Detection and differentiation of yellow head complex viruses using monoclonal antibodies
Chumporn Soowannayan1, Timothy W Flegel, Paisarn Sithigorngul
1National Center for Genetic Engineering and Biotechnology, and Centex Shrimp Chalermprakiat Building, Faculty of Science, Mahidol University, Rama 6 Road, Bangkok 10400, Thailand.
Abstract:
Three monoclonal antibodies (MAbs) raised against pathogenic yellow head virus (YHV) from Thailand were tested against tissues of shrimp from Thailand, Australia, Ecuador and India that were purported to be infected with yellow head complex viruses. MAbs V-3-2B and Y-18 were specific to gp116 and gp64 envelope proteins, respectively, while Y-19 was specific to a 20 kDa putative nucleoprotein p20. As a preliminary step, the site of reactivity of the 3 MAbs in YHV was determined by immuno-electron microscopy using ultra-thin sections of YHV-infected shrimp tissue and negatively stained, semi-purified YHV particles. As expected, MAb Y-19 reacted with viral nucleocapsids in ultra-thin sections but not with negatively stained, whole virions; MAb V-3-2B did react with negatively stained, whole virions, but not with virions or nucleocapsids in ultra-thin sections. Unexpectedly, MAb Y-18 did not react with whole or sectioned virions. By immunohistochemistry, MAbs Y-19 and Y-18 reacted with Penaeus monodon tissues infected with either YHV or with gill-associated virus (GAV) from Australia, while MAb V-3-2B reacted with YHV only. In addition, all the YHV and GAV tissue samples gave positive in situ hybridization reactions with a cDNA probe specific to the ORF1b gene of YHV. They also gave expected differential RT-PCR results for YHV and GAV. By contrast, 2 natural Thai shrimp specimens with no gross signs of disease gave similar immunohistochemical reactions and RT-PCR reactions to GAV. However, sequencing of their RT-PCR products showed that they shared 92.7% identity with GAV, but only 79.0% identity with YHV. Although specimens from Ecuador and India displayed histopathology suggestive of YHV infection, they gave negative immunohistochemical reactions with all 3 Mabs, and negative in situ hybridization results. Additional work is required to determine whether a virus from the yellow head complex was responsible for their observed histopathology. These data show that the 3 YHV MAbs could be used in diagnostic situations to differentiate some viruses in the yellow head virus complex.
Insights
Three monoclonal antibodies (MAbs) can differentiate viruses within the yellow head virus complex in shrimp. These antibodies show specific reactivity, aiding in the diagnosis of viral diseases affecting shrimp populations globally.
Area of Science:
- Aquaculture
- Virology
- Immunology
Background:
- Yellow head virus (YHV) is a significant pathogen impacting shrimp aquaculture globally.
- The yellow head virus complex includes related viruses, complicating accurate diagnosis.
- Monoclonal antibodies (MAbs) are crucial tools for specific viral detection.
Purpose of the Study:
- To evaluate three MAbs against pathogenic YHV for their diagnostic potential.
- To determine the reactivity of MAbs with different YHV proteins and viral structures.
- To assess the utility of these MAbs in differentiating YHV from other viruses in the yellow head complex.
Main Methods:
- Immunoelectron microscopy was used to determine MAb binding sites on YHV particles.
- Immunohistochemistry was applied to infected shrimp tissues from various geographical locations.
- In situ hybridization and RT-PCR were employed for viral detection and differentiation.
Main Results:
- MAbs V-3-2B, Y-18, and Y-19 recognized different YHV components (gp116, gp64, and p20, respectively).
- MAbs Y-19 and Y-18 cross-reacted with Gill-Associated Virus (GAV), while MAb V-3-2B was specific to YHV.
- Thai shrimp with GAV-like symptoms showed high sequence identity to GAV, distinct from YHV.
- Shrimp from Ecuador and India with suspected YHV infection were negative for all tested MAbs and probes.
Conclusions:
- The developed MAbs show promise for differentiating YHV and GAV in diagnostic settings.
- Geographical variations in viral strains within the yellow head complex necessitate careful antibody selection.
- Further research is needed to identify the causative agents in shrimp from Ecuador and India exhibiting YHV-like pathology.
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