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Featured researches published by Hiroya Ito.


Journal of Veterinary Medical Science | 2015

The genetic organization of the capsular polysaccharide biosynthesis region of Actinobacillus pleuropneumoniae serotype 14

Hiroya Ito

The genetic organization of the gene involved in the capsular polysaccharide (CPS) biosynthesis of Actinobacillus pleuropneumoniae serotype 14 has been determined. The DNA region for the CPS biosynthesis of serotype 14 (cps14) comprised 9 open reading frames, designated as cps14AB1B2B3CDEFG genes, encoding Cps14A to Cps14G protein, respectively. Cps14A was similar to CpsA of A. pleuropneumoniae serotypes 1, 4 and 12; the Cps14B1 and Cps14B2 were similar to CpsB of A. pleuropneumoniae serotypes 1, 4 and 12, suggesting that CPS structure of A. pleuropneumoniae serotype 14 would belong to Group I including A. pleuropneumoniae serotypes 1, 4, 12 and 15. Surprisingly, the overall nucleotide sequence, deduced amino acid sequence, and the genetic organization of the cps14 were nearly identical to those of Actinobacillus suis. This study will provide the molecular basic knowledge for development of diagnostics and vaccine of A. pleuropneumoniae serotype 14.


Journal of Veterinary Diagnostic Investigation | 2016

Nucleotide sequence analysis of a DNA region involved in capsular polysaccharide biosynthesis reveals the molecular basis of the nontypeability of two Actinobacillus pleuropneumoniae isolates

Hiroya Ito; Torata Ogawa; Dai Fukamizu; Yuiko Morinaga; Masahiro Kusumoto

The aim of our study was to reveal the molecular basis of the serologic nontypeability of 2 Actinobacillus pleuropneumoniae field isolates. Nine field strains of A. pleuropneumoniae, the causative agent of porcine pleuropneumonia, were isolated from pigs raised on the same farm and sent to our diagnostic laboratory for serotyping. Seven of the 9 strains were identified as serovar 15 strains by immunodiffusion tests. However, 2 strains, designated FH24-2 and FH24-5, could not be serotyped with antiserum prepared against serovars 1–15. Strain FH24-5 showed positive results in 2 serovar 15–specific PCR tests, whereas strain FH24-2 was only positive in 1 of the 2 PCR tests. The nucleotide sequence analysis of gene clusters involved in capsular polysaccharide biosynthesis of the 2 nontypeable strains revealed that both had been rendered nontypeable by the action of ISApl1, a transposable element of A. pleuropneumoniae belonging to the IS30 family. The results showed that ISApl1 of A. pleuropneumoniae can interfere with both the serologic and molecular typing methods, and that nucleotide sequence analysis across the capsular gene clusters is the best means of determining the cause of serologic nontypeability in A. pleuropneumoniae.


Journal of Veterinary Medical Science | 2014

Isolation of Atypical Genotype Actinobacillus pleuropneumoniae Serotype 6 in Japan

Hiroya Ito; Kiyohito Katsuragi; Shunsuke Akama; Hirofumi Yuzawa

ABSTRACT We describe here isolation of genetically atypical serotype 6 Actinobacillus pleuropneumoniae in Japan indistinguishable by the multiplex PCR that can discriminate between immunologically cross-reactive serotypes 3, 6 and 8. Nucleotide sequence analysis of capsular export and biosynthesis genes revealed that the atypical isolates have capsular polysaccharide export and synthesis gene sequences that are distinct from those of the serotype 6 reference strain. The atypical strains contain a sequence that is identical with both serotype 3- and 6-specific primers, which causes cross-reactions in multiplex PCR.


