratory tract infections. Given the increasing severity of its multidrug resistance (MDR), this study comprehensively investigated the genomic characteristics of circulating NTHi isolated from sputum and bronchoalveolar lavage fluid (BALF). A total of 104 H. influenzae isolates (69 from sputum; 35 from BALF) were collected from pediatric patients between January 2024 and January 2025. All isolates underwent whole-genome sequencing and antimicrobial susceptibility testing, followed by core/pan-genome phylogenetic analysis, multilocus sequence typing (MLST), and resistome profiling. Among them, 103 were identified as NTHi. We identified 29 known sequence types (STs) and 10 novel STs, with ST-107 (14.4%), ST-57 (10.6%), and ST-11 (8.7%) being the major circulating lineages. However, core-genome phylogenetic analysis provided a more granular view of the genetic variation within these identical STs. All the isolates showed high resistance to ampicillin (98.1%) and cefuroxime (84.6%). Genomically, the multidrug efflux pump gene hmrM was ubiquitous (100%). Ampicillin resistance was predominantly driven by blaTEM-1 carriage (77.9%), with minor contributions from chromosomal ftsI mutations. Fifteen plasmid replicons were predicted from 25 isolates, which highly coincided with the carriage of blaTEM-1 and other acquired resistance genes. This study demonstrates that MDR in pediatric NTHi is primarily driven by acquired resistance genes and chromosomal mutations, with specific resistant clones persisting and enriching under clinical antibiotic pressures. These findings underscore the importance of continuous high-resolution genomic surveillance in guiding rational antibiotic stewardship. IMPORTANCE: This study highlights the critical importance of high-resolution genomic surveillance in managing pediatric nontypeable Haemophilus influenzae (NTHi) infections. By utilizing whole-genome sequencing, we uncovered the pathogen's highly dynamic population structure and complex multidrug resistance (MDR) mechanisms. Crucially, our findings reveal a strong, non-random coupling between core genomic architectures, virulence factors, and MDR elements, driven by dual environmental and pharmacological pressures. This "virulence-MDR" co-evolutionary trend underscores the persistent clinical threat of locally adapted high-risk clones. These findings provide important insights for guiding rational clinical antibiotic stewardship, optimizing treatment strategies, and improving regional infection control.

Humans

An analysis of Wolbachia incidence and genetics in non-ant Hymenoptera diversity.

Wolbachia bacteria are widespread maternally inherited symbionts of Nematoda and diverse Arthropoda hosts. Their evolutionary success is determined by the ability to affect the biology of the host in different ways, promoting the relative fitness of females harbouring Wolbachia, as well as sporadic cases of horizontal transmission of Wolbachia between different host species. Here, we revised Wolbachia infection in the Hymenoptera with respect to the symbiont occurrence in host taxa and Wolbachia genetics. The representatives of about half of the extant families and 1000 out of 140,000 non-ant hymenopteran species have been tested for Wolbachia infection. We concluded that Wolbachia are found in all major hymenopteran families. More than 75% of Wolbachia diversity belongs to the A supergroup, whereas other variants belong to the B supergroup and only two isolates belong to the supergroup F. One of the main results of this study is the discovery of a specific Wolbachia genetic pattern (based on multilocus sequence typing [MLST]) in Apoidea hosts. Two haplotypes, ST-479 and ST-wH14, along with their alleles within other sequence types (STs), form the core of symbiont diversity, comprising 81% of unique host-Wolbachia ST associations. These haplotypes have not been reported beyond the Apoidea superfamily or Hymenoptera order. The reasons and mechanisms underlying this pattern in Apoidea remain unknown. Another important result of our study concerns the use of the MLST protocol, which has been previously criticised. We analysed 51 Wolbachia genomes for the average nucleotide identity (ANI) and MLST data, and found that genome and MLST variation are highly correlated. Therefore, the MLST protocol for Wolbachia remains reliable for many research tasks.

Animals

Characteristics of an NDM-1-producing Klebsiella pneumoniae strain belonging to ST105.

