Effects of Temperature, Relative Humidity, Absolute Humidity, and Evaporation Potential on Survival of Airborne Gumboro Vaccine Virus

Author:

Zhao Yang123,Aarnink Andre J. A.1,Dijkman Remco4,Fabri Teun4,de Jong Mart C. M.2,Groot Koerkamp Peter W. G.13

Affiliation:

1. Wageningen UR Livestock Research, Lelystad, the Netherlands

2. Quantitative Veterinary Epidemiology, Wageningen University, Wageningen, the Netherlands

3. Farm Technology Group, Wageningen University, Wageningen, the Netherlands

4. Animal Health Service (GD), Deventer, the Netherlands

Abstract

ABSTRACT Survival of airborne virus influences the extent of disease transmission via air. How environmental factors affect viral survival is not fully understood. We investigated the survival of a vaccine strain of Gumboro virus which was aerosolized at three temperatures (10°C, 20°C, and 30°C) and two relative humidities (RHs) (40% and 70%). The response of viral survival to four metrics (temperature, RH, absolute humidity [AH], and evaporation potential [EP]) was examined. The results show a biphasic viral survival at 10°C and 20°C, i.e., a rapid initial inactivation in a short period (2.3 min) during and after aerosolization, followed by a slow secondary inactivation during a 20-min period after aerosolization. The initial decays of aerosolized virus at 10°C (1.68 to 3.03 ln % min −1 ) and 20°C (3.05 to 3.62 ln % min −1 ) were significantly lower than those at 30°C (5.67 to 5.96 ln % min −1 ). The secondary decays at 10°C (0.03 to 0.09 ln % min −1 ) tended to be higher than those at 20°C (−0.01 to 0.01 ln % min −1 ). The initial viral survival responded to temperature and RH and potentially to EP; the secondary viral survival responded to temperature and potentially to RH. In both phases, survival of the virus was not significantly affected by AH. These findings suggest that long-distance transmission of airborne virus is more likely to occur at 20°C than at 10°C or 30°C and that current Gumboro vaccination by wet aerosolization in poultry industry is not very effective due to the fast initial decay.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference46 articles.

1. Effect of temperature and relative humidity on survival of airborne Columbia SK group viruses;Akers TG;Appl. Environ. Microbiol.,1966

2. The effect of relative humidity on the survival of airborne Semliki forest virus;Benbough JE;J. Gen. Virol.,1969

3. BolinkG DijkmanR. 2010. Development of a quantitative real time PCR (Q-PCR) for detection of infectious bursal disease virus (IBDV)—Gallivac vaccine strain project 5082061. Animal Health Service (GD) Deventer the Netherlands.

4. Evaporation of water into a laminar stream of air and superheated steam;Chow LC;Int. J. Heat Mass Transf.,1983

5. Spray drying of an attenuated live Newcastle disease vaccine virus intended for respiratory mass vaccination of poultry;Corbanie EA;Vaccine,2007

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