首页> 外文期刊>The Philippine Agricultural Scientist >Induction of Immunity and Resistance to White Spot Syndrome Virus (WSSV) in Shrimp Penaeus monodon (Fabricius) by Synthetic Oligodeoxynucleotide and Bacterial DNA
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Induction of Immunity and Resistance to White Spot Syndrome Virus (WSSV) in Shrimp Penaeus monodon (Fabricius) by Synthetic Oligodeoxynucleotide and Bacterial DNA

机译:合成寡核苷酸和细菌DNA诱导对虾斑节对虾(Fabricius)的免疫力和对白斑综合症病毒(WSSV)的抗性。

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摘要

Shrimps like all invertebrates are believed to lack true adaptive immunity but recent evidence indicate that they can be protected against pathogenic organisms by priming their immune system with immunostimulatory substances. Here, we describe resultsof investigation aimed to strengthen shrimp immunity as a preventive strategy against white spot syndrome virus (WSSV) infection. Oligodeoxynucleotides (ODNs) with and without Cytosine-Guanine (CpG) motifs, and Vibrio harveyi genomic DNA (VHD) were administered by intramuscular injection and shrimp responses were assessed by ex vivo assays and experimental infection trials. Results showed that CpG ODN significantly increased ex-vivo immunity indices such as total hemocyte count (THC), plasma agglutination titer (PAT) and hemocyte lysate agglutination titer (HLAT). VHD significantly increased immune indices such as THC, plasma total protein (PTP) and HLAT. Reverse (GpC) motifs increased THC only. At a lower viral challenge dose, both CpG and GpC motifs, and VHD, were able to reduce shrimp mortality significantly but only CpG and VHD did so at a higher challenge dose. Strengthening shrimp immunity by the use of immunostimulatory nucleotides and bacterial genomic DNA could be a feasible preventive approach in the management of WSSV infections in shrimp.
机译:像所有无脊椎动物一样,虾被认为缺乏真正的适应性免疫力,但最近的证据表明,可以通过用免疫刺激物质启动其免疫系统来保护它们免受病原体的侵害。在这里,我们描述了旨在加强对虾免疫力作为针对白斑综合症病毒(WSSV)感染的预防策略的调查结果。通过肌内注射施用具有和不具有胞嘧啶-鸟嘌呤(CpG)基序的寡脱氧核苷酸(ODN)和哈维弧菌基因组DNA(VHD),并通过离体测定和实验性感染试验评估虾的反应。结果显示,CpG ODN显着提高了离体免疫指数,例如总血细胞计数(THC),血浆凝集滴度(PAT)和血细胞裂解物凝集滴度(HLAT)。 VHD显着提高了免疫指数,例如THC,血浆总蛋白(PTP)和HLAT。反向(GpC)图案仅增加THC。在较低的病毒攻击剂量下,CpG和GpC母题以及VHD均能够显着降低虾的死亡率,但只有CpG和VHD在较高的攻击剂量下才能如此。通过使用免疫刺激性核苷酸和细菌基因组DNA来增强虾的免疫力可能是管理虾WSSV感染的可行预防方法。

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