1.Prevalence of Toxoplasma gondii in Dogs in Zhanjiang, Southern China.
Hai Hai JIANG ; Ming Wei LI ; Min Jun XU ; Wei CONG ; Xing Quan ZHU
The Korean Journal of Parasitology 2015;53(4):493-496
Toxoplasmosis, caused by Toxoplasma gondii, is a parasitic zoonosis with worldwide distribution. The present study investigated the prevalence of T. gondii in dogs in Zhanjiang city, southern China, using both serological and molecular detection. A total of 364 serum samples and 432 liver tissue samples were collected from the slaughter house between December 2012 and January 2013 and were examined for T. gondii IgG antibody by ELISA and T. gondii DNA by semi-nested PCR based on B1 gene, respectively. The overall seroprevalence of T. gondii IgG antibody was 51.9%, and T. gondii DNA was detected in 37 of 432 (8.6%) liver tissue samples. These positive DNA samples were analyzed by PCR-RFLP at 3'- and 5'-SAG2. Only 8 samples gave the PCR-RFLP data, and they were all classified as type I, which may suggest that the T. gondii isolates from dogs in Zhanjiang city may represent type I or type I variant. This study revealed the high prevalence of T. gondii infection in dogs in Zhanjiang city, southern China. Integrated measures should be taken to prevent and control toxoplasmosis in dogs in this area for public health concern.
Animals
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Antibodies, Protozoan/blood
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China/epidemiology
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Dog Diseases/epidemiology/*parasitology
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Dogs
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Female
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Genotype
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Liver/parasitology
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Male
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Toxoplasma/classification/genetics/immunology/*isolation & purification
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Toxoplasmosis, Animal/blood/epidemiology/*parasitology
2.Sequence Variation in Superoxide Dismutase Gene of Toxoplasma gondii among Various Isolates from Different Hosts and Geographical Regions.
Shuai WANG ; Aiping CAO ; Xun LI ; Qunli ZHAO ; Yuan LIU ; Hua CONG ; Shenyi HE ; Huaiyu ZHOU
The Korean Journal of Parasitology 2015;53(3):253-258
Toxoplasma gondii, an obligate intracellular protozoan parasite of the phylum Apicomplexa, can infect all warm-blooded vertebrates, including humans, livestock, and marine mammals. The aim of this study was to investigate whether superoxide dismutase (SOD) of T. gondii can be used as a new marker for genetic study or a potential vaccine candidate. The partial genome region of the SOD gene was amplified and sequenced from 10 different T. gondii isolates from different parts of the world, and all the sequences were examined by PCR-RFLP, sequence analysis, and phylogenetic reconstruction. The results showed that partial SOD gene sequences ranged from 1,702 bp to 1,712 bp and A + T contents varied from 50.1% to 51.1% among all examined isolates. Sequence alignment analysis identified total 43 variable nucleotide positions, and these results showed that 97.5% sequence similarity of SOD gene among all examined isolates. Phylogenetic analysis revealed that these SOD sequences were not an effective molecular marker for differential identification of T. gondii strains. The research demonstrated existence of low sequence variation in the SOD gene among T. gondii strains of different genotypes from different hosts and geographical regions.
Amino Acid Sequence
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Animals
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Base Sequence
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Cats
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*Genetic Variation
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Goats
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Humans
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Molecular Sequence Data
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Phylogeny
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Protozoan Proteins/chemistry/*genetics/metabolism
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Sequence Alignment
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Sheep
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Superoxide Dismutase/chemistry/*genetics/metabolism
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Toxoplasma/classification/*enzymology/genetics/isolation & purification
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Toxoplasmosis/*parasitology
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Toxoplasmosis, Animal/*parasitology
3.Genetic Diversity of Toxoplasma gondii Strains from Different Hosts and Geographical Regions by Sequence Analysis of GRA20 Gene.
