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Sahoo, N.

Publications and source records attributed to Sahoo, N..

2 recordsLinked to original sources

Clostridium novyi type B causes fatal hemorrhagic disease in wild Asian elephants

The population of Asian elephants, an endangered species, is decreasing significantly due to anthropogenic interference in India. Research on Asian elephant disease is largely confined to observations reported from captive populations. The present study explored 11 disease investigation cases whose clinicopathological changes were similar to those of fatal hemorrhagic disease caused by Bacillus anthracis. We used molecular diagnostic approaches such as PCR (polymerase chain reaction), quantitative PCR, 16S metagenomics analysis and whole-metagenome sequencing for identification of the etiological agent responsible for these wild elephant mortalities. 16S metagenomics analysis revealed the presence of Clostridium hemolyticum as the dominant bacteria in all the mortality events. In contrast, flagellin gene-specific identification of all the samples and whole metagenomics analysis of blood samples collected from the ear pinna of a freshly deceased elephant revealed Clostridium novyi type B as the sole pathogenic agent responsible for the death of elephants. This study provides the first evidence of the involvement of Clostridium novyi type B in the death of wild elephants with similar clinical manifestations to anthrax. The current study also provides ample evidence of the need to explore investigations of emerging diseases of wild elephants to conserve these large mammals.

microbiology↗

First complete genome characterization of an Indian pigeon pox virus directly from a clinical sample

Avian pox disease is a highly contagious infection caused by pox virus and has serious consequences on avian species with regards to economic and conservation aspects. This viral genus named as Avipox virus (APV) that infects nearly 300 bird species and lack of enough complete genome information creates hindrance to infer this virus biology. Thus in this study, we have revealed the first complete genome of an Indian pigeon pox virus that belongs to the genus APV followed by comparative genomics analysis. The entire genome of present isolate (PPV/Pur-Od-4b/01/Ind) having 280058 bp nucleotide sequences with the GC content 29.51%. The unique feature of this complete genome revealed the presence of 270 open reading frames (ORFs) circumscribed by inverted terminal repeats (ITRs) of 4,689 bp at each end and lack of recombination events. The concatenated amino acid phylogenetic tree deciphered the present isolate closely related with Feral Pigeon pox virus derived from Africa. The molecular markers, such as microsatellites were ubiquitously distributed throughout the genome and more prevalent within the functional genes.

evolutionary biology↗