1.Molecular characterisation and histopathological analysis of canine distemper virus in a Malayan tiger (Panthera tigris jacksoni)
Muhammad Farris MOHD SADALI ; Abdul Razak MARIATULQABTIAH ; Annas SALLEH ; Nurul Izzati Uda ZAHLI ; Tengku Rinalfi Putra Tengku AZIZAN ; Hafandi AHMAD ; Mohd Arifin KADERI ; Khor Kuan HUA ; Ridhwan Abdul WAHAB ; Ahmad Lutfi ABDULLAH ; Millawati GANI ; Farina MUSTAFFA-KAMAL
Journal of Veterinary Science 2026;27(1):e4-
Objective:
This study aims to describe histological manifestations and characterise the CDV strain in the tiger to determine its molecular epidemiology and postulate viral pathogenicity.
Methods:
Histopathology characterisation of the infected tissues were performed through haematoxylin and eosin and immunohistochemistry staining, respectively. We conducted virus isolation and titration in Chinese hamster ovarian expressing the dog signalling lymphocytic activation molecule (CHO-SLAM) cells. Reverse transcription polymerase chain reaction was performed to confirm the presence of CDV RNA, nucleotide and amino acid sequence analyses for comprehensive characterisation of the CDV strain.
Results:
Notable histopathological changes were observed primarily in the brain, lung, liver, kidney, spleen, and stomach, with viral antigens localised in the lung, liver, kidney, and stomach tissues. CDV-induced cell cytopathic effects yielding 4.27 × 10 6 TCID 50 /mL were observed at 48 h post-inoculation in CHO-SLAM cells. Phylogenetic analysis suggested that the virus originated from the Asia-1 clade. Notably, 549H and 519I mutations in the hemagglutinin protein were observed, indicating adaptation to a non-canid wildlife species.
Conclusions
and Relevance: Overall, this study enhances our understanding of the molecular characterisation and evolutionary dynamics of the CDV strain present in the Malayan tiger and serves as a benchmark for developing effective preventative measures to protect Malayan tigers and mitigate their risk of extinction.
2.Gut microbial assessment among Hylobatidae at the National Wildlife Rescue Centre, Peninsular Malaysia
Roberta Chaya Tawie TINGGA ; Millawati GANI ; Abd Rahman MOHD-RIDWAN ; Nor Rahman AIFAT ; Ikki MATSUDA ; Badrul Munir MD-ZAIN
Journal of Veterinary Science 2024;25(5):e65-
Objective:
High-throughput sequencing based on 16S ribosomal RNA genes was used to determine the baseline gut bacterial composition and identify potential pathogenic bacteria among three endangered gibbons housed in the NWRC.
Methods:
Feces were collected from 14 individuals (Hylobates lar, n = 9; Hylobates agilis, n = 4; and Symphalangus syndactylus, n = 1) from March to November 2022. Amplicon sequencing were conducted by targeting V3–V4 region.
Results:
The fecal microbial community of the study gibbons was dominated by Bacteroidetes and Firmicutes (phylum level), Prevotellaceae and Lachnospiraceae/ Muribaculaceae (family level), and Prevotella (and its subgroups) (genera level). This trend suggests that the microbial community composition of the study gibbons differed insignificantly from previously reported conspecific or closely related gibbon species.
Conclusions
and Relevance: This study showed no serious health problems that require immediate attention. However, relatively low alpha diversity and few potential bacteria related to gastrointestinal diseases and streptococcal infections were detected. Information on microbial composition is essential as a guideline to sustain a healthy gut condition of captive gibbons in NWRC, especially before releasing this primate back into the wild or semiwild environment. Further enhanced husbandry environments in the NWRC are expected through continuous health monitoring and increase diversity of the gut microbiota through diet diversification.

Result Analysis
Print
Save
E-mail