Diseases of Aquatic Organisms · 2010 · 11 citations · 18 references
Viral EvolutionViral PersistenceDifferential MortalityPathogenesisViral PathogenesisEmergent VirusPathologyVirologyTaura Syndrome VirusInfection LoadsMicrobiologyVirus-host InteractionTaura SyndromeVirus TransmissionMedicineAnimal Virus
Taura syndrome is an economically important disease that can cause catastrophic losses of farmed shrimp. Without effective treatments for Taura syndrome virus (TSV), one approach to managing the problem is to selectively breed shrimp populations with increased disease resistance. To better understand why some shrimp can survive exposure to TSV, information is needed on how viral loads progress and persist following infection. Data reported here show that mortalities occurring mostly within 1 wk of infection are associated with high viral titers, and titers as high as 10(8.7) genome copies per microl hemolymph can persist for up to 3 wk in survivors. Thereafter, and up to approximately 9 wk post-exposure, most surviving shrimp remain chronically infected with TSV loads ranging from 10(4) to 10(8) genome copies per microl hemolymph. Challenging shrimp from families with varying TSV resistance showed that in shrimp from less resistant families, the TSV load in hemolymph increased earlier and reached higher peaks than in shrimp from more resistant families. Although TSV loads in moribund shrimp from families differing in resistance did not differ significantly, infection loads among survivors were lower in shrimp from more resistant families. Taken together, the data suggest that lethal infection loads can occur in both more and less susceptible shrimp and that survivors represent shrimp in which viral expansion is better contained.
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Taura syndrome in Penaeus vannamei:demonstration of a viral etiology
KW Hasson, DV Lightner, B. T. Poulos et al. · Diseases of Aquatic Organisms · 1995 · 195 citations · Full text
Taura syndrome in Pacific white shrimp Penaeus vannamei cultured in Taiwan
Changchun Tu, HT Huang, SH Chuang et al. · Diseases of Aquatic Organisms · 1999 · 136 citations · Full text