Hong Rui NING ; Si Yang HUANG ; Jin Lei WANG ; Qian Ming XU ; Xing Quan ZHU
The Korean Journal of Parasitology 2015;53(3):345-348
Toxoplasma gondii is a eukaryotic parasite of the phylum Apicomplexa, which infects all warm-blood animals, including humans. In the present study, we examined sequence variation in dense granule 20 (GRA20) genes among T. gondii isolates collected from different hosts and geographical regions worldwide. The complete GRA20 genes were amplified from 16 T. gondii isolates using PCR, sequence were analyzed, and phylogenetic reconstruction was analyzed by maximum parsimony (MP) and maximum likelihood (ML) methods. The results showed that the complete GRA20 gene sequence was 1,586 bp in length among all the isolates used in this study, and the sequence variations in nucleotides were 0-7.9% among all strains. However, removing the type III strains (CTG, VEG), the sequence variations became very low, only 0-0.7%. These results indicated that the GRA20 sequence in type III was more divergence. Phylogenetic analysis of GRA20 sequences using MP and ML methods can differentiate 2 major clonal lineage types (type I and type III) into their respective clusters, indicating the GRA20 gene may represent a novel genetic marker for intraspecific phylogenetic analyses of T. gondii.
Animals
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Base Sequence
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Brazil
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China
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Deer
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*Genetic Variation
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Genotype
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Goats
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Humans
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Molecular Sequence Data
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Phylogeny
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Protozoan Proteins/*genetics/metabolism
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Sheep
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Swine
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Toxoplasma/classification/*genetics/isolation & purification/parasitology/physiology
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Toxoplasmosis/*parasitology
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Toxoplasmosis, Animal/*parasitology
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United States
4.Genotyping of a Korean isolate of Toxoplasma gondii by multilocus PCR-RFLP and microsatellite analysis.
Juan Hua QUAN ; Tae Yun KIM ; In Uk CHOI ; Young Ha LEE
The Korean Journal of Parasitology 2008;46(2):105-108
Although the Korean isolate KI-1 of Toxoplasma gondii has been considered to be a virulent type I lineage because of its virulent clinical manifestations, its genotype is unclear. In the present study, genotyping of the KI-1 was performed by multilocus PCR-RFLP and microsatellite sequencing. For 9 genetic markers (c22-8, c29-2, L358, PK1, SAG2, SAG3, GRA6, BTUB, and Apico), the KI-1 and RH strains exhibited typical PCR-RFLP patterns identical to the type I strains. DNA sequencing of tandem repeats in 5 microsatellite markers (B17, B18, TUB2, W35, and TgM-A) of the KI-1 also revealed patterns characteristic of the type I. These results provide strong genetic evidence that KI-1 is a type I lineage of T. gondii.
Animals
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Base Sequence
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Cell Line
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DNA, Protozoan/genetics
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Genotype
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Korea
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Mice
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*Microsatellite Repeats
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Molecular Sequence Data
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Polymerase Chain Reaction
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*Polymorphism, Restriction Fragment Length
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Sequence Alignment
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Toxoplasma/classification/*genetics/*isolation & purification
5.Isolation and Genotyping of Toxoplasma gondii Strains in Ovine Aborted Fetuses in Khorasan Razavi Province, Iran.
Leila DANEHCHIN ; Gholamreza RAZMI ; Abolghasem NAGHIBI
The Korean Journal of Parasitology 2016;54(1):15-20
Toxoplasmosis is an important zoonotic disease that can cause abortion in humans and animals. The aim of this study was isolation and subsequent genotyping of Toxoplasma gondii isolates in ovine aborted fetuses. During 2012-2013, 39 ovine aborted fetuses were collected from sheep flocks in Khorasan Razavi Province, Iran. The brain samples were screened for detection of the parasite DNA by nested PCR. The positive brain samples were bioassayed in Webster Swiss mice. The serum samples of mice were examined for T. gondii antibodies by IFAT at 6 weeks post inoculation, and T. gondii cysts were searched in brain tissue samples of seropositive mice. The positive samples were genotyped by using a PCR-RLFP method. Subsequently, GRA6 sequences of isolates were analyzed using a phylogenetic method. The results revealed that T. gondii DNA was detected in 54% (20/37, 95% CI 38.4-69.0%) brain samples of ovine aborted fetuses. In bioassay of mice, only 2 samples were virulent and the mice were killed at 30 days post inoculation, while the others were non-virulent to mice. The size of cysts ranged 7-22 µm. Complete genotyping data for GRA6 locus were observed in 5 of the 20 samples. PCR-RLFP results and phylogenetic analysis revealed that all of the isolated samples were closely related to type I. For the first time, we could genotype and report T. gondii isolates from ovine aborted fetuses in Khorasan Razavi Province, Iran. The results indicate that the T. gondii isolates are genetically related to type I, although most of them were non-virulent for mice.