Uncommon multilocus sequence types (MLSTs) of NDM-producing Klebsiella pneumoniae may pose a significant threat to patients, although they are often overlooked in surveillance studies. Characterizing these isolates is therefore important for infection control. In this study, the antimicrobial susceptibility and pathogenicity of K. pneumoniae strain KP_WXD, pertaining to the atypical sequence type ST105, were evaluated, including capsular polysaccharide (CPS) production, biofilm formation, and resistance to serum killing. Whole-genome sequencing (WGS) was performed to analyze its genomic features. K. pneumoniae KP_WXD strain was resistant to all tested &#x3b2;-lactam agents. Its virulence was lower than that of K. pneumoniae strains ST11-KL64 and NTUH-k2044 used as references, while its biofilm formation ability was stronger than that of both strains. WGS analysis revealed carriage of IncF and IncN plasmids carrying multiple antibiotic resistance genes, alongside blaNDM-1 and blaCTX-M, integrated into well-characterized mobile genetic elements. Moreover, both blaNDM-1 and blaCTX-M-harboring plasmids were transferable to E. coli J53 by conjugation without significant fitness cost on the recipient strain.

Klebsiella pneumoniae

Structural and transcriptional analysis of human papillomavirus type 16 sequences in cervical carcinoma cell lines.

We cloned and analyzed the integrated human papillomavirus type 16 (HPV-16) genomes that are present in the human cervical carcinoma cell lines SiHa and CaSki. The single HPV-16 genome in the SiHa line was cloned as a 10-kilobase (kb) HindIII fragment. Integration of the HPV-16 genome occurred at bases 3132 and 3384 with disruption of the E2 and E4 open reading frames (ORFs). An additional 52-base-pair deletion of HPV-16 sequences fused the E2 and E4 ORFs. the 5' portion of the disrupted E2 ORF terminated immediately in the contiguous human right-flanking sequences. Heteroduplex analysis of this cloned integrated viral genome with the prototype HPV-16 DNA revealed no other deletions, insertions, or rearrangements. DNA sequence analysis of the E1 ORF, however, revealed the presence of an additional guanine at nucleotide 1138, resulting in the fusion of the E1a and E1b ORFs into a single E1 ORF. Sequence analysis of the human flanking sequences revealed one-half of an Alu sequence at the left junction and a sequence highly homologous to the human O repeat in the right-flanking region. Analysis of the three most abundant BamHI clones from the CaSki line showed that these consisted of full-length, 7.9-kb HPV-16 DNA; a 6.5-kb genome resulting from a 1.4-kb deletion of the long control region; and a 10.5-kb clone generated by a 2.6-kb tandem repeat of the 3' early region. These HPV-16 genomes were arranged in the host chromosomes as head-to-tail, tandemly repeated arrays. Transcription analysis revealed expression of the HPV-16 genome in each of these two cervical carcinoma cell lines, albeit at significantly different levels. Preliminary mapping of the viral RNA with subgenomic strand-specific probes indicated that viral transcription appeared to be derived primarily from the E6 and E7 ORFs.

Amino Acid Sequence

Extrachromosomal human immunodeficiency virus type 1 sequences are methylated in latently infected U937 cells.

Long-term human immunodeficiency virus type 1 (HIV-1) infection of the human monocytic cell line U937 resulted in a progressive loss of infectivity that was correlated with the accumulation of stable, extrachromosomal forms of viral DNA. Viral latency was also characterized by reduced levels of HIV-1 transcription. The structure and activity of extrachromosomal viral DNA (E-DNA) in a fully latent U937 cell line was investigated by molecular cloning and DNA transfection. The resulting 18-kb E-DNA clone was composed of an intact HIV-1 sequence flanked by 7 kb of host sequence to one side and 1 kb of host DNA to the other side. This configuration is the result of retroviral integration into a highly repetitive element of the Alu family. Transfection of the E-DNA clone resulted in the production of infectious virus, indicating that viral latency was not the result of mutations in the HIV-1 genome. Analysis of CCGG sites revealed extensive de novo methylation of viral sequences present within E-DNA. These results suggest that modification of extrachromosomal viral DNA sequences is a mechanism for HIV-1 latency in long-term infected U937 cells.

Base Sequence

Phylogenomic and Clinical Perspectives of an East Asia-Specific Cluster of Mycobacterium massiliense.

BACKGROUND: Mycobacterium abscessus subspecies massiliense (MAM) can form genetically related clusters through continuous within-host adaptations. RESEARCH QUESTION: What is the epidemiologic and clinical significance of the sequence type 120 (ST120) strain of MAM, an East Asia-specific cluster? STUDY DESIGN AND METHODS: Isolates were obtained from patients with MAM pulmonary disease at Seoul National University Hospital between October 1, 2019, and December 31, 2023. These isolates were analyzed using multilocus sequence typing and colony morphotyping and were evaluated for glycopeptidolipid biosynthesis-related gene deletions. Whole-genome sequencing was performed for phylogenomic and pangenome analyses, incorporating MAM genome data from public databases. Finally, the clinical course and treatment outcomes of patients infected with ST120 were evaluated. RESULTS: Among the isolates obtained from 136 patients, 50 isolates (36.8%) were classified as ST120. All ST120 isolates exhibited a rough colony morphotype and harbored deletions in glycopeptidolipid biosynthesis-related genes. From 796 global strains, ST120 was identified exclusively in the isolates obtained from South Korea (51/137 isolates [37.1%]), Japan (3/53 [5.7%]), and Taiwan (2/52 [3.8%]). Genomic analysis revealed the stepwise genetic evolution of ST120, suggesting transmission from Taiwan to Japan and from Japan to South Korea. The ST120 strains exhibited genetic mutations associated with virulence and structural alterations within the ESX system. Consequently, patients with ST120 strain infections had a higher prevalence of cavitary disease (23/50 [46%]) than those infected with non-ST120 strains (19/86 [22.1%]; P = .004). Among those who initiated treatment, the proportion of microbiological cure was lower in patients with ST120 infection (6/15 [40.0%]) than in those with non-ST120 infection (24/34 [70.6%]; P = .043). INTERPRETATION: Our results show that ST120, a strain predominantly found in South Korea, is characterized by the extensive loss of glycopeptidolipid biosynthesis-related genes and is associated with increased disease severity and worse treatment outcomes.

Humans

Biological activities of oligonucleotides spanning the F9 point mutation within the enhancer region of polyomavirus DNA.

A mutant of polyomavirus, F441, selected to grow in undifferentiated mouse F9 embryonal carcinoma cells, carries a single-base change in the enhancer region at nucleotide (nt) 5233 of the viral genome. Enhancers of most of the F9 mutants have a duplicated segment of viral DNA encompassing nt 5233. The minimum duplicated segment of all the known F9 mutants is from nt 5218 to nt 5239. We prepared oligonucleotides spanning the sequence from nt 5218 through nt 5239 of the genome of the wild type and F441 and examined the biological activities of the oligonucleotides by a transient assay of chloramphenicol acetyltransferase (CAT) gene expression in F9 cells. The oligonucleotide harboring the F441 mutation was shown to increase cat gene expression in F9 cells when linked at an upstream position in both orientations. When dimerized at an upstream position, the F441 oligonucleotide showed even higher cat gene expression enhancing activity. In contrast, no such effects were observed with the oligonucleotide of the wild-type sequence. In addition, the F441 oligonucleotide, but not the wild-type sequence, could inhibit the activity of whole enhancer fragment of F441 when cotransfected into F9 cells in excess amounts. On the basis of the results obtained, we suggest that the segment of F441 enhancer encompassing the point mutation contains a target for a cellular factor(s) which acts in a positive manner to increase the transcription of a gene in undifferentiated mouse F9 cells.

Base Sequence

Antigenic and structural properties of the hemagglutinin-neuraminidase glycoprotein of human parainfluenza virus type 3: sequence analysis of variants selected with monoclonal antibodies which inhibit infectivity, hemagglutination, and neuraminidase activities.

The hemagglutinin-neuraminidase (HN) gene sequence was determined for 16 antigenic variants of human parainfluenza virus type 3 (PIV3). The variants were selected by using monoclonal antibodies (MAbs) to the HN protein which inhibit neuraminidase, hemagglutination, or both activities. Each variant had a single-point mutation in the HN gene, coding for a single amino acid substitution in the HN protein. Operational and topographic maps of the HN protein correlated well with the relative positions of the substitutions. There was little correlation between the cross-reactivity of a MAb with the bovine PIV3 HN and the amount of amino acid homology between the human and bovine PIV3 HN proteins in the regions of the epitopes, suggesting that many of the epitopes are conformational in nature. Computer-assisted analysis of the HN protein predicted a secondary structure composed primarily of hydrophobic beta sheets interconnected by random hydrophilic coil structures. The HN epitopes were located in predicted coil regions. Epitopes recognized by MAbs which inhibit neuraminidase activity of the virus were located in a region which appears to be structurally conserved among several paramyxovirus HN proteins and which may represent the sialic cid-binding site of the HN molecule.

Amino Acid Sequence

Whole-Genome Analysis Reveals Antimicrobial Resistance and Population Structure of Environmental and Veterinary Acinetobacter baumannii.

Acinetobacter (A.) baumannii is an important multidrug-resistant pathogen increasingly recognized across animal and environmental settings, and carbapenem-resistant A. baumannii (CRAB) is classified as a critical-priority pathogen by the World Health Organization. This study investigated the antimicrobial resistance (AMR) and genomic characteristics of 122 A. baumannii isolates comprising 72 veterinary and 50 environmental isolates collected in Andhra Pradesh, India. Antimicrobial susceptibility testing, whole-genome sequencing (WGS), resistance and virulence gene profiling, multilocus sequence typing (MLST), core-genome analysis, single nucleotide polymorphism (SNP) phylogeny, and pan-genome analysis were performed. Overall, 58.2% of isolates were multidrug-resistant (MDR), and 41.8% were extensively drug-resistant (XDR). Sequence type (ST) 52 predominated among veterinary isolates, whereas ST2 was more frequent among environmental isolates. The presence of carbapenem-resistant isolates along with the ST2 lineage enhances the similarity to clinical A. baumannii. Several intrinsic resistance genes, including blaOXA-23, armA, aph(3&#x2033;)-Ib, aph(6)-Id, tet(B), mph(E), and msr(E), were more prevalent in the ST2-associated population. Virulence-associated determinants were widely conserved. Core-genome MLST (cgMLST) and core-genome SNP (cgSNP) analyses identified highly related isolates within both lineages, while pairwise SNP differences were 0-7. Pan-genome analysis identified 4204 gene clusters and distinct accessory gene patterns between ST2 and ST52. These findings indicate that resistance gene distribution was closely associated with lineage structure and support integrated genomic surveillance of A. baumannii across animal and environmental reservoirs.

Acinetobacter baumannii

Perinatal infection of human T-lymphotropic virus type I, the etiologic virus of adult T-cell leukemia/lymphoma. DNA amplification of specific human T-lymphotropic virus type I sequences.

A gene amplification technique, polymerase chain reaction, was used to detect human T-lymphotropic virus type I (HTLV-I), the etiologic agent of adult T-cell leukemia/lymphoma, in mononuclear cells in peripheral blood and breast milk of ten HTLV-I carrier gravida. The DNA in umbilical cord blood mononuclear cells of the neonates born to the HTLV-I carrier gravida were also amplified and examined for the possibility of HTLV-I infection via placenta during pregnancy. The HTLV-I sequences were detected both in the peripheral blood and milk of all ten carrier gravida by Southern blot analysis of amplified DNA. However, HTLV-I proviral DNA could not be detected in the cord blood of the carriers' neonates, indicating that transplacental infection of HTLV-I should be rare and that postpartum infection via breast milk is a likely major perinatal transmission route.

Antibodies, Neoplasm