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◆ Journal of biosciences2026-01-01

Decoding the diversity: a comprehensive sequence analysis of accessory viral protein W of Newcastle disease virus.

Pachineella Lakshmana Rao, Sangita Venkataraman, Devasmita Dutta, Bnagaraj Nayak, Saraswathy Vaidyanathan, Sandeep Kushwaha, Madhuri Subbiah

原始摘要(英文原文)· Original abstract
Newcastle disease virus (NDV) is an avian paramyxovirus that has a significant impact on the global poultry industry. The accessory W protein (W) of NDV is generated by RNA editing of the phosphoprotein (P) gene; however, its precise function remains elusive. Consequently, we conducted an in-silico analysis of the W sequences from 1,011 NDV strains, utilizing the data from GenBank. Our investigation revealed 24 W-length variants ranging between 135 and 231 amino acids (aa), with variant 227 aa being the most prevalent. Further, the W-length variants were distinct for class I and class II NDV strains. We observed no apparent correlation between W lengths and genotype or pathogenicity of NDV. However, a nuclear localization signal (NLS) in the W seemed to be associated with virulence, with 55.9% of virulent strains having an NLS, compared to 38.9% of avirulent strains. Geographical analysis indicated region-specific evolutionary factors, with Asia showing the most W diversity. The lengths of W were more specific to the bird species from which they were isolated/sequenced, suggesting possible adaptation to the host. Molecular clock analysis showed varied evolutionary rates among W types, with variant 185 aa evolving the fastest. Selection pressure analysis indicated that most types are under negative selection, but some presented signs of relaxed or positive selection. Our study provides a broad view of W diversity in NDV, highlighting its complex evolutionary history and possible implications for host adaptation and virulence.
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Decoding the diversity: a comprehensive sequence analysis of accessory viral protein W of Newcastle disease virus. — 科研速览 Science Skim