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Sengar, G. S.

Publications and source records attributed to Sengar, G. S..

3 recordsLinked to original sources

Characterization of B646L (p72) gene and the resistance pattern of African swine fever Virus tolerant to indigenous Doom Pig breeds of India

African Swine Fever (ASF) has affected all pig breeds in North-East India since 2020, except Doom pigs, a unique indigenous breed from Assam and the closest progenitor to Indian wild pigs, resulting in significant economic losses for pig farmers in the region. Based on the complete sequences of the B646L (p72) gene, it has been determined that the virus responsible for the outbreak is ASFV genotype II. The further characterization of three complete sequences of the B646L (p72) gene established 100% identical with other existing sequences of different parts of the world as well as confirmed that there is no co-circulation of different genotypes of ASFV in India except genotype II. Present studies also corroborate that MYD88, LDHB and IFIT1 were important genes of the immune system involved in the pathogenesis of ASFV. The differential expression patterns of these genes in ASFV-infected survived, and healthy Doom breed pigs, compared to healthy control pigs, were studied to distinguish the expression pattern at different stages. The hardiness and ability of the Doom pig to withstand common pig diseases, along with its genetic resemblance to wild pigs, make it an ideal candidate for studying tolerance to ASFV infection. So, the present study investigates the natural resistance to ASF in Doom pigs from an endemic area in North-East India to support the proposition that Doom pigs can co-exist with virulent ASFVs recently break in North-East India. The results of this study also provide important molecular insights into the regulation of the ASFV-tolerant gene. ImportanceStudying the natural resistance to African Swine Fever (ASF) in Doom pigs from North-East India holds crucial importance. ASF has inflicted significant economic losses on pig farmers in the region, necessitating the identification and comprehension of factors contributing to resistance and tolerance in specific pig breeds such as Doom pigs. Understanding the molecular mechanisms and genetic factors associated with ASFV tolerance could help in breeding programs and the selection of resilient pig breeds, ultimately aiding in disease control efforts.

microbiology↗

Incidences of Helicobacter infection in pigs and tracing occupational hazard in pig farmers

Helicobacter species (H. sp.) is a gram-negative spiral-shaped motile bacteria that causes gastritis in pigs and also colonizes the human stomach. The current study seeks to assess the prevalence of various H. sp. in the gastric mucosa of slaughtered and dead pigs, as well as the prevalence of Helicobacter infection among pig farmers. A total of 403 stomach samples from various pig slaughter points, 74 necropsy samples from various pig farms and 97 stool samples from pig farmers were collected from Assam, India. Among 477 pig stomach samples tested, 214 samples with gastritis (20.09%) showed Gram negative, spiral-shaped organisms in brush cytology from the mucosal surface, and the rest of the 263 stomach samples without any gastric lesion showed only 3.04% Gram negative, spiral-shaped organisms. In ultrastructure investigation, Scanning Electron Microscopy (SEM) of the four urease positive stomach samples revealed a tightly coiled Helicobacter bacterium (spiral-shaped) found in the mucous lining of the stomach. In histopathological examination of pars esophagia, cardiac and fundic mucosa showed chronic gastritis associated with hemorrhagic necrosis, leucocytic infiltration with neutrophils and macrophages, and lymphoid aggregates (lymphoid follicles) etc. PCR confirmed 16S rRNA genes of Helicobacter suis (H. suis) where a total of 42 (19.63%) out of 214 pig stomach samples and 2 (2.08%) out of 96 stool samples of pig farmers were found positive for H. suis. of these 96 stool samples of pig farmers 3 (3.12%) were confirmed positive for Helicobacter pylori (H. pylori) Phosphoglucosamine mutase gene in PCR. Phylogenic analysis of the 16S rRNA gene of H. suis showed distinct clusters with other H. sp. In conclusion, this study provides evidence for the prevalence of Helicobacter both in pig gastric mucosa and human stool. The findings highlight the need for improved sanitation and hygiene practices among pig farmers to minimize the risk of Helicobacter infection in humans.

microbiology↗

Detection and Whole Genome of Japanese Encephalitis Virus Genotype III strains isolated from Indian Pig and Mosquito vector

Japanese encephalitis virus(JEV) are globally prevalent as deadly pathogens in human and animals including pig, horse and cattle. Japanese encephalitis (JE) still remains as an important cause of epidemic encephalitis worldwide and exists in a zoonotic transmission cycle. Assam is one of the highly endemic state for JE in India. In the present study, to understand the epidemiological status of JE circulating in pigs and mosquito particularly in Assam, India, molecular detection of JEV and the complete genome sequencing of the JEV isolates from pig and mosquito were done. The complete genome analysis of two JEV isolates from pig and mosquito were revealed7 and 21 numbers of unique points polymorphism of nucleotide during alignment of the sequences with other available sequences, respectively. Phylogenetic analysis revealed that the isolates of present investigation were belongs to genotype III and closely related with the strains of neighbouring country China. This study represents the transboundary nature of the JEV genotype III circulation and maintained the same genotype through mosquito-swine transmission cycles.

genomics↗