Journal of Veterinary Diagnostic Investigation | 2015

Isolation and genetic characterization of an Actinobacillus pleuropneumoniae serovar K12:O3 strain

Hiroya Ito; Atsuko Matsumoto

An atypical Actinobacillus pleuropneumoniae serovar 12 strain, termed QAS106, was isolated from a clinical case of porcine pleuropneumonia in Japan. An immunodiffusion (ID) test identified the strain as serovar 12. However, the ID test also demonstrated that strain QAS106 shared antigenic determinants with both the serovar 3 and 15 reference strains. Strain QAS106 was positive in the capsular serovar 12–specific polymerase chain reaction (PCR) assay, while the PCR toxin gene profiling and omlA PCR typing assays indicated that strain QAS106 was similar to serovar 3. The nucleotide sequence of the 16S ribosomal DNA (rDNA) of strain QAS106 was identical with that of serovars 3 and 12, but it showed 99.7% identity with that of serovar 15. Nucleotide sequence analysis revealed that genes involved in biosynthesis of the capsular polysaccharide (CPS) of strain QAS106 were identical to those of serovar 12 at the amino acid level. On the other hand, strain QAS106 would express putative proteins involved in the biosynthesis of lipopolysaccharide (LPS) O-polysaccharide (O-PS), the amino acid sequences of which were identical or nearly identical to those of serovars 3 and 15. In conclusion, strain QAS106 should be recognized as K12:O3, even though typical serovar 12 strains are K12:O12. The emergence of an atypical A. pleuropneumoniae serovar 12 strain expressing a rare combination of CPS and O-PS antigens would hamper precise serodiagnosis by the use of either CPS- or LPS-based serodiagnostic methodology alone.


Journal of Veterinary Diagnostic Investigation | 2018

Isolation and molecular characterization of a urease-negative Actinobacillus pleuropneumoniae mutant:

Hiroya Ito; Sayaka Takahashi; Tetsuo Asai; Yutaka Tamura; Koshi Yamamoto

An atypical urease-negative mutant of Actinobacillus pleuropneumoniae serovar 2 was isolated in Japan. Nucleotide sequence analysis of the urease gene cluster revealed that the insertion of a short DNA sequence into the cbiM gene was responsible for the urease-negative activity of the mutant. Veterinary diagnostic laboratories should be watchful for the presence of aberrant urease-negative A. pleuropneumoniae isolates.


Journal of Veterinary Medical Science | 2016

First isolation of Actinobacillus genomospecies 2 in Japan

Miyuki Murakami; Yoshimasa Shimonishi; Seiji Hobo; Hidekazu Niwa; Hiroya Ito

We describe here the first isolation of Actinobacillus genomospecies 2 in Japan. The isolate was found in a septicemic foal and characterized by phenotypic and genetic analyses, with the latter consisting of 16S rDNA nucleotide sequence analysis plus multilocus sequence analysis using three housekeeping genes, recN, rpoA and thdF, that have been proposed for use as a genomic tool in place of DNA-DNA hybridization.


Plasmid | 1993

Restriction Map of a Virulence-Associated Plasmid of Rhodococcus equi

Toru Kanno; Tamae Asawa; Hiroya Ito; Shinji Takai; Shiro Tsubaki; Tsutomu Sekizaki


Journal of Veterinary Medical Science | 2010

Development of a cps-Based Multiplex PCR for Typing of Actinobacillus pleuropneumoniae Serotypes 1,2 and 5

Hiroya Ito


Journal of Veterinary Medical Science | 1993

DNA sequence of type 1 fimbrin, Fpul1, gene from a chicken pathogenic Escherichia coli serotype O78.

Tsutomu Sekizaki; Hiroya Ito; Tamae Asawa; Isao Nonomura


Jarq-japan Agricultural Research Quarterly | 2003

Isolation of Salmonella strains from the aquatic environment and comparison with those of animal origin in Tan Phu Thanh village, Mekong Delta, Vietnam

Tran Thi Phan; Ly Thi Lien Khai; Chau Ba Loc; Hideki Hayashidani; Toshiya Sameshima; Takeshi Watanabe; Toshiaki Taniguchi; Hideki Kobayashi; Hiroya Ito; Masato Akiba

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Toshiya Sameshima

National Agriculture and Food Research Organization

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Hidekazu Niwa

Japan Racing Association

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Hideki Hayashidani

Tokyo University of Agriculture and Technology

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Koshi Yamamoto

Tokyo University of Agriculture

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Masahiro Kusumoto

National Agriculture and Food Research Organization

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Masato Akiba

Osaka Prefecture University

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Seiji Hobo

Japan Racing Association

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Shigeru Miyazaki

National Agriculture and Food Research Organization

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