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Who is the puppet master? Replication of a parasitic wasp-associated virus correlates with host behaviour manipulation

机译:谁是木偶大师?寄生性黄蜂相关病毒的复制与宿主行为操纵相关

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摘要

Many parasites modify their host behaviour to improve their own transmission and survival, but the proximate mechanisms remain poorly understood. An original model consists of the parasitoid Dinocampus coccinellae and its coccinellid host, Coleomegilla maculata; during the behaviour manipulation, the parasitoid is not in contact with its host anymore. We report herein the discovery and characterization of a new RNA virus of the parasitoid (D. coccinellae paralysis virus, DcPV). Using a combination of RT-qPCR and transmission electron microscopy, we demonstrate that DcPV is stored in the oviduct of parasitoid females, replicates in parasitoid larvae and is transmitted to the host during larval development. Next, DcPV replication in the host's nervous tissue induces a severe neuropathy and antiviral immune response that correlate with the paralytic symptoms characterizing the behaviour manipulation. Remarkably, virus clearance correlates with recovery of normal coccinellid behaviour. These results provide evidence that changes in ladybeetle behaviour most likely result from DcPV replication in the cerebral ganglia rather than by manipulation by the parasitoid. This offers stimulating prospects for research on parasitic manipulation by suggesting for the first time that behaviour manipulation could be symbiont-mediated.
机译:许多寄生虫会改变其宿主行为,以改善自身的传播和生存,但对其近端机制仍知之甚少。原始模型由拟寄生虫Dinocampus coccinellae及其球虫寄主Coleomegilla maculata组成。在行为操纵过程中,寄生寄生虫不再与其宿主接触。我们在这里报告了一种新的寄生虫RNA病毒(D.球菌麻痹病毒,DcPV)的发现和表征。使用RT-qPCR和透射电镜的组合,我们证明DcPV存储在寄生虫的女性输卵管中,在寄生虫的幼虫中复制,并在幼虫发育过程中传递给宿主。接下来,宿主神经组织中的DcPV复制引起严重的神经病变和抗病毒免疫反应,这与表征行为操纵的麻痹症状相关。值得注意的是,病毒清除率与正常球虫行为的恢复相关。这些结果提供了证据,证明瓢虫行为的改变最有可能是由于DcPV在脑神经节中的复制所致,而不是由寄生虫的操纵所致。通过首次暗示行为操纵可能是由共生体介导的,这为寄生操纵的研究提供了令人振奋的前景。

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