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Recent insights into anti-WSSV immunity in crayfish

机译:最近在小龙虾中抗争的抗动力疫情

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White spot syndrome virus (WSSV) is currently the most severely viral pathogen for farmed crustaceans such as shrimp and crayfish, which has been causing huge economic losses for crustaceans farming worldwide every year. Unfortunately, study on the molecular mechanisms of WSSV has been restricted by the lack of crustacean cell lines for WSSV propagation as well as the incompletely annotated genomes for host species, resulting in limited elucidation for WSSV pathogenesis at present. In addition to the findings of anti-WSSV response in shrimp, some of novel cellular events involved in WSSV infection have been recently revealed in crayfish, including endocytosis and intracellular transport of WSSV, innate immune pathways in response to WSSV infection, and regulation of viral gene expression by host genes. Despite these advances, many fundamental gaps in WSSV pathogenesis are still remaining, for example, how WSSV genome enters into nucleus and how the progeny virions are fully assembled in the host cell nucleus. In this review, recent findings in WSSV infection mechanism and the antiviral immunity against WSSV in crayfish are summarized and discussed, which may provide us a better understanding of the WSSV pathogenesis as well as new ideas for the target design of antiviral drugs against WSSV in crustaceans farming.
机译:白斑综合征病毒(White spot syndrome virus,WSSV)是目前虾、小龙虾等养殖甲壳动物最严重的病毒病原体,每年都给世界范围内的甲壳动物养殖造成巨大的经济损失。不幸的是,由于缺乏用于WSSV传播的甲壳动物细胞系以及宿主物种基因组的不完全注释,WSSV分子机制的研究受到限制,导致目前对WSSV发病机制的解释有限。除了在虾身上发现的抗WSSV反应外,最近在小龙虾身上还发现了一些与WSSV感染有关的新细胞事件,包括WSSV的内吞和细胞内运输、WSSV感染的固有免疫途径,以及宿主基因对病毒基因表达的调节。尽管取得了这些进展,WSSV发病机制中仍存在许多根本性的差距,例如WSSV基因组如何进入细胞核以及子代病毒粒子如何在宿主细胞核中完全组装。本文综述了近年来在对虾WSSV感染机制和抗病毒免疫方面的研究进展,为我们更好地理解WSSV的发病机制以及甲壳动物养殖中抗WSSV抗病毒药物的靶向设计提供了新思路。

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