Aborted Fetus/*parasitology
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Animals
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Brain/parasitology
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Genotype
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Iran
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Mice
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Phylogeny
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Polymerase Chain Reaction
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Polymorphism, Restriction Fragment Length
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Sheep
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Sheep Diseases/*parasitology
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Toxoplasma/classification/*genetics/*isolation & purification/pathogenicity
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Toxoplasmosis, Animal/*parasitology
6.Prevalence and Genetic Characterization of Toxoplasma gondii in Pet Dogs in Central China.
Wei Feng QIAN ; Wen Chao YAN ; Tian Qi WANG ; Kai ZHAI ; Li Fang HAN ; Chao Chao LV
The Korean Journal of Parasitology 2015;53(1):125-128
The prevalence and genotype of Toxoplasma gondii infection in dogs in Henan Province, Central China was investigated. A total of 125 blood samples were collected from pet dogs during April to June 2013, and all samples were examined by indirect hemagglutination antibody test (IHA) and nested PCR. The overall T. gondii prevalence in pet dogs was 24.0% (30/125), with 20.8% (26/125) in IHA and 10.4% (13/125) in PCR, respectively. No statistical associations were found between animal gender and age and the prevalence of T. gondii infection. Thirteen positive DNA samples were genotyped using 11 PCR-RFLP markers, including SAG1, (3'+5') SAG2, alt.SAG2, SAG3, BTUB, GRA6, c22-8, c29-2, L358, PK1, and Apico. Of these, only 2 samples were genotyped with complete data for all loci, and a novel genotype (type III at SAG3 and GRA6 loci, and type I at other loci) was identified. This is the first report of genetic characterization of T. gondii infection in dogs in China.
Animals
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China/epidemiology
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Dog Diseases/*epidemiology/*parasitology
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Dogs
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Genotype
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Hemagglutination Tests
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Pets
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Polymerase Chain Reaction
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Polymorphism, Restriction Fragment Length
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Prevalence
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Toxoplasma/*classification/genetics/*isolation & purification
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Toxoplasmosis, Animal/*epidemiology/*parasitology
7.Prevalence and Genetic Characterization of Toxoplasma gondii in Pet Dogs in Central China.
Wei Feng QIAN ; Wen Chao YAN ; Tian Qi WANG ; Kai ZHAI ; Li Fang HAN ; Chao Chao LV
The Korean Journal of Parasitology 2015;53(1):125-128
The prevalence and genotype of Toxoplasma gondii infection in dogs in Henan Province, Central China was investigated. A total of 125 blood samples were collected from pet dogs during April to June 2013, and all samples were examined by indirect hemagglutination antibody test (IHA) and nested PCR. The overall T. gondii prevalence in pet dogs was 24.0% (30/125), with 20.8% (26/125) in IHA and 10.4% (13/125) in PCR, respectively. No statistical associations were found between animal gender and age and the prevalence of T. gondii infection. Thirteen positive DNA samples were genotyped using 11 PCR-RFLP markers, including SAG1, (3'+5') SAG2, alt.SAG2, SAG3, BTUB, GRA6, c22-8, c29-2, L358, PK1, and Apico. Of these, only 2 samples were genotyped with complete data for all loci, and a novel genotype (type III at SAG3 and GRA6 loci, and type I at other loci) was identified. This is the first report of genetic characterization of T. gondii infection in dogs in China.
Animals
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China/epidemiology
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Dog Diseases/*epidemiology/*parasitology
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Dogs
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Genotype
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Hemagglutination Tests
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Pets
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Polymerase Chain Reaction
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Polymorphism, Restriction Fragment Length
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Prevalence
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Toxoplasma/*classification/genetics/*isolation & purification
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Toxoplasmosis, Animal/*epidemiology/*parasitology
8.Genotyping of Toxoplasma gondii from Rats (Rattus rattus) in Riyadh, Saudi Arabia.
The Korean Journal of Parasitology 2014;52(3):257-261
Toxoplasma 3 main clonal lineages are designated as type I, II, and III; however, atypical and mixed genotypes were also reported. This study was conducted for detection of Toxoplasma gondii genotypes in rats (Rattus rattus) in Riyadh region, Saudi Arabia. PCR test on T. gondii B1 gene was conducted on ELISA IgM positive samples for confirmation of the infection. However, genetic analysis of the SAG2 locus was performed to determine T. gondii genotypes using PCR-RFLP technique. PCR test on T. gondii B1gene showed that 22 (81.5%) out of the 27 ELISA IgM positive samples have T. gondii DNA. Genotypic analysis shows that, of the total 22 PCR positive samples, only 13 (59.1%) were of type II, 7 (31.8%) were of type III, and 2 (9.1%) were of an unknown genotype. It is obvious that the prevalence of both type II and III is high in rats. No reports have been available on T. gondii genotypes among rats in Riyadh region, and only little is known about its seroprevalence in rats. Future studies on T. gondii genotypes in rats using multi-locus markers is needed in Riyadh region, Saudi Arabia for better understanding of T. gondii pathogenesis and treatment in humans and animals.
Animals
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Genotype
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*Genotyping Techniques
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Molecular Epidemiology
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Polymerase Chain Reaction
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Polymorphism, Restriction Fragment Length
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Prevalence
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Rats
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Rodent Diseases/epidemiology/*parasitology
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Saudi Arabia/epidemiology
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Toxoplasma/*classification/*genetics/isolation & purification
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Toxoplasmosis, Animal/epidemiology/*parasitology
9.Genotype of Toxoplasma gondii from Blood of Stray Cats in Gyeonggi-do, Korea.
Hye Youn KIM ; Yun Ah KIM ; Ho Sa LEE ; Ho Gun RHIE ; Shin Hyeong CHO ; Jae Ran YU ; Sang Eun LEE
The Korean Journal of Parasitology 2009;47(4):413-415
Genotyping of Toxoplasma gondii has been performed in 23 PCR positive blood samples from stray cats in Korea. We used 2 separate PCR-restriction fragment length polymorphism (RFLP) patterns of SAG2 gene, amplifying the 5'and 3'ends of the locus. The results revealed that all samples belonged to the type I clonal lineage. Although T. gondii organisms were not isolated from the samples, the results of the present study represent that stray cats with T. gondii infection should be seriously concerned in our environment. Adequate and continuous control programs of stray cats are needed to reduce the risk of transmission of T. gondii as a zoonotic infection threatening the public health.
Animals
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Antigens, Protozoan/genetics
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Blood/*parasitology
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Cat Diseases/*parasitology
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Cats
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Cluster Analysis
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DNA Fingerprinting/methods
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DNA, Protozoan/genetics/isolation & purification
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Genotype
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Korea
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Polymerase Chain Reaction/methods
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Polymorphism, Restriction Fragment Length
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Protozoan Proteins/genetics
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Toxoplasma/*classification/*genetics/isolation & purification
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Toxoplasmosis, Animal/*parasitology
10.Sequence Diversity in MIC6 Gene among Toxoplasma gondii Isolates from Different Hosts and Geographical Locations.
Zhong Yuan LI ; Hui Qun SONG ; Jia CHEN ; Xing Quan ZHU
The Korean Journal of Parasitology 2015;53(3):341-344
Toxoplasma gondii is an opportunistic protozoan parasite that can infect almost all warm-blooded animals including humans with a worldwide distribution. Micronemes play an important role in invasion process of T. gondii, associated with the attachment, motility, and host cell recognition. In this research, sequence diversity in microneme protein 6 (MIC6) gene among 16 T. gondii isolates from different hosts and geographical regions and 1 reference strain was examined. The results showed that the sequence of all the examined T. gondii strains was 1,050 bp in length, and their A + T content was between 45.7% and 46.1%. Sequence analysis presented 33 nucleotide mutation positions (0-1.1%), resulting in 23 amino acid substitutions (0-2.3%) aligned with T. gondii RH strain. Moreover, T. gondii strains representing the 3 classical genotypes (Type I, II, and III) were separated into different clusters based on the locus of MIC6 using phylogenetic analyses by Bayesian inference (BI), maximum parsimony (MP), and maximum likelihood (ML), but T. gondii strains belonging to ToxoDB #9 were separated into different clusters. Our results suggested that MIC6 gene is not a suitable marker for T. gondii population genetic studies.
Amino Acid Sequence
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Animals
;
Base Sequence
;
Cats
;
Cell Adhesion Molecules/chemistry/*genetics/metabolism
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Deer
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*Genetic Variation
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Genotype
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Goats
;
Humans
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Molecular Sequence Data
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Phylogeny
;
Protozoan Proteins/chemistry/*genetics/metabolism
;
Sequence Alignment
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Sheep
;
Swine
;
Toxoplasma/classification/*genetics/isolation & purification/physiology
;
Toxoplasmosis/*parasitology
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Toxoplasmosis, Animal/*parasitology