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White spot syndrome baculovirus (WSBV) detected in cultured and captured shrimp, crabs and other arthropods

机译:在养殖和捕获的虾,蟹和其他节肢动物中检出白斑综合症杆状病毒(WSBV)

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White spot syndrome baculovirus (WSBV) has been found across different shrimp species and in different Asian countries. The detection of WSBV in shrimp with white spot syndrome has already been achieved by means of 1-step polymerase chain reaction (PCR). In an attempt to establish a more sensitive assay, we evaluated the effect of 2-step amplification with nested primers on the sensitivity of WSBV diagnostic PCR. The sensitivity of the 2-step amplification was 103 to 104 times higher than that of 1-step amplification. Using both techniques, we successfully detected WSBV DNA in cultured and captured shrimp, crabs and other arthropods. Cultured Penaeus monodon (black tiger shrimp), P. japonicus (kuruma shrimp), P. penicillatus (red tail shrimp), and Metapenaeus ensis (sand shrimp) displaying white spot syndrome were collected from farms at different localities. One-step amplification of the DNA extracted from these shrimps consistently yielded an expected 1447 bp PCR product. Some of the tested specimens of cultured Scylla serrata (mud crab) that exhibited white spot syndrome were positive in 1-step WSBV diagnostic PCR, while others were positive only in 2-step WSBV diagnostic PCR. Use of the 2-step amplification protocol also detected a WSBV-specific DNA fragment in Macrobrachium rosenbergii (the giant freshwater prawn) exhibiting white spot syndrome. We also confirmed that WSBV exists in wild-caught shrimp (P. monodon, P. japonicus, P. semisulcatus and P. penicillatus) and crabs (Charybdis feriatus, Portunus pelagicus and P. sanguinolentus) collected from the natural environment in coastal waters around southern Taiwan. Detection of WSBV in non-cultured arthropods collected from WSBV-affected shrimp farms revealed that copepods, the pest crab Helice tridens, small pest Palaemonidae prawn and the larvae of an Ephydridae insect were reservoir hosts of WSBV. The relatedness between WSBV and Thailand's systemic ectodermal and mesodermal baculovirus (SEMBV) is discussed in this paper.
机译:白斑综合症杆状病毒(WSBV)已在不同虾类和不同亚洲国家中发现。已通过1步聚合酶链反应(PCR)的方法检测了白斑综合症虾中的WSBV。为了建立更灵敏的检测方法,我们评估了嵌套引物两步扩增对WSBV诊断PCR敏感性的影响。 2步扩增的灵敏度比1步扩增的灵敏度高10 3 至10 4 倍。使用这两种技术,我们成功地在养殖和捕获的虾,蟹和其他节肢动物中检测到WSBV DNA。养殖的 Penaeus monodon (黑虎虾), P。 japonicus (kuruma虾), P。从不同地方的农场收集了显示白斑症候群的青虾(红尾虾)和梅塔彭牛(沙虾)。从这些虾中提取的DNA的一步扩增始终产生预期的1447 bp PCR产物。某些表现出白斑综合症的养殖卷柏(Scylla serrata)(泥蟹)标本中有一些在1步WSBV诊断PCR中呈阳性,而其他仅在2步WSBV诊断PCR中呈阳性。使用两步扩增方案还可以在表现出白斑综合症的罗氏沼虾(淡水大虾)中检测到WSBV特异性DNA片段。我们还确认野生虾( P。monodon , P。japonicus , P。semisulcatus 和 P。从南部南部沿海水域的自然环境中采集的青蟹和青蟹(Charybdis feriatus , Portunus pelagicus 和 sanguinolentus )台湾。在从受WSBV影响的虾场收集的非养殖节肢动物中检测到WSBV时,发现pe足动物,害虫蟹螺旋藻>小害虫Palaemonidae虾和Ep虫的幼虫是WSBV的宿主。本文讨论了WSBV与泰国系统性外胚层和中胚层杆状病毒(SEMBV)之间的相关性。

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