Molecular Characterisation of Partial Structural Genes of Fowl Adenovirus Serotype 8b UPMT1901 Field Strain Isolate Associated with the Inclusion Body Hepatitis in Malaysia’s Commercial Broiler Chickens

IF 0.6 Q3 AGRICULTURE, MULTIDISCIPLINARY Pertanika Journal of Tropical Agricultural Science Pub Date : 2023-08-30 DOI:10.47836/pjtas.46.3.15
Bahiyah Azli, Nur Farhana Salim, A. Omar, M. Hair-Bejo, Norfitriah Mohamed Sohaimi, Nurulfiza Mat Isa
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Abstract

Fowl adenovirus (FAdV) is reported to pose a severe risk to the poultry industry, affecting food and nutrient security nationally and globally. FAdV is identified as the primary pathogen for inclusion body hepatitis (IBH) disease in avians during outbreaks in farms. Numerous interventions have been employed to reduce the chicken’s mortality rate in future outbreaks, such as local autogenous vaccine production that has yet to be successfully commercialised. Fibre and hexon protein are two out of the three major components of the adenoviral capsid, identified to contribute towards FAdV virulence. Hence, this study aims to determine the fibre and hexon gene molecular changes of a local isolate, FAdV UPMT1901, in Malaysia’s recent IBH outbreak and identify the evolutionary relationship with known FAdV strains. Propagation of FAdV UPMT1901 was performed in specific pathogen-free embryonated chicken prior to genomic extraction. The genes were amplified, and the retrieved nucleotide sequences were aligned with the published FAdV sequences. The phylogenetic tree analysis showed that UPMT1901 partial fibre and hexon genes are 99% similar to other known FAdV serotype 8b (FAdV-8b) species, especially the published Malaysian FAdV-8b isolates. Interestingly, the amino acid residue analysis further supported consistent residues amongst Malaysian isolates at fibre positions T176A, Q195H, D213E, S243T, A258V, F335Y, and F353V and hexon position T422M. These findings elucidate the structural proteins’ functional capacity and molecular diversity, specifically amongst Malaysian FAdV isolates and FAdV-8b, while contributing to global initiatives to establish biosecurity, such as a vaccine or antiviral production against future outbreaks.
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马来西亚商品肉鸡包涵体肝炎相关禽腺病毒血清型8b UPMT1901野株分离物部分结构基因的分子特征
据报道,家禽腺病毒(FAdV)对家禽业构成严重风险,影响全国和全球的食品和营养安全。在农场爆发期间,FAdV被确定为禽类包涵体肝炎(IBH)的主要病原体。在未来的疫情中,已经采取了许多干预措施来降低鸡的死亡率,例如尚未成功商业化的本地自体疫苗生产。纤维和六角蛋白是腺病毒衣壳的三个主要成分中的两个,被鉴定为有助于FAdV毒力。因此,本研究旨在确定在马来西亚最近爆发的IBH中,当地分离株FAdV UPMT1901的纤维和六角体基因分子变化,并确定与已知FAdV菌株的进化关系。在基因组提取之前,在无特定病原体的胚胎鸡中进行FAdV UPMT1901的繁殖。对基因进行扩增,并将检索到的核苷酸序列与已发表的FAdV序列进行比对。系统发育树分析表明,UPMT1901部分纤维和六角体基因与其他已知的FAdV血清型8b(FAdV-8b)物种,特别是已发表的马来西亚FAdV-8b分离株有99%的相似性。有趣的是,氨基酸残基分析进一步支持了马来西亚分离株在纤维位置T176A、Q195H、D213E、S243T、A258V、F335Y和F353V以及六角体位置T422M处的一致残基。这些发现阐明了结构蛋白的功能能力和分子多样性,特别是在马来西亚FAdV分离株和FAdV-8b中,同时有助于建立生物安全的全球举措,如针对未来疫情的疫苗或抗病毒生产。
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来源期刊
Pertanika Journal of Tropical Agricultural Science
Pertanika Journal of Tropical Agricultural Science Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.10
自引率
16.70%
发文量
64
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