Publications by authors named "Min Tao Wan"

Microbial communities are considered to be functionally redundant, but few studies have tested this hypothesis empirically. In this study, we performed an in situ reciprocal transplant experiment on the surface and bottom waters of two lakes (Tsuei-Feng (T) and Yuan-Yang (Y)) with disparate trophic states and tracked changes in their microbial community composition and functions for 6 weeks using high-throughput sequencing and functional approaches. T lake's surface (Ts) and bottom (Tb) water active bacterial community (16S rRNA gene-transcript) was dominated by Actinobacteria, Bacteroidia, and Cyanobacteria, whereas Y lake's surface (Ys) and bottom (Yb) water had Gammaproteobacteria, Alphaproteobacteria, and Bacteroidia as the dominant classes.

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retains many conserved homologous domains with , which is a food-borne and water-borne diarrhea-causing bacterium. Studies of antimicrobial resistance in showed that this microbe is more prone to acquire resistance than other bacteria in the genus However, little is known about the seasonal population distribution and antimicrobial resistance patterns of in natural water environments. The aims of the study were: (1) to investigate the occurrence of isolates in a subtropical watershed and reconstruct the population structure and (2) to analyze the antibacterial resistance patterns of the identified isolates according to ERIC type.

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Very few studies have attempted to profile the microbial communities in the air above freshwater bodies, such as lakes, even though freshwater sources are an important part of aquatic ecosystems and airborne bacteria are the most dispersible microorganisms on earth. In the present study, we investigated microbial communities in the waters of two high mountain sub-alpine montane lakes-located 21 km apart and with disparate trophic characteristics-and the air above them. Although bacteria in the lakes had locational differences, their community compositions remained constant over time.

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This study aimed to investigate the presence of arginine catabolic mobile element (ACME) and its associated molecular characteristics in methicillin-resistant Staphylococcus pseudintermedius (MRSP). Among the 72 S. pseudintermedius recovered from various infection sites of dogs and cats, 52 (72.

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Class 1 integrons are mobile gene elements (MGEs) containing qacEΔ1 that are resistant to quaternary ammonium compound (QAC) disinfectants. This study compared the abundances of class 1 integrons and antiseptic resistance genes in municipal (M) and swine slaughterhouse (S) wastewater treatment plants (WWTPs) and investigated the presence of class 1 integrons and antiseptic resistance genes in methicillin-resistant Staphylococcus aureus (MRSA) isolated from wastewater samples. The abundances of intI1 and qacEΔ1 genes in 96 wastewater samples were quantified using real-time quantitative polymerase chain reaction (real-time qPCR), and 113 MRSA isolates recovered from the wastewater samples were detected class 1 integrons and linked antiseptic resistance genes (qacEΔ1), and minimum inhibitory concentrations (MICs) for QAC antiseptics.

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Methicillin-resistant Staphylococcus aureus (MRSA) is a potential zoonotic agent. Municipal wastewater treatment plants (WWTPs) can be reservoirs for MRSA dissemination. It is unclear, however, whether MRSA and its β-lactam resistance gene (mecA) can be spread from WWTPs that treat the wastewater of swine auction markets.

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Piggery-associated methicillin-resistant Staphylococcus aureus (MRSA) is a potential zoonotic pathogen. We constructed the population structure and dynamics of staphylococcal chromosome cassette mec (SCCmec) in MRSA ST9 isolates from different geographical areas of Taiwan. A total of 140 MRSA (135 piggery and 5 human clinical) isolates from three populations located in western Taiwan (n=96 including the 5 clinical isolates), central eastern Taiwan (n=22), and Penghu Island (n=22) were collected and characterized by analysis of the mec-associated direct repeat unit (dru).

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Livestock-associated methicillin-resistant Staphylococcus aureus (LA-MRSA) sequence type 9 (ST9) is a potential source of zoonotic infection for humans. In this study, we investigated and compared the virulence profiles of MRSA ST9 isolates from healthy swine and human clinical origins. A total of 152 MRSA ST9 isolates, including 147 LA-MRSA isolates and 5 human clinical isolates, were studied for the accessory gene regulator (agr) and 20 enterotoxin genes (se), exfoliatoxin gene, and tst gene.

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Livestock-associated methicillin-resistant Staphylococcus aureus (LA-MRSA) is an emerging public health threat. The aims of this study were to identify nasal carriage of MRSA in finishing pigs from different geographical areas of Taiwan and to compare the genetic features of LA-MRSA with other countries. A total of 299 swine nasal samples were collected from 11 counties in western Taiwan with 220 identified MRSA isolates characterized by spa, SCCmec, MLST, pulsed-field gel electrophoresis (PFGE), antibiogram, and Panton-Valentine leukocidin (PVL) toxin genes.

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Enteroviruses can be introduced into the water environment as a result of human activity. Contaminations within hot tubs, spas and public baths are also possible. We investigated the distribution of enteroviruses at six hot spring recreation areas throughout Taiwan.

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Most enteroviruses excreted in human feces and urine are present in environmental water. In order to clarify the infection route of enterovirus, the detection of viruses in both clinical and environmental samples may contribute to understanding the mode of transmission of strains responsible for human infection. Thus, 21 epidemic enterovirus 71 strains from environmental water or stool samples were collected from HFMD children during 2005.

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Legionella is a bacterium ubiquitous to aquatic environments. Within the genus a few species are recognized as opportunistic potential human pathogens, especially the species Legionella pneumophila, which causes pneumonia legionellosis. Outbreaks of legionellosis are frequently reported by hotel guests and hospital patients, and are spread through inhaled aerosols of contaminated institutional water systems.

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The performance of six concentration method combinations and two quantitative analysis techniques were evaluated in terms of enterovirus recovery efficiencies by adjusting the pH and salt concentration of water samples. Of the six concentration method combinations, adsorption on nitrocellulose membranes followed by an acid rinse elution consistently gave the highest recovery efficiencies. In theory, an electropositive membrane should be the most appropriate technique for adsorption of electronegative viruses in pure water.

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The flow cytometry (FC) has been used to detect Giardia cysts and Cryptosporidium oocysts quantitatively and instantaneously in this study. The experimental results showed that FC is potential to become a more precise method for the detection of Giardia and Cryptosporidium in water. This study also evaluated the staining efficiencies for three commercial antibodies